Innovative tool for assembling side plate assembly simply and conveniently
By introducing positioning mechanisms and magnetic adsorption materials into the circuit breaker side plate assembly tooling, the discomfort caused by the uneven side plates during the assembly process is solved, and the installation efficiency is improved and the side plate bodies of different sizes and shapes are adapted.
Patent Information
- Application Number
- CN202421902124.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-06
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-08-06
AI Technical Summary
During the assembly of the side plate of the circuit breaker, the surface is uneven due to the components installed on the side plate body, and the installer will feel uncomfortable during a long period of installation, which will affect the installation efficiency.
It provides an innovative tool for assembling side panel components, including a base plate and a positioning mechanism. The positioning mechanism can support and position side panel bodies of different sizes and shapes, and achieve stable positioning of the side panel bodies by plugging into positioning support columns and magnetic adsorption materials.
Through this tooling, installers can more easily assemble the side panels, reduce discomfort caused by hand-held side panel bodies, improve installation efficiency, and adapt to side panel bodies of different shapes and sizes.
Smart Images

Figure CN222914680U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of circuit breaker side plate assembly, and in particular to an innovative tool for assembling side plate components that is simple and convenient. Background Art
[0002] Circuit breaker operating mechanisms are widely used in the industrial field. A circuit breaker refers to a switching device that can close, carry, and interrupt the current under normal circuit conditions and can also close, carry, and interrupt the current under abnormal circuit conditions within a specified time. To achieve this purpose, a circuit breaker must rely on a certain mechanical operating system, which is the operating mechanism of the circuit breaker.
[0003] Related technologies have disclosed a circuit breaker side plate mechanism. Refer to Figure 1 , which includes a side plate body 00. A plurality of mechanism positioning posts 01 are riveted on the side plate body 00. A plurality of transmission plate members 02 are installed on the mechanism positioning posts 01, and a tension spring 03 is arranged on the transmission plate members 02.
[0004] Since the volume of the circuit breaker itself is not large, the volume of the side plate mechanism inside the circuit breaker is also not large. Therefore, the side plate mechanism is usually installed by installers holding it by hand. As components such as mechanism positioning posts are installed on the side plate body, the surface of the side plate body becomes uneven. After a long time of installation, the installer's hand will be uncomfortable due to the components installed on the side plate body, which will affect the subsequent installation efficiency of the installer, and there are deficiencies. Utility Model Content
[0005] In order to improve the installation efficiency of installers, this application provides an innovative tool for assembling side plate components that is simple and convenient.
[0006] The innovative tool for assembling side plate components that is simple and convenient provided by this application adopts the following technical solutions:
[0007] An innovative tool for assembling side plate components that is simple and convenient, including a bottom plate. A positioning mechanism for supporting and positioning the side plate body is arranged on the bottom plate, and the positioning mechanism can position side plate bodies of different sizes and shapes.
[0008] By adopting the above technical solutions, the installer first places the side plate body on the bottom plate, and the positioning mechanism on the bottom plate supports and positions the side plate body of different shapes and sizes, so as to facilitate the installer to assemble mechanism positioning posts, transmission plate members, etc. on the side plate body, thereby reducing the discomfort caused by the installer holding the side plate body for installation, and thus improving the installation efficiency of the worker.
[0009] Optionally, the positioning mechanism includes positioning support columns inserted on the bottom plate. The positioning support columns are used to support the side plate body. A plurality of insertion slots for inserting the positioning support columns are formed on the bottom plate. A stop block is arranged on the positioning support column, and the stop block is used to abut against the edge of the side plate body.
[0010] By adopting the above technical solution, the installer first pre-opens a plurality of insertion slots on the bottom plate, and then inserts a plurality of positioning support columns according to the size and shape of the side plate body, and makes the stop blocks on the positioning support columns abut against the edges of the side plate body, so as to support and fix the side plate body, reducing the influence of the protrusions generated by the positioning columns of the side plate body installation mechanism on the installer, thereby improving the installation efficiency of the installer.
[0011] Optionally, the positioning mechanism includes an adsorption seat detachably arranged on the bottom plate. A positioning component for fixing it on the bottom plate is arranged on the adsorption seat. A fixing seat is arranged on the adsorption seat, and a locking component for supporting and fixing the side plate body is arranged on the fixing seat. A lifting component is arranged between the adsorption seat and the fixing seat, and the lifting component is used to adjust the distance between the adsorption seat and the fixing seat.
[0012] By adopting the above technical solution, according to the side plate bodies of different sizes and shapes, the installer first fixes the adsorption seat on the bottom plate through the positioning component, then makes the fixing seat approach and finally support the side plate body through the lifting component, and finally locks and fixes the side plate body through the locking component, so as to adapt to side plate bodies of different shapes and sizes, which is beneficial to improving its versatility.
[0013] Optionally, the bottom plate is made of a magnetically adsorbable material. The positioning component includes a magnet rotatably arranged on the adsorption seat. The magnetic pole end of the magnet can adsorb the bottom plate. A cavity for the magnet to rotate is formed on the adsorption seat. A conversion rod is fixedly arranged on the magnet, and the conversion rod rotates out of the adsorption seat.
[0014] By adopting the above technical solution, after the installer places the adsorption seat on the bottom plate, the installer rotates the conversion rod forward, and the conversion rod drives the magnet to rotate, so that the magnetic pole of the magnet faces the bottom plate. Since the bottom plate is adsorbed by the magnet, the pressure between the adsorption seat and the bottom plate is increased, and then the adsorption seat is fixed on the bottom plate; when the adsorption seat needs to be moved, the installer rotates the conversion rod backward, and the conversion rod drives the magnet to rotate and reset, so that the magnetic pole end of the magnet points parallel to the bottom plate, reducing the pressure between the adsorption seat and the bottom plate, so as to facilitate the transfer of the adsorption seat.
[0015] Optionally, a plurality of magnets are arranged on the adsorption seat, and the magnets correspond to the conversion rods one by one. A knob is arranged on the conversion rod outside the adsorption seat.
[0016] By adopting the above technical solution, when the pressure between the adsorption seat and the bottom plate is insufficient, the installer can rotate the remaining conversion rods so that the magnetic poles of the magnets on the remaining conversion rods point to the bottom plate, thereby increasing the pressure between the adsorption seat and the bottom plate, which is beneficial to the fixing effect of the adsorption seat on the bottom plate.
[0017] Optionally, the locking component includes a locking column rotatably arranged on the fixed seat. A locking notch for supporting and abutting against the edge of the side plate body is formed on the locking column. A rotating groove for the locking column to rotate is formed on the fixed seat, and a locking member for preventing the locking column from rotating is arranged on the fixed seat.
[0018] By adopting the above technical solution, when the rotating groove on the locking column abuts against the edge of the side plate body, the locking column will rotate at a certain angle on the rotating groove according to the slight differences of the edges of the side plate body, so as to adapt to the edges of different side plate bodies. Then, the locking member locks the locking column to make it adapt to this type of side plate body, which is beneficial to reducing the possibility of the side plate body moving.
[0019] Optionally, the locking member includes a positioning rod threadedly connected to the fixed seat. One end of the positioning rod is used to abut against the locking column, and the other end extends out of the fixed seat in a rotating manner. A fastening column is coaxially arranged on the positioning rod located outside the fixed seat.
[0020] By adopting the above technical solution, when the rotating groove on the locking column abuts against the edge of the side plate body, the installer rotates the fastening column. The fastening column drives the positioning rod to rotate and finally abuts against the locking column. Due to the frictional force between the positioning rod and the locking column, the possibility of the locking column rotating accidentally is reduced.
[0021] Optionally, the lifting component includes an outer cylinder arranged on the adsorption seat and an inner cylinder arranged on the fixed seat. The outer cylinder is slidably sleeved on the inner cylinder. A driving frame is arranged inside the inner cylinder on the adsorption seat. A worm gear and a worm meshing with the worm gear are rotatably arranged on the driving frame. One end of the worm extends out of the outer cylinder in a rotating manner. An avoidance groove for avoiding the worm is formed on the inner cylinder. A screw rod is coaxially threadedly connected to the worm gear. One end of the screw rod is arranged on the fixed seat. A limiting groove is formed on the screw rod along its axial direction. A limiting block is slidably arranged on the limiting groove of the screw rod along the axial direction of the screw rod. The limiting block is fixedly arranged on the driving frame. An anti-rotation member for preventing the worm from rotating freely and an unlocking member for releasing the locking effect of the worm are arranged on the outer cylinder.
[0022] By adopting the above technical solution, the installer rotates the worm in the forward direction, the worm drives the worm wheel to rotate, the worm wheel makes the screw have a tendency to rotate, but due to the cooperation relationship between the limit block and the limit groove, the screw moves along its axial direction, the screw drives the fixed seat to move along the direction away from the adsorption seat, the fixed seat drives the inner cylinder to move, and relative sliding occurs between the inner cylinder and the outer cylinder, so as to adjust the distance between the fixed seat and the adsorption seat, so that the locking column on the fixed seat abuts against and supports the side plate body.
[0023] Optionally, the anti-rotation member includes a plurality of anti-rotation teeth arranged on the outer cylinder, the plurality of anti-rotation teeth are circumferentially arranged along the axis of the worm, an installation rod is arranged on the worm, a pawl is rotatably arranged on the installation rod, the pawl is used for abutting against the anti-rotation teeth, and a torsion spring is arranged between the pawl and the installation rod.
[0024] By adopting the above technical solution, when the installer rotates the worm in the forward direction, the worm drives the pawl to rotate through the installation rod. During the process of the pawl rotating with the worm, the torsion spring continuously deforms, and the pawl continuously knocks on the anti-rotation teeth. When the installer stops rotating the worm, the pawl abuts tightly against the anti-rotation teeth under the action of the torsion spring, so as to prevent the reverse rotation of the worm, which is beneficial to reducing the possibility of the fixed seat gradually falling under gravity and improving the support and fixation effect of the side plate body.
[0025] Optionally, the unlocking member includes an unlocking column arranged on the worm, the unlocking column is located on the side of the installation rod facing away from the outer cylinder, an unlocking rod is rotatably arranged on the unlocking column, a reversing wheel is arranged on the worm between the installation rod and the unlocking column, a pull rope is arranged between the pawl and the unlocking rod, and the pull rope is wound around the reversing wheel.
[0026] By adopting the above technical solution, when the installer needs to rotate the worm in the reverse direction, the installer presses the end of the unlocking rod relative to its rotation center facing away from the pull rope, the unlocking rod pulls the pull rope, the pull rope drives the pawl to rotate through the reversing wheel, the torsion spring deforms, and at this time the installer rotates the worm in the reverse direction, the pawl disengages from the anti-rotation teeth, and as the installer continuously rotates the worm in the reverse direction, the fixed seat gradually approaches the adsorption seat, so as to realize the unlocking effect on the worm.
[0027] In summary, the present application includes at least one of the following beneficial technical effects:
[0028] 1. The installer first places the side plate body on the bottom plate, and the positioning mechanism on the bottom plate supports and positions the side plate bodies with different shapes and sizes, so as to facilitate the installer to position the positioning column and the transmission plate member on the side plate body assembly mechanism, etc., thereby reducing the discomfort caused by the installer holding the side plate body for installation, and improving the installation efficiency of the worker.
[0029] 2. After the installer places the adsorption seat on the bottom plate, the installer rotates the conversion rod in the forward direction. The conversion rod drives the magnet to rotate, making the magnetic pole of the magnet face the bottom plate. Since the bottom plate is adsorbed by the magnet, the pressure between the adsorption seat and the bottom plate is increased, and then the adsorption seat is fixed on the bottom plate. When it is necessary to move the adsorption seat, the installer rotates the conversion rod in the reverse direction. The conversion rod drives the magnet to rotate back to its original position, making the magnetic extreme of the magnet point parallel to the bottom plate, reducing the pressure between the adsorption seat and the bottom plate, so as to facilitate the transfer of the adsorption seat.
[0030] 3. The installer rotates the worm in the forward direction. The worm drives the worm wheel to rotate. The worm wheel makes the screw have a tendency to rotate. However, due to the cooperation relationship between the limit block and the limit groove, the screw moves along its axis direction. The screw drives the fixed seat to move away from the adsorption seat. The fixed seat drives the inner cylinder to move. Relative sliding occurs between the inner cylinder and the outer cylinder, so as to adjust the distance between the fixed seat and the adsorption seat, and then make the locking column on the fixed seat abut against and support the side plate body.
[0031] 4. When the installer rotates the worm in the forward direction, the worm drives the pawl to rotate through the placement rod. During the process of the pawl rotating with the worm, the torsion spring is constantly deformed, and the pawl continuously knocks on the anti-rotation teeth. When the installer stops rotating the worm, the pawl abuts tightly against the anti-rotation teeth under the action of the torsion spring, so as to prevent the reverse rotation of the worm, which is beneficial to reducing the possibility of the fixed seat gradually falling under gravity and is beneficial to improving the support and fixation effect of the side plate body. Brief Description of the Drawings
[0032] Figure 1 is a schematic structural diagram of the background art.
[0033] Figure 2 is a schematic structural diagram of the positional relationship among the bottom plate, the stop block and the insertion slot in Embodiment 1 of the present application.
[0034] Figure 3 is a schematic structural diagram of the positional relationship among the adsorption seat, the outer cylinder and the fixed seat in Embodiment 2 of the present application.
[0035] Figure 4 is a schematic structural diagram of the positional relationship among the adsorption seat, the magnet and the conversion rod in Embodiment 2 of the present application.
[0036] Figure 5 is a schematic structural diagram of the positional relationship among the drive frame, the screw and the limit block in Embodiment 2 of the present application.
[0037] Figure 6 is a schematic structural diagram of the positional relationship among the pull rope, the unlocking rod and the reversing wheel in Embodiment 2 of the present application.
[0038] Description of reference numerals: 00, side plate body; 01, mechanism positioning column; 02, transmission plate member; 03, tension spring; 1, bottom plate; 2, positioning mechanism; 21, positioning support column; 22, insertion slot; 23, stop block; 24, adsorption seat; 25, positioning component; 251, magnet; 252, cavity; 253, conversion rod; 26, fixed seat; 27, locking component; 271, locking column; 272, locking notch; 273, rotation slot; 274, locking member; 2741, positioning rod; 2742, fastening column; 28, lifting component; 281, outer cylinder; 282, inner cylinder; 283, drive frame; 284, worm gear; 285, worm; 286, avoidance slot; 287, screw rod; 288, limiting slot; 289, limiting block; 3, knob; 4, anti-rotation member; 41, anti-rotation teeth; 42, placement rod; 43, pawl; 44, torsion spring; 5, unlocking member; 51, unlocking column; 52, unlocking rod; 53, reversing wheel; 54, pull rope; 6, partition board; 7, placement frame; 8, anti-disengagement ring strip; 9, anti-disengagement slot; 10, unlocking slot. Detailed implementation manners
[0039] The following further elaborates on this application Figure 2-6 with reference to the attached drawings.
[0040] The embodiment of this application discloses an innovative tool for simply and conveniently assembling a side plate assembly.
[0041] Embodiment 1
[0042] Referring to Figure 2 , an innovative tool for simply and conveniently assembling a side plate assembly includes a bottom plate 1, and a positioning mechanism 2 for supporting and positioning the side plate body 00 is arranged on the bottom plate 1. The positioning mechanism 2 can position side plate bodies 00 with different sizes and shapes.
[0043] Referring to Figure 2 , the positioning mechanism 2 includes positioning support columns 21 inserted on the bottom plate 1. The positioning support columns 21 are used to support the side plate body 00. A plurality of insertion slots 22 for inserting the positioning support columns 21 are provided on the bottom plate 1. A stop block 23 is integrally formed on the positioning support column 21. The stop block 23 is used to abut against the edge of the side plate body 00. The stop block 23 and the positioning support column 21 can be made by wire cutting.
[0044] The implementation principle of Embodiment 1 is as follows: The installer first opens a plurality of insertion slots 22 on the bottom plate 1 according to the size and shape of the side plate body 00, and then inserts a plurality of positioning support columns 21 according to the specific size of the side plate body 00, and makes the stop block 23 on the positioning support column 21 abut against the edge of the side plate body 00, so as to realize the support and fixing of the side plate body 00, thereby facilitating the installer to install the mechanism positioning column 01 and the transmission plate member 02, and further improving the assembly efficiency of the installer.
[0045] Example 2
[0046] Reference Figure 3 and Figure 4 In this example, the difference from Example 1 is that the positioning mechanism 2 includes an adsorption seat 24 detachably arranged on the bottom plate 1. A positioning component 25 for fixing it on the bottom plate 1 is arranged on the adsorption seat 24. A fixing seat 26 is arranged on the adsorption seat 24. A locking component 27 for supporting and fixing the side plate body 00 is arranged on the fixing seat 26. A lifting component 28 is arranged between the adsorption seat 24 and the fixing seat 26. The lifting component 28 is used to adjust the distance between the adsorption seat 24 and the fixing seat 26.
[0047] Refer to Figure 3 and Figure 4 The bottom plate 1 is made of a magnetically adsorbable material and can be made of common steel. The positioning component 25 includes three magnets 251 rotatably arranged on the adsorption seat 24. The magnetic poles of the magnets 251 can adsorb the bottom plate 1. A cavity 252 for the three magnets 251 to rotate is formed on the adsorption seat 24. The cavity 252 communicates with the bottom of the adsorption seat 24. A partition plate 6 is bolted to the open end of the bottom of the adsorption seat 24.
[0048] Refer to Figure 3 and Figure 4 The partition plate 6 is made of a material with good magnetic conductivity. An installation frame 7 is fixedly sleeved on each magnet 251. A conversion rod 253 is welded on each installation frame 7. The conversion rods 253 are parallel to each other. The three magnets 251 are arranged staggeredly in the cavity 252. The magnets 251 correspond to the conversion rods 253 one by one. The conversion rods 253 rotate and extend out of the adsorption seat 24. A knob 3 is bolted to the conversion rod 253 located outside the adsorption seat 24.
[0049] Refer to Figure 3 and Figure 4 The locking component 27 includes a locking column 271 rotatably arranged on the fixing seat 26. A locking notch 272 for supporting and abutting against the edge of the side plate body 00 is formed on the locking column 271. The cross-section of the locking notch 272 is right-angled. A rotating groove 273 for the locking column 271 to rotate is formed on the fixing seat 26. The fixing seat 26 is formed by bolting two parts symmetric about the locking column 271. An anti-detachment ring strip 8 is coaxially welded on the locking column 271. An anti-detachment groove 9 for the anti-detachment ring strip 8 to slide is formed on the fixing seat 26.
[0050] Refer to Figure 3 and Figure 5, a locking member 274 for preventing the rotation of the locking post 271 is arranged on the fixed seat 26. The locking member 274 includes a positioning rod 2741 threadedly connected to the fixed seat 26. One end of the positioning rod 2741 is used to abut against the locking post 271, and the other end extends rotatably outside the fixed seat 26. A fastening post 2742 is coaxially welded on the positioning rod 2741 located outside the fixed seat 26.
[0051] Refer to Figure 3 , Figure 4 and Figure 5 , the lifting assembly 28 includes an outer cylinder 281 welded to the adsorption seat 24 and being vertical, and an inner cylinder 282 welded to the fixed seat 26 and being vertical. The outer cylinder 281 is slidably sleeved on the inner cylinder 282. A driving frame 283 is welded on the adsorption seat 24 and inside the inner cylinder 282. A worm gear 284 and a worm 285 meshing with the worm gear 284 are rotatably arranged on the driving frame 283. One end of the worm 285 extends rotatably outside the outer cylinder 281.
[0052] Refer to Figure 3 , Figure 4 and Figure 5 , an avoidance groove 286 for avoiding the worm 285 is formed on the inner cylinder 282. A screw rod 287 is coaxially threadedly connected to the worm gear 284. One end of the screw rod 287 is fixedly connected to the fixed seat 26. A limiting groove 288 is formed on the screw rod 287 along its axial direction. A limiting block 289 is slidably arranged on the limiting groove 288 of the screw rod 287 along the axial direction of the screw rod 287. The limiting block 289 is welded to the driving frame 283. An anti-rotation member 4 for preventing the free rotation of the worm 285 and an unlocking member 5 for releasing the locking effect of the worm 285 are arranged on the outer cylinder 281.
[0053] Refer to Figure 3 , Figure 4 and Figure 6 , the anti-rotation member 4 includes a plurality of anti-rotation teeth 41 welded to the outer cylinder 281. The plurality of anti-rotation teeth 41 are uniformly arranged circumferentially along the axis of the worm 285. A placement rod 42 is welded to the worm 285. A pawl 43 is rotatably arranged on the placement rod 42. The pawl 43 is used to abut against the anti-rotation teeth 41. A torsion spring 44 is arranged between the pawl 43 and the placement rod 42.
[0054] Refer to Figure 3 , Figure 4 and Figure 6 , the unlocking member 5 includes an unlocking post 51 coaxially welded to the worm 285. The unlocking post 51 is located on the side of the placement rod 42 facing away from the outer cylinder 281. An unlocking rod 52 is rotatably arranged on the unlocking post 51. An unlocking groove 10 for the unlocking rod 52 to rotate is formed on the unlocking post 51. A reversing wheel 53 is rotatably arranged on the worm 285 between the placement rod 42 and the unlocking post 51. A pulling rope 54 is arranged between the pawl 43 and the unlocking rod 52. The pulling rope 54 is wound around the reversing wheel 53.
[0055] The implementation principle of Example 2 is as follows: the installer first places multiple positioning mechanisms 2 on the base plate 1 according to the size and shape of the side panel body 00, and then turns the knob 3 on one of the positioning mechanisms 2 to cause the conversion rod 253 thereon to drive the magnet 251 to rotate, with the magnetic pole of the magnet 251 facing the base plate 1. Since the base plate 1 is adsorbed by the magnet 251, the friction between the adsorption seat 24 and the base plate 1 is increased, thereby fixing the adsorption seat 24 on the base plate 1.
[0056] The installer then places the side panel body 00 on the fixed seat 26 of the positioning mechanism 2, and makes the edge of the side panel body 00 abut against the locking groove 272 of the locking column 271 of the positioning mechanism 2, and adjusts the position and height of the remaining positioning mechanisms 2 based on this, by rotating the worm 285 in the forward direction, the worm 285 drives the worm wheel 284 to rotate, and the worm wheel 284 causes the screw 287 to have a tendency to rotate.
[0057] However, due to the matching relationship between the limit block 289 and the limiting groove 288, the screw 287 moves along its axial direction, and the screw 287 drives the fixed seat 26 to move in the direction away from the adsorption seat 24. As the fixed seat 26 gradually approaches the side panel body 00, the edge of the locking groove 272 on the locking column 271 first abuts against the side panel body 00 and rotates until the locking groove 272 abuts against the edge of the side panel body 00.
[0058] Then, tighten the fastening column 2742, which drives the positioning rod 2741 to rotate and finally press against the locking column 271. The friction between the positioning rod 2741 and the locking column 271 prevents the locking column 271 from continuing to rotate. Finally, turn the knob 3 to fix the remaining positioning mechanism 2 on the base plate 1.
[0059] When the installer needs to reduce the distance between the fixed seat 26 and the adsorption seat 24, the installer presses the end of the unlocking rod 52 facing away from the pull rope 54 relative to its rotation center. The unlocking rod 52 pulls the pull rope 54, and the pull rope 54 drives the pawl 43 to rotate through the reversing wheel 53, and the torsion spring 44 is deformed. At this time, the installer rotates the worm 285 in the reverse direction, and the pawl 43 disengages from the anti-rotation tooth 41. As the installer continues to rotate the worm 285 in the reverse direction, the fixed seat 26 gradually approaches the adsorption seat 24.
[0060] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.
Claims
1. An innovative tool for assembling a side panel assembly in a simple and convenient manner, comprising a bottom panel (1), characterized in that: The bottom plate (1) is provided with a positioning mechanism (2) for supporting and positioning the side plate body (00), and the positioning mechanism (2) is capable of positioning side plate bodies (00) of different sizes and shapes. The positioning mechanism (2) comprises an adsorption seat (24) detachably arranged on the bottom plate (1), and the adsorption seat (24) is provided with a positioning component (25) for fixing it to the bottom plate (1). The adsorption seat (24) is provided with a fixing seat (26), and the fixing seat (26) is provided with a locking component (27) for supporting and fixing the side plate body (00). A lifting component (28) is provided between the adsorption seat (24) and the fixing seat (26), and the lifting component (28) is used to adjust the distance between the adsorption seat (24) and the fixing seat (26).
2. An innovative tool for assembling side panel components in a simple and convenient manner according to claim 1, characterized in that: The bottom plate (1) is made of a magnetically adsorbable material. The positioning component (25) comprises a magnet (251) rotatably arranged on an adsorption seat (24). The magnetic pole of the magnet (251) can adsorb the bottom plate (1). The adsorption seat (24) is provided with a cavity (252) for the magnet (251) to rotate. A conversion rod (253) is fixedly arranged on the magnet (251). The conversion rod (253) is rotatably extended out of the adsorption seat (24).
3. An innovative tool for assembling side panel components in a simple and convenient manner according to claim 2, characterized in that: A plurality of magnets (251) are arranged on the adsorption seat (24), and the magnets (251) correspond to the conversion rods (253) one by one. A knob (3) is arranged on the conversion rod (253) outside the adsorption seat (24).
4. According to claim 1, an innovative tool for assembling side panel components in a simple and convenient manner, characterized in that: The locking assembly (27) comprises a locking column (271) rotatably arranged on a fixing seat (26); a locking notch (272) for supporting and abutting against an edge of a side plate body (00) is provided on the locking column (271); a rotation groove (273) for the locking column (271) to rotate is provided on the fixing seat (26); and a locking member (274) for preventing the locking column (271) from rotating is provided on the fixing seat (26).
5. An innovative tool for assembling side panel components in a simple and convenient manner according to claim 4, characterized in that: The locking member (274) comprises a positioning rod (2741) threadedly connected to the fixing seat (26); one end of the positioning rod (2741) is used to press against the locking column (271); the other end of the positioning rod (2741) is rotatably extended to the outside of the fixing seat (26); and a fastening column (2742) is coaxially arranged on the positioning rod (2741) located outside the fixing seat (26).
6. The innovative tooling for assembling the side panel assembly in a simple and convenient manner according to claim 1 is characterized by: The lifting assembly (28) comprises an outer cylinder (281) arranged on the adsorption seat (24) and an inner cylinder (282) arranged on the fixed seat (26); the outer cylinder (281) is slidably sleeved on the inner cylinder (282); a driving frame (283) is arranged on the adsorption seat (24) and inside the inner cylinder (282); a worm wheel (284) and a worm (285) meshing with the worm wheel (284) are rotatably arranged on the driving frame (283); one end of the worm (285) is rotatably extended to the outside of the outer cylinder (281); and an avoidance groove (284) for avoiding the worm wheel (285) is provided on the inner cylinder (282). 86), the worm wheel (284) is coaxially threadedly connected with a screw rod (287), one end of the screw rod (287) is arranged on a fixed seat (26), a limiting groove (288) is opened on the screw rod (287) along its axial direction, a limiting block (289) is provided on the limiting groove (288) of the screw rod (287) and along the axial direction of the screw rod (287), the limiting block (289) is fixedly arranged on the driving frame (283), and an anti-rotation part (4) for preventing the worm rod (285) from rotating freely and an unlocking part (5) for releasing the locking effect of the worm rod (285) are arranged on the outer cylinder (281).
7. An innovative tool for assembling side panel components in a simple and convenient manner according to claim 6, characterized in that: The anti-rotation component (4) includes a plurality of anti-rotation teeth (41) arranged on the outer cylinder (281), the plurality of anti-rotation teeth (41) being arranged circumferentially along the axis of the worm (285), the worm (285) being provided with a placement rod (42), the placement rod (42) being rotatably provided with a pawl (43), the pawl (43) being used to abut against the anti-rotation teeth (41), and a torsion spring (44) being provided between the pawl (43) and the placement rod (42).
8. An innovative tool for assembling side panel components in a simple and convenient manner according to claim 7, characterized in that: The unlocking member (5) comprises an unlocking column (51) arranged on the worm (285), the unlocking column (51) is located on the side of the placement rod (42) facing away from the outer cylinder (281), the unlocking rod (52) is rotatably arranged on the unlocking column (51), a reversing wheel (53) is arranged on the worm (285) between the placement rod (42) and the unlocking column (51), a pull rope (54) is arranged between the ratchet pawl (43) and the unlocking rod (52), and the pull rope (54) is wound around the reversing wheel (53).