JP2008075630A - Multi-cylinder engine - Google Patents
Multi-cylinder engine Download PDFInfo
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- JP2008075630A JP2008075630A JP2006259106A JP2006259106A JP2008075630A JP 2008075630 A JP2008075630 A JP 2008075630A JP 2006259106 A JP2006259106 A JP 2006259106A JP 2006259106 A JP2006259106 A JP 2006259106A JP 2008075630 A JP2008075630 A JP 2008075630A
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02T—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
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Abstract
Description
本発明は、多気筒エンジンに関し、詳しくは、オイルミスト量が多くなっても、十分なオイル分離機能が得られる多気筒エンジンに関するものである。 The present invention relates to a multi-cylinder engine, and more particularly to a multi-cylinder engine that can provide a sufficient oil separation function even when the amount of oil mist increases.
従来の多気筒エンジンとして、本発明と同様、シリンダヘッドに取り付けたヘッドカバーの長手方向を前後方向、その一方を前、ヘッドカバーの高さ方向を上下方向として、ヘッドカバーの天井壁に沿って前後方向に向けたブリーザ室を形成し、このブリーザ室の前端部にブリーザ室入口を設け、このブリーザ室の後端部にブリーザ室出口を設け、このブリーザ室内に複数の隔壁を設け、この隔壁に沿ってブリーザ室内でブローバイガスを通過させ、このブローバイガスに含まれるオイルミストを隔壁の表面で凝縮させてオイル分離を行うようにしたものがある(例えば、特許文献1参照)。 As a conventional multi-cylinder engine, as in the present invention, the longitudinal direction of the head cover attached to the cylinder head is the front-rear direction, one is the front, the height direction of the head cover is the vertical direction, and the longitudinal direction is along the ceiling wall of the head cover. A breather chamber inlet, a breather chamber inlet at the front end of the breather chamber, a breather chamber outlet at the rear end of the breather chamber, a plurality of partition walls in the breather chamber, and along the partition walls. There is one in which blow-by gas is passed through a breather chamber and oil mist contained in the blow-by gas is condensed on the surface of a partition wall to perform oil separation (see, for example, Patent Document 1).
しかし、上記従来の多気筒エンジンでは、ブリーザ室によるオイル分離を補助する手段がないため、問題がある。 However, the conventional multi-cylinder engine has a problem because there is no means for assisting oil separation in the breather chamber.
上記従来技術では、次の問題がある。
《問題》 オイルミスト量が多くなると、十分なオイル分離機能が得られない場合がある。
ブリーザ室のオイル分離を補助する手段がないため、オイルミスト量が多くなると、隔壁の表面での凝縮だけでは、オイル分離が間に合わず、オイルミストがブリーザ室を吹きぬけてしまうことがある。また、ヘッドカバーの天井壁に沿うブリーザ室の場合、底壁に大きなオイル排出口を設けると、ここからブローバイガスがブリーザ室に短絡する不具合があるため、大きなオイル排出口を設けることができず、ブリーザ室でのオイルの凝縮量が多くなると、凝縮オイルの排出を効率的に行うことができず、凝縮オイルが再ミスト化されて、ブリーザ室から連れ出されることがある。このような理由で、オイルミスト量が多くなると、十分なオイル分離機能が得られない場合がある。
The above prior art has the following problems.
<< Problem >> When the amount of oil mist increases, a sufficient oil separation function may not be obtained.
Since there is no means for assisting oil separation in the breather chamber, if the amount of oil mist increases, oil separation may not be in time just by condensation on the surface of the partition wall, and the oil mist may blow through the breather chamber. Also, in the case of a breather chamber along the ceiling wall of the head cover, if a large oil discharge port is provided on the bottom wall, there is a problem that blow-by gas is short-circuited from here to the breather chamber, so a large oil discharge port cannot be provided, When the amount of oil condensed in the breather chamber increases, the condensed oil cannot be discharged efficiently, and the condensed oil may be re-misted and taken out of the breather chamber. For this reason, if the amount of oil mist increases, a sufficient oil separation function may not be obtained.
本発明は、上記問題点を解決することができる多気筒エンジン、すなわち、オイルミスト量が多くなっても、十分なオイル分離機能が得られる多気筒エンジンを提供することを課題とする。 An object of the present invention is to provide a multi-cylinder engine that can solve the above-described problems, that is, a multi-cylinder engine that can provide a sufficient oil separation function even when the amount of oil mist increases.
請求項1に係る発明の発明特定事項は、次の通りである。
図1(A)に例示するように、シリンダヘッド(1)に取り付けたヘッドカバー(2)の長手方向を前後方向、その一方を前、ヘッドカバー(2)の高さ方向を上下方向として、ヘッドカバー(2)の天井壁(3)に沿って前後方向に向けたブリーザ室(4)を形成し、このブリーザ室(4)の前端部にブリーザ室入口(5)を設け、このブリーザ室(4)の後端部にブリーザ室出口(6)を設け、このブリーザ室(4)内に複数の隔壁(7)を設け、この隔壁(7)に沿ってブリーザ室(4)内でブローバイガスを通過させ、このブローバイガスに含まれるオイルミストを隔壁(7)の表面で凝縮させてオイル分離を行うようにした多気筒エンジンにおいて、
ヘッドカバー(2)の前端壁(8)に沿って上下方向に向けた前段オイル分離室(9)を設け、この前段オイル分離室(9)に立体網目構造のオイル捕捉体(10)を収容し、この前段オイル分離室(9)の下端部に分離室入口(9a)を設け、前段オイル分離室(9)の上方に位置するヘッドカバー(2)の前端隅角空間を分離室出口(9b)とし、この分離室出口(9b)をブリーザ室入口(5)に連通させた、ことを特徴とする多気筒エンジン。
Invention specific matters of the invention according to
As illustrated in FIG. 1A, the head cover (2) attached to the cylinder head (1) has a longitudinal direction as the front and rear direction, one side as the front, and the height direction of the head cover (2) as the vertical direction. 2) A breather chamber (4) directed in the front-rear direction is formed along the ceiling wall (3), and a breather chamber inlet (5) is provided at the front end of the breather chamber (4). The breather chamber (4) A breather chamber outlet (6) is provided at the rear end portion, a plurality of partition walls (7) are provided in the breather chamber (4), and the blow-by gas passes through the partition wall (7) in the breather chamber (4). In the multi-cylinder engine in which oil mist contained in the blow-by gas is condensed on the surface of the partition wall (7) to perform oil separation,
A front oil separation chamber (9) is provided in the vertical direction along the front end wall (8) of the head cover (2), and the oil catcher (10) having a three-dimensional mesh structure is accommodated in the front oil separation chamber (9). A separation chamber inlet (9a) is provided at the lower end of the front oil separation chamber (9), and the front end corner space of the head cover (2) located above the front oil separation chamber (9) is separated from the separation chamber outlet (9b). The multi-cylinder engine is characterized in that the separation chamber outlet (9b) communicates with the breather chamber inlet (5).
(請求項1に係る発明)
《効果》 オイルミスト量が多くなっても、十分なオイル分離機能が得られる。
図1(A)に例示するように、ヘッドカバー(2)の前端壁(8)に沿って上下方向に向けた前段オイル分離室(9)を設け、この前段オイル分離室(9)に立体網目構造のオイル捕捉体(10)を収容し、この前段オイル分離室(9)の下端部に分離室入口(9a)を設け、前段オイル分離室(9)の上方に位置するヘッドカバー(2)の前端隅角空間を分離室出口(9b)とし、この分離室出口(9b)をブリーザ室入口(5)に連通させたので、オイルミストを含むブローバイガスはブリーザ室(4)に流入する前にオイル捕捉体(10)である程度オイル分離され、その分離オイルの多くは分離室入口(9a)から自然落下し、ブリーザ室(4)に進入しない。このため、オイル捕捉体(10)がブリーザ室(4)のオイル分離の補助となり、分離オイルの排出も効率的に行われ、オイルミスト量が多くなっても、十分なオイル分離機能が得られる。
(Invention according to Claim 1)
<Effect> Even if the amount of oil mist increases, a sufficient oil separation function can be obtained.
As illustrated in FIG. 1A, a front oil separation chamber (9) is provided along the front end wall (8) of the head cover (2) in the vertical direction, and a three-dimensional mesh is formed in the front oil separation chamber (9). The oil trapping body (10) having the structure is accommodated, and a separation chamber inlet (9a) is provided at the lower end portion of the upstream oil separation chamber (9), and the head cover (2) located above the upstream oil separation chamber (9) is provided. Since the front end corner space is the separation chamber outlet (9b), and this separation chamber outlet (9b) communicates with the breather chamber inlet (5), before the blow-by gas containing oil mist flows into the breather chamber (4). The oil catcher (10) separates the oil to some extent, and most of the separated oil naturally falls from the separation chamber inlet (9a) and does not enter the breather chamber (4). For this reason, the oil catcher (10) assists the oil separation in the breather chamber (4), the separated oil is efficiently discharged, and a sufficient oil separation function can be obtained even if the amount of oil mist increases. .
(請求項2に係る発明)
請求項1に係る発明の効果に加え、次の効果を奏する。
《効果》 オイル分離機能が高い。
図1(B)に例示するように、押さえ具(13)の下端部(16)の通気出口孔(19)から分離室出口(9b)の前空間(17)に進入したブローバイガスが通気隙間(23)と後空間(18)とを経てブリーザ室入口(5)に進入するようにした、ブローバイガスに含まれるオイルミストはブリーザ室(4)に流入する前に、この押さえ具(13)で区画された前後空間(17)(18)を通過し、押さえ具(13)の表面で凝縮する。このように、オイル捕捉体(10)を通過したオイルミストはブリーザ室(4)に進入する前に押さえ具(13)の表面でオイル分離されるので、オイル分離機能が高い。
(Invention according to Claim 2)
In addition to the effect of the invention according to
<Effect> High oil separation function.
As illustrated in FIG. 1B, the blow-by gas that has entered the front space (17) of the separation chamber outlet (9b) from the vent outlet hole (19) of the lower end portion (16) of the presser (13) becomes a ventilation gap. The oil mist contained in the blow-by gas, which has entered the breather chamber inlet (5) through the rear space (18) and the rear space (18), flows into the breather chamber (4) before the presser (13). Passes through the front and rear spaces (17) and (18) partitioned by (5) and condenses on the surface of the presser (13). Thus, since the oil mist that has passed through the oil catcher (10) is separated on the surface of the presser (13) before entering the breather chamber (4), the oil separating function is high.
《効果》 押さえ具をオイル分離手段として有効利用できる。
図1(A)に例示するように、押さえ具(13)は板状で、その上端部(15)を後方に折り曲げてヘッドカバー(2)の天井壁(3)に接当させ、その下端部(16)を前方に折り曲げてオイル捕捉体(10)の上面に接当させ、その中間部(20)で分離室出口(9b)を前空間(17)と後空間(18)とに区画し、図1(B)に例示するように、押さえ具(13)の下端部(16)に通気出口孔(19)をあけ、図1(C)に例示するように、押さえ具(13)の中間部(20)の横端縁(21)とヘッドカバー(2)の横壁(22)との間に通気隙間(23)を設け、この通気隙間(23)の左右方向反対側寄りにブリーザ室入口(5)を配置したので、図1(B)に例示するように、押さえ具(13)で区画した前空間(17)と後空間(18)に沿ってブローバイガスを反転状に通過させることができ、押さえ具(13)をオイル分離手段として有効利用できる。
<Effect> The presser can be effectively used as an oil separating means.
As illustrated in FIG. 1 (A), the presser (13) is plate-shaped, and its upper end (15) is bent backward to contact the ceiling wall (3) of the head cover (2), and its lower end. (16) is folded forward and brought into contact with the upper surface of the oil catcher (10), and the separation chamber outlet (9b) is divided into a front space (17) and a rear space (18) at the intermediate portion (20). As shown in FIG. 1 (B), a vent outlet hole (19) is formed in the lower end (16) of the presser (13), and as shown in FIG. 1 (C), the presser (13) A ventilation gap (23) is provided between the lateral edge (21) of the intermediate portion (20) and the lateral wall (22) of the head cover (2), and the breather chamber entrance is located on the opposite side of the ventilation gap (23) in the left-right direction. Since (5) is arranged, as shown in FIG. 1 (B), the blow-by gas is allowed to pass in an inverted manner along the front space (17) and the rear space (18) partitioned by the pressing tool (13). Can be pressed Ingredients (13) can be effectively used as an oil separating means.
(請求項3に係る発明)
請求項1または請求項2に係る発明の効果に加え、次の効果を奏する。
《効果》 オイル分離機能が高い。
図3に例示するように、ヘッドカバー(2)の天井壁(3)にガス旋回室(24)を設け、その旋回室入口(25)の始端部(26)をブリーザ室出口(6)に連通させ、図1(E)に例示するように、旋回室入口(25)の終端部(27)を旋回室周壁(28)の内周面の接線方向に沿わせ、この旋回室入口(25)の終端部(27)からガス旋回室(24)に進入したブローバイガスが旋回室周壁(28)の内周面に沿って旋回するようにしたので、ブリーザ室(4)を通過したオイルミストはガス旋回室(24)で遠心分離される。このように、ブリーザ室(4)を通過したオイルミストはガス旋回室(24)で事後的にオイル分離されるので、オイル分離機能が高い。
(Invention according to claim 3)
In addition to the effect of the invention according to
<Effect> High oil separation function.
As shown in FIG. 3, a gas swirl chamber (24) is provided in the ceiling wall (3) of the head cover (2), and the start end (26) of the swirl chamber inlet (25) communicates with the breather chamber outlet (6). As shown in FIG. 1 (E), the end portion (27) of the swirl chamber inlet (25) is set along the tangential direction of the inner peripheral surface of the swirl chamber peripheral wall (28), and the swirl chamber inlet (25) Since the blow-by gas that has entered the gas swirl chamber (24) from the end portion (27) of the swirl swirls along the inner peripheral surface of the swirl chamber peripheral wall (28), the oil mist that has passed through the breather chamber (4) Centrifugation is performed in the gas swirl chamber (24). Thus, since the oil mist that has passed through the breather chamber (4) is separated later in the gas swirl chamber (24), the oil separation function is high.
(請求項4に係る発明)
請求項3に係る発明の効果に加え、次の効果を奏する。
《効果》 オイル分離機能が高い。
図3に例示するように、ガス旋回室(24)を通過したブローバイガスが開弁した弁面(33)と弁座(31)との間を通過して、弁座出口通路(34)に流入するようにしたので、ガス旋回室(24)を通過したオイルミストは弁面(33)と弁座(31)との間の通過抵抗によってオイル分離される。このように、オイルミストは、ガス旋回室(24)から流出する際にもオイル分離されるので、オイル分離機能が高い。
(Invention of Claim 4)
In addition to the effect of the invention according to
<Effect> High oil separation function.
As illustrated in FIG. 3, blow-by gas that has passed through the gas swirl chamber (24) passes between the valve surface (33) and the valve seat (31) where the valve is opened, and enters the valve seat outlet passage (34). The oil mist that has passed through the gas swirl chamber (24) is oil-separated by the passage resistance between the valve face (33) and the valve seat (31). In this way, the oil mist is separated even when it flows out of the gas swirl chamber (24), so the oil separation function is high.
(請求項5に係る発明)
請求項4に係る発明の効果に加え、次の効果を奏する。
《効果》 旋回室の無い仕様のエンジンに簡単に仕様変更することができる。
図3に例示するように、旋回室取付座(35)には前記旋回室周壁(28)に代えて上記ダイヤフラム弁(32)の周縁部を取り付けることができるようにし、この旋回室取付座(35)に旋回室周壁(28)に代えてダイヤフラム弁(32)の周縁部を取り付けた場合には、出口通路前段周壁(36)の上面に上記ダイヤフラム弁(32)の弁面(33)を着座させ、上記ダイヤフラム弁(32)をブリーザ弁として用いることができるようにしたので、旋回室取付座(35)から旋回室周壁(28)を取り外し、旋回室取付座(35)にダイヤフラム弁(32)を付け替えるだけで、旋回室の無い仕様のエンジンに簡単に仕様変更することができる。
(Invention according to claim 5)
In addition to the effect of the invention according to
<Effect> The specification can be easily changed to an engine having a specification without a swirl chamber.
As illustrated in FIG. 3, instead of the swirl chamber peripheral wall (28), the periphery of the diaphragm valve (32) can be mounted on the swirl chamber mount seat (35). 35), when the peripheral portion of the diaphragm valve (32) is attached instead of the swirl chamber peripheral wall (28), the valve surface (33) of the diaphragm valve (32) is provided on the upper surface of the outlet passage front peripheral wall (36). Since the diaphragm valve (32) can be used as a breather valve, the swirl chamber peripheral wall (28) is removed from the swirl chamber mounting seat (35), and the diaphragm valve ( By simply replacing 32), it is possible to easily change the specification to an engine without a swirl chamber.
《効果》 旋回室の無い仕様のエンジンとヘッドカバーを共用することができる。
図3に例示するように、旋回室取付座(35)は、ダイヤフラム弁(32)の弁取付座としても用いることができ、出口通路前段周壁(37)の上面は、上記ダイヤフラム弁(32)の弁座としても用いることができるため、旋回室の無い仕様のエンジンとヘッドカバー(2)を共用することができる。
<Effect> It is possible to share the head cover and the engine without the swirl chamber.
As illustrated in FIG. 3, the swirl chamber mounting seat (35) can also be used as a valve mounting seat for the diaphragm valve (32), and the upper surface of the outlet passage front peripheral wall (37) is formed on the diaphragm valve (32). Therefore, it is possible to share the head cover (2) with the engine having no swirl chamber.
(請求項6に係る発明)
請求項1から請求項5のいずれかに係る発明の効果に加え、次の効果を奏する。
《効果》 オイル分離機能が高い。
図1(A)に例示するように、ブリーザ室(4)の底壁(40)からオイル排出パイプ(41)を下向きに導出し、このオイル排出パイプ(41)の下端部(42)をU字状に折り返したので、オイル排出パイプ(41)の下端部(42)にオイルが溜まることにより、ブローバイガスがオイル排出パイプ(41)の下端開口部(44)からブリーザ室(4)に短絡する不具合がなく、オイル排出パイプ(41)の内径を十分に大きくすることができる。このため、ブリーザ室(4)からのオイル排出を効率的に行うことができ、ブリーザ室(4)に凝縮オイル溜まりにくく、凝縮オイルの再ミスト化によるブリーザ室(4)からの連れ出しが抑制され、オイル分離機能が高い。
(Invention of Claim 6)
In addition to the effects of the invention according to any one of
<Effect> High oil separation function.
As illustrated in FIG. 1A, an oil discharge pipe (41) is led downward from the bottom wall (40) of the breather chamber (4), and a lower end (42) of the oil discharge pipe (41) is connected to the U Since the oil is collected at the lower end (42) of the oil discharge pipe (41), blow-by gas is short-circuited from the lower end opening (44) of the oil discharge pipe (41) to the breather chamber (4). The internal diameter of the oil discharge pipe (41) can be made sufficiently large. For this reason, the oil can be efficiently discharged from the breather chamber (4), the condensed oil hardly accumulates in the breather chamber (4), and the take-out from the breather chamber (4) due to the re-misting of the condensed oil is suppressed. High oil separation function.
(請求項7に係る発明)
請求項1から請求項5のいずれかに係る発明の効果に加え、次の効果を奏する。
《効果》 オイル分離機能が高い。
図2(C)に例示するように、シリンダヘッド(1)の上面にオイル溜め(43)を設け、ブリーザ室(4)の底壁(40)からオイル排出パイプ(41)を下向きに導出し、このオイル排出パイプ(41)の下端開口部(44)をオイル溜め(43)に溜めたオイル(45)に浸漬させたので、ブローバイガスがオイル排出パイプ(41)の下端開口部(44)からブリーザ室(4)に短絡する不具合がなく、オイル排出パイプ(41)の内径を十分に大きくすることができる。このため、ブリーザ室(4)からのオイル排出を効率的に行うことができ、ブリーザ室(4)に凝縮オイル溜まりにくく、凝縮オイルの再ミスト化によるブリーザ室(4)からの連れ出しが抑制され、オイル分離機能が高い
(Invention of Claim 7)
In addition to the effects of the invention according to any one of
<Effect> High oil separation function.
As illustrated in FIG. 2C, an oil sump (43) is provided on the upper surface of the cylinder head (1), and the oil discharge pipe (41) is led downward from the bottom wall (40) of the breather chamber (4). Since the lower end opening (44) of the oil discharge pipe (41) is immersed in the oil (45) stored in the oil reservoir (43), the blow-by gas flows into the lower end opening (44) of the oil discharge pipe (41). Therefore, the oil discharge pipe (41) can have a sufficiently large inner diameter. For this reason, the oil can be efficiently discharged from the breather chamber (4), the condensed oil hardly accumulates in the breather chamber (4), and the take-out from the breather chamber (4) due to the re-misting of the condensed oil is suppressed. High oil separation function
(請求項8に係る発明)
請求項1から請求項7のいずれかに係る発明の効果に加え、次の効果を奏する。
《効果》 ブリーザ室の形成によって、エンジンの全高が高くなるおそれがない。
図1(A)に例示するように、ヘッドカバー(2)の天井壁(3)の前半部(3a)と後半部(3b)のうち、前半部(3a)にのみブリーザ室(4)を形成することにより、ヘッドカバー(2)の天井壁(3)の後半部(3b)を天井壁(3)の前半部(3b)よりも低くし、このヘッドカバー(2)の天井壁(3)の後半部(3b)に沿って過給パイプ(47)を配置したので、ヘッドカバー(2)の天井壁(3)にブリーザ室(4)を形成しても過給パイプ(47)の位置が高くならず、ブリーザ室(4)の形成によってエンジンの全高が高くなるおそれがない。
(Invention of Claim 8)
In addition to the effects of the invention according to any one of
<Effect> By forming the breather chamber, the overall height of the engine does not increase.
As illustrated in FIG. 1A, a breather chamber (4) is formed only in the front half (3a) of the front half (3a) and the rear half (3b) of the ceiling wall (3) of the head cover (2). By doing so, the second half (3b) of the ceiling wall (3) of the head cover (2) is made lower than the first half (3b) of the ceiling wall (3), and the second half of the ceiling wall (3) of the head cover (2). Since the supercharged pipe (47) is arranged along the part (3b), the position of the supercharged pipe (47) is high even if the breather chamber (4) is formed on the ceiling wall (3) of the head cover (2). In addition, there is no possibility that the overall height of the engine is increased by the formation of the breather chamber (4).
本発明の実施の形態を図面に基づいて説明する。図1から図4は本発明の実施形態に係る多気筒エンジンを説明する図で、この実施形態では、4気筒の立形ディーゼルエンジンについて説明する。 Embodiments of the present invention will be described with reference to the drawings. FIGS. 1 to 4 are diagrams for explaining a multi-cylinder engine according to an embodiment of the present invention. In this embodiment, a 4-cylinder vertical diesel engine will be explained.
本発明の実施形態の概要は、次の通りである。
図4に示すように、シリンダブロック(48)の上部にシリンダヘッド(1)を組付け、シリンダヘッド(1)の上部にヘッドカバー(2)を組み付けている。シリンダブロック(48)の前部に巻き掛け伝動装置(49)を配置し、シリンダブロック(48)の後部にタイミングギヤトレイン(図外)を配置している。シリンダブロック(48)の下部にオイルパン(50)を組み付けている。シリンダヘッド(1)の左右一側に吸気分配通路壁(51)を設け、他側に排気合流通路壁(52)を設けている。吸気分配通路壁(51)は一般に吸気マニホルドと呼ばれるものであるが、枝管のない箱型構造であるため、吸気分配通路壁と表現した。排気合流通路壁(52)は一般に排気マニホルドと呼ばれるものであるが、吸気分配通路壁の表現に合わせて排気合流通路壁と表現した。吸気分配通路壁(51)の上方にはEGRクーラ(53)とEGR弁ケース(54)とを配置している。EGR弁ケース(54)の上部には弁アクチュエータ(55)を組み付けている。排気合流通路壁(52)の上部には過給機(46)を組み付けている。ヘッドカバー(2)にはブリーザ装置を設けている。
The outline of the embodiment of the present invention is as follows.
As shown in FIG. 4, the cylinder head (1) is assembled to the upper part of the cylinder block (48), and the head cover (2) is assembled to the upper part of the cylinder head (1). A winding transmission (49) is disposed at the front of the cylinder block (48), and a timing gear train (not shown) is disposed at the rear of the cylinder block (48). An oil pan (50) is assembled to the lower part of the cylinder block (48). An intake distribution passage wall (51) is provided on the left and right sides of the cylinder head (1), and an exhaust merging passage wall (52) is provided on the other side. Although the intake distribution passage wall (51) is generally called an intake manifold, it is expressed as an intake distribution passage wall because it has a box structure without a branch pipe. The exhaust merging passage wall (52) is generally called an exhaust manifold, but is expressed as an exhaust merging passage wall according to the expression of the intake distribution passage wall. An EGR cooler (53) and an EGR valve case (54) are arranged above the intake distribution passage wall (51). A valve actuator (55) is assembled to the upper part of the EGR valve case (54). A supercharger (46) is assembled to the upper part of the exhaust merging passage wall (52). The head cover (2) is provided with a breather device.
ブリーザ装置の概要は、次の通りである。
図1(A)に示すように、シリンダヘッド(1)に取り付けたヘッドカバー(2)の長手方向を前後方向、その一方を前、ヘッドカバー(2)の高さ方向を上下方向として、ヘッドカバー(2)の天井壁(3)に沿って前後方向に向けたブリーザ室(4)を形成している。このブリーザ室(4)の前端部にブリーザ室入口(5)を設け、このブリーザ室(4)の後端部にブリーザ室出口(6)を設け、このブリーザ室(4)内に複数の隔壁(7)を設け、この隔壁(7)に沿ってブリーザ室(4)内でブローバイガスを通過させ、このブローバイガスに含まれるオイルミストを隔壁(7)の表面で凝縮させてオイル分離を行うようにしている。図2(A)に示すように、隔壁(7)は、左右方向に向けられ、前後方向に並べて配置され、ブリーザ室(4)内を前後方向に区画し、ブリーザ室(4)内を複数の区画室に区分している。隣合う隔壁(7)には左右横方向相互反対側に連通口(54)を配置し、ブリーザ室(4)内をブローバイガスが蛇行しながら通過するようになっている。
The outline of the breather device is as follows.
As shown in FIG. 1 (A), the longitudinal direction of the head cover (2) attached to the cylinder head (1) is the front-rear direction, one is the front, and the height direction of the head cover (2) is the vertical direction. A breather chamber (4) directed in the front-rear direction is formed along the ceiling wall (3). A breather chamber inlet (5) is provided at the front end of the breather chamber (4), a breather chamber outlet (6) is provided at the rear end of the breather chamber (4), and a plurality of partition walls are provided in the breather chamber (4). (7) is provided, and blow-by gas is allowed to pass along the partition wall (7) in the breather chamber (4), and oil mist contained in the blow-by gas is condensed on the surface of the partition wall (7) for oil separation. I am doing so. As shown in FIG. 2 (A), the partition wall (7) is directed in the left-right direction and arranged side by side in the front-rear direction. It is divided into two compartments. Adjacent partition walls (7) are provided with communication ports (54) on opposite sides in the horizontal direction so that blow-by gas passes through the breather chamber (4) while meandering.
ブリーザ室上流でのオイル分離構造は、次の通りである。
図1(A)に示すように、ヘッドカバー(2)の前端壁(8)に沿って上下方向に向けた前段オイル分離室(9)を設け、この前段オイル分離室(9)に立体網目構造のオイル捕捉体(10)を収容し、この前段オイル分離室(9)の下端部に分離室入口(9a)を設け、前段オイル分離室(9)の上方に位置するヘッドカバー(2)の前端隅角空間を分離室出口(9b)とし、この分離室出口(9b)をブリーザ室入口(5)に連通させている。オイル捕捉体(10)はスチールウールである。
The oil separation structure upstream of the breather chamber is as follows.
As shown in FIG. 1 (A), a front oil separation chamber (9) is provided in the vertical direction along the front end wall (8) of the head cover (2), and a three-dimensional network structure is provided in the front oil separation chamber (9). The oil trapping body (10) is accommodated, a separation chamber inlet (9a) is provided at the lower end of the preceding oil separation chamber (9), and the front end of the head cover (2) located above the preceding oil separation chamber (9) The corner space is defined as a separation chamber outlet (9b), and the separation chamber outlet (9b) communicates with the breather chamber inlet (5). The oil catcher (10) is steel wool.
オイル捕捉体の固定構造は、次の通りである。
図1(A)に示すように、分離室入口(9a)に受け具(12)を設け、この受け具(12)にオイル捕捉体(10)を載せ、分離室出口(9b)に押さえ具(13)を収容し、この押さえ具(13)と受け具(12)との間にオイル捕捉体(10)を挟み付けることにより、前段オイル分離室(9)内でオイル捕捉体(10)を固定する。
The oil trapping body fixing structure is as follows.
As shown in FIG. 1 (A), a receptacle (12) is provided at the separation chamber inlet (9a), an oil catcher (10) is placed on the receptacle (12), and a presser is placed at the separation chamber outlet (9b). (13) is housed, and the oil catcher (10) is sandwiched between the presser (13) and the receiver (12), so that the oil catcher (10) in the preceding oil separation chamber (9). To fix.
上記固定に伴う工夫は、次の通りである。
図2(A)に示すように、受け具(12)に通気入口孔(14)をあけ、図1(A)に示すように、押さえ具(13)は板状で、その上端部(15)を後方に折り曲げてヘッドカバー(2)の天井壁(3)に接当させ、その下端部(16)を前方に折り曲げてオイル捕捉体(10)の上面に接当させ、その中間部(20)で分離室出口(9b)を前空間(17)と後空間(18)とに区画し、押さえ具(13)の下端部(16)に通気出口孔(19)をあけ、図1(C)に示すように、押さえ具(13)の中間部(20)の横端縁(21)とヘッドカバー(2)の横壁(22)との間に通気隙間(23)を設け、この通気隙間(23)の左右方向反対側寄りにブリーザ室入口(5)を配置している。これにより、図1(B)に示すように、押さえ具(13)の下端部(16)の通気出口孔(19)から分離室出口(9b)の前空間(17)に進入したブローバイガスが通気隙間(23)と後空間(18)とを経てブリーザ室入口(5)に進入するようにしている。
The device for the fixing is as follows.
As shown in FIG. 2 (A), a vent inlet hole (14) is made in the receiving tool (12), and as shown in FIG. 1 (A), the pressing tool (13) is plate-shaped and its upper end (15 ) Is bent backward and is brought into contact with the ceiling wall (3) of the head cover (2), and its lower end portion (16) is bent forward and brought into contact with the upper surface of the oil catcher (10). 1), the separation chamber outlet (9b) is divided into a front space (17) and a rear space (18), and a vent outlet hole (19) is formed in the lower end (16) of the presser (13). ), A ventilation gap (23) is provided between the lateral edge (21) of the intermediate part (20) of the presser (13) and the lateral wall (22) of the head cover (2). 23) The breather chamber entrance (5) is arranged on the opposite side in the left-right direction. As a result, as shown in FIG. 1 (B), blow-by gas that has entered the front space (17) of the separation chamber outlet (9b) from the vent outlet hole (19) of the lower end (16) of the presser (13) The breather chamber entrance (5) is entered through the ventilation gap (23) and the rear space (18).
ブリーザ室下流でのオイル分離構造は、次の通りである。
図3に示すように、ヘッドカバー(2)の天井壁(3)にガス旋回室(24)を設け、その旋回室入口(25)の始端部(26)をブリーザ室出口(6)に連通させ、図1(E)に示すように、旋回室入口(25)の終端部(27)を旋回室周壁(28)の内周面の接線方向に沿わせ、この旋回室入口(25)の終端部(27)からガス旋回室(24)に進入したブローバイガスが旋回室周壁(28)の内周面に沿って旋回するようにしている。
The oil separation structure downstream of the breather chamber is as follows.
As shown in FIG. 3, a gas swirl chamber (24) is provided in the ceiling wall (3) of the head cover (2), and the start end (26) of the swirl chamber inlet (25) communicates with the breather chamber outlet (6). As shown in FIG. 1E, the end portion (27) of the swirl chamber inlet (25) is set along the tangential direction of the inner peripheral surface of the swirl chamber peripheral wall (28), and the end of the swirl chamber inlet (25) is formed. The blow-by gas that has entered the gas swirl chamber (24) from the section (27) swirls along the inner peripheral surface of the swirl chamber peripheral wall (28).
ガス旋回室の構造は、次の通りである。
図3に示すように、旋回室周壁(28)の上面に弁取付座(29)を形成し、ガス旋回室(24)の中心部に弁座周壁(30)を配置し、この弁座周壁(30)の軸線を上下方向に向け、この弁座周壁(30)の上面に弁座(31)を形成し、弁取付座(29)にブリーザ弁となるダイヤフラム弁(32)の周縁部を取り付け、このダイヤフラム弁(32)の弁面(33)を弁座(31)に着座させ、弁座周壁(30)内に弁座出口通路(34)を形成する。これにより、ガス旋回室(24)を通過したブローバイガスが開弁した弁面(33)と弁座(31)との間を通過して、弁座出口通路(34)に流入するようにしている。
The structure of the gas swirl chamber is as follows.
As shown in FIG. 3, a valve mounting seat (29) is formed on the upper surface of the swirl chamber peripheral wall (28), and a valve seat peripheral wall (30) is disposed at the center of the gas swirl chamber (24). The valve seat (31) is formed on the upper surface of the valve seat peripheral wall (30), and the peripheral portion of the diaphragm valve (32) serving as a breather valve is formed on the valve mounting seat (29). The valve face (33) of the diaphragm valve (32) is seated on the valve seat (31), and a valve seat outlet passage (34) is formed in the valve seat peripheral wall (30). As a result, the blow-by gas that has passed through the gas swirl chamber (24) passes between the valve surface (33) and the valve seat (31), and flows into the valve seat outlet passage (34). Yes.
図3に示すように、ヘッドカバー(2)の天井壁(3)に旋回室取付座(35)を設け、この旋回室取付座(35)に旋回室周壁(28)を取り付け、この旋回室取付座(35)の中心部に出口通路前段周壁(36)を設け、この出口通路前段周壁(36)の軸線を上下方向に向け、出口通路前段周壁(36)とヘッドカバー(2)の横壁(22)との間に出口通路後段周壁(37)を架設し、この出口通路後段周壁(37)の軸線を左右横方向に向けている。 As shown in FIG. 3, a swirl chamber mounting seat (35) is provided on the ceiling wall (3) of the head cover (2), and a swirl chamber peripheral wall (28) is mounted on the swirl chamber mounting seat (35). An outlet passage front peripheral wall (36) is provided at the center of the seat (35), and the axis of the outlet passage front peripheral wall (36) is directed in the vertical direction so that the outlet passage front peripheral wall (36) and the side wall (22) of the head cover (2) ), The outlet passage rear-stage peripheral wall (37) is erected, and the axis of the outlet passage rear-stage peripheral wall (37) is directed in the horizontal direction.
図3に示すように、出口通路前段周壁(36)と出口通路前段周壁(37)の内部にL字形に屈曲した出口通路(38)を設け、出口通路前段周壁(37)の上面に形成した出口通路(38)の始端を弁座出口通路(34)の終端に連通させ、出口通路後段周壁(37)の終端に形成した出口通路(38)の終端をブリーザパイプ(39)を介して吸気通路に連通させるに当たり、次のようにしている。
旋回室取付座(35)には前記旋回室周壁(28)に代えて上記ダイヤフラム弁(32)の周縁部を取り付けることができるようにし、この旋回室取付座(35)に旋回室周壁(28)に代えてダイヤフラム弁(32)の周縁部を取り付けた場合には、出口通路前段周壁(36)の上面に上記ダイヤフラム弁(32)の弁面(33)を着座させ、上記ダイヤフラム弁(32)をブリーザ弁として用いることができるようにしている。
As shown in FIG. 3, an outlet passage front wall (36) and an outlet passage front wall (37) provided with an outlet passage (38) bent in an L shape are formed on the upper surface of the outlet passage front wall (37). The starting end of the outlet passage (38) is connected to the end of the valve seat outlet passage (34), and the end of the outlet passage (38) formed at the end of the rear peripheral wall (37) of the outlet passage is sucked through the breather pipe (39). In communicating with the passageway, the following is done.
Instead of the swirl chamber peripheral wall (28), the periphery of the diaphragm valve (32) can be mounted on the swirl chamber mounting seat (35), and the swirl chamber peripheral wall (28) is attached to the swirl chamber mount seat (35). When the peripheral portion of the diaphragm valve (32) is attached instead of the diaphragm valve (32), the valve surface (33) of the diaphragm valve (32) is seated on the upper surface of the outlet passage front peripheral wall (36), and the diaphragm valve (32 ) Can be used as a breather valve.
ブリーザ室からのオイル排出構造は、次の通りである。
図1(A)に示すように、ブリーザ室(4)の底壁(40)からオイル排出パイプ(41)を下向きに導出し、このオイル排出パイプ(41)の下端部(42)をU字状に折り返している。図2(C)に示すように、シリンダヘッド(1)の上面にオイル溜め(43)を設け、ブリーザ室(4)の底壁(40)からオイル排出パイプ(41)を下向きに導出し、このオイル排出パイプ(41)の下端開口部(44)をオイル溜め(43)に溜めたオイル(45)に浸漬させてもよい。
The oil discharge structure from the breather chamber is as follows.
As shown in FIG. 1 (A), the oil discharge pipe (41) is led downward from the bottom wall (40) of the breather chamber (4), and the lower end (42) of the oil discharge pipe (41) is U-shaped. It is folded back into a shape. As shown in FIG. 2 (C), an oil sump (43) is provided on the upper surface of the cylinder head (1), and the oil discharge pipe (41) is led downward from the bottom wall (40) of the breather chamber (4). The lower end opening (44) of the oil discharge pipe (41) may be immersed in the oil (45) stored in the oil reservoir (43).
過給パイプの配置は、次の通りである。
図4に示すように、過給機(46)から吸気通路に過給を行う過給パイプ(47)をヘッドカバー(2)の天井壁(3)に沿って配置するに当たり、図1(A)に示すように、ヘッドカバー(2)の天井壁(3)の前半部(3a)と後半部(3b)のうち、前半部(3a)にのみブリーザ室(4)を形成することにより、ヘッドカバー(2)の天井壁(3)の後半部(3b)を天井壁(3)の前半部(3b)よりも低くし、このヘッドカバー(2)の天井壁(3)の後半部(3b)に沿って過給パイプ(47)を配置している。
The arrangement of the supercharging pipe is as follows.
As shown in FIG. 4, when the supercharger pipe (47) for supercharging the intake passage from the supercharger (46) is disposed along the ceiling wall (3) of the head cover (2), FIG. As shown in FIG. 4, a breather chamber (4) is formed only in the front half (3a) of the front half (3a) and the rear half (3b) of the ceiling wall (3) of the head cover (2). 2) The second half (3b) of the ceiling wall (3) is made lower than the first half (3b) of the ceiling wall (3), along the second half (3b) of the ceiling wall (3) of the head cover (2). The supercharging pipe (47) is arranged.
(1) シリンダヘッド
(2) ヘッドカバー
(3) 天井壁
(3a) 前半部
(3b) 後半部
(4) ブリーザ室
(5) ブリーザ室入口
(6) ブリーザ室出口
(7) 隔壁
(8) 前端壁
(9) 前段オイル分離室
(9a) 分離室入口
(9b) 分離室出口
(10) オイル捕捉体
(11)
(12) 受け具
(13) 押さえ具
(14) 通気入口孔
(15) 上端部
(16) 下端部
(17) 前空間
(18) 後空間
(19) 通気出口孔
(20) 中間部
(21) 横端縁
(22) 横壁
(23) 通気隙間
(24) ガス旋回室
(25) 旋回室入口
(26) 始端部
(27) 終端部
(28) 旋回室周壁
(29) 弁取付座
(30) 弁座周壁
(31) 弁座
(32) ダイヤフラム弁
(33) 弁面
(34) 弁座出口通路
(35) 旋回室取付座
(36) 出口通路前段周壁
(37) 出口通路後段周壁
(38) 出口通路
(39) ブリーザパイプ
(40) 底壁
(41) オイル排出パイプ
(42) 下端部
(43) オイル溜め
(44) 下端開口部
(45) オイル
(46) 過給機
(47) 過給パイプ
(1) Cylinder head
(2) Head cover
(3) Ceiling wall
(3a) First half
(3b) Second half
(4) Breezer room
(5) Breezer room entrance
(6) Breezer room exit
(7) Bulkhead
(8) Front end wall
(9) Front oil separation chamber
(9a) Separation chamber entrance
(9b) Separation chamber exit
(10) Oil catcher
(11)
(12) Receiver
(13) Presser
(14) Venting hole
(15) Upper end
(16) Lower end
(17) Front space
(18) Back space
(19) Vent outlet hole
(20) Middle part
(21) Horizontal edge
(22) Horizontal wall
(23) Ventilation gap
(24) Gas swirl chamber
(25) Swirl room entrance
(26) Start end
(27) Termination
(28) Swirling chamber wall
(29) Valve mounting seat
(30) Valve seat wall
(31) Valve seat
(32) Diaphragm valve
(33) Valve face
(34) Valve seat outlet passage
(35) Swivel chamber mounting seat
(36) Exit passage front wall
(37) Exit passage rear wall
(38) Exit passage
(39) Breather pipe
(40) Bottom wall
(41) Oil discharge pipe
(42) Lower end
(43) Oil sump
(44) Lower end opening
(45) Oil
(46) Turbocharger
(47) Supercharged pipe
Claims (8)
ヘッドカバー(2)の前端壁(8)に沿って上下方向に向けた前段オイル分離室(9)を設け、この前段オイル分離室(9)に立体網目構造のオイル捕捉体(10)を収容し、この前段オイル分離室(9)の下端部に分離室入口(9a)を設け、前段オイル分離室(9)の上方に位置するヘッドカバー(2)の前端隅角空間を分離室出口(9b)とし、この分離室出口(9b)をブリーザ室入口(5)に連通させた、ことを特徴とする多気筒エンジン。 Along the ceiling wall (3) of the head cover (2), the longitudinal direction of the head cover (2) attached to the cylinder head (1) is the front-rear direction, one is the front, and the height direction of the head cover (2) is the vertical direction. A breather chamber (4) directed in the front-rear direction is formed, a breather chamber inlet (5) is provided at the front end of the breather chamber (4), and a breather chamber outlet (6) is disposed at the rear end of the breather chamber (4). A plurality of partition walls (7) are provided in the breather chamber (4), blow-by gas is passed through the breather chamber (4) along the partition wall (7), and oil mist contained in the blow-by gas is removed. In a multi-cylinder engine that is condensed on the surface of the partition wall (7) to perform oil separation,
A front oil separation chamber (9) is provided in the vertical direction along the front end wall (8) of the head cover (2), and the oil catcher (10) having a three-dimensional mesh structure is accommodated in the front oil separation chamber (9). A separation chamber inlet (9a) is provided at the lower end of the front oil separation chamber (9), and the front end corner space of the head cover (2) located above the front oil separation chamber (9) is separated from the separation chamber outlet (9b). The multi-cylinder engine is characterized in that the separation chamber outlet (9b) communicates with the breather chamber inlet (5).
分離室入口(9a)に受け具(12)を設け、この受け具(12)にオイル捕捉体(10)を載せ、分離室出口(9b)に押さえ具(13)を収容し、この押さえ具(13)と受け具(12)との間にオイル捕捉体(10)を挟み付けることにより、前段オイル分離室(9)内でオイル捕捉体(10)を固定するに当たり、
受け具(12)に通気入口孔(14)をあけ、押さえ具(13)は板状で、その上端部(15)を後方に折り曲げてヘッドカバー(2)の天井壁(3)に接当させ、その下端部(16)を前方に折り曲げてオイル捕捉体(10)の上面に接当させ、その中間部(20)で分離室出口(9b)を前空間(17)と後空間(18)とに区画し、押さえ具(13)の下端部(16)に通気出口孔(19)をあけ、押さえ具(13)の中間部(20)の横端縁(21)とヘッドカバー(2)の横壁(22)との間に通気隙間(23)を設け、この通気隙間(23)の左右方向反対側寄りにブリーザ室入口(5)を配置することにより、
押さえ具(13)の下端部(16)の通気出口孔(19)から分離室出口(9b)の前空間(17)に進入したブローバイガスが通気隙間(23)と後空間(18)とを経てブリーザ室入口(5)に進入するようにした、ことを特徴とする多気筒エンジン。 The multi-cylinder engine according to claim 1,
A receptacle (12) is provided at the separation chamber inlet (9a), an oil catcher (10) is placed on the receptacle (12), and a pressing tool (13) is received at the separation chamber outlet (9b). In fixing the oil catcher (10) in the preceding oil separation chamber (9) by sandwiching the oil catcher (10) between (13) and the receiver (12),
Vent inlet hole (14) is made in receptacle (12), presser (13) is plate-shaped, and its upper end (15) is bent backward to contact the ceiling wall (3) of head cover (2). The lower end portion (16) is bent forward and brought into contact with the upper surface of the oil capturing body (10), and the separation chamber outlet (9b) is connected to the front space (17) and the rear space (18) at the intermediate portion (20). A vent outlet hole (19) is formed in the lower end (16) of the presser (13), and the lateral edge (21) of the intermediate part (20) of the presser (13) and the head cover (2) are formed. By providing a ventilation gap (23) between the lateral wall (22) and disposing the breather chamber inlet (5) on the opposite side of the ventilation gap (23) in the left-right direction,
Blow-by gas that has entered the front space (17) of the separation chamber outlet (9b) from the vent outlet hole (19) of the lower end (16) of the presser (13) passes through the ventilation gap (23) and the rear space (18). A multi-cylinder engine characterized in that it enters the breather chamber entrance (5).
ヘッドカバー(2)の天井壁(3)にガス旋回室(24)を設け、その旋回室入口(25)の始端部(26)をブリーザ室出口(6)に連通させ、旋回室入口(25)の終端部(27)を旋回室周壁(28)の内周面の接線方向に沿わせ、この旋回室入口(25)の終端部(27)からガス旋回室(24)に進入したブローバイガスが旋回室周壁(28)の内周面に沿って旋回するようにした、ことを特徴とする多気筒エンジン。 The multi-cylinder engine according to claim 1 or 2,
A gas swirl chamber (24) is provided on the ceiling wall (3) of the head cover (2), and the start end (26) of the swirl chamber inlet (25) is communicated with the breather chamber outlet (6). The blow-by gas that has entered the gas swirl chamber (24) from the end portion (27) of the swirl chamber inlet (25) is aligned along the tangential direction of the inner peripheral surface of the swirl chamber peripheral wall (28). A multi-cylinder engine characterized by swirling along an inner peripheral surface of a swirl chamber peripheral wall (28).
旋回室周壁(28)の上面に弁取付座(29)を形成し、ガス旋回室(24)の中心部に弁座周壁(30)を配置し、この弁座周壁(30)の軸線を上下方向に向け、この弁座周壁(30)の上面に弁座(31)を形成し、弁取付座(29)にブリーザ弁となるダイヤフラム弁(32)の周縁部を取り付け、このダイヤフラム弁(32)の弁面(33)を弁座(31)に着座させ、弁座周壁(30)内に弁座出口通路(34)を形成することにより、
ガス旋回室(24)を通過したブローバイガスが開弁した弁面(33)と弁座(31)との間を通過して、弁座出口通路(34)に流入するようにした、ことを特徴とする多気筒エンジン。 The multi-cylinder engine according to claim 3,
A valve mounting seat (29) is formed on the upper surface of the swirl chamber peripheral wall (28), a valve seat peripheral wall (30) is disposed at the center of the gas swirl chamber (24), and the axis of the valve seat peripheral wall (30) is moved up and down. A valve seat (31) is formed on the upper surface of the valve seat peripheral wall (30), and a peripheral portion of a diaphragm valve (32) serving as a breather valve is attached to the valve mounting seat (29), and the diaphragm valve (32 ) Is seated on the valve seat (31), and the valve seat outlet passage (34) is formed in the valve seat peripheral wall (30).
The blow-by gas that has passed through the gas swirl chamber (24) passes between the valve surface (33) and the valve seat (31) opened, and flows into the valve seat outlet passage (34). A featured multi-cylinder engine.
ヘッドカバー(2)の天井壁(3)に旋回室取付座(35)を設け、この旋回室取付座(35)に旋回室周壁(28)を取り付け、この旋回室取付座(35)の中心部に出口通路前段周壁(36)を設け、この出口通路前段周壁(36)の軸線を上下方向に向け、出口通路前段周壁(36)とヘッドカバー(2)の横壁(22)との間に出口通路後段周壁(37)を架設し、この出口通路後段周壁(37)の軸線を左右横方向に向け、
出口通路前段周壁(36)と出口通路前段周壁(37)の内部にL字形に屈曲した出口通路(38)を設け、出口通路前段周壁(37)の上面に形成した出口通路(38)の始端を弁座出口通路(34)の終端に連通させ、出口通路後段周壁(37)の終端に形成した出口通路(38)の終端をブリーザパイプ(39)を介して吸気通路に連通させるに当たり、
旋回室取付座(35)には前記旋回室周壁(28)に代えて上記ダイヤフラム弁(32)の周縁部を取り付けることができるようにし、この旋回室取付座(35)に旋回室周壁(28)に代えてダイヤフラム弁(32)の周縁部を取り付けた場合には、出口通路前段周壁(36)の上面に上記ダイヤフラム弁(32)の弁面(33)を着座させ、上記ダイヤフラム弁(32)をブリーザ弁として用いることができるようにした、ことを特徴とする多気筒エンジン。 The multi-cylinder engine according to claim 4,
A swirl chamber mounting seat (35) is provided on the ceiling wall (3) of the head cover (2), and a swirl chamber peripheral wall (28) is mounted on the swirl chamber mounting seat (35). An outlet passage front-stage peripheral wall (36) is provided in the outlet passage, and the axis of the outlet passage front-stage peripheral wall (36) is directed vertically, so that the outlet passage is between the outlet passage front-stage peripheral wall (36) and the lateral wall (22) of the head cover (2). A rear peripheral wall (37) is installed, and the axis of the rear peripheral wall (37) of the outlet passage is directed in the horizontal direction,
The outlet passage front wall (36) and the outlet passage front wall (37) are provided with an outlet passage (38) bent in an L-shape, and the start of the outlet passage (38) formed on the upper surface of the outlet passage front wall (37). Is connected to the end of the valve seat outlet passage (34), and the end of the outlet passage (38) formed at the end of the rear peripheral wall (37) of the outlet passage is connected to the intake passage via the breather pipe (39).
Instead of the swirl chamber peripheral wall (28), the periphery of the diaphragm valve (32) can be mounted on the swirl chamber mounting seat (35), and the swirl chamber peripheral wall (28) is attached to the swirl chamber mount seat (35). When the peripheral portion of the diaphragm valve (32) is attached instead of the diaphragm valve (32), the valve surface (33) of the diaphragm valve (32) is seated on the upper surface of the outlet passage front peripheral wall (36), and the diaphragm valve (32 ) Can be used as a breather valve.
ブリーザ室(4)の底壁(40)からオイル排出パイプ(41)を下向きに導出し、このオイル排出パイプ(41)の下端部(42)をU字状に折り返した、ことを特徴とする多気筒エンジン。 The multi-cylinder engine according to any one of claims 1 to 5,
The oil discharge pipe (41) is led downward from the bottom wall (40) of the breather chamber (4), and the lower end portion (42) of the oil discharge pipe (41) is folded in a U-shape. Multi-cylinder engine.
シリンダヘッド(1)の上面にオイル溜め(43)を設け、ブリーザ室(4)の底壁(40)からオイル排出パイプ(41)を下向きに導出し、このオイル排出パイプ(41)の下端開口部(44)をオイル溜め(43)に溜めたオイル(45)に浸漬させた、ことを特徴とする多気筒エンジン。 The multi-cylinder engine according to any one of claims 1 to 5,
An oil sump (43) is provided on the upper surface of the cylinder head (1), an oil discharge pipe (41) is led downward from the bottom wall (40) of the breather chamber (4), and a lower end opening of the oil discharge pipe (41) is provided. A multi-cylinder engine wherein the portion (44) is immersed in oil (45) stored in an oil reservoir (43).
過給機(46)から吸気通路に過給を行う過給パイプ(47)をヘッドカバー(2)の天井壁(3)に沿って配置するに当たり、
ヘッドカバー(2)の天井壁(3)の前半部(3a)と後半部(3b)のうち、前半部(3a)にのみブリーザ室(4)を形成することにより、ヘッドカバー(2)の天井壁(3)の後半部(3b)を天井壁(3)の前半部(3b)よりも低くし、このヘッドカバー(2)の天井壁(3)の後半部(3b)に沿って過給パイプ(47)を配置した、ことを特徴とする多気筒エンジン。 The multi-cylinder engine according to any one of claims 1 to 7,
When the supercharger pipe (47) for supercharging the intake passage from the supercharger (46) is arranged along the ceiling wall (3) of the head cover (2),
By forming the breather chamber (4) only in the front half (3a) of the front half (3a) and the rear half (3b) of the ceiling wall (3) of the head cover (2), the ceiling wall of the head cover (2) The rear half (3b) of (3) is made lower than the front half (3b) of the ceiling wall (3), and a supercharged pipe (3b) is provided along the rear half (3b) of the ceiling wall (3) of the head cover (2). 47), a multi-cylinder engine.
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JP2009293499A (en) * | 2008-06-04 | 2009-12-17 | Aichi Mach Ind Co Ltd | Oil return structure |
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