An assembly press

CN224757798UActive Publication Date: 2026-09-15ZHONGSHUI ELECTRIC POWER DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202522559581.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-12-02
Publication Date
2026-09-15
Estimated Expiration
2035-12-02

AI Technical Summary

Benefits of technology

[0015]The beneficial effects of this utility model embodiment are as follows: It provides an assembly clamping device, including an adjusting block, a screw, and a rangefinder. The adjusting block is used to assemble onto a reference plate. The adjusting block has a threaded hole, and the screw is installed in conjunction with the threaded hole, with one end of the screw abutting against the plate to be adjusted. The rangefinder is located on the adjusting block, and the measuring direction of the rangefinder is consistent with the axial direction of the threaded hole. The measuring end of the rangefinder faces the plate to be adjusted. The rangefinder has a display module, which displays the distance between the rangefinder and the plate to be adjusted. By assembling the clamping device, the adjusting block is assembled onto the reference plate, and the screw abuts against the plate to be adjusted. By rotating the screw, the plate to be adjusted can be moved to adjust the misalignment between the plate to be adjusted and the reference plate. This eliminates the need for manual hammering, reduces the required operating space, and improves the convenience of adjusting misalignment. Furthermore, after over-adjustment, only the screw needs to be rotated in the opposite direction to retract, thus correcting the over-adjustment without the need for additional tools, making it convenient and quick. Equally important, because the rangefinder is equipped with a pressure mark, the distance between the rangefinder and the plate to be adjusted can be monitored when the screw is rotated, so as to realize the quantitative control of the adjustment of the plate to be adjusted, improve the adjustment accuracy, and reduce the risk of over-adjustment or under-adjustment.

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Abstract

The utility model relates to an assembly pressure code, and the assembly pressure code includes adjusting block, screw rod and range finder, the adjusting block is used for assembling in the reference board, the adjusting block sets up the threaded hole, the screw rod cooperates and install with the threaded hole, one end of screw rod is used for abutting on the plate to be adjusted, the range finder is located the adjusting block, the ranging direction of range finder is identical with the axial direction of threaded hole, and the ranging end of range finder is used for towards the plate to be adjusted, range finder has display module, and the display module is used for showing the distance value between range finder and the plate to be adjusted, through the assembly pressure code, the adjusting block is assembled in the reference board, makes screw rod abut the plate to be adjusted, through rotating screw rod, can push the plate to be adjusted and move to adjust the edge of the plate to be adjusted and the reference board, need not manual swing the hammer.
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Description

Technical Field

[0001] This utility model relates to the field of mechanical assembly technology, and in particular to an assembly pressure code. Background Technology

[0002] In the manufacturing of pressure steel pipes and pressure vessels, misalignment can occur between two assembly plates (one can be called the reference plate, and the other the plate to be adjusted, which protrudes from the reference plate). The plate to be adjusted must be flush with the reference plate to facilitate subsequent welding or connection operations. Otherwise, stress concentration can easily occur at the joint between the two assembly plates, affecting the overall strength and service life of the structure, and in severe cases, potentially leading to cracking or failure at the connection point.

[0003] Existing technologies typically use manual tapping to correct misaligned edges, but this method has many drawbacks: Firstly, it is inconvenient to operate. Manual hammering requires manual swinging of the hammer, which is inconvenient when the operating space is limited. Secondly, the adjustment precision is difficult to control, and manual tapping is difficult to quantify and control, which can easily lead to over-adjustment or under-adjustment. Utility Model Content

[0004] In view of the above problems, this utility model provides an assembly pressing code, which overcomes or at least partially solves the above problems.

[0005] According to one aspect of the present invention, an assembly clamp is provided, comprising an adjusting block, a screw, and a rangefinder; the adjusting block is used to assemble onto a reference plate; the adjusting block is provided with a threaded hole, the screw is fitted into the threaded hole, and one end of the screw is used to abut against a plate to be adjusted; the rangefinder is disposed on the adjusting block, the measuring direction of the rangefinder is consistent with the axial direction of the threaded hole, and the measuring end of the rangefinder is used to face the plate to be adjusted; the rangefinder has a display module, the display module being used to display the distance value between the rangefinder and the plate to be adjusted.

[0006] In one alternative embodiment, the adjusting block includes a first assembly portion and a second assembly portion connected together. The first assembly portion is provided with the threaded hole, and the rangefinder is disposed on the first assembly portion along the axial direction of the threaded hole. The first end of the second assembly portion is used to assemble onto the reference plate.

[0007] In one alternative approach, a welded portion is formed at the first end of the second assembly portion along the axial direction of the threaded hole, the welded portion being used for assembly onto the reference plate.

[0008] In one alternative, at least a portion of the first end of the second assembly protrudes from the first assembly along the axial direction of the threaded hole, thereby creating a gap between the first assembly and the plate to be adjusted.

[0009] In one alternative embodiment, along the axial direction of the threaded hole, the second mounting portion has a second end opposite to the first end, and the mounting clamp further includes a first magnet, which is mounted on the second end and extends along a first direction, the first direction being the direction from the first mounting portion to the second mounting portion, and the screw is capable of being attracted to the first magnet.

[0010] In one alternative embodiment, when the screw is attracted to the first magnet, the screw protrudes from the rangefinder along the axial direction of the threaded hole.

[0011] In one alternative embodiment, the other end of the screw is provided with a through hole, and the assembly clamp further includes an operating rod that can be inserted into the through hole.

[0012] In one alternative embodiment, the assembly clamp further includes a second magnet, which is disposed on the side wall of the second assembly part along a first direction, the first direction being the direction from the first assembly part to the second assembly part, and the operating rod is capable of being attracted to the second magnet.

[0013] In one alternative embodiment, when the operating rod is attracted to the second magnet, the operating rod protrudes from the ranging end of the rangefinder along the axial direction of the threaded hole.

[0014] In one alternative embodiment, one end of the screw is provided with a universal ball head cap, which is used to abut against the plate to be adjusted.

[0015] The beneficial effects of this utility model embodiment are as follows: It provides an assembly clamping device, including an adjusting block, a screw, and a rangefinder. The adjusting block is used to assemble onto a reference plate. The adjusting block has a threaded hole, and the screw is installed in conjunction with the threaded hole, with one end of the screw abutting against the plate to be adjusted. The rangefinder is located on the adjusting block, and the measuring direction of the rangefinder is consistent with the axial direction of the threaded hole. The measuring end of the rangefinder faces the plate to be adjusted. The rangefinder has a display module, which displays the distance between the rangefinder and the plate to be adjusted. By assembling the clamping device, the adjusting block is assembled onto the reference plate, and the screw abuts against the plate to be adjusted. By rotating the screw, the plate to be adjusted can be moved to adjust the misalignment between the plate to be adjusted and the reference plate. This eliminates the need for manual hammering, reduces the required operating space, and improves the convenience of adjusting misalignment. Furthermore, after over-adjustment, only the screw needs to be rotated in the opposite direction to retract, thus correcting the over-adjustment without the need for additional tools, making it convenient and quick. Equally important, because the rangefinder is equipped with a pressure mark, the distance between the rangefinder and the plate to be adjusted can be monitored when the screw is rotated, so as to realize the quantitative control of the adjustment of the plate to be adjusted, improve the adjustment accuracy, and reduce the risk of over-adjustment or under-adjustment. Attached Figure Description

[0016] One or more embodiments are illustrated by way of example with reference numerals in the accompanying drawings. These illustrations do not constitute a limitation on the embodiments. Elements with the same reference numerals in the drawings are denoted as similar elements. Unless otherwise stated, the figures in the drawings are not to be limited by scale.

[0017] Figure 1 This is a schematic diagram of one implementation of the assembly pressing code provided in this utility model embodiment.

[0018] Figure 2 This is a schematic diagram of an implementation method of the assembly pressing code provided in this embodiment of the utility model, applied to a reference plate and a plate to be adjusted.

[0019] Figure 3 This is a schematic diagram of another implementation of the assembly pressing code provided in this utility model embodiment.

[0020] Figure 4 This is a schematic diagram of another implementation of the assembly pressing code provided in this utility model embodiment, applied to a reference plate and a plate to be adjusted.

[0021] Figure 5 This is a schematic diagram of the assembly clamp in the storage state provided in this embodiment of the utility model.

[0022] Figure 6 This is a front view of the assembly clamp provided in the embodiment of this utility model in the storage state.

[0023] The labels in the attached diagram are as follows: 100. Assembly and pressing; 200. Reference plate; 300. Plate to be adjusted; D1, Axial direction of the threaded hole; D2, First direction; 1. Adjusting block; 2. Screw; 3. Rangefinder; 4. First magnet; 5. Second magnet; 6. Operating lever; 11. First assembly section; 12. Second assembly section; 11s. Threaded hole; 11a. Clearance; 121. First end of the second assembly part; 122. Second end of the second assembly part; 123. First mounting slot; 124. Second mounting slot; 2s, through hole; 21, universal ball head cap; 31. Distance measuring end; 32. Display module; 41. Arc-shaped through groove; 51. Arc-shaped groove. Detailed Implementation

[0024] To facilitate understanding of this utility model, a more detailed description is provided below with reference to the accompanying drawings and specific embodiments. It should be noted that when an element is described as fixed to another element, it can be directly on the other element, or one or more intermediate elements may exist between them. When an element is described as connected to another element, it can be directly connected to the other element, or one or more intermediate elements may exist between them. The terms vertical, horizontal, left, right, inner, outer, and similar expressions used in this specification are for illustrative purposes only.

[0025] Unless otherwise defined, all technical and scientific terms used in this specification have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to limit the scope of the invention. The terminology used in this specification includes any and all combinations of one or more of the associated listed items.

[0026] Please see Figure 1 and Figure 2This utility model embodiment provides an assembly clamp 100, including an adjusting block 1, a screw 2, and a rangefinder 3; the adjusting block 1 is used to assemble onto a reference plate 200; the adjusting block 1 is provided with a threaded hole 11s, the screw 2 is fitted into the threaded hole 11s, and one end of the screw 2 is used to abut against the plate 300 to be adjusted; the rangefinder 3 is disposed on the adjusting block 1, and the measuring direction of the rangefinder 3 is consistent with the axial direction D1 of the threaded hole 11s; after the screw 2 is fitted into the threaded hole 11s, the screw... If the axial direction of screw 2 coincides with the axial direction D1 of the threaded hole 11s, then the measuring direction of the rangefinder 3 is consistent with the axial direction of screw 2; the measuring end 31 of the rangefinder 3 is used to face the plate to be adjusted 300, in other words, along the axial direction D1 of the threaded hole 11s, the measuring end 31 of the rangefinder 3 faces the end of the adjusting block 1 that is used to be assembled on the reference plate 200; the rangefinder 3 has a display module 32, which is used to display the distance value between the rangefinder 3 and the plate to be adjusted 300.

[0027] When the adjusting block 1 with the mounting pressure 100 is mounted on the reference plate 200, and the screw 2 is installed with the threaded hole 11s, with one end of the screw 2 abutting against the plate to be adjusted 300, the rangefinder 3 can be zeroed. At this time, the display module 32 shows zero. Then, the screw 2 is rotated to advance along the threaded hole 11s. The screw 2 pushes the plate to be adjusted 300 to sink. The display module 32 of the rangefinder 3 displays the distance value between the rangefinder 3 and the plate to be adjusted 300 in real time, which makes it easy for the operator to read and judge the misalignment between the plate to be adjusted 300 and the reference plate 200, thereby accurately controlling the advance amount.

[0028] By using the mounting clamp 100, the adjusting block 1 is mounted on the reference plate 200, causing the screw 2 to abut against the adjusting plate 300. Rotating the screw 2 moves the adjusting plate 300 to adjust the misalignment between it and the reference plate 200. This eliminates the need for manual hammering, reduces the required operating space, and improves the convenience of adjusting misalignment. Simultaneously, it ensures the efficiency of adjusting the misalignment between the adjusting plate 300 and the reference plate 200.

[0029] In addition, after over-adjustment, simply rotating screw 2 in the opposite direction is sufficient to retract the screw and correct the over-adjustment; no additional tools are required, making it convenient and quick.

[0030] Equally important, since the mounting pressure plate 100 is equipped with a rangefinder 3, the distance between the rangefinder 3 and the plate to be adjusted 300 can be monitored when the screw 2 is rotated, so as to realize the quantification of the adjustment control of the plate to be adjusted 300, improve the adjustment accuracy, and reduce the risk of over-adjustment or under-adjustment.

[0031] The rangefinder 3 is used for distance measurement. The rangefinder 3 can be a laser rangefinder sensor or an ultrasonic rangefinder module. Its accuracy can reach 0.01mm, which is suitable for precise distance measurement in confined spaces, and its response frequency meets the requirements of real-time monitoring.

[0032] In some implementations, the thread of the threaded hole 11s is a trapezoidal thread, and the thread of the screw 2 that is installed with it is also a trapezoidal thread. This has high transmission efficiency and load-bearing capacity, effectively reduces rotational resistance, and ensures a smooth and stable adjustment process.

[0033] It is understandable that the thread of the threaded hole 11s is not limited to a trapezoidal thread, but can also be a triangular thread or a rectangular thread, which can be selected according to the actual load-bearing requirements and transmission accuracy requirements; the thread of the screw 2 matches the threaded hole 11s, and a thread with the corresponding tooth profile can be selected to ensure tight fit and stable transmission.

[0034] In some implementations, the display module 32 can be a digital display screen that can clearly display the distance value between the rangefinder 3 and the plate to be adjusted 300. Alternatively, the display module 32 can be implemented in other ways, such as a laser projector, which projects the distance value into the area visible to the operator to achieve real-time display of the distance value.

[0035] It is worth noting that in some embodiments, the adjusting block 1 includes a first mounting part 11 and a second mounting part 12 connected together. The first mounting part 11 is provided with the threaded hole 11s, and the rangefinder 3 is disposed on the first mounting part 11 along the axial direction D1 of the threaded hole 11s. The first end 121 of the second mounting part 12 is used for mounting to the reference plate 200. Through the specific structural design of this adjusting block 1, a mounting base for the threaded hole 11s and the rangefinder 3 is provided, while also providing a structure for mounting to the reference plate 200.

[0036] In some implementations, the first assembly part 11 is cylindrical and adapted to the opening of the threaded hole 11s.

[0037] It is worth noting that in some embodiments, along the axial direction D1 of the threaded hole 11s, the first end 121 of the second assembly part 12 forms a welded part, which is used to assemble onto the reference plate 200. When the assembly clamp 100 is used to adjust the misalignment between the plate to be adjusted 300 and the reference plate 200, the welded part can be fixed to the reference plate 200 by welding to ensure a stable connection between the assembly clamp 100 and the reference plate 200; after the adjustment is completed, the assembly clamp 100 can be recycled by knocking off the spot welds, thus achieving reuse.

[0038] It is worth noting that the method of assembling the adjustment block 1 onto the reference plate 200 is not limited to the welding method described above. It can also be achieved by using a magnetic suction device, suction cup, or the like provided at the first end 121 of the second assembly part 12.

[0039] It is worth noting that in some embodiments, at least a portion of the first end 121 of the second assembly portion 12 protrudes from the first assembly portion 11 along the axial direction D1 of the threaded hole 11s, thereby forming a gap 11a between the first assembly portion 11 and the plate to be adjusted 300. This gap 11a creates space to accommodate the misalignment between the reference plate 200 and the plate to be adjusted 300, reducing the risk of interference between the first assembly portion 11 and the reference plate 200, and enabling the adaptation to more pronounced misalignments.

[0040] In some embodiments, along the axial direction D1 of the threaded hole 11s, there is a preset distance d between the measuring end 31 of the rangefinder 3 and the first end 121 of the second assembly part 12. This reduces the risk of interference between the rangefinder 3 and the reference plate 200 and the plate to be adjusted 300 when the adjusting block 1 is assembled on the reference plate 200. It also protects the measuring end 31 of the rangefinder 3, reducing the risk of damage caused by the measuring end 31 contacting the plate to be adjusted 300, and ensuring measurement accuracy and service life.

[0041] The preset distance d can be designed reasonably according to the application scenario of the assembly clamp 100 to adapt to different misaligned edges. For example, the preset distance d is 10cm, 20cm, 30cm, 40cm, etc.

[0042] It is worth noting that in some embodiments, such as Figure 3 and Figure 4 As shown, along the axial direction D1 of the threaded hole 11s, the second assembly portion 12 has a second end 122 opposite to the first end 121. The assembly clamp 100 further includes a first magnet 4, which is assembled to the second end 122. The first magnet 4 extends along a first direction D2, which is the direction from the first assembly portion 11 to the second assembly portion 12. The screw 2 can be attracted to the first magnet 4. After adjusting the misalignment between the plate to be adjusted 300 and the reference plate 200, as... Figure 5 As shown, the screw 2 can be attracted to the first magnet 4 to achieve the positioning and storage of the screw 2, which is convenient for the assembly and storage of the clamp 100 and can reduce the risk of the screw 2 being lost.

[0043] In some implementations, along the first direction D2, there is a preset distance between the end of the first magnet 4 near the first assembly part 11 and the first assembly part 11. When the screw 2 is fitted into the threaded hole 11s, the attraction of the first magnet 4 to the screw 2 is reduced, and the risk of interference of the first magnet 4 to the rotation of the screw 2 is reduced.

[0044] It is understood that, in order for the screw 2 to be able to be attracted to the first magnet 4, the screw 2 must be made of a magnetically attracted metal material, such as iron; or, the surface of the screw 2 is coated with a magnetic coating to ensure stable attraction between the screw 2 and the first magnet 4.

[0045] It is understandable that the first direction D2 is perpendicular to the axial direction D1 of the threaded hole 11s.

[0046] In some implementations, the first magnet 4 is provided with an arc-shaped through groove 41, which extends along the first direction D2. The second end 122 of the second assembly part 12 is recessed to form a first mounting groove 123. The first magnet 4 is disposed in the first mounting groove 123. The bottom of the arc-shaped through groove 41 is flush with the first assembly part 11, thereby ensuring not only the stability of the first magnet 4 assembled in the second assembly part 12, but also the flatness of the overall structure after the screw 2 is attracted to the first magnet 4, which is convenient for storage and transportation.

[0047] It is understandable that the curvature of the arc-shaped through groove 41 is adapted to the curvature of the outer surface of the screw 2, so that the screw 2 is tightly fitted to the arc-shaped through groove 41 after being attracted to the first magnet 4.

[0048] It is worth noting that in some embodiments, please refer to [link / reference]. Figure 5 and combination Figure 6 When the screw 2 is attracted to the first magnet 4, along the axial direction D1 of the threaded hole 11s, the screw 2 protrudes from the rangefinder 3. When the mounting weight 100 is stored, along the axial direction D1 of the threaded hole 11s, the screw 2 protects the rangefinder 3 and reduces the risk of damage to the rangefinder 3.

[0049] It is worth noting that in some embodiments, please refer to [link / reference]. Figure 1 or Figure 3 The other end of the screw 2 is provided with a through hole 2s. The assembly clamp 100 also includes an operating rod 6, which can be inserted into the through hole 2s. By providing the operating rod 6, the screw 2 can be rotated by rotating the operating rod 6, thereby realizing the advancement or retraction of the screw 2 and improving the convenience of rotating the screw 2.

[0050] In some implementations, after the screw 2 is installed in conjunction with the threaded hole 11s, the axial direction of the through hole 2s is perpendicular to the axial direction D1 of the threaded hole 11s. The operating rod 6 can reciprocate along the axial direction of the through hole 2s, thereby enabling the operating rod 6 to be assembled into the through hole 2s and to be disassembled.

[0051] It is worth noting that in some embodiments, please refer to [link / reference]. Figure 3 and Figure 4 The assembly clamp 100 further includes a second magnet 5, which is disposed on the side wall of the second assembly part 12 along a first direction D2, where the first direction D2 is the direction from the first assembly part 11 to the second assembly part 12. The operating rod 6 can be attracted to the second magnet 5. After adjusting the misalignment between the plate to be adjusted 300 and the reference plate 200, as... Figure 5 As shown, the operating lever 6 can be attached to the second magnet 5 to achieve positioning and storage of the operating lever 6, which facilitates the overall storage of the assembly clamp 100 and reduces the risk of loss of the operating lever 6.

[0052] It is understandable that the second magnet 5 can also be provided with an arc-shaped groove 51, so that when the operating rod 6 is attracted to the second magnet 5, it fits into the arc-shaped groove 51, further improving the stability of the operating rod 6 during storage.

[0053] It is understood that the curvature of the arc groove 51 is adapted to the curvature of the outer surface of the operating rod 6, so that the operating rod 6 and the arc groove 51 fit tightly together.

[0054] It is understood that, in order for the operating rod 6 to be able to be attracted to the second magnet 5, the material of the operating rod 6 must be a magnetically attracted metal material, such as iron; or the surface of the operating rod 6 is coated with a magnetic coating to ensure stable attraction between the operating rod 6 and the second magnet 5.

[0055] In some implementations, the sidewall of the second assembly part 12 is recessed to form a second mounting groove 124 for assembling the second magnet 5, thereby improving the stability of the second magnet 5 assembled in the second assembly part 12.

[0056] In some embodiments, please refer to Figure 5 and combination Figure 6 When the operating rod 6 is attracted to the second magnet 5, it protrudes from the measuring end 31 of the rangefinder 3 along the axial direction D1 of the threaded hole 11s. When the mounting weight 100 is being housed, the operating rod 6 provides a certain degree of protection to the measuring end 31 of the rangefinder 3 along the axial direction D1 of the threaded hole 11s, further reducing the risk of damage to the rangefinder 3.

[0057] It is worth noting that in some embodiments, please refer to [link / reference]. Figure 1 or Figure 3 One end of the screw 2 is provided with a universal ball cap 21, which is used to abut against the plate 300 to be adjusted. By setting the universal ball cap 21, the universal ball cap 21 can adapt to the surface angle of the plate to be adjusted, automatically adjust the contact angle to maintain a tight fit, and ensure the effective transmission of the pushing force of the screw 2.

[0058] It should be noted that while the preferred embodiments of this utility model are provided in the specification and accompanying drawings, this utility model can be implemented in many different forms and is not limited to the embodiments described herein. These embodiments are not intended to impose additional limitations on the content of this utility model; their purpose is to provide a more thorough and comprehensive understanding of the disclosure of this utility model. Furthermore, the above-described technical features can be combined with each other to form various embodiments not listed above, all of which are considered to be within the scope of this utility model specification. Moreover, those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.

Claims

1. An assembly pressing code, characterized in that, include: Adjusting block, screw, and rangefinder; The adjustment block is used for mounting on the reference plate; The adjusting block is provided with a threaded hole, and the screw is installed in conjunction with the threaded hole. One end of the screw is used to abut against the plate to be adjusted. The rangefinder is mounted on the adjustment block, and the measuring direction of the rangefinder is consistent with the axial direction of the threaded hole. The measuring end of the rangefinder is used to face the plate to be adjusted. The rangefinder has a display module, which is used to display the distance value between the rangefinder and the plate to be adjusted.

2. The assembly pressing code according to claim 1, characterized in that, The adjusting block includes a first assembly part and a second assembly part connected together. The first assembly part is provided with the threaded hole. The rangefinder is disposed in the first assembly part along the axial direction of the threaded hole. The first end of the second assembly part is used to assemble onto the reference plate.

3. The assembly pressing code according to claim 2, characterized in that, Along the axial direction of the threaded hole, a welded portion is formed at the first end of the second assembly portion, which is used for assembly onto the reference plate.

4. The assembly pressing code according to claim 2, characterized in that, Along the axial direction of the threaded hole, at least a portion of the first end of the second assembly portion protrudes from the first assembly portion to form a gap between the first assembly portion and the plate to be adjusted.

5. The assembly pressing code according to claim 2, characterized in that, Along the axial direction of the threaded hole, the second assembly portion has a second end opposite to the first end. The assembly clamp also includes a first magnet, which is assembled at the second end. The first magnet extends along a first direction, which is the direction from the first assembly portion to the second assembly portion. The screw can be attracted to the first magnet.

6. The assembly pressing code according to claim 5, characterized in that, When the screw is attracted to the first magnet, the screw protrudes from the rangefinder along the axial direction of the threaded hole.

7. The assembly pressing code according to claim 2, characterized in that, The other end of the screw is provided with a through hole, and the assembly clamp also includes an operating rod that can be inserted into the through hole.

8. The assembly pressing code according to claim 7, characterized in that, The assembly clamp also includes a second magnet, which is disposed on the side wall of the second assembly part along a first direction, the first direction being the direction from the first assembly part to the second assembly part, and the operating rod can be attracted to the second magnet.

9. The assembly pressing code according to claim 8, characterized in that, When the operating rod is attracted to the second magnet, it protrudes from the measuring end of the rangefinder along the axial direction of the threaded hole.

10. The assembly stamp according to any one of claims 1-9, characterized in that, One end of the screw is provided with a universal ball head cap, which is used to abut against the plate to be adjusted.