A simple quick-installation bracket for electromechanical equipment

CN122566067APending Publication Date: 2026-08-14INNER MONGOLIA TECHN COLLEGE OF CONSTR
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-04-21
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

综上所述本发明人发现,现有的快速安装支架主要存在以下缺陷:由于当前快速安装支架将机电设备进行垂直安装过程,在机电设备底部平行放置于支架上后,支架表面中心金属面与设备底部中心点接触后会因金属光滑面的摩擦形成的位移情况,使得容易出现未夹紧后的安全隐患,同时中心点未事先牵制,极易造成边缘夹紧后的位置不规范现象,从而产生的快速安装后的位置难以校准,以至于会降低了当前快速安装支架的实际使用效果

Benefits of technology

1.本发明由夹持结构改进后,通过平行板下层的焊接板及衔接块能与承重块进行焊接形成一体,然后结合防滑块确定机电设备的下端中心,防止安装夹紧时出现偏移,进而利用定位结构的螺纹杆带动推板平移,使之能根据螺纹扣数校准,将机电设备夹持于防滑块的中心点,最后通过夹块进行固定,即可达成精准快速安装的效果,防止了光滑面之间的接触出现的中心点无法校准以及夹紧后出现的位置错误。

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Abstract

This invention provides a simple quick-installation bracket for electromechanical equipment. Its structure includes: a moving module, a support column, an adjusting column, a load-bearing block, and a clamping structure. The moving module is installed at the lower end of the support column, and the support column and adjusting column are on the same vertical line. The adjusting column is supported at the lower end of the load-bearing block. The upper layer of the load-bearing block and the lower layer of the clamping structure are parallel to each other. This invention improves the clamping structure by welding the lower layer of the parallel plate and connecting block to the load-bearing block to form an integral unit. Then, combined with the anti-slip block, the lower center of the electromechanical equipment is determined to prevent offset during installation and clamping. Furthermore, the threaded rod of the positioning structure drives the push plate to move horizontally, allowing calibration according to the number of thread turns, clamping the electromechanical equipment at the center point of the anti-slip block. Finally, the clamping block secures the equipment, achieving precise and rapid installation and preventing center point misalignment due to contact between smooth surfaces and positional errors after clamping.
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Description

Technical Field

[0001] This invention relates to the field of electromechanical equipment installation technology, and more specifically to a simple quick-installation bracket for electromechanical equipment. Background Technology

[0002] Electromechanical equipment is a product of the combination of mechanical and electronic technologies. It refers to mechanical equipment driven by electric motors and various actuators that can automatically or semi-automatically complete specific production, processing or service tasks. Therefore, when mechanical and electrical equipment is installed in a specific location for operation, if it is necessary to improve the installation efficiency, a simple and quick installation bracket can be used for fixed-point installation. This replaces the traditional welding and complex bolt connections with the characteristics of no welding, no tools and quick disassembly. This can improve the installation efficiency of mechanical and electrical equipment and solve problems such as inability to move and difficulty in adjustment. In summary, the inventors have found that existing quick-installation brackets have the following main defects: Because current quick-installation brackets perform vertical installation of electromechanical equipment, after the equipment is placed parallel to the bottom of the bracket, the friction between the center metal surface of the bracket and the center point of the equipment's bottom can cause displacement, leading to potential safety hazards due to incomplete clamping. Furthermore, the lack of pre-positioning restraint at the center point easily results in non-standard positioning after edge clamping, making it difficult to calibrate the position after quick installation, thus reducing the actual usability of the current quick-installation brackets. Summary of the Invention

[0003] The technical solution adopted by the present invention to achieve the technical objective is: a simple electromechanical equipment quick installation bracket, the structure of which includes: a moving module, a support column, an adjusting column, a load-bearing block, and a clamping structure. The moving module is installed at the lower end of the support column and the support column and the adjusting column are on the same vertical line. The adjusting column is supported at the lower end of the load-bearing block, and the upper layer of the load-bearing block and the lower layer of the clamping structure are parallel to each other.

[0004] As a further improvement of the present invention, the clamping structure is provided with a connecting block, the upper end of the connecting block is connected to a welding plate, the upper end of the welding plate is connected to a parallel plate, the center of the surface of the parallel plate is equipped with an anti-slip block and the edge is also opened with a slide rail, a clamping block is connected in the slide rail, and a positioning structure is also connected at the position where the slide rail is not provided on the edge of the parallel plate.

[0005] As a further improvement of the present invention, the parallel plate is welded to the surface of the load-bearing block and integrated with it by means of the welding plate and connecting block of the clamping structure, and then the slide rail of the parallel plate allows the clamping block to slide inward to clamp and fix the edge of the electromechanical equipment on the anti-blocking block.

[0006] As a further improvement of the present invention, the moving module is perpendicular to the support column and the lower end is connected to the moving wheel. The support column is opened in a vertical direction and has an adjustable column sliding space inside. The load-bearing block is solid and positions the clamping structure.

[0007] As a further improvement of the present invention, the connecting block is provided in three pieces on the lower layer of the welding plate, the anti-slip block at the center of the upper layer of the parallel plate of the welding plate is made of rubber, the slide rail carries the clamping block in the shape of "L", and the positioning structure is provided in two sets set in symmetrical orientation.

[0008] As a further improvement of the present invention, the positioning structure is provided with a fixing block, the fixing block has a groove in the center, a push plate is also provided through the groove, a threaded rod is connected to the center of the push plate, and a rotating block is connected to the other end of the threaded rod.

[0009] As a further improvement of the present invention, the fixing block is rectangular in shape and perpendicular to the edge of the parallel plate. The groove of the fixing block provides a reset space for the push plate. The push plate and the threaded rod are perpendicular to each other. The threaded rod passes through the center of the fixing block and is threaded.

[0010] As a further improvement of the present invention, the clamping block is provided with a slider, the upper end of the slider is connected to a support block, the surface of the support block is connected to a vertical sleeve, a pull block is connected to the edge of the vertical sleeve, and an insertion rail is opened on the other side of the support block. A pin is provided in the insertion rail, and the pin passes through the vertical sleeve to insert and connect with the internal pressing block.

[0011] As a further improvement of the present invention, the slider is solid and connected to the center of the lower end of the support block. The vertical sleeve of the support block allows the pressing block to be inserted. The insertion rail of the support block and the pin are adapted to each other and are consistent with the position and height adjustment and fixing method of the support column and the adjusting column.

[0012] As a further improvement of the present invention, the pressing block is also provided with a through groove, the edge of the through groove is covered with a reinforcing frame, the reinforcing frame is positioned at the lower middle position of the surface of the solid block, a protrusion is connected to the upper end of the solid block, and an auxiliary block is also connected to the upper end of the protrusion.

[0013] As a further improvement of the present invention, the through groove and the reinforcing frame are both rectangular in shape and match the shape of the pin. The solid block and the protrusion form an "L" shape, and the auxiliary block at the upper end of the protrusion is protruding.

[0014] As a further improvement of the present invention, the moving module is provided with a slot, which is opened at the upper center of the block, and a slot is opened at the edge of the block, through which the stop block is embedded and positioned.

[0015] As a further improvement of the present invention, the block is fixedly connected to the lower end of the support column through a slot, and the block is embedded and positioned by an edge slot. The stop block is embedded in the lower layer of the block to clamp the edge of the moving wheel at the center position.

[0016] As a further improvement of the present invention, the stop block is further provided with a locking block, one end of which is connected to the center of the extension block, and one end of the extension block is connected to a push-pull block. An insertion block is provided at the center of the push-pull block, and a stop groove is opened at the center of the insertion block.

[0017] As a further improvement of the present invention, the locking block and the extension block form a "T" shape and are provided at both ends of the push-pull block in a symmetrical arrangement. The locking block of the extension block is embedded in the locking groove for engagement and connection. The insertion block of the push-pull block is inserted into the lower layer of the block and the edge of the moving wheel is covered and clamped by the stop groove.

[0018] Compared with the prior art, the present invention has the following beneficial effects: 1. This invention improves the clamping structure by welding the lower layer of the parallel plate and connecting block to the load-bearing block to form an integral unit. Then, the anti-slip block is used to determine the lower center of the electromechanical equipment to prevent offset during installation and clamping. The threaded rod of the positioning structure drives the push plate to move horizontally, so that it can be calibrated according to the number of threads. The electromechanical equipment is clamped at the center point of the anti-slip block and finally fixed by the clamping block. This achieves a precise and fast installation effect, preventing the center point from being miscalibrated due to contact between smooth surfaces and the positional error after clamping.

[0019] 2. With the improvement of the clamping block, the slider at the lower end of the support block can be manually adjusted and moved at the slide rail position by the pull block on the edge of the vertical sleeve. This allows the pressing block to be moved to the edge of the electromechanical equipment. Then, the pressing block is pulled upward according to the connection height of the electromechanical equipment, allowing the solid block to slide upward at the vertical sleeve position. Finally, the pin in the through groove of the support block passes through and holds the block in place, thus achieving a height fixation effect. This ensures that the pressing block can match the height of the connection position of the electromechanical equipment, preventing the inability to clamp due to inconsistent heights. Therefore, it can further improve the stability of the mounting bracket.

[0020] 3. The improved mobile module of this invention can effectively connect with the lower end of the support column through the central slot of the block, so as to achieve a stable vertical positioning effect. Furthermore, the edge slot of the block can provide a positioning position for the stop block. After the mounting bracket is mounted in a specific position, the stop slot in the center of the stop block can cover and clamp the edge of the moving wheel to prevent the moving wheel from moving on its own. At the same time, the cooperation of the push-pull block can achieve the effect of easy disassembly, which meets the characteristics of simple and quick installation. Attached Figure Description

[0021] Figure 1 This is a structural diagram of a simple quick-installation bracket for electromechanical equipment.

[0022] Figure 2 This is a three-dimensional structural diagram of an improved clamping structure.

[0023] Figure 3 This is a three-dimensional structural diagram of an improved positioning structure.

[0024] Figure 4 This is a schematic diagram of a three-dimensional structure of an improved clamping block.

[0025] Figure 5 This is a schematic diagram of a three-dimensional structure of an improved pressing block.

[0026] Figure 6 This is a three-dimensional structural diagram of an improved mobile module.

[0027] Figure 7 This is a schematic diagram of a three-dimensional structure of an improved stop block.

[0028] In the diagram: Moving module-1, support column-2, adjusting column-3, load-bearing block-4, clamping structure-5; Connecting block-51, welding plate-52, parallel plate-53, anti-slip block-54, slide rail-55, clamping block-56, positioning structure-57; Fixed block-571, groove-572, push plate-573, threaded rod-574, rotating block-575; Slider-561, Support block-562, Vertical sleeve-563, Pull block-564, Inserting rail-565, Pin-566, Pressing block-567; Through slot-5671, reinforced frame-5672, solid block-5673, protrusion-5674, auxiliary block-5675; Empty slot-11, block-12, card slot-13, stop block-14; Card block-141, extension block-142, push-pull block-143, insertion block-144, stop slot-145. Detailed Implementation

[0029] The present invention will be further described below with reference to the accompanying drawings: Example 1: Figures 1 to 5 As shown: This invention provides a simple quick-installation bracket for electromechanical equipment. Its structure includes: a moving module 1, a support column 2, an adjusting column 3, a load-bearing block 4, and a clamping structure 5. The moving module 1 is installed at the lower end of the support column 2 and the support column 2 and the adjusting column 3 are on the same vertical line. The adjusting column 3 is supported at the lower end of the load-bearing block 4. The upper layer of the load-bearing block 4 and the lower layer of the clamping structure 5 are parallel to each other.

[0030] The clamping structure 5 is provided with a connecting block 51. The upper end of the connecting block 51 is connected to a welding plate 52. The upper end of the welding plate 52 is connected to a parallel plate 53. The center of the surface of the parallel plate 53 is equipped with an anti-sliding block 54 and the edge is also opened with a slide rail 55. A clamping block 56 is connected in the slide rail 55. A positioning structure 57 is also connected at the edge of the parallel plate 53 where there is no slide rail 55.

[0031] In this process, the parallel plate 53 is welded to the surface of the load-bearing block 4 and integrated with it by the welding plate 52 and connecting block 51 of the clamping structure 5. Then, the slide rail 55 of the parallel plate 53 allows the clamping block 56 to slide inward to clamp and fix the edge of the electromechanical equipment on the anti-slip block 54.

[0032] The movable module 1 is perpendicular to the support column 2 and has a movable wheel connected to its lower end. The support column 2 is opened in a vertical direction and has an adjustable column 3 with a sliding space inside. The load-bearing block 4 is solid and positions the clamping structure 5.

[0033] Among them, the connecting block 51 has three blocks on the lower layer of the welding plate 52, the anti-sliding block 54 in the center of the upper layer of the parallel plate 53 of the welding plate 52 is made of rubber, the slide rail 55 carries the clamping block 56 in an "L" shape, and the positioning structure 57 has two sets set in symmetrical orientation.

[0034] The positioning structure 57 is provided with a fixing block 571, and the fixing block 571 has a groove 572 in the center. A push plate 573 is also provided through the groove 572. A threaded rod 574 is connected to the center of the push plate 573, and a rotating block 575 is connected to the other end of the threaded rod 574.

[0035] The fixing block 571 is rectangular and perpendicular to the edge of the parallel plate 53. The groove 572 of the fixing block 571 provides a reset space for the push plate 573. The push plate 573 and the threaded rod 574 are perpendicular to each other. The threaded rod 574 passes through the center of the fixing block 571 and is threaded.

[0036] The clamping block 56 is provided with a slider 561. The upper end of the slider 561 is connected to a support block 562. A vertical sleeve 563 is connected to the surface of the support block 562. A pull block 564 is connected to the edge of the vertical sleeve 563. An insertion rail 565 is also opened on the other side of the support block 562. A pin 566 is provided in the insertion rail 565. The pin 566 passes through the vertical sleeve 563 and is inserted and connected to the internal pressing block 567.

[0037] The slider 561 is solid and connected to the lower center of the support block 562. The vertical sleeve 563 of the support block 562 allows the pressing block 567 to be inserted. The insertion rail 565 of the support block 562 and the pin 566 are adapted to each other and are consistent with the position and height adjustment and fixing method of the support column 2 and the adjusting column 3.

[0038] The pressing block 567 is also provided with a through groove 5671. The edge of the through groove 5671 is covered with a reinforcing frame 5672. The reinforcing frame 5672 is positioned at the lower middle position of the surface of the solid block 5673. A protrusion 5674 is connected to the upper end of the solid block 5673. An auxiliary block 5675 is also connected to the upper end of the protrusion 5674.

[0039] The through groove 5671 and the reinforcing frame 5672 are both rectangular and match the shape of the pin 565. The solid block 5673 and the protrusion 5674 form an "L" shape, and the auxiliary block 5675 at the upper end of the protrusion 5674 is a protruding shape.

[0040] The specific functions and operation procedures of this embodiment are as follows: In this invention, the simplified quick-installation bracket for electromechanical equipment, through the cooperation of the moving module 1, allows for rapid displacement of the support column 2, the load-bearing block 4 on the adjusting rod 3, and the clamping structure 5. After moving to the appropriate installation position, the moving module 1 stops moving, and then the adjusting rod 3 is adjusted upwards according to the required height, forcing the load-bearing block 4 to rise. Subsequently, after the electromechanical equipment is placed on the parallel plate 53 of the clamping structure 5, the anti-slip block 54 at the center of the parallel plate 53 will directly contact the center of the bottom of the electromechanical equipment, preventing slippage due to contact with smooth surfaces. Simultaneously, the positioning structure 57 at the edge of the parallel plate 53 can determine the position of the groove 572 through the fixing block 571. This allows the push plate 573 at the groove 572 to push the rotating block 575, which in turn drives the rotation of the threaded rod 574. Therefore, after the push plate 573 clamps the edge of the electromechanical equipment, precise symmetrical positioning can be achieved through the rotation of the threaded rod 574, ensuring that the electromechanical equipment is forcibly fixed in the center position. Finally, The clamping block 56 intervenes to clamp the equipment a second time, achieving a simple and quick installation effect. This prevents the equipment from operating outside the normal range due to incorrect positioning and height, thus improving the effectiveness of the current support. Furthermore, the support block 562 of the clamping block 56 can slide at the position of the slide rail 55 via the lower slider 561. At the same time, the vertical sleeve 563 on the surface of the support block 562 can determine the position of the pressing block 567. Therefore, when the pressing block 567 is not at the same height as the equipment near the edge, the upper auxiliary block 5675 can drive the protrusion 5674 and the solid block 5673 to pull upward, changing the height of the protrusion 5674. After adjustment, the through groove 5671 of the reinforcing frame 5672 of the solid block 5673 allows the pin 566 of the through rail 565 to pass through, forming a cross restraint effect. This achieves the effect of easy height adjustment and simple and quick installation and fixing. The double fixing improves the positioning accuracy of the electromechanical equipment and the stability during operation.

[0041] Example 2: Figures 6 to 7 As shown: This invention provides a simple quick-installation bracket for electromechanical equipment. Its structure includes a slot 11 provided in the moving module 1, the slot 11 being opened at the upper center of the block 12, and a slot 13 being opened at the edge of the block 12, through which the stop block 14 is embedded and positioned.

[0042] The block 12 is fixedly connected to the lower end of the support column 2 through the slot 11. The block 12 allows the stop block 14 to be embedded and positioned through the edge slot 13. The stop block 14 is embedded in the lower layer of the block 12 to clamp the edge of the moving wheel at the center position.

[0043] The stop block 14 is further provided with a locking block 141. One end of the locking block 141 is connected to the center of the extension block 142. One end of the extension block 142 is connected to a push-pull block 143. An insertion block 144 is provided at the center of the push-pull block 143. A stop groove 145 is opened at the center of the insertion block 144.

[0044] The locking block 141 and the extension block 142 form a "T" shape, and a set of blocks are provided at each of the left and right ends of the push-pull block 143 in a symmetrical orientation. The locking block 141 of the extension block 142 is embedded in the locking groove 13 for engagement. The insertion block 144 of the push-pull block 143 is inserted into the lower position of the block 12 in a straight line and the edge of the moving wheel is covered and clamped by the stop groove 145.

[0045] The specific functions and operation procedures of this embodiment are as follows: In this invention, the block 12 of the moving module 1 allows the lower end of the support column 2 to be embedded through the slot 11 for vertical positioning. Then, the slot 13 on the edge of the block 12 allows the stop block 14 to be embedded and positioned. For this purpose, the stop block 14 can cover and clamp the edge of the moving wheel at the center of the lower layer of the block 12, preventing the risk of self-movement during operation of the electromechanical equipment after the position is determined. The push-pull block 143 of the stop block 14 can be embedded in the slot 13 through the locking blocks 141 of the extension blocks 142 at both ends. After the locking blocks 141 are embedded in the slot 13, the stop groove 145 of the insertion block 144 can be stably positioned at the bottom of the block 12 to cover and clamp the edge of the moving wheel, forming a firm restraint effect on the moving wheel. Thus, by inserting and covering the positioning, it can also meet the effect of quick installation, which further improves the actual use convenience and stability of the quick installation bracket without damaging the original movable characteristics.

[0046] Any technical solution that achieves the above-mentioned technical effects by utilizing the technical solutions described in this invention, or by designing similar technical solutions by those skilled in the art under the inspiration of the technical solutions described in this invention, falls within the protection scope of this invention.

Claims

1. A simple quick-installation bracket for electromechanical equipment, the structure of which includes: The moving module (1), the support column (2), the adjusting column (3), the load-bearing block (4), and the clamping structure (5) are provided. The moving module (1) is installed at the lower end of the support column (2), and the support column (2) and the adjusting column (3) are on the same vertical line. The adjusting column (3) is supported at the lower end of the load-bearing block (4). The upper layer of the load-bearing block (4) and the lower layer of the clamping structure (5) are parallel to each other. The feature is that: The clamping structure (5) is provided with a connecting block (51), the upper end of the connecting block (51) is connected to a welding plate (52), the upper end of the welding plate (52) is connected to a parallel plate (53), the center of the surface of the parallel plate (53) is equipped with an anti-sliding block (54) and the edge is also opened with a slide rail (55), a clamping block (56) is connected in the slide rail (55), and a positioning structure (57) is also connected at the edge of the parallel plate (53) where there is no slide rail (55); The parallel plate (53) is welded to the surface of the load-bearing block (4) by the welding plate (52) and connecting block (51) of the clamping structure (5) and integrated with it. Then the slide rail (55) of the parallel plate (53) allows the clamping block (56) to slide inward to clamp and fix the edge of the electromechanical equipment on the anti-slip block (54).

2. The simplified quick-installation bracket for electromechanical equipment according to claim 1, characterized in that: The moving module (1) is perpendicular to the support column (2) and the lower end is connected to the moving wheel. The support column (2) is opened in a vertical direction and has an adjustable column (3) with a sliding space for sliding up and down. The load-bearing block (4) is solid and positions the clamping structure (5).

3. The simplified quick-installation bracket for electromechanical equipment according to claim 1, characterized in that: The connecting block (51) has three blocks on the lower layer of the welding plate (52). The anti-sliding block (54) at the center of the upper layer of the parallel plate (53) of the welding plate (52) is made of rubber. The slide rail (55) carries a clamping block (56) in an "L" shape. The positioning structure (57) has two sets set in symmetrical orientation.

4. The simplified quick-installation bracket for electromechanical equipment according to claim 1, characterized in that: The positioning structure (57) is provided with a fixing block (571), and a groove (572) is opened in the center of the fixing block (571). A push plate (573) is also provided through the groove (572). A threaded rod (574) is connected to the center of the push plate (573), and a rotating block (575) is connected to the other end of the threaded rod (574). The fixing block (571) is rectangular and perpendicular to the edge of the parallel plate (53). The groove (572) of the fixing block (571) provides a reset space for the push plate (573). The push plate (573) and the threaded rod (574) are perpendicular to each other. The threaded rod (574) passes through the center of the fixing block (571) and is threaded.

5. The simplified quick-installation bracket for electromechanical equipment according to claim 1, characterized in that: The clamping block (56) is provided with a slider (561), and a support block (562) is connected to the upper end of the slider (561). A vertical sleeve (563) is connected to the surface of the support block (562), and a pull block (564) is connected to the edge of the vertical sleeve (563). An insertion rail (565) is also opened on the other side of the support block (562). A pin (566) is provided in the insertion rail (565). The pin (566) passes through the vertical sleeve (563) and is inserted into the internal pressing block (567) for connection. The slider (561) is solid and connected to the center of the lower end of the support block (562). The vertical sleeve (563) of the support block (562) allows the pressing block (567) to be inserted. The insertion rail (565) of the support block (562) and the pin (566) are adapted to each other and are consistent with the position and height adjustment and fixing method of the support column (2) and the adjusting column (3).

6. A simplified quick-installation bracket for electromechanical equipment according to claim 5, characterized in that: The pressing block (567) is also provided with a through groove (5671), the edge of the through groove (5671) is covered with a reinforcing frame (5672), the reinforcing frame (5672) is positioned at the lower middle position of the surface of the solid block (5673), the upper end of the solid block (5673) is connected to a protrusion (5674), and an auxiliary block (5675) is also connected at the upper end of the protrusion (5674). The through slot (5671) and the reinforcing frame (5672) are both rectangular in shape and match the shape of the pin (565). The solid block (5673) and the protrusion (5674) form an "L" shape, and the auxiliary block (5675) at the top of the protrusion (5674) is protruding.

7. A simplified quick-installation bracket for electromechanical equipment according to claim 1, characterized in that: The moving module (1) is provided with a slot (11), which is opened at the upper center of the block (12). A slot (13) is opened at the edge of the block (12), through which the stop block (14) is embedded and positioned. The block (12) is fixedly connected to the lower end of the support column (2) through the slot (11). The block (12) allows the stop block (14) to be embedded and positioned through the edge slot (13). The stop block (14) is embedded in the lower layer of the block (12) to clamp the edge of the moving wheel at the center position.

8. A simplified quick-installation bracket for electromechanical equipment according to claim 7, characterized in that: The stop block (14) is also provided with a locking block (141), one end of which is connected to the center of the extension block (142), and one end of the extension block (142) is connected to a push-pull block (143). An insertion block (144) is provided at the center of the push-pull block (143), and a stop groove (145) is opened at the center of the insertion block (144). The locking block (141) and the extension block (142) form a "T" shape and are provided at both ends of the push-pull block (143) in a symmetrical orientation. The locking block (141) of the extension block (142) is embedded in the locking groove (13) for engagement. The insertion block (144) of the push-pull block (143) is inserted into the lower position of the block body (12) in a straight line and the edge of the moving wheel is covered and clamped by the stop groove (145).