Mainboard battery holder welding jig

By designing the motherboard battery holder welding fixture, the distinguishing components and locking parts are used to ensure the correct installation of the battery socket, which solves the problem of high dependence on workers' skills during the welding process, and realizes stable welding and rapid replacement of the motherboard and the battery socket.

CN223146389UActive Publication Date: 2025-07-25SHENZHEN CHUANGREN TECH
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Patent Information

Application Number
CN202421855805.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-01
Publication Date
2025-07-25
Estimated Expiration
2034-08-01

AI Technical Summary

Technical Problem

In the prior art, when welding the motherboard battery socket, the workers have high skills requirements, poor stability, and prone to deviations.

Method used

A motherboard battery seat welding fixture is designed, including a base and a cover body. The base is equipped with a motherboard groove and a battery socket groove. There is a distinguishing component at the bottom of the groove to distinguish the positive and negative poles of the battery socket. There is a hole in the cover body for welding. By positioning and distinguishing the components, the battery socket is ensured correctly installed, and stability is improved through elastic tablets and locking parts.

Benefits of technology

Reduces the dependence on workers' experience during welding, improves the stability and efficiency of welding between motherboard and battery sockets, and facilitates quick replacement of battery sockets and motherboards.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a mainboard battery holder welding jig, and relates to the technical field of welding auxiliary tools, the welding jig comprises a base and a cover body, the base is provided with a mainboard groove used for placing a mainboard, the base is provided with a groove used for placing a battery socket, and the bottom of the groove is provided with a distinguishing assembly used for distinguishing the positive electrode and the negative electrode of the battery socket; the cover body is detachably arranged on the base and used for abutting the main board against the battery socket, and a hole facilitating welding of the battery socket and the main board is formed in the cover body. The battery socket is placed in the groove, the distinguishing assembly distinguishes the mounting directions of the positive electrode and the negative electrode of the battery socket, the main board is placed in the main board groove, the cover body covers the base, the main board abuts against the battery socket, and the pins of the battery socket are welded to the main board through the holes in the cover body. Therefore, the dependence on the experience of workers in the welding process is reduced, and the welding stability of the mainboard and the battery socket is improved.
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Description

Technical Field

[0001] This application relates to the technical field of welding auxiliary tools, and particularly to a welding jig for a motherboard battery socket. Background Art

[0002] In the electronic manufacturing industry, welding is a key process for connecting a motherboard to a battery socket. In the prior art, welding a motherboard battery socket is usually achieved by directly placing the motherboard under a welding machine and welding it to the battery socket, or by a worker holding the motherboard and the battery socket by hand for welding.

[0003] However, both of these methods have obvious defects. Direct welding requires high skills from workers. Only experienced workers can ensure the correct correspondence of the positive and negative poles of the battery socket, and during the welding process, the motherboard or the battery is prone to move, affecting the welding quality. Manual hand-held welding has problems such as poor stability and easy welding deviation. Utility Model Content

[0004] In order to reduce the dependence on workers' experience during the welding process and improve the welding stability between the motherboard and the battery socket, this application provides a welding jig for a motherboard battery socket.

[0005] A welding jig for a motherboard battery socket provided by this application adopts the following technical solutions:

[0006] A welding jig for a motherboard battery socket includes a base and a cover. A motherboard slot for placing the motherboard is provided on the base, a groove for placing the battery socket is provided on the base, a distinguishing component for distinguishing the positive and negative poles of the battery socket is arranged on the bottom of the groove, the cover is detachably arranged on the base and is used to press the motherboard against the battery socket, and a hole is provided on the cover to facilitate welding the battery socket to the motherboard.

[0007] By adopting the above technical solutions, the battery socket is placed in the groove, the distinguishing component distinguishes the installation direction of the positive and negative poles of the battery socket, the motherboard is placed in the motherboard slot, the cover is closed on the base and presses the motherboard against the battery socket, and the pins of the battery socket are welded to the motherboard through the hole on the cover, thereby reducing the dependence on workers' experience during the welding process and improving the welding stability between the motherboard and the battery socket.

[0008] Further, the distinguishing component includes:

[0009] A positioning protrusion, which is arranged on the bottom of the groove and is used to position the battery socket;

[0010] A distinguishing protrusion is provided on one side of the positioning protrusion. The distinguishing protrusion is engaged with the battery socket in a snap-fit manner. When the positive and negative poles of the battery socket are placed incorrectly, the distinguishing protrusion prevents the battery socket from being inserted into the groove.

[0011] By adopting the above technical solution, when the positive and negative poles of the battery socket are placed correctly, the distinguishing protrusion and the positioning protrusion jointly position the battery socket, so as to stably install the battery socket in the groove. When the positive and negative poles of the battery socket are placed incorrectly, the distinguishing protrusion abuts against the bottom of the battery socket, thereby preventing the battery socket from being inserted into the groove, so as to facilitate quickly distinguishing whether the battery socket is placed correctly.

[0012] Furthermore, a plurality of groups of main board slots are spaced apart on the base, a plurality of groups of grooves are provided on the base, and a plurality of groups of holes are provided on the cover body, and the main board slots, the grooves and the holes correspond to each other one by one.

[0013] By adopting the above technical solution, a plurality of groups of grooves and main board slots are provided on the base, and a plurality of groups of holes are provided on the cover body, so as to facilitate welding of a plurality of groups of main boards and battery sockets, thereby improving the welding efficiency.

[0014] Furthermore, an elastic pressing piece for pressing the main board against the battery socket is provided on the cover body.

[0015] By adopting the above technical solution, the cover body presses against the main board through the elastic pressing piece, so as to press the main board against the battery socket. The elastic pressing piece ensures the pressing effect on the main board and reduces the probability of damage to the main board during pressing.

[0016] Furthermore, a positioning component for positioning and locking the cover body is provided on the base. The positioning component includes:

[0017] Positioning pins, a plurality of the positioning pins are provided on the base, and a plurality of positioning holes that are engaged with the positioning pins in a snap-fit manner are provided on the cover body;

[0018] A locking member, the locking member is provided on the base and is used for locking the cover body.

[0019] By adopting the above technical solution, when the cover body is closed on the base, the cover body is accurately pressed against the designated position on the base through the cooperation of the positioning pins and the positioning holes. At the same time, after the cover body is pressed against the base, the cover body is locked on the base through the locking member, so as to ensure that the main board is always pressed against the battery socket during the welding process, and improve the welding stability between the main board and the battery socket.

[0020] Furthermore, a quick-release component for facilitating quick removal of the welded main board and battery socket is provided on the base. The quick-release component includes:

[0021] A sliding rod, which is slidably arranged in the groove and is used to push the battery socket away from the bottom of the groove;

[0022] A driving member, which is arranged on the base and is used to drive the sliding rod to slide.

[0023] By adopting the above technical solution, the driving member drives the sliding rod to slide and pushes the bottom of the battery socket, so as to push out the battery socket and the main board after welding from the groove, and finally it is convenient for the worker to take away the battery socket and the main board after welding, so as to quickly replace the main board and the battery socket on the base.

[0024] Furthermore, both the distinguishing component and the cover body are made of high-temperature resistant materials.

[0025] By adopting the above technical solution, since high temperature will be generated when the pins of the battery socket are welded to the main board, the damage probability of the jig during the welding process is reduced by the distinguishing component and the cover body made of high-temperature resistant materials.

[0026] Furthermore, one side of the cover body is hinged to the base, a storage groove for storing the cover body is opened on the base, and a pressing block for locking the cover body in the storage groove is rotatably arranged on the base.

[0027] By adopting the above technical solution, the cover body rotates on the base and is positioned and stored through the storage groove. When the cover body abuts against the bottom of the storage groove, the pressing block is rotated to lock the cover body on the base, and the cover body presses the main board against the battery socket, so as to improve the welding stability between the main board and the battery socket.

[0028] Furthermore, a handle is arranged on the cover body to facilitate driving the cover body to rotate on the base.

[0029] By adopting the above technical solution, the worker drives the cover body to rotate on the base through the handle, so as to facilitate pulling out the cover body from the storage groove.

[0030] In summary, the present application includes at least one of the following beneficial technical effects:

[0031] 1. By placing the battery socket in the groove and positioning it through the positioning protrusion, and at the same time the distinguishing protrusion distinguishes the installation directions of the positive and negative poles of the battery socket, placing the main board in the main board groove, covering the cover body on the base and pressing the main board against the battery socket, and welding the pins of the battery socket to the main board through the holes on the cover body, the dependence on the experience of workers during the welding process is reduced and the welding stability between the main board and the battery socket is improved.

[0032] 2. Drive the cover body to rotate on the base through the handle. When the cover body presses tightly against the main board through the pressing block, rotate the pressing block to lock the cover body on the base. The cover body presses the main board tightly against the battery socket, thereby improving the welding stability between the main board and the battery socket.

[0033] 3. Drive the sliding rod to slide through the driving member and push the bottom of the battery socket, thereby pushing the welded battery socket and main board out of the groove, and finally facilitating the worker to take away the welded battery socket and main board, so as to quickly replace the main board and battery socket on the base. Description of the Drawings

[0034] Figure 1 is a schematic structural diagram of the welding jig in Embodiment 1 of the present application;

[0035] Figure 2 is a schematic structural diagram of the base in Embodiment 1 of the present application;

[0036] Figure 3 is Figure 2 an enlarged schematic diagram of part A in

[0037] Figure 4 is an exploded structural diagram of the welding jig in Embodiment 1 of the present application;

[0038] Figure 5 is a schematic structural diagram of the welding jig in Embodiment 2 of the present application;

[0039] Figure 6 is a schematic structural diagram of the welding jig in Embodiment 3 of the present application;

[0040] Figure 7 is Figure 6 a sectional schematic diagram of B-B in

[0041] Reference numerals: 1, base; 11, main board slot; 12, groove; 13, storage groove; 14, pressing block; 2, cover body; 21, hole; 22, elastic pressing piece; 23, positioning hole; 24, handle; 3, distinguishing component; 31, positioning protrusion; 32, distinguishing protrusion; 4, positioning component; 41, positioning pin; 42, locking piece; 5, quick-release component; 51, sliding rod; 52, driving member; 53, connecting piece. Detailed Description of the Embodiments

[0042] The following Figures 1-7 further describes the present application in detail with reference to the

[0043] The embodiment of the present application discloses a welding jig for a main board battery socket.

[0044] Embodiment 1

[0045] Refer to Figure 1 andFigure 2 , a welding jig for a motherboard battery socket, comprising a base 1 and a cover 2. A motherboard slot 11 for placing the motherboard is provided on the base 1, and a groove 12 for placing the battery socket is provided on the base 1. A distinguishing component 3 for distinguishing the positive and negative poles of the battery socket is arranged on the bottom of the groove 12. The cover 2 is detachably arranged on the base 1 and is used to press the motherboard tightly against the battery socket. A hole 21 facilitating the welding of the battery socket and the motherboard is provided on the cover 2.

[0046] Refer to Figure 2 , the base 1 is placed on the workbench. A motherboard slot 11 that is engaged and cooperated with the motherboard in a clamping manner is provided on the upper surface of the base 1, wherein the shape of the motherboard slot 11 is opened according to the shape of the motherboard; a groove 12 for placing the battery socket is opened on the bottom of the motherboard slot 11; during use, the battery socket is first placed in the groove 12, and then the motherboard is placed in the motherboard slot 11, so as to press the motherboard tightly against the battery socket and connect the pins of the battery socket with the motherboard, facilitating subsequent welding.

[0047] Refer to Figure 2 and Figure 3 , by arranging the distinguishing component 3 on the bottom of the groove 12 to distinguish and place the positive and negative poles of the battery socket. The distinguishing component 3 includes a positioning protrusion 31 and a distinguishing protrusion 32. The positioning protrusion 31 is fixedly installed on the bottom of the groove 12 and is used to position the battery socket, thereby improving the connection accuracy between the battery socket and the motherboard and facilitating the improvement of the stability of subsequent welding between the battery socket and the motherboard. In order to improve the positioning accuracy of the positioning protrusion 31, multiple groups of positioning protrusions 31 are fixedly installed on the bottom of the groove 12; in this embodiment, two groups of positioning protrusions 31 are fixedly installed on the bottom of the groove 12; the distinguishing protrusion 32 is fixedly installed on the side wall of one side of the positioning protrusion 31, and the distinguishing protrusion 32 is engaged and cooperated with the battery socket; when the positive and negative poles of the battery socket are placed correctly, the distinguishing protrusion 32 and the positioning protrusion 31 jointly position the battery socket, so as to stably install the battery socket in the groove 12; when the positive and negative poles of the battery socket are placed wrongly, the distinguishing protrusion 32 presses tightly against the bottom of the battery socket, thereby preventing the battery socket from being placed into the groove 12, so as to facilitate quickly distinguishing whether the battery socket is placed correctly.

[0048] Refer to Figure 2 and Figure 4 , the cover 2 is detachably installed on the base 1. An elastic pressing piece 22 is fixedly installed at one end of the cover 2 close to the base 1. When the cover 2 is installed on the base 1, the cover 2 presses tightly against the motherboard through the elastic pressing piece 22, so as to push the motherboard to move towards the bottom direction of the motherboard slot 11, thereby making the motherboard and the battery socket press tightly against each other; meanwhile, a hole 21 facilitating the welding of the pins of the battery socket and the motherboard is provided on the cover 2; in this embodiment, the shape of the hole 21 is the same as the shape of the groove 12.

[0049] Refer to Figure 1 and Figure 2 In order to improve the welding efficiency between the main board and the battery socket, a plurality of groups of main board slots 11 are spaced apart on the base 1, a plurality of groups of grooves 12 are spaced apart on the base 1, and a plurality of groups of holes 21 are spaced apart on the cover 2. Among them, the main board slots 11, the grooves 12 and the holes 21 correspond to each other one by one, so as to facilitate the welding of multiple groups of main boards and battery sockets, thereby improving the welding efficiency.

[0050] Refer to Figure 1 and Figure 3 Since a relatively high temperature will be generated during the welding process, in order to reduce the damage to the jig during the welding process, the positioning protrusion 31, the distinguishing protrusion 32, the area on the base 1 in contact with the main board, and the cover 2 are all made of high-temperature resistant materials.

[0051] Refer to Figure 1 and Figure 4 A positioning assembly 4 for positioning and locking the cover 2 is provided on the base 1. The positioning assembly 4 includes a positioning pin 41 and a locking member. The positioning pin 41 is fixedly installed on the upper surface of the base 1. A plurality of groups of positioning pins 41 are installed on the base 1. A plurality of groups of positioning holes 23 that are engaged with the positioning pins 41 are provided on the cover 2; the locking member 42 is provided on the base 1, and the locking member 42 is used to lock the cover 2. The locking member 42 includes a magnet and an iron block. The magnet is fixedly installed on the base 1. A plurality of groups of magnets are installed on the base 1 at intervals; the iron block is fixedly installed on the cover 2. A plurality of groups of iron blocks are installed on the cover 2. The plurality of groups of iron blocks correspond to the magnets in position, so as to lock the cover 2 on the base 1; during use, the cover 2 is moved towards the base 1, and the position of the cover 2 is positioned through the mutual cooperation of the positioning pin 41 and the positioning hole 23, and then the iron block on the cover 2 and the magnet on the base 1 are mutually cooperated to press the cover 2 tightly against the base 1, and the main board is pressed tightly against the battery socket through the elastic pressing piece 22, so as to improve the connection stability between the main board and the battery socket, and finally the pins of the battery socket are welded and fixed on the main board through the holes 21.

[0052] The working principle of Embodiment 1 of the present application is as follows:

[0053] Place the battery socket in the groove 12 and position it through the positioning protrusion 31. At the same time, the distinguishing protrusion 32 distinguishes the installation direction of the positive and negative poles of the battery socket. Place the main board in the main board slot 11. The cover 2 is covered on the base 1 and presses the main board tightly against the battery socket. The pins of the battery socket are welded on the main board through the holes 21 on the cover 2, so as to reduce the dependence on the experience of workers during the welding process and improve the welding stability between the main board and the battery socket.

[0054] Embodiment 2

[0055] Reference Figure 5 Differently from Embodiment 1, in this embodiment, one side of the cover body 2 is hinged and installed on the base 1. A storage groove 13 for positioning and storing the cover body 2 is formed on the base 1. A plurality of main board grooves 11 are spacedly formed at the bottom of the storage groove 13. When the cover body 2 is rotationally clamped in the storage groove 13, the cover body 2 abuts against the main board. Meanwhile, a pressing block 14 for locking the cover body 2 in the storage groove 13 is rotatably installed on the base 1. After the cover body 2 abuts against the bottom of the storage groove 13, the pressing block 14 is rotated to lock the cover body 2 on the base 1.

[0056] Reference Figure 5 After the pressing block 14 locks the cover body 2 on the base 1, the cover body 2 presses the main board against the battery socket, thereby improving the connection stability between the main board and the battery socket. Finally, the pins of the battery socket are welded and fixed on the main board through the holes 21. After the welding is completed, the pressing block 14 is rotated to make the cover body 2 rotatable freely. In order to facilitate the separation of the cover body 2 from the base 1, a handle 24 is provided on one side of the cover body 2 away from the hinge. The handle 24 facilitates driving the cover body 2 to rotate on the base 1.

[0057] The working principle of Embodiment 2 of this application is as follows:

[0058] The cover body 2 is driven to rotate on the base 1 through the handle 24. When the cover body 2 abuts against the main board through the pressing block 14, the pressing block 14 is rotated to lock the cover body 2 on the base 1. The cover body 2 presses the main board against the battery socket, thereby improving the welding stability between the main board and the battery socket.

[0059] Embodiment 3

[0060] Reference Figure 6 and Figure 7 Differently from Embodiment 1, in this embodiment, a quick-release component 5 for facilitating the quick removal of the welded main board and battery socket is provided on the base 1. The quick-release component 5 includes a sliding rod 51 and a driving member 52. The sliding rod 51 is slidably installed in the groove 12. The sliding rod 51 is used to push the battery socket away from the bottom of the groove 12. The driving member 52 is fixedly installed on the base 1. The driving member 52 is used to drive the sliding rod 51 to slide. In order to improve the efficiency of quickly removing the main board and the battery socket, a plurality of sliding rods 51 are installed on the base 1. The driving member 52 is connected to the plurality of sliding rods 51 through a connecting member 53 and drives the plurality of sliding rods 51 to slide simultaneously. The driving member 52 of this embodiment is a telescopic cylinder.

[0061] Reference Figure 6 and Figure 7, before the battery socket needs to be placed into the groove 12, the driving member 52 drives the sliding rod 51 to slide, and makes the top of the sliding rod 51 flush with the bottom of the groove 12; then the battery socket is correctly placed into the groove 12, the main board is placed into the main board slot 11, the cover body 2 is locked on the base 1, and the pins of the battery socket are welded to the main board through the holes 21; after welding is completed, the cover body 2 is opened, and then the driving member 52 is started to drive the sliding rod 51 to slide, so as to push the welded battery socket and main board out of the groove 12, and finally the main board and the battery socket can be quickly taken out.

[0062] The working principle of Embodiment 3 of this application is as follows:

[0063] The driving member 52 drives the sliding rod 51 to slide, and pushes the bottom of the battery socket, so as to push the welded battery socket and main board out of the groove 12, and finally it is convenient for the worker to take away the welded battery socket and main board, so as to quickly replace the main board and the battery socket on the base 1.

[0064] The above are all the preferred embodiments of this application. Without limiting the protection scope of this application accordingly, therefore: Any equivalent changes made according to the structure, shape, and principle of this application shall be covered within the protection scope of this application.

Claims

1. A welding jig for a motherboard battery holder, characterized in that: It includes a base (1) and a cover (2). A main board slot (11) for placing the main board is provided on the base (1). A groove (12) for placing the battery socket is provided on the base (1). A distinguishing component (3) for distinguishing the positive and negative poles of the battery socket is provided at the bottom of the groove (12). The cover (2) is detachably arranged on the base (1) and is used to press the main board against the battery socket. A hole (21) facilitating the welding of the battery socket and the main board is provided on the cover (2).

2. The welding jig for the main board battery holder according to claim 1, characterized in that: The distinguishing component (3) includes: A positioning protrusion (31) which is provided at the bottom of the groove (12) and is used for positioning the battery socket; A distinguishing protrusion (32) which is provided on one side of the positioning protrusion (31). The distinguishing protrusion (32) is in snap-fit with the battery socket. When the positive and negative poles of the battery socket are placed wrongly, the distinguishing protrusion (32) prevents the battery socket from being placed into the groove (12).

3. The welding jig for the main board battery holder according to claim 1, characterized in that: Multiple groups of main board slots (11) are spaced apart on the base (1). Multiple groups of grooves (12) are provided on the base (1). Multiple groups of holes (21) are provided on the cover (2). The main board slots (11), the grooves (12) and the holes (21) correspond to each other one by one.

4. The welding jig for the motherboard battery holder according to claim 3, characterized in that: An elastic pressing piece (22) for pressing the main board against the battery socket is provided on the cover (2).

5. A welding jig for a motherboard battery holder according to claim 1, characterized in that: A positioning component (4) for positioning and locking the cover (2) is provided on the base (1). The positioning component (4) includes: Positioning pins (41). Multiple groups of the positioning pins (41) are provided on the base (1). Multiple groups of positioning holes (23) which are in snap-fit with the positioning pins (41) are provided on the cover (2); A locking piece (42) which is provided on the base (1) and is used for locking the cover (2).

6. The welding jig for the main board battery holder according to claim 1, wherein: A quick-release component (5) for facilitating the quick removal of the welded main board and battery socket is provided on the base (1). The quick-release component (5) includes: A sliding rod (51) which is slidably arranged in the groove (12) and is used for pushing the battery socket away from the bottom of the groove (12); A driving piece (52) which is provided on the base (1) and is used for driving the sliding rod (51) to slide.

7. The welding jig for the main board battery holder according to claim 2, wherein: Both the distinguishing component (3) and the cover (2) are made of high-temperature resistant materials.

8. The welding jig for the main board battery holder according to claim 1, wherein: One side of the cover (2) is hinged to the base (1). A storage groove (13) for storing the cover (2) is provided on the base (1). A pressing block (14) for locking the cover (2) in the storage groove (13) is rotatably arranged on the base (1).

9. The welding jig for the main board battery holder according to claim 8, wherein: A handle (24) for facilitating the rotation of the cover (2) on the base (1) is provided on the cover (2).