CN208290454U - High-speed straight-line formula bottle blowing machine pairing mould Double-linkage bottom mechanism - Google Patents
High-speed straight-line formula bottle blowing machine pairing mould Double-linkage bottom mechanism Download PDFInfo
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- CN208290454U CN208290454U CN201820568493.2U CN201820568493U CN208290454U CN 208290454 U CN208290454 U CN 208290454U CN 201820568493 U CN201820568493 U CN 201820568493U CN 208290454 U CN208290454 U CN 208290454U
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- angled
- lift splits
- bed die
- moving template
- blowing machine
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- 238000007664 blowing Methods 0.000 title claims abstract description 26
- 239000007787 solid Substances 0.000 claims abstract description 38
- 238000000465 moulding Methods 0.000 claims abstract description 35
- 238000005096 rolling process Methods 0.000 claims description 3
- 238000003825 pressing Methods 0.000 abstract description 4
- 238000010586 diagram Methods 0.000 description 3
- 238000000071 blow moulding Methods 0.000 description 2
- 238000000034 method Methods 0.000 description 2
- TVEXGJYMHHTVKP-UHFFFAOYSA-N 6-oxabicyclo[3.2.1]oct-3-en-7-one Chemical compound C1C2C(=O)OC1C=CC2 TVEXGJYMHHTVKP-UHFFFAOYSA-N 0.000 description 1
- 238000007792 addition Methods 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 238000005265 energy consumption Methods 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 230000001360 synchronised effect Effects 0.000 description 1
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Abstract
The utility model provides a kind of high-speed straight-line formula bottle blowing machine pairing mould Double-linkage bottom mechanism, belongs to blow mold technical field.It includes the first solid plate, the first moving template, the second solid plate and the second moving template, the first vertical link and the second vertical link are connected separately on first moving template and the second moving template, first vertical link passes through the first transverse link respectively with the second vertical link and the second transverse link connects the first angled-lift splits and the second angled-lift splits, molds the bottom mechanism for being arranged on axis and fixing and can contact with the first angled-lift splits and the second angled-lift splits with molding axis.Two pieces of moving templates of the utility model while mobile molding namely pairing mould, mechanism, that is, Double-linkage bottom of going to the bottom of linking with pairing mould, closure pressing speed double than single closure pressing speed, eliminate bottom movement and save the bottom time.
Description
Technical field
The utility model belongs to blow mold technical field, is related to a kind of high-speed straight-line formula bottle blowing machine pairing mould Double-linkage
Go to the bottom mechanism.
Background technique
It in blow molding, is molded, just can be carried out blow molding operation after the completion of molding, when molding is by two pieces of dynamic models
The movement of plate forms molding after contacting with bed die.Current bed die can only link with unilateral clamping, this is because when two
When the closure pressing speed difference of moving template, moving template can hit mould with bed die, lead to burn failure, there are biggish defect,
And the molding efficiency of unilateral molding is lower.
Utility model content
The purpose of this utility model is in view of the above-mentioned problems, providing a kind of high-speed straight-line formula bottle blowing machine pairing mould Double-linkage
Go to the bottom mechanism.
In order to achieve the above objectives, the utility model uses following technical proposal:
A kind of high-speed straight-line formula bottle blowing machine is gone to the bottom mechanism with pairing mould Double-linkage, including the first solid plate, the first moving template,
Second solid plate and the second moving template, the first solid plate and the second solid plate are fixed on molding axis, the first moving template and second
Moving template is set on molding axis and is flexibly connected with molding axis, and first moving template and the second moving template is located at first
Between solid plate and the second solid plate, connected between the first solid plate and the first moving template with the first articulation piece, the second solid plate
And second connected with the second articulation piece between moving template, is connected separately with first on first moving template and the second moving template
Vertical link and the second vertical link, first vertical link and the second vertical link pass through respectively the first transverse link and
Second transverse link connects the first angled-lift splits and the second angled-lift splits, molds and is fixedly connected with bottom mechanism on axis, when the first oblique cunning
When block and/or the second angled-lift splits contact bottom mechanism, first angled-lift splits and/or the second angled-lift splits can drive bottom mechanism
It moves down along the vertical direction.
In above-mentioned high-speed straight-line formula bottle blowing machine in the mechanism of pairing mould Double-linkage bottom, the bottom mechanism includes bottom
Template component, the end template component are equipped with idler wheel corresponding with the first angled-lift splits and the second angled-lift splits position, work as institute
After the first angled-lift splits and/or the second angled-lift splits stated are contacted with idler wheel, first angled-lift splits and/or the second angled-lift splits can be pushed away
Dynamic idler wheel moves that end template component is driven to move vertically downwards vertically downwards.
It is gone to the bottom with pairing mould Double-linkage in mechanism in above-mentioned high-speed straight-line formula bottle blowing machine, first angled-lift splits and the
Two angled-lift splits bottoms are equipped with the inclined-plane that can be in contact with idler wheel, and the end template component includes bed die mounting plate, and fixed
Bed die on bed die mounting plate lower surface, the idler wheel are arranged above bed die mounting plate, and bed die mounting plate, which is connected with, leads
To shaft assembly, the guiding shaft assembly is inserted into bed die frame to be flexibly connected with bed die frame, and bed die frame is set on molding axis
It is fixedly connected with molding axis.
In above-mentioned high-speed straight-line formula bottle blowing machine in the mechanism of pairing mould Double-linkage bottom, the guiding shaft assembly includes
In four guiding axis that rectangle is arranged, guiding axis bottom is fixedly connected with bed die mounting plate.
In above-mentioned high-speed straight-line formula bottle blowing machine in the mechanism of pairing mould Double-linkage bottom, the bed die frame bottom is equipped with
Two sliding rails being parallel to each other, the first angled-lift splits and the second angled-lift splits have been respectively fixedly connected with first straight line sliding block and second straight line
Sliding block, the first straight line sliding block and second straight line sliding block are slidably connected with a sliding rail respectively.
Gone to the bottom with pairing mould Double-linkage in mechanism in above-mentioned high-speed straight-line formula bottle blowing machine, expand at the top of guiding axis to be formed it is convex
Portion out, is arranged with spring on the guiding axis, and the both ends of spring are born against on the upper surface of bed die frame and guiding axis
On protrusion.
In above-mentioned high-speed straight-line formula bottle blowing machine in the mechanism of pairing mould Double-linkage bottom, the first angled-lift splits and second are tiltedly slided
Block is staggered, and there are two the idler wheels and corresponding with the first angled-lift splits and the second angled-lift splits respectively.
Above-mentioned high-speed straight-line formula bottle blowing machine with pairing mould Double-linkage go to the bottom mechanism in, the bed die mounting plate it is upper
Surface is fixed with roller mounting plate, and two idler wheels are located at the both ends of roller mounting plate.
It is gone to the bottom with pairing mould Double-linkage in mechanism in above-mentioned high-speed straight-line formula bottle blowing machine, first moving template and the
The first die cavity and the second die cavity are respectively fixed on two moving templates.
In above-mentioned high-speed straight-line formula bottle blowing machine in the mechanism of pairing mould Double-linkage bottom, first articulation piece includes
Connect the second hinge column of the first moving template of the first hinge column and connection of the first solid plate, the first hinge column and the second hinge column
It being hinged, the second articulation piece includes the 4th hinge column for connecting two moving templates of third hinge column and connection of the second solid plate,
Third hinge column and the 4th hinge column are hinged.
Compared with prior art, utility model has the advantages that
1, mobile molding/die sinking namely pairing mould, conjunction/opening speed ratio are single simultaneously for two pieces of moving templates of the utility model
Closure pressing speed doubles.
2, linkage when molding using the angled-lift splits with inclined-plane and idler wheel is, it can be achieved that bed die is gone to the bottom.Spring is utilized when die sinking
Compressing force, and cooperate angled-lift splits movement, it can be achieved that bed die rise bottom.Accomplish to link with conjunction/die sinking, save the bottom time and
Bottom cylinder.
3, the utility model can prevent from hitting mould during conjunction/die sinking, under the premise of accomplishing high security, improve and set
Standby production capacity, reduces energy consumption.
The further advantage, target and feature of the utility model will be partially reflected by the following instructions, and part will also pass through
Research and practice to the utility model and be understood by the person skilled in the art.
Detailed description of the invention
Fig. 1 is the structural schematic diagram under the utility model die opening state;
Fig. 2 is the structural schematic diagram under the utility model molding state;
Fig. 3 is the structural schematic diagram in another direction Fig. 1.
In figure, the first solid plate 1, the first moving template 2, the second solid plate 3, the second moving template 4, molding axis 5, first are hinged
Part 6, the second articulation piece 7, the first vertical link 8, the second vertical link 9, the first transverse link 10, the second transverse link 11,
One angled-lift splits 12, bottom mechanism 14, end template component 15, idler wheel 16, bed die mounting plate 17, bed die 18, are led at second angled-lift splits 13
To shaft assembly 19, bed die frame 20, guiding axis 21, sliding rail 22, first straight line sliding block 23, second straight line sliding block 24, spring 25, idler wheel
Mounting plate 26, the first die cavity 27, the second die cavity 28, the first hinge column 29, the second hinge column 30, third hinge column the 31, the 4th are cut with scissors
Connect column 32.
Specific embodiment
As depicted in figs. 1 and 2, a kind of high-speed straight-line formula bottle blowing machine is gone to the bottom mechanism with pairing mould Double-linkage, including first fixed
Template 1, the first moving template 2, the second solid plate 3 and the second moving template 4, the first moving template 2 and the second moving template 4 on it is solid respectively
Surely there are the first die cavity 27 and the second die cavity 28.
First solid plate 1 and the second solid plate 3 are fixed on two ends of molding axis 5, and the first moving template 2 and second is dynamic
Template 4 is set on molding axis 5 and is flexibly connected with molding axis 5, and the first moving template 2 and the second moving template 4 can be along molding 5 axis of axis
To movement, and first moving template 2 and the second moving template 4 be between the first solid plate 1 and the second solid plate 3, preferably
Scheme, molding axis 5 have four and in rectangular arrangeds, connected between the first solid plate 1 and the first moving template 2 with the first articulation piece 6,
It is connected between second solid plate 3 and the second moving template 4 with the second articulation piece 7.
First articulation piece 6 includes the second hinge of the first moving template 2 of the first hinge column 29 and connection of the first solid plate 1 of connection
Column 30 is connect, the first hinge column 29 and the second hinge column 30 are hinged, and the second articulation piece 7 includes the of the second solid plate 3 of connection
4th hinge column 32 of the second moving template 4 of three hinge columns 31 and connection, third hinge column 31 and the 4th hinge column 32 are hinged.
The first vertical link 8 and the second vertical link are connected separately on first moving template 2 and the second moving template 4
9, the first articulation piece 6 and 7 one side of the second articulation piece are for connecting, scalable, described 8 He of the first vertical link of another aspect
Second vertical link 9 is tiltedly sliding by the first transverse link 10 and the first angled-lift splits of the second transverse link 11 connection 12 and second respectively
Block 13 molds and is fixedly connected with bottom mechanism 14 on axis 5, when the first angled-lift splits 12 and/or the second angled-lift splits 13 contact bottom machine
When structure 14, first angled-lift splits 12 and/or the second angled-lift splits 13 can drive bottom mechanism to move down along the vertical direction.
In molding, the first moving template 2 and the second moving template 4 is close to each other is molded is moved along molding axis 5, when the
After as soon as angled-lift splits 12 and/or the second angled-lift splits 13 contacts with bottom mechanism 14, will push go to the bottom mechanism 14 along the vertical direction to
Lower slider, even if another piece of moving template can also drive bottom mechanism 14 to transport downwards that is, there is one piece of moving template movement velocity slower
It is dynamic, so that the die cavity on the moving template for preventing movement velocity slower is hit with the bed die in the mechanism 14 of bottom, can also prevent
Mould is only hit, in this way, two moving template concurrently-actings, molding efficiency is doubled.
Specifically, bottom mechanism 14 includes end template component 15, and the end template component 15 is equipped with first tiltedly
The corresponding idler wheel 16 of sliding block 12 and 13 position of the second angled-lift splits, after 13 contact roller 16 of the first angled-lift splits 12 and the second angled-lift splits
Rolling friction is formed, after first angled-lift splits 12 and/or the second angled-lift splits 13 and the contact of idler wheel 16, described first tiltedly
Sliding block 12 and/or 13 energy pushing rolling wheels of the second angled-lift splits move to drive end template component 15 along vertical vertically downwards
Direction moves downward.
In the present embodiment, the power for pushing end template component 15 to move downward is tiltedly sliding from the first angled-lift splits 12 and second
The pressure downward to idler wheel 16 of block 13.
First angled-lift splits 12 and 13 bottom of the second angled-lift splits are equipped with the inclined-plane that can be in contact with idler wheel 16, the end template
Component 15 includes that bed die mounting plate 17, and the bed die 18 being fixed on 17 lower surface of bed die mounting plate close as shown in connection with fig. 2
Between the first moving template and the second moving template, the idler wheel 16 is arranged above bed die mounting plate 17 bed die 18 when mould,
Bed die mounting plate 17 is connected with guiding shaft assembly 19, and as shown in connection with fig. 3, the guiding shaft assembly 19 is inserted into bed die frame 20
It is flexibly connected with bed die frame 20, bed die frame 20 is set on molding axis 5 and is fixedly connected with molding axis 5.
Guiding shaft assembly 19 includes in four guiding axis 21 of rectangle setting, and 21 bottom of guiding axis and bed die mounting plate 17 are solid
Fixed connection, guiding axis pass through bed die frame 20 and can move up and down along the vertical direction.It expands to form protrusion at the top of guiding axis 21, institute
Spring 25 is arranged on the guiding axis 21 stated, the both ends of spring 25 are born against on the upper surface of bed die frame 20 and guiding axis 21
Protrusion on.
After molding, guiding axis 21 is moved downward, and spring 25 is in compressive state, in die sinking, the first angled-lift splits 12 and the
Two angled-lift splits 13 can be moved to the direction for being detached from idler wheel 16 simultaneously, another when one of angled-lift splits movement velocity is very fast
A angled-lift splits are still pressed on idler wheel, are not impacted to faster angled-lift splits are moved, and guiding axis 21 along the vertical direction on
From the compressed elastic force of spring 25, namely when angled-lift splits are during being detached from idler wheel, guiding axis can synchronize the power risen
Rise, to drive bed die mounting plate 17 is synchronous with bed die 18 to rise, opening speed equally can be improved one times.
20 bottom of bed die frame is equipped with two sliding rails 22 being parallel to each other, and the first angled-lift splits 12 and the second angled-lift splits 13 are solid respectively
Surely it is connected with first straight line sliding block 23 and second straight line sliding block 24, the first straight line sliding block 23 and second straight line sliding block 24 divide
It is not slidably connected with a sliding rail 22.That is, being formed after first straight line sliding block 23 and the cooperation of second straight line sliding block 24 and sliding rail straight
Line sliding, while also guaranteeing that the first angled-lift splits 12 and the second angled-lift splits 13 along linear slide, play orientation.
First angled-lift splits 12 and the second angled-lift splits 13 are staggered, and will not interfere with each other after molding, there are two idler wheels 16
And it is corresponding with the first angled-lift splits 12 and the second angled-lift splits 13 respectively.
The upper surface of bed die mounting plate 17 is fixed with roller mounting plate 26, and two idler wheels 16 are located at roller mounting plate 26
Both ends.Certainly, if it will be appreciated by those skilled in the art that the both ends of roller mounting plate 26 are not necessarily held for mounting plate two
Portion can be by close end, and the position of idler wheel should match with the first angled-lift splits and the second angled-lift splits, so as to first tiltedly
Sliding block and the contact of the second angled-lift splits.In contact process, thrust is conducted to by the first angled-lift splits and the second angled-lift splits by idler wheel
Bed die mounting plate.
The working principle of the utility model is:
Molding when, the first moving template 2 and the second moving template 4 move simultaneously, no matter which 4 movement velocity of block moving template
Fastly, the angled-lift splits on the moving template can all be contacted with idler wheel 16, and power is conducted to bed die mounting plate 17 and guiding axis by idler wheel
21, it moves bed die 18 vertically downwards, so that bed die is in always between two pieces of moving templates, bed die and its will not occur
In one piece of moving template 2 there is a phenomenon where hitting, until molding.
On the other hand, the lower surface of the first angled-lift splits 12 and the second angled-lift splits 13 is equipped with inclined-plane, when 12 He of the first angled-lift splits
After second angled-lift splits 13 are contacted with idler wheel, idler wheel can be oppressed and moved downward, namely compressing bed die 18 moves downward, and is formed under bed die
Bottom, bottom movement can be completed without relying on cylinder, and in die sinking, then bed die is completed using the elastic force of spring 25 rise.
By the setting of guiding axis 21, make bed die motion profile be always vertical direction movement.
The specific embodiments described herein are merely examples of the spirit of the present invention.The utility model institute
Belonging to those skilled in the art can make various modifications or additions to the described embodiments or using similar
Mode substitute, but without departing from the spirit of the present application or beyond the scope of the appended claims.
Although be used more herein the first solid plate 1, the first moving template 2, the second solid plate 3, the second moving template 4,
Mold axis 5, the first articulation piece 6, the second articulation piece 7, the first vertical link 8, the second vertical link 9, the first transverse link 10, the
Two transverse links 11, the first angled-lift splits 12, the second angled-lift splits 13, bottom mechanism 14, end template component 15, idler wheel 16, bed die peace
Loading board 17, bed die 18, guiding shaft assembly 19, bed die frame 20, guiding axis 21, sliding rail 22, first straight line sliding block 23, second straight line are sliding
Block 24, spring 25, roller mounting plate 26, the first die cavity 27, the second die cavity 28, the first hinge column 29, the second hinge column 30, third
The terms such as hinge column 31, the 4th hinge column 32, but it does not exclude the possibility of using other terms.It is only using these terms
In order to be more convenient to describe and explain the essence of the utility model, being construed as any additional limitation all is and this
Utility model spirit is disagreed.
Claims (10)
1. a kind of high-speed straight-line formula bottle blowing machine pairing mould Double-linkage bottom mechanism, including the first solid plate (1), the first moving template
(2), the second solid plate (3) and the second moving template (4), the first solid plate (1) and the second solid plate (3) are fixed on molding axis (5)
On, the first moving template (2) and the second moving template (4) are set in molding axis (5) and are flexibly connected with molding axis (5), and described
The first moving template (2) and the second moving template (4) between the first solid plate (1) and the second solid plate (3), feature exists
In, between the first solid plate (1) and the first moving template (2) with the first articulation piece (6) connect, the second solid plate (3) and second move
It is connected between template (4) with the second articulation piece (7), is connected separately on first moving template (2) and the second moving template (4)
First vertical link (8) and the second vertical link (9), first vertical link (8) and the second vertical link (9) are led to respectively
The first transverse link (10) and the second transverse link (11) connection the first angled-lift splits (12) and the second angled-lift splits (13) are crossed, axis is molded
(5) bottom mechanism (14) is fixedly connected on, when the first angled-lift splits (12) and/or the second angled-lift splits (13) contact bottom mechanism
(14) when, first angled-lift splits (12) and/or the second angled-lift splits (13) can drive bottom mechanism () along the vertical direction down
Movement.
2. high-speed straight-line formula bottle blowing machine according to claim 1 pairing mould Double-linkage bottom mechanism, which is characterized in that institute
The bottom mechanism (14) stated includes end template component (15), and the end template component (15) is equipped with and the first angled-lift splits (12)
Idler wheel (16) corresponding with the second angled-lift splits (13) position, when first angled-lift splits (12) and/or the second angled-lift splits
(13) after contacting with idler wheel (16), first angled-lift splits (12) and/or the second angled-lift splits (13) energy pushing rolling wheels are along vertical
Direction moves downward that end template component (15) is driven to move vertically downwards.
3. high-speed straight-line formula bottle blowing machine according to claim 2 pairing mould Double-linkage bottom mechanism, which is characterized in that institute
The first angled-lift splits (12) stated and the second angled-lift splits (13) bottom are equipped with the inclined-plane that can be in contact with idler wheel (16), the bed die
Board group part (15) includes bed die mounting plate (17), and the bed die (18) being fixed on bed die mounting plate (17) lower surface, described
Idler wheel (16) setting above the bed die mounting plate (17), bed die mounting plate (17) is connected with guiding shaft assembly (19), described
Guiding shaft assembly (19) is inserted into bed die frame (20) to be flexibly connected with bed die frame (20), and bed die frame (20) is set in molding axis
(5) it is fixedly connected on molding axis (5).
4. high-speed straight-line formula bottle blowing machine according to claim 3 pairing mould Double-linkage bottom mechanism, which is characterized in that institute
The guiding shaft assembly (19) stated includes in four guiding axis (21) of rectangle setting, guiding axis (21) bottom and bed die mounting plate
(17) it is fixedly connected.
5. high-speed straight-line formula bottle blowing machine according to claim 3 pairing mould Double-linkage bottom mechanism, which is characterized in that institute
Bed die frame (20) bottom stated is equipped with two sliding rails (22) being parallel to each other, the first angled-lift splits (12) and the second angled-lift splits (13) point
It is not fixedly connected with first straight line sliding block (23) and second straight line sliding block (24), the first straight line sliding block (23) and second is directly
Line sliding block (24) is slidably connected with a sliding rail (22) respectively.
6. high-speed straight-line formula bottle blowing machine according to claim 4 pairing mould Double-linkage bottom mechanism, which is characterized in that lead
It expands to form protrusion at the top of to axis (21), be arranged on the guiding axis (21) spring (25), the both ends point of spring (25)
Be not resisted against on the upper surface of bed die frame (20) and the protrusion of guiding axis (21) on.
7. high-speed straight-line formula bottle blowing machine according to claim 3 pairing mould Double-linkage bottom mechanism, which is characterized in that the
One angled-lift splits (12) and the second angled-lift splits (13) are staggered, the idler wheel (16) there are two and respectively with the first angled-lift splits
(12) and the second angled-lift splits (13) are corresponding.
8. high-speed straight-line formula bottle blowing machine according to claim 7 pairing mould Double-linkage bottom mechanism, which is characterized in that institute
The upper surface for the bed die mounting plate (17) stated is fixed with roller mounting plate (26), and two idler wheels (16) are located at roller mounting plate
(26) both ends.
9. high-speed straight-line formula bottle blowing machine according to claim 1 pairing mould Double-linkage bottom mechanism, which is characterized in that institute
The first die cavity (27) and the second die cavity (28) are respectively fixed on the first moving template (2) and the second moving template (4) stated.
10. high-speed straight-line formula bottle blowing machine according to claim 1 pairing mould Double-linkage bottom mechanism, which is characterized in that
First articulation piece (6) includes the first hinge column (29) and the connection the first moving template (2) of connection the first solid plate (1)
Second hinge column (30), the first hinge column (29) and the second hinge column (30) are hinged, and the second articulation piece (7) includes connection the
The third hinge column (31) of two solid plates (3) and the 4th hinge column (32) for connecting the second moving template (4), third hinge column (31)
It is hinged with the 4th hinge column (32).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201820568493.2U CN208290454U (en) | 2018-04-20 | 2018-04-20 | High-speed straight-line formula bottle blowing machine pairing mould Double-linkage bottom mechanism |
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CN201820568493.2U CN208290454U (en) | 2018-04-20 | 2018-04-20 | High-speed straight-line formula bottle blowing machine pairing mould Double-linkage bottom mechanism |
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ID=64725885
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CN201820568493.2U Expired - Fee Related CN208290454U (en) | 2018-04-20 | 2018-04-20 | High-speed straight-line formula bottle blowing machine pairing mould Double-linkage bottom mechanism |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108656501A (en) * | 2018-04-20 | 2018-10-16 | 台州市黄岩业康机械有限公司 | High-speed straight-line formula bottle blowing machine pairing mould Double-linkage bottom mechanism |
CN111347656A (en) * | 2020-04-20 | 2020-06-30 | 中山市缙东机械有限公司 | Mold for producing bottle blowing machine and bottle blowing machine |
CN115157493A (en) * | 2022-07-08 | 2022-10-11 | 安徽润康橡塑科技股份有限公司 | Dust cover self-ejection type die structure for automobile suspension shock absorber |
-
2018
- 2018-04-20 CN CN201820568493.2U patent/CN208290454U/en not_active Expired - Fee Related
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108656501A (en) * | 2018-04-20 | 2018-10-16 | 台州市黄岩业康机械有限公司 | High-speed straight-line formula bottle blowing machine pairing mould Double-linkage bottom mechanism |
CN111347656A (en) * | 2020-04-20 | 2020-06-30 | 中山市缙东机械有限公司 | Mold for producing bottle blowing machine and bottle blowing machine |
CN115157493A (en) * | 2022-07-08 | 2022-10-11 | 安徽润康橡塑科技股份有限公司 | Dust cover self-ejection type die structure for automobile suspension shock absorber |
CN115157493B (en) * | 2022-07-08 | 2024-02-13 | 安徽润康橡塑科技股份有限公司 | Dust cover self-ejection die structure for automobile suspension damper |
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20181228 |
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