A gasket access device

By designing a gasket access device, using a screw to drive the gasket to move, the problem of difficulty in easy removal and storage of the gasket is solved, and the convenience and safety of operation can be achieved without direct contact with the gasket.

CN116423407BActive Publication Date: 2025-07-01QIUXIAN POWER SUPPLY BRANCH OF STATE GRID HEBEI ELECTRIC POWER CO LTD +2
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Patent Information

Application Number
CN202310277194.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-21
Publication Date
2025-07-01
Estimated Expiration
2043-03-21

AI Technical Summary

Technical Problem

When using nuts, it is difficult to easily remove and store the gaskets, especially when wearing thick protective gloves, which increases operational difficulties and safety risks.

Method used

A gasket access device is designed, including a handheld part and a storage part. The storage part is provided with a storage groove and a first opening to allow the gasket to enter and exit, and the screw passes through the second opening, and the screw is used to drive the gasket to move, so as to realize the convenient withdrawal and storage of the gasket.

Benefits of technology

The device allows operators to easily remove or store them without direct contact with the gasket, reducing operational difficulties and safety risks, especially when wearing gloves, providing greater convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application provides a gasket access device for picking and placing gaskets on a screw. It is characterized by comprising: a handheld part; a storage part provided with a storage groove, one end of the storage groove is provided with a first opening, and the first opening allows the gasket to enter and exit; wherein, the storage part is arranged on the handheld part, and second openings are arranged on two opposite side surfaces of the storage groove, and the two second openings are arranged in alignment to allow the screw to pass through the storage part, and the gasket can move along the direction of the second opening to the first opening. The two openings are arranged in alignment. In this way, the screw can pass through the gasket located inside the storage groove. At this time, the operator only needs to move the gasket access device vertically relative to the screw, and the screw will drive the gasket to move to the first opening, thus completing the removal of the gasket. The setting of the storage groove enables the operator to directly remove the gasket without directly touching the gasket, providing convenience for the operator.
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Description

Technical Field

[0001] The present application relates to the technical field of manual tools, and particularly relates to a gasket access device. Background Art

[0002] A nut is a part that tightly connects machinery and is widely used in fields such as power engineering, automobiles, construction, machinery, and shipbuilding industries. As an important fastening connection part, it is generally used in combination with bolts and screws to fixedly connect relatively separated things. Among them, nut gaskets and spring washers are also crucial. Specifically, the gasket can protect the surface of the connected part from being scratched by the nut and can increase the contact area at the connection, reducing pressure; the spring washer can play a role in preventing loosening and increasing the pre-tightening force. Since the gasket is small and thin, it is inconvenient for operators to pick up during operation. In particular, when the operator wears thick protective gloves, if they want to pick up the gasket, they need to remove the gloves, which will also cause trouble to the operator. Sometimes, due to improper operation, the gasket may fall, resulting in high-altitude falling objects and posing safety hazards to personnel and equipment. Moreover, after the gasket accidentally falls to the ground, it may roll out of the operator's field of vision, and it takes the operator a certain amount of time to search for it. Summary of the Invention

[0003] In view of this, the present application provides a gasket access device that enables an operator to conveniently store and remove gaskets without directly contacting the gaskets.

[0004] To achieve the above object, the present application provides the following technical solutions:

[0005] A gasket access device for picking up and placing gaskets on a screw rod, comprising:

[0006] A hand-held part;

[0007] A storage part provided with a storage groove, one end of the storage groove is provided with a first opening, and the first opening allows the gasket to enter and exit;

[0008] Wherein, the storage part is arranged on the hand-held part, and second openings are arranged on two opposite side surfaces of the storage groove, and the two second openings are aligned to allow the screw rod to pass through the storage part, and the gasket can move along the direction of the second opening to the first opening.

[0009] Optionally, in the above gasket access device, at one end of the storage groove close to the first opening, an elastic component is arranged that can abut against the inner wall of the storage groove to block the first opening, and a first inclined surface is arranged on the end surface of the elastic component to allow the gasket to pass between the elastic component and the inner wall.

[0010] Optionally, in the above gasket access device, the storage portion further includes a blocking plate for blocking the gasket from escaping from the first opening, and the blocking plate is connected to the handheld portion through a connecting plate.

[0011] Optionally, in the above gasket access device, a second inclined surface is provided at the first opening to guide the gasket so that the gasket slides into the storage groove.

[0012] Optionally, in the above gasket access device, the thickness of the storage groove matches the thickness of the gasket.

[0013] Optionally, in the above gasket access device, the handheld portion includes a first part and a second part that are cross-rotationally connected. The first part is connected to the storage groove, and the second part is connected to the connecting plate. A first elastic member is provided between the first part and the second part so that the blocking plate is in a state of blocking the first opening under the action of the first elastic member.

[0014] Optionally, in the above gasket access device, the connection between the storage groove and the first part is detachable.

[0015] Optionally, in the above gasket access device, a connecting member is provided at one end of the storage groove away from the first opening, a connecting column is provided at one end of the first part connected to the connecting member, a communication opening allowing the connecting member to extend into and rotate back is provided on the connecting column, and a holding member for keeping the connecting member in the raised position is provided.

[0016] Optionally, in the above gasket access device, the holding member is screwed to the outer wall of the connecting column to fix the connecting member in the raised position.

[0017] Optionally, in the above gasket access device, the holding member is a second elastic member provided inside the connecting column. The second elastic member can be squeezed by the connecting member and can support the connecting member in the raised position by restoring its deformation.

[0018] A gasket access device provided by the present application is used to pick up and place gaskets on a screw, and includes a handheld part and a storage part. The storage part is arranged on the handheld part, and a storage groove is arranged on the storage part for storing gaskets. One end of the storage groove is provided with a first opening to realize the entry and exit of gaskets. Among them, second openings are arranged on two opposite surfaces of the storage groove, and the two second openings are arranged in alignment so that the screw can vertically pass through the second openings. In this way, the screw can pass through the gasket located inside the storage groove. At this time, the operator only needs to move the storage part relative to the screw through the handheld part, and the screw will drive the gasket to move together. In this way, the operator can move the gasket along the direction of the second opening to the first opening to complete the removal of the gasket. Or, the operator can move the first opening on the gasket access device to the screw with the gasket, and move the storage part relative to the screw through the handheld part to make the gasket enter the storage groove along the first opening to complete the temporary storage of the gasket. The setting of the storage groove is beneficial to the temporary storage of gaskets on the one hand, so that the gaskets will not fall or be lost at the operation site; on the other hand, the operator can directly take out the gaskets without directly contacting them. Especially in the cold winter, the operator will wear gloves when working. In this way, the operator can put away or take out the gaskets without taking off the gloves, which provides convenience for the operator. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only the embodiments of the present application. For those of ordinary skill in the art, other drawings can be obtained according to the provided drawings without creative work.

[0020] Figure 1 It is a schematic structural diagram of the storage part of the gasket access device in the closed state in the embodiment of the present application;

[0021] Figure 2 It is a schematic structural diagram of the storage part of the gasket access device in the unfolded state;

[0022] Figure 3 It is a three-dimensional assembly diagram of the gasket access device;

[0023] Figure 4 For Figure 3 The enlarged view of part A in

[0024] Figure 5 It is a schematic structural diagram of the elastic component;

[0025] Figure 6 It is a schematic structural diagram of the connecting column.

[0026] In Figures 1-6 :

[0027] 1. Handheld part; 2. Storage part; 3. Storage groove; 4. First opening; 5. Gasket; 6. Second opening; 7. Elastic component; 8. First inclined surface; 9. Baffle plate; 10. Connecting plate; 11. Second inclined surface; 12. First part; 13. Second part; 14. First elastic member; 15. Connector; 16. Connecting column; 17. Communication opening; 18. Holding member; 19. Second elastic member; 20. Spring; 21. Fixed terminal. Detailed implementation

[0028] The present application provides a gasket access device, which enables an operator to conveniently store and remove gaskets without directly contacting the gaskets.

[0029] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.

[0030] Such as Figure 1 And Figure 3As shown in the figure, an embodiment of the present application provides a gasket access device for picking up and placing gaskets 5 on a screw. The device includes a handheld part 1 and a storage part 2. The storage part 2 is provided with a storage groove 3. One end of the storage groove 3 is provided with a first opening 4 for the entry and exit of the gasket 5. The storage part 2 is arranged on the handheld part 1. Second openings 6 are provided on two opposite sides of the storage groove 3. The two second openings 6 are aligned on the storage groove 3. In this way, the screw can vertically pass through the second opening 6, and the gasket 5 can move along the direction of the second opening 6 to the first opening 4. The two second openings 6 are aligned so that the screw can pass through the second opening 6. Thus, the screw can pass through the gasket 5 located inside the storage groove 3. At this time, the operator only needs to move the storage part 2 relative to the screw through the handheld part 1, and the screw will drive the gasket 5 to move together. In this way, the operator can move the gasket 5 along the direction of the second opening 6 to the first opening 4 to complete the removal of the gasket 5. And the operator can move the first opening 4 on the gasket access device to the screw with the gasket 5. The gasket 5 enters the storage groove 3 along the first opening 4 under the drive of the screw through the movement of the storage part 2 relative to the screw by the handheld part 1 to complete the temporary storage of the gasket 5. It should be noted that the gasket not only refers to the gasket used on the screw but also can be the gasket used between two objects to prevent pressure, corrosion, and leakage caused by natural thermal expansion and contraction of pipelines between the two objects, such as a spring washer. The setting of the storage groove 3, on the one hand, is conducive to the temporary storage of the gasket 5, avoiding the dropping and loss of the gasket 5 at the operation site and causing potential safety hazards; on the other hand, the operator can directly remove or store the gasket 5 without direct contact. Especially when wearing thick protective gloves, the gloves do not need to be removed to store or remove the gasket 5, which provides convenience for the operator.

[0031] Furthermore, as Figure 3 and Figure 5As shown, at one end of the storage groove 3 near the first opening 4, an elastic component 7 is provided which can abut against the inner wall of the storage groove 3 to block the first opening 4. A first inclined surface 8 allowing the gasket 5 to pass between the elastic component 7 and the inner wall is provided on the end surface of the elastic component 7. That is, an elastic component 7 is provided in the storage groove 3. The elastic component 7 is arranged near the first opening 4 and contacts the inner wall of the storage groove 3 to block the first opening 4. And a first inclined surface 8 is provided on the end surface of the elastic component 7. This first inclined surface 8 allows the gasket 5 to pass between the elastic component 7 and the inner wall of the storage groove 3. The setting of the elastic component 7 is beneficial to the blocking of the first opening 4 and prevents the gasket 5 from accidentally slipping out from the first opening 4. At the same time, since the elastic component 7 has elasticity, the elastic deformation of the elastic component 7 can be used to take out the gasket 5. To enable the gasket 5 to be taken out, a first inclined surface 8 allowing the gasket 5 to pass between the elastic component 7 and the inner wall is provided on the elastic component 7. The specific operation is as follows: The operator inserts the screw into the second opening 6 in the storage groove 3 and at the same time makes the screw pass through the gasket 5 located in the storage groove 3. The storage part 2 is driven to move relative to the screw through the handheld part 1, so that the screw drives the gasket 5 inside the storage groove 3 to move along the direction of the second opening 6 towards the first opening 4. When moving to the position of the elastic component 7, the gasket 5 slides towards the first inclined surface 8 and is squeezed into the space between the first inclined surface 8 and the inner wall of the storage groove 3, so that the elastic component 7 is compressed and deformed to form a channel allowing the gasket 5 to pass through. After the gasket 5 passes through the elastic component 7, it slides out from the first opening 4. Preferably in this application, the elastic component 7 includes a first inclined surface 8, a fixed terminal 21 fixedly connected to the first inclined surface 8, and a spring 20 connected to the storage groove 3. Additionally, the first inclined surface 8 may not be provided on the end surface of the elastic component 7, but the end surface of the elastic component 7 is set as a sphere. At this time, the gasket 5 can also be blocked by the elastic component 7. When taking out the gasket 5, the gasket 5 can move along the surface of the sphere to reach the first opening 4 by compressing the elastic component 7 to complete the work of taking out the gasket 5. The process of the gasket 5 entering the storage groove 3 from the first opening 4 through the elastic component 7 is the same as above.

[0032] Furthermore, as Figure 2 and Figure 3As shown, the storage part 2 further includes a baffle plate 9 that prevents the spacer 5 from slipping out of the first opening 4. The baffle plate 9 is connected to the handheld part 1 through a connecting plate 10. That is, a baffle plate 9 is also provided on the storage part 2, and the baffle plate 9 is arranged on the handheld part 1 through the connecting plate 10. This baffle plate 9 is used to prevent the spacer 5 from sliding out from the first opening 4. As can be seen from the above, the elastic component 7 is arranged at one end of the storage groove 3 close to the first opening 4 to prevent the spacer 5 from sliding out of the storage groove 3. Here, a baffle plate 9 is also provided to prevent the spacer 5 from sliding out from the first opening 4, providing a double guarantee for the storage of the spacer 5. If either the elastic component 7 or the baffle plate 9 is damaged, the storage of the spacer 5 will not be affected. In addition, the storage part 2 may not be provided with the baffle plate 9, and only the elastic component 7 is used to block the first opening 4.

[0033] In an alternative embodiment, as Figure 2 and Figure 3 shown, a second inclined surface 11 is provided at the first opening 4 to guide the spacer 5 so that the spacer 5 slides into the storage groove 3. That is, a second inclined surface 11 is provided at the first opening 4 of the storage groove 3. This second inclined surface 11 can guide the spacer 5 and let the spacer 5 slide into the storage groove 3 along the inclined direction of the second inclined surface 11. In real life, when an operator installs or disassembles a screw, since the spacer 5 on the screw is thin and small and not very convenient to pick up, especially when the operator wears thick protective gloves, it is even more inconvenient to pick up. To enable the spacer 5 to slide into the storage part 2 autonomously, a second inclined surface 11 is provided at the first opening 4, and the spacer 5 can slide into the storage groove 3 along the inclined direction of this second inclined surface 11. During specific operation, the operator holds and moves the spacer access device so that the first opening 4 of the storage part 2 approaches the spacer 5 sleeved on the screw. Then, the operator inserts the part with the second inclined surface 11 of the storage part 2 radially along the screw between the spacer 5 and the screw, so that a part of the spacer 5 is lifted and located on the second inclined surface 11. After that, the operator continues to move the spacer access device in the direction close to the screw, so that the spacer 5 enters the first opening 4 and passes through the elastic component 7 and enters the storage groove 3. At the same time, the screw also enters the second opening 6. Finally, the operator moves the spacer access device axially along the screw to remove the screw from the second opening 6, and thus the storage work of the spacer 5 is completed. In addition, the second inclined surface 11 may not be provided at the first opening 4, but the spacer 5 on the screw is manually guided to make the spacer 5 slide into the storage groove 3.

[0034] In an optional embodiment, the thickness of the storage slot 3 matches the thickness of the gasket 5. The storage slot 3 is used to store the gasket 5, but after multiple gaskets 5 enter the storage slot 3, they may be stacked, and some may even get stuck in the storage slot 3. When the thickness of the storage slot 3 is set to match the thickness of the gasket 5, there is only one gasket 5 at the same position in the storage slot 3, that is, multiple gaskets 5 are spread out flat, and there is no stacking phenomenon between them, which is conducive to the smooth removal of the gasket 5. In addition, the thickness of the storage slot 3 may not match the thickness of the gasket 5. In this case, it is necessary to avoid shaking the gasket storage and retrieval device, and to avoid the gasket 5 from stacking and getting stuck inside the storage slot 3 as much as possible.

[0035] This application is preferred, such as Figure 2 and Figure 3 As shown, the hand-held portion 1 includes a first portion 12 and a second portion 13 that are cross-rotatably connected, the first portion 12 is connected to the storage slot 3, the second portion 13 is connected to the connecting plate 10, and a first elastic member 14 is arranged between the first portion 12 and the second portion 13, so that the blocking plate 9 is in a state of blocking the first opening 4 under the action of the first elastic member 14, that is, the shape of the gasket 5 access device is scissors-shaped, the hand-held portion 1 is in the position of a scissors handle, one handle is the first portion 12, and the other handle is the second portion 13, the first portion 12 is rotatably connected to the second portion 13, the first portion 12 is connected to the storage slot 3, the second portion 13 is connected to the connecting plate 10, and a first elastic member 14 is arranged between the first portion 12 and the second portion 13, so as to facilitate the handle position to be in the expanded position, thereby, the blocking plate 9 located at one end of the connecting plate 10 can always be located at the first opening 4 of the storage slot 3 when not subject to other external forces, thereby achieving the blocking of the first opening 4. A first elastic member 14 is provided between the first part 12 and the second part 13, so that when the gasket 5 storage and access device is static or when there is no operator operating, the first part 12 and the second part 13 are always kept in an unfolded state under the elastic force of the first elastic member 14, that is, the hand-held part 1 is kept in an unfolded state, and the first part 12 and the second part 13 are cross-rotationally connected. At this time, the storage slot 3 connecting the first part 12 and the connecting plate 10 connecting the second part 13 are always kept in a covering state, that is, the storage part 2 is kept in a tightened state, that is, the storage slot 3 and the connecting plate 10 overlap each other, so that the blocking plate 9 is always blocked at the first opening 4. In addition, the first elastic member 14 may not be provided between the first part 12 and the second part 13, but after the gasket 5 is stored, the first part 12 and the second part 13 are artificially unfolded, so that the blocking plate 9 is located at the first opening 4, so as to achieve blocking of the first opening 4.

[0036] Furthermore, the storage groove 3 and the first part 12 are detachably connected. The detachable connection between the storage groove 3 and the first part 12 means that the storage groove 3 for placing the gasket 5 can be replaced according to the specifications of the gasket 5, or the gasket 5 inside the storage groove 3 can be removed after it is used up, and then the storage groove 3 that is pre-filled with the gasket 5 or contains a certain number of gaskets 5 can be installed on the first part 12, so that the operator can directly access the gasket 5, which not only facilitates the operation but also saves the operation time. For example, when it is necessary to place gaskets 5 of other specifications, only the previous storage groove 3 needs to be removed and replaced with a storage groove 3 that matches the gasket 5. This gasket access device is suitable for storing various different types of gaskets 5, increasing the practicality of the gasket access device. In addition, the storage groove 3 and the first part 12 can also be fixedly connected, and at the same time, the first part 12 and the second part 13 that are cross-rotationally connected are designed to be detachably connected. When the specifications of the storage groove 3 do not match the specifications of the gasket 5 to be stored, only the place where the first part 12 and the second part 13 are cross-rotationally connected needs to be disassembled and replaced with a connection structure of the first part 12 and the storage groove 3 that matches the specifications of the gasket 5.

[0037] Preferably, as Figure 3 and Figure 4 shown, a connecting member 15 is provided at one end of the storage groove 3 away from the first opening 4, a connecting column 16 is provided at one end of the first part 12 connected to the connecting member 15, a communication opening 17 that allows the connecting member 15 to extend in and rotate and rise is provided on the connecting column 16, and a retaining member 18 that keeps the connecting member 15 in the rising position, that is, a connecting member 15 is provided at one end of the storage groove 3 away from the first opening 4, the shape of the connecting member 15 is an inverted T shape, a connecting column 16 is provided at one end of the first part 12 connected to the connecting member 15, a communication opening 17 that allows the connecting member 15 to extend in and rotate and rise is provided on the connecting column 16, this communication opening 17 is, for example, a U shape, and at the same time, to keep the connecting member 15 in the rising position, a retaining member 18 is provided on the connecting column 16. The disassembly and replacement of the storage groove 3 between the storage groove 3 and the first part 12 are completed through the cooperation of the connecting member 15 and the connecting column 16. This connection structure is simple, low in cost, and conducive to widespread promotion. The connecting member 15 extends into the connecting column 16, rotates, and rises, that is, as Figure 6As shown by the arrow in [description], the connecting member 15 enters the communication opening 17 from one vertical part of the U-shaped structure, and after reaching the bottom of the communication opening 17, it translates along the horizontal part of the U-shaped structure to the other vertical part, and then rises in this other vertical part to complete the installation of the receiving groove 3. This not only saves time and effort but also is convenient for operation. The provision of the retaining member 18 facilitates the stability of the installed receiving groove 3. Additionally, the connecting member 15 may not be provided on the receiving groove 3 but on the first part 12, and the connecting post 16 is provided on the receiving groove 3 instead of on the first part 12.

[0038] Furthermore, as Figure 3 and Figure 4 shown, the retaining member 18 is screwed to the outer wall of the connecting post 16 to fix the connecting member 15 in the raised position. That is, the connecting post 16 is cylindrical in shape, its outer wall has threads, the retaining member 18 is shaped to match the connecting post 16, and the inner wall of the retaining member 18 has threads. For example, the retaining member 18 is a nut. Rotate the retaining member 18 on the connecting post 16 so that the retaining member 18 rises and approaches the connecting member 15 in the raised position, and finally abuts below the connecting member 15, thus achieving the fixed connection between the connecting member 15 and the retaining member 18. Additionally, threads may not be provided on the outer wall of the connecting post 16, but the retaining member 18 is set as a positioning pin that can be radially inserted into the connecting post 16, so that the connecting member 15 is stably held in the raised position by the clamping and positioning of the positioning pin.

[0039] Even further, the retaining member 18 is a second elastic member 19 provided inside the connecting post 16. The second elastic member 19 can be squeezed by the connecting member 15 and can support the connecting member 15 in the raised position by restoring its deformation. That is, the retaining member 18 is the second elastic member 19. This second elastic member 19 is, for example, Figure 4 the spring shown in [description], and is provided in the axial hole inside the connecting post 16. The connecting member 15 extends into the connecting post 16 and rotates and rises inside the connecting post 16. During this period, the second elastic member 19 inside the connecting post 16 is squeezed during the extension of the connecting member 15. As the connecting member 15 rises, the second elastic member 19 also elongates as it restores its deformation. After the connecting member 15 reaches the raised position, the second elastic member 19 does not return to its original shape and exerts an elastic force on the connecting member 15, thereby elastically abutting the connecting member 15 in the raised position. At this time, the second elastic member 19 has a fixed supporting effect on the connecting member 15, making the connecting member 15 stably connected inside the connecting post 16. Additionally, the second elastic member 19 may not be provided inside the connecting post 16, but the second elastic member 19 is fixedly provided below the connecting member 15, and this can also achieve the fixation of the connecting member 15 inside the connecting post 16.

[0040] The basic principles of the present application have been described in conjunction with specific embodiments. However, it should be noted that the advantages, benefits, effects, etc. mentioned in the present application are only examples and not limitations. It cannot be considered that these advantages, benefits, effects, etc. are essential for each embodiment of the present application. Additionally, the specific details disclosed above are only for illustrative and facilitating understanding purposes and are not limitations. The above details do not limit the present application to necessarily adopt the above specific details for implementation.

[0041] The block diagrams of the devices, apparatuses, equipment, and systems involved in the present application are only illustrative examples and do not intend to require or imply that they must be connected, arranged, and configured in the manner shown in the block diagrams. As those skilled in the art will recognize, these devices, apparatuses, equipment, and systems can be connected, arranged, and configured in any manner. Words such as "including", "comprising", "having", etc. are open-ended terms meaning "including but not limited to" and can be used interchangeably with each other. The word "or" and "and" used herein refer to the word "and / or" and can be used interchangeably with it, unless the context clearly indicates otherwise. The word "such as" used herein refers to the phrase "such as but not limited to" and can be used interchangeably with it.

[0042] It should also be noted that in the devices, equipment, and methods of the present application, each component or each step can be decomposed and / or recombined. These decompositions and / or recombinations should be regarded as equivalent solutions of the present application.

[0043] The above description of the disclosed aspects is provided to enable any person skilled in the art to make or use the present application. Various modifications to these aspects are very obvious to those skilled in the art, and the general principles defined herein can be applied to other aspects without departing from the scope of the present application. Therefore, the present application is not intended to be limited to the aspects shown herein, but rather to the broadest scope consistent with the principles and novel features disclosed herein.

[0044] It should be understood that the qualifiers "first", "second", "third", "fourth", "fifth", and "sixth" used in the description of the embodiments of the present application are only for more clearly elaborating the technical solutions and cannot be used to limit the protection scope of the present application.

[0045] The above description has been given for purposes of illustration and description. In addition, this description does not intend to limit the embodiments of the present application to the forms disclosed herein. Although multiple example aspects and embodiments have been discussed above, those skilled in the art will recognize certain variations, modifications, changes, additions, and sub-combinations thereof.

Claims

1. A gasket access device for picking up and placing gaskets on a screw, characterized in that, Comprising: A handheld part; A storage part, provided with a storage groove, one end of the storage groove is provided with a first opening, and the first opening allows the gasket to enter and exit; the storage part further includes a blocking plate for blocking the gasket from escaping from the first opening, and the blocking plate is connected to the handheld part through a connecting plate; at one end of the storage groove close to the first opening, an elastic component is provided that can abut against the inner wall of the storage groove to block the first opening, and a first inclined surface allowing the gasket to pass between the elastic component and the inner wall is provided on the end surface of the elastic component; the thickness of the storage groove matches the thickness of the gasket; Wherein, the storage part is arranged on the handheld part, second openings are provided on two opposite side surfaces of the storage groove, and the two second openings are aligned to allow the screw rod to pass through the storage part, and the gasket can move to the first opening along the direction of the second opening; the handheld part includes a first part and a second part that are cross-rotationally connected, the first part is connected to the storage groove, the second part is connected to the connecting plate, and a first elastic member is arranged between the first part and the second part, so that the blocking plate is in a state of blocking the first opening under the action of the first elastic member.

2. The gasket access device according to claim 1, wherein A second inclined surface is provided at the first opening to guide the gasket so that the gasket slides into the storage groove.

3. The gasket access device according to claim 1, wherein The connection between the storage groove and the first part is detachable.

4. The gasket access device according to claim 3, wherein A connecting member is provided at one end of the storage groove away from the first opening, a connecting column is provided at one end of the first part connected to the connecting member, a communicating opening allowing the connecting member to extend into and rotate back is provided on the connecting column, and a retaining member for keeping the connecting member in the raised position is provided.

5. The gasket access device according to claim 4, wherein The retaining member is screwed to the outer wall of the connecting column to fix the connecting member in the raised position.

6. The gasket access device according to claim 4, wherein The retaining member is a second elastic member arranged in the connecting column, the second elastic member can be squeezed by the connecting member, and can support the connecting member in the raised position by restoring deformation.

Citation Information

Patent Citations

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