TWI710714B - Bolt sensing structure - Google Patents
Bolt sensing structure Download PDFInfo
- Publication number
- TWI710714B TWI710714B TW108114557A TW108114557A TWI710714B TW I710714 B TWI710714 B TW I710714B TW 108114557 A TW108114557 A TW 108114557A TW 108114557 A TW108114557 A TW 108114557A TW I710714 B TWI710714 B TW I710714B
- Authority
- TW
- Taiwan
- Prior art keywords
- bolt
- correspondingly
- connecting portion
- sensing
- sensing structure
- Prior art date
Links
Images
Landscapes
- Force Measurement Appropriate To Specific Purposes (AREA)
Abstract
一種螺栓感測結構,係包括一螺栓本體、一扭力模組及至少一蓄電元件,該螺栓本體具有一容置空間,該扭力模組裝設於所述容置空間內,該扭力模組包括一連接組件及至少一膠層,該連接組件包含一上連接部及一下連接部,至少一感測件對應設置於所述上、下連接部之間,該感測件係用以感測扭力值之變化,該膠層對應塗覆於所述上、下連接部之外周側,該蓄電元件與所述扭力模組相電性連結,該蓄電元件係用以供給所述感測件電能。 A bolt sensing structure includes a bolt body, a torsion module, and at least one power storage element. The bolt body has an accommodating space. The torsion module is assembled and arranged in the accommodating space. The torsion module includes A connecting component and at least one adhesive layer, the connecting component includes an upper connecting portion and a lower connecting portion, at least one sensing element is correspondingly disposed between the upper and lower connecting portions, and the sensing element is used for sensing torque When the value changes, the glue layer is correspondingly coated on the outer peripheral side of the upper and lower connecting parts, the electrical storage element is electrically connected with the torque module, and the electrical storage element is used to supply electrical energy to the sensing element.
Description
本發明係有關於一種螺栓結構,尤指一種可大幅提高應力偵測度及應力數值準確性之螺栓感測結構。 The present invention relates to a bolt structure, especially a bolt sensing structure that can greatly improve the stress detection degree and the accuracy of the stress value.
按,螺栓被應用於鎖固各種待結合物,舉例而言,輪圈、火箭、橋樑、大型電動機、及電塔等待結合物都可使用螺栓進行鎖固,而當使用者將螺栓鎖固時,對於不同的用途或不同的環境,皆有螺栓最適當的鎖固扭力,若是鎖固時的扭力過小,螺栓便會產生容易鬆脫的問題,而若是鎖固時的扭力過大,螺栓便會產生容易斷裂的問題,因此以適當的扭力鎖固螺栓是相當重要的。 Press, bolts are used to lock various objects to be combined, for example, rims, rockets, bridges, large motors, and electric towers waiting to be combined can all be locked with bolts, and when the user locks the bolts , For different purposes or different environments, there are bolts with the most appropriate tightening torque. If the tightening torque is too small, the bolt will easily loosen, and if the tightening torque is too large, the bolt will It is easy to break, so it is very important to lock the bolt with proper torque.
一般市面上之智慧螺栓結構其產生形變的過程中不易察覺,因此若將習用的智慧螺栓結構裝設於橋梁、鐵軌或大型電動機上時,非常容易因習用智慧螺栓的感測不夠靈敏而產生危險。此外,由於市面上的智慧螺栓結構其內部不具有任何介質的傳遞,因此,智慧螺栓結構所偵測的應力無法完全感測接收,故其應力數值準確度相對較差。 Generally, the deformation of the smart bolt structure on the market is not easy to detect. Therefore, if the conventional smart bolt structure is installed on a bridge, rail or large motor, it is very easy to cause danger due to the lack of sensitivity of the conventional smart bolt. . In addition, since the smart bolt structure on the market does not have any medium transmission inside, the stress detected by the smart bolt structure cannot be fully sensed and received, so the accuracy of the stress value is relatively poor.
是以,要如何解決上述習用之問題與缺失,即為本發明之發明人與從事此行業之相關廠商所亟欲研究改善之方向所在者。 Therefore, how to solve the above-mentioned conventional problems and deficiencies is the direction that the inventor of the present invention and related manufacturers engaged in this industry urgently want to study and improve.
爰此,為有效解決上述之問題,本發明之主要目的在於提供 一種可大幅提高應力偵測度之螺栓感測結構。 Therefore, in order to effectively solve the above-mentioned problems, the main purpose of the present invention is to provide A bolt sensing structure that can greatly improve stress detection.
本發明之次要目的,在於提供一種大幅提升應力數值準確性之螺栓感測結構。 The secondary objective of the present invention is to provide a bolt sensing structure that greatly improves the accuracy of the stress value.
為達上述目的,本發明係提供一種螺栓感測結構,係包括一螺栓本體、一扭力模組及至少一蓄電元件,該螺栓本體具有一容置空間,該扭力模組對應裝設於所述容置空間內,該扭力模組包括一連接組件及至少一膠層,該連接組件包含一上連接部及一下連接部,至少一感測件對應設置於所述上、下連接部之間,該感測件係用以感測扭力值之變化,該膠層對應塗覆於所述上、下連接部之外周側,該蓄電元件與所述扭力模組相電性連結,該蓄電元件係用以供給所述感測件電能。 To achieve the above objective, the present invention provides a bolt sensing structure, which includes a bolt body, a torsion module and at least one power storage element. The bolt body has an accommodating space, and the torsion module is correspondingly installed in the In the accommodating space, the torsion module includes a connecting component and at least one adhesive layer, the connecting component includes an upper connecting portion and a lower connecting portion, and at least one sensing element is correspondingly disposed between the upper and lower connecting portions, The sensor is used to sense the change of the torque value, the glue layer is correspondingly coated on the outer peripheral side of the upper and lower connecting parts, the electrical storage element is electrically connected with the torque module, and the electrical storage element is Used to supply electrical energy to the sensing element.
透過本發明此結構的設計,藉由所述感測件分設在所述上連接部及下連接部之間,並利用所述上、下連接部的外周側所塗覆的膠層設計,不僅可大幅提高應力的偵測度外,還可提升偵測到的應力數值之準確性。 Through the design of this structure of the present invention, the sensing element is separately arranged between the upper connecting portion and the lower connecting portion, and the adhesive layer design applied on the outer peripheral side of the upper and lower connecting portions is used, Not only can the stress detection be greatly improved, but the accuracy of the detected stress values can also be improved.
2‧‧‧螺栓感測結構 2‧‧‧Bolt sensing structure
20‧‧‧螺栓本體 20‧‧‧Bolt body
21‧‧‧容置空間 21‧‧‧Accommodation space
22‧‧‧第一內螺紋 22‧‧‧First internal thread
23‧‧‧第二內螺紋 23‧‧‧Second internal thread
24‧‧‧第一對接部 24‧‧‧First docking department
25‧‧‧第二對接部 25‧‧‧Second docking part
3‧‧‧扭力模組 3‧‧‧Torque Module
30‧‧‧連接組件 30‧‧‧Connecting components
300‧‧‧上連接部 300‧‧‧Upper connecting part
301‧‧‧第一螺紋 301‧‧‧First thread
302‧‧‧第一間隙 302‧‧‧First gap
303‧‧‧下連接部 303‧‧‧Lower connecting part
304‧‧‧第二螺紋 304‧‧‧Second thread
305‧‧‧第二間隙 305‧‧‧Second gap
306‧‧‧第一固定部 306‧‧‧First fixed part
307‧‧‧第二固定部 307‧‧‧Second fixed part
31‧‧‧膠層 31‧‧‧Glue layer
310‧‧‧第一膠層 310‧‧‧First adhesive layer
311‧‧‧第二膠層 311‧‧‧Second Adhesive Layer
4‧‧‧感測件 4‧‧‧Sensing parts
40‧‧‧感測單元 40‧‧‧Sensing unit
5‧‧‧蓄電元件 5‧‧‧Power storage element
6‧‧‧晶片 6‧‧‧Chip
60‧‧‧穩壓模組 60‧‧‧Regulator Module
61‧‧‧訊號放大器 61‧‧‧Signal Amplifier
7‧‧‧基板 7‧‧‧Substrate
70‧‧‧控制模組 70‧‧‧Control Module
71‧‧‧無線射頻模組 71‧‧‧Radio frequency module
72‧‧‧無線耦合模組 72‧‧‧Wireless coupling module
73‧‧‧電池管理模組 73‧‧‧Battery Management Module
8‧‧‧電路板 8‧‧‧Circuit board
9‧‧‧導線 9‧‧‧Wire
L1‧‧‧第一直徑 L1‧‧‧First diameter
L2‧‧‧第二直徑 L2‧‧‧Second diameter
L3‧‧‧第三直徑 L3‧‧‧third diameter
第1圖係為本發明螺栓感測結構第一實施例之立體組合圖;第2圖係為本發明螺栓感測結構第一實施例之示意圖;第3圖係為本發明螺栓感測結構第二實施例之部分放大圖;第4圖係為本發明螺栓感測結構第三實施例之示意圖;第5圖係為本發明螺栓感測結構第四實施例之示意圖。 Figure 1 is a three-dimensional assembly diagram of the first embodiment of the bolt sensing structure of the present invention; Figure 2 is a schematic diagram of the first embodiment of the bolt sensing structure of the present invention; Figure 3 is the second embodiment of the bolt sensing structure of the present invention Partial enlarged view of the second embodiment; Figure 4 is a schematic diagram of the third embodiment of the bolt sensing structure of the present invention; Figure 5 is a schematic diagram of the fourth embodiment of the bolt sensing structure of the present invention.
本發明之上述目的及其結構與功能上的特性,將依據所附圖式之較佳實施例予以說明。 The above-mentioned objects and structural and functional characteristics of the present invention will be described based on the preferred embodiments of the accompanying drawings.
首先,請參閱第1、2圖,係為本發明螺栓感測結構第一實施例之立體組合圖及示意圖,如圖所示,一種螺栓感測結構2,係包括一螺栓本體20及一扭力模組3及至少一蓄電元件5,該螺栓本體20具有一容置空間21,該扭力模組3係對應裝設於所述容置空間21內,該扭力模組3包括一連接組件30及至少一膠層31,該連接組件30包含一上連接部300及一下連接部303,於該上連接部300之外周側更形成複數第一螺紋301,該等第一螺紋301之間形成一第一間隙302,所述下連接部303之外周側形成複數第二螺紋304,該等第二螺紋304之間形成一第二間隙305,所述第一、二間隙302、305與所述螺栓本體20的容置空間21係相互連通。
First, please refer to Figures 1 and 2, which are the three-dimensional assembly diagram and schematic diagram of the first embodiment of the bolt sensing structure of the present invention. As shown in the figure, a
進一步說明,所述螺栓本體20的內壁還形成一第一內螺紋22及一第二內螺紋23,該第一內螺紋22與該第一螺紋301相對應設置且相互組設,該第二內螺紋23與該第二螺紋304相對應設置且相互組設,而得以令該連接組件30設置於該螺栓本體20內的容置空間21最適位置處。
To further illustrate, the inner wall of the
而於所述上連接部300及下連接部303之間對應設有一感測件4,該感測件4係用以感測扭力值之變化,更進一步地說明,於本實施例中,所述感測件4更設有一晶片6,該晶片6上對應設置至少一穩壓模組60及至少一訊號放大器61,並該晶片6係透過膠固方式固設於所述感測件4上且相電性連結。
A
所述膠層31對應塗覆於所述上、下連接部300、303之外周
側,更詳細的說,所述膠層31係對應填滿所述第一、二間隙302、305,而得以令施加於所述螺栓本體20上的應力可完全地傳送至所述感測件4上,而該膠層31係選擇為一膠粘劑,該膠粘劑係選擇為一環氧樹脂接著劑或其他等效物。
The
請一併參閱第3圖,前述之蓄電元件5係對應設置於所述下連接部303之下端並與所述扭力模組3相電性連結,該蓄電元件5係用以供給所述感測件4電能,另外,於本發明中,該螺栓感測結構2內所容置的上連接部300、下連接部303及蓄電元件5之直徑均不相同,因此進一步界定所述上連接部300具有一第一直徑L1,所述下連接部303具有一第二直徑L2,所述蓄電元件5具有一第三直徑L3,該第一直徑L1係小於該第二直徑L2,該第二直徑L2係小於該第三直徑L3,然而,本發明的第一、二、三直徑L1、L2、L3彼此間相對應長短並不侷限於前述,所述上、下連接部300、303及蓄電元件5直徑的大小並不影響本發明所欲達成之目的及功效,合先敘明。
Please also refer to Figure 3, the aforementioned
覆請一併參閱第3圖,係為本發明之第二實施例之部分放大圖,所述膠層31可再進一步包含有一第一膠層310及一第二膠層311,該第一膠層310係對應填滿所述第一螺紋301的第一間隙302,該第二膠層311係對應填滿所述第二螺紋304的第二間隙305,換句話說,所述第一、二膠層310、311可選擇為相同或不相同的材質對應填滿所述第一、二間隙302、305,並不影響其所達成之功效(令施加於所述螺栓本體20上之應力可完全傳送至所述感測件4)。
Please also refer to FIG. 3, which is a partially enlarged view of the second embodiment of the present invention. The
此外,須說明的是,所述扭力模組3更具有一基板7與所述感測件4相電性連結,該基板7具有一控制模組70及一無線射頻模組71及一無
線耦合模組72及一電池管理模組73,該控制模組70具有一儲存模組用以儲存至少一扭力值,該無線射頻模組71係用以將所述儲存模組內儲存的扭力值傳送至一外部監控單元(圖中未示),該無線耦合模組72包含有至少一訊號傳輸部及至少一電源饋入部,該電源饋入部與所述蓄電元件5及該電池管理模組73相電性連結,該電池管理模組73係用以保護所述蓄電元件5過充及過放所造成之損害,由於所述基板7上設置的部件及其功效係為習用之技術,故在此僅簡單作說明,合先敘明。
In addition, it should be noted that the
因此,透過本發明此結構的設計,藉由所述感測件4分設在所述上連接部300及下連接部303之間,並利用所述膠層31將所述第一、二螺紋301、304間形成的第一、二間隙302、305完全填充佈滿,不僅可大幅提高施加於所述螺栓本體20上之應力的偵測度外,還可提升偵測到的應力數值之準確性。
Therefore, through the design of this structure of the present invention, the
續請參閱第4圖,係為本發明螺栓感測結構之第二實施例之示意圖,所述螺栓感測結構部份元件及元件間之相對應之關係與前述螺栓感測結構相同,故在此不再贅述,惟本螺栓感測結構與前述最主要之差異為,所述感測件4更設有一晶片6,該晶片6上對應設置至少一穩壓模組60及至少一訊號放大器61,一電路板8係對應設置於所述上連接部300之上側,該晶片6係透過膠固方式固設於該電路板8上並且相電性連結,本實施例中,所述感測件4更具有四個感測單元40彼此相互並聯作說明,並該等感測單元40係藉由複數導線9與所述電路板8相電性連結,同樣具有可達成前述第一實施例之目的及功效。
Please continue to refer to Figure 4, which is a schematic diagram of the second embodiment of the bolt sensing structure of the present invention. The components of the bolt sensing structure and the corresponding relationship between the components are the same as the aforementioned bolt sensing structure. This will not be repeated here, but the main difference between the bolt sensing structure and the foregoing is that the
最後,請參閱第5圖並請一併參閱第2圖,係為本發明螺栓感
測結構之第四實施例之示意圖,所述螺栓感測結構部份元件及元件間之相對應之關係與前述螺栓感測結構相同,故在此不再贅述,惟本螺栓感測結構與前述最主要之差異為,所述上連接部300之外周側可進一步形成呈類似階梯狀之一第一固定部306,所述下連接部303之外周側可進一步形成呈類似階梯狀之一第二固定部307,並且,前述之膠層31係對應塗覆於該第一、二固定部306、307之外周側,而所述螺栓本體20的內壁更形成一第一對接部24及一第二對接部25,該第一對接部24與該第一固定部306相對應設置且相互組設,該第二對接部25與該第二固定部307相對應設置且相互組設,而得以令該連接組件30設置於該螺栓本體20內的容置空間21最適位置處。
Finally, please refer to Fig. 5 and Fig. 2 together, which is the bolt of the present invention
Schematic diagram of the fourth embodiment of the sensing structure. The components of the bolt sensing structure and the corresponding relationship between the components are the same as those of the bolt sensing structure, so they will not be repeated here, but the bolt sensing structure is the same as the aforementioned bolt sensing structure. The main difference is that the outer peripheral side of the upper connecting
換句話說,本實施例的呈階梯狀之第一、二固定部306、307取代前述的第一、二螺紋301、304之結構態樣,不僅同樣可提高施加於所述螺栓本體20上之應力的偵測度外,還可提升偵測到的應力數值之準確性,除此之外,還可增加塗覆於第一、二固定部306、307外周側的膠層之面積及其穩固性。
In other words, the stepped first and second fixing
以上所述,本發明相較於習知具有下列優點:1.大幅提高應力偵測度;2.大幅提升應力數值準確性。 As mentioned above, the present invention has the following advantages over the prior art: 1. It greatly improves the stress detection degree; 2. It greatly improves the accuracy of the stress value.
以上已將本發明做一詳細說明,惟以上所述者,僅為本發明之一較佳實施例而已,當不能限定本發明實施之範圍,即凡依本發明申請範圍所作之均等變化與修飾等,皆應仍屬本發明之專利涵蓋範圍。 The present invention has been described in detail above, but what is described above is only a preferred embodiment of the present invention, and should not limit the scope of implementation of the present invention, that is, all equivalent changes and modifications made in accordance with the scope of application of the present invention Etc., should still be covered by the patent of the present invention.
2‧‧‧螺栓感測結構 2‧‧‧Bolt sensing structure
21‧‧‧容置空間 21‧‧‧Accommodation space
22‧‧‧第一內螺紋 22‧‧‧First internal thread
23‧‧‧第二內螺紋 23‧‧‧Second internal thread
3‧‧‧扭力模組 3‧‧‧Torque Module
30‧‧‧連接組件 30‧‧‧Connecting components
300‧‧‧上連接部 300‧‧‧Upper connecting part
301‧‧‧第一螺紋 301‧‧‧First thread
302‧‧‧第一間隙 302‧‧‧First gap
303‧‧‧下連接部 303‧‧‧Lower connecting part
304‧‧‧第二螺紋 304‧‧‧Second thread
305‧‧‧第二間隙 305‧‧‧Second gap
31‧‧‧膠層 31‧‧‧Glue layer
4‧‧‧感測件 4‧‧‧Sensing parts
5‧‧‧蓄電元件 5‧‧‧Power storage element
6‧‧‧晶片 6‧‧‧Chip
60‧‧‧穩壓模組 60‧‧‧Regulator Module
61‧‧‧訊號放大器 61‧‧‧Signal Amplifier
7‧‧‧基板 7‧‧‧Substrate
70‧‧‧控制模組 70‧‧‧Control Module
71‧‧‧無線射頻模組 71‧‧‧Radio frequency module
72‧‧‧無線耦合模組 72‧‧‧Wireless coupling module
73‧‧‧電池管理模組 73‧‧‧Battery Management Module
Claims (9)
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
TW108114557A TWI710714B (en) | 2019-04-25 | 2019-04-25 | Bolt sensing structure |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
TW108114557A TWI710714B (en) | 2019-04-25 | 2019-04-25 | Bolt sensing structure |
Publications (2)
Publication Number | Publication Date |
---|---|
TW202040017A TW202040017A (en) | 2020-11-01 |
TWI710714B true TWI710714B (en) | 2020-11-21 |
Family
ID=74201481
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
TW108114557A TWI710714B (en) | 2019-04-25 | 2019-04-25 | Bolt sensing structure |
Country Status (1)
Country | Link |
---|---|
TW (1) | TWI710714B (en) |
Citations (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4127788A (en) * | 1977-07-08 | 1978-11-28 | Daugherty Ralph N | Piezoelectric stress indicator for mine roofs |
US4553124A (en) * | 1983-09-16 | 1985-11-12 | Carron & Company | Strain gauge transducer assembly |
US4823606A (en) * | 1988-06-23 | 1989-04-25 | Carron & Company | Diaphragm transducer for sensing loading |
CN102607758A (en) * | 2011-01-20 | 2012-07-25 | 中国气动工业股份有限公司 | Apparatus capable of controlling, tracking and measuring tightening torque and locking force, and method for controlling, tracking, measuring and calibrating thereof |
TW201231831A (en) * | 2011-01-19 | 2012-08-01 | Kabo Tool Co | Screw having stress sensing device |
TW201435222A (en) * | 2013-03-14 | 2014-09-16 | Nat Univ Chin Yi Technology | Bolt with function of detecting variations |
CN106872092A (en) * | 2015-12-11 | 2017-06-20 | 天津航天瑞莱科技有限公司 | A kind of method of testing of dynamometry bolt and axial force |
TWM560372U (en) * | 2017-11-10 | 2018-05-21 | Taiwan Microelectronics Tech Inc | Bolt structure |
-
2019
- 2019-04-25 TW TW108114557A patent/TWI710714B/en active
Patent Citations (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4127788A (en) * | 1977-07-08 | 1978-11-28 | Daugherty Ralph N | Piezoelectric stress indicator for mine roofs |
US4553124A (en) * | 1983-09-16 | 1985-11-12 | Carron & Company | Strain gauge transducer assembly |
US4823606A (en) * | 1988-06-23 | 1989-04-25 | Carron & Company | Diaphragm transducer for sensing loading |
TW201231831A (en) * | 2011-01-19 | 2012-08-01 | Kabo Tool Co | Screw having stress sensing device |
CN102607758A (en) * | 2011-01-20 | 2012-07-25 | 中国气动工业股份有限公司 | Apparatus capable of controlling, tracking and measuring tightening torque and locking force, and method for controlling, tracking, measuring and calibrating thereof |
TW201435222A (en) * | 2013-03-14 | 2014-09-16 | Nat Univ Chin Yi Technology | Bolt with function of detecting variations |
CN106872092A (en) * | 2015-12-11 | 2017-06-20 | 天津航天瑞莱科技有限公司 | A kind of method of testing of dynamometry bolt and axial force |
TWM560372U (en) * | 2017-11-10 | 2018-05-21 | Taiwan Microelectronics Tech Inc | Bolt structure |
Also Published As
Publication number | Publication date |
---|---|
TW202040017A (en) | 2020-11-01 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US8635916B1 (en) | Internal structural monitoring system | |
US20130300407A1 (en) | Current Sensor | |
CN102575966A (en) | Sealed pressure-measuring member | |
US8822049B2 (en) | Battery unit and electrical device | |
JP2015059819A (en) | Coupling device having coupling tool, loosening detection device of coupling tool, and battery module having coupling device | |
TWI834765B (en) | Sensor assembly and physical quantity measuring device | |
US20110203385A1 (en) | Device for measuring torsions, bendings, and the like, and corresponding manufacturing method | |
TWI710714B (en) | Bolt sensing structure | |
JP5320960B2 (en) | Case mold type capacitor | |
US9109963B2 (en) | Pressure and shear force measurement device and method | |
US10466314B2 (en) | Integrated current sensor | |
KR102359133B1 (en) | Temperature sensor and Method for manufacturing the same | |
JP5213195B2 (en) | Transmission cable for combustion pressure sensor | |
JP2015533700A (en) | 1-up 1-down connection structure for piezoelectric elements in tire patches | |
EP4235128A1 (en) | Torque sensor | |
CN106602776A (en) | Sealing washer and use its casing waterproof construction, motor | |
TWI715069B (en) | Solar smart bolt structure | |
JP6692698B2 (en) | Pressure sensor | |
CN108279083A (en) | Rotary shaft joint structure | |
JP3771994B2 (en) | Explosion-proof load cell | |
JP5006696B2 (en) | Transmission cable for combustion pressure sensor | |
JP2002055013A (en) | Non-resonance type knocking detector | |
JP2007163230A (en) | Tire pressure sensor and tire pressure monitoring system | |
KR100822014B1 (en) | Battery with supporter | |
JP6781259B2 (en) | Pressure sensor |