Flexible adjusting module for side top block
By designing a flexible adjustment module for the side top block, the complexity and cost issues of the side top fixing scheme for parts were solved, enabling flexible adjustment and adaptation to multiple devices, thereby improving production efficiency and economy.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2026-03-27
AI Technical Summary
The existing side-top fixing solution for parts cannot achieve convenient and quick adjustment, resulting in low production efficiency and increased costs, and cannot meet the universal requirements of different part shapes.
A flexible adjustment module for the side top block is designed, including a base plate, a fixed block and an auxiliary block. Through the combination of positioning structure and threaded holes, the position of the side top block can be flexibly adjusted to adapt to the needs of different part shapes and side top areas.
It enables convenient adjustment of the side top block position, improves production efficiency, reduces manufacturing costs, and has versatility with multiple devices. It also features a simple structure and easy operation.
Smart Images

Figure CN224043124U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to mechanical processing technical field especially, relates to a kind of side top block flexible adjustment module. BACKGROUND
[0002] In the field of mechanical processing, when processing flat plate parts, the traditional fixing parts method includes vise clamping, side top block side top, pressing plate pressing, glue bonding and vacuum adsorption.
[0003] When processing large flat plate structure parts, considering the interference of clamping mechanism, or the precision requirement of part flatness, sometimes side top block side top scheme is selected to fix the parts, and the side top scheme is relatively more convenient and economical. However, due to the structural difference of parts shape, there is a certain complexity and repetition in adjusting the side top block side top area, which affects the improvement of production efficiency.
[0004] The existing part side top fixing scheme on the market needs to customize special side top block fixing position according to different part size and shape, which cannot achieve universality, convenient and quick adjustment. Redesign and production will affect the part production and manufacturing efficiency to some extent and increase the manufacturing cost.
[0005] Therefore, the technical personnel in the art are committed to developing a side top block flexible adjustment module that can quickly adjust the position of the side top block according to different part shapes. UTILITY MODEL CONTENTS
[0006] In view of the above defects of the prior art, the technical problem to be solved by the utility model is how to design a flexible adjustment module that can conveniently adjust the side top block to different side top areas according to the application scenario of part side top fixing, to realize the efficiency improvement and cost reduction in the production and manufacturing process.
[0007] To achieve the above purpose, the utility model provides a side top block flexible adjustment module, which comprises a bottom plate, a fixing block, an auxiliary block and a side top block. The bottom plate is provided with a first positioning structure and a second positioning structure. The fixing block is installed on the bottom plate through the first positioning structure. The fixing block comprises an abutting surface, which is arranged towards the edge of the processed part. The auxiliary block is installed on the bottom plate through the second positioning structure. The auxiliary block comprises a limiting end. The side top block is installed between the limiting end and the other edge of the processed part. The size of the side top block between the limiting end and the other edge of the processed part can be adjusted.
[0008] Further, the number of fixing blocks is two or more, and the number of auxiliary blocks is two or more.
[0009] Further, the height of the abutting surface on the fixing block is determined according to the height of the edge of the machined part.
[0010] Further, the first positioning structure comprises a positioning pin, a positioning pin hole, a fixing block screw and a fixing block threaded hole, the fixing block threaded hole is arranged on the bottom plate, the positioning pin hole is arranged at the corresponding position of the bottom plate and the fixing block, the positioning pin is inserted into the positioning pin hole, and the fixing block screw is screwed into the fixing block threaded hole through the through hole arranged on the fixing block.
[0011] Further, the second positioning structure comprises a positioning groove, the positioning groove is arranged on the bottom plate, and a positioning boss is arranged at the corresponding position of the auxiliary block and matched with the positioning groove.
[0012] Further, the second positioning structure further comprises an auxiliary block screw and an auxiliary block threaded hole, the auxiliary block threaded hole is arranged in the positioning groove, and the auxiliary block screw is screwed into the auxiliary block threaded hole through the through hole arranged on the auxiliary block.
[0013] Further, a side top block positioning adjustment screw and a side top block positioning threaded hole are further arranged, the side top block positioning threaded hole is arranged on the bottom plate, and the side top block positioning adjustment screw is screwed into the side top block positioning threaded hole through the adjustment through hole arranged on the side top block.
[0014] Further, a side top block positioning adjustment screw and a side top block positioning threaded hole are further arranged, the auxiliary block comprises a side top block mounting surface, the side top block positioning threaded hole is arranged on the side top block mounting surface, and the side top block positioning adjustment screw is screwed into the side top block positioning threaded hole through the adjustment through hole arranged on the side top block.
[0015] Further, the first positioning structure is a plurality of first positioning structures, and the plurality of first positioning structures are distributed at intervals on the bottom plate.
[0016] Further, the second positioning structure is a plurality of second positioning structures, and the plurality of second positioning structures are distributed at intervals on the bottom plate.
[0017] The beneficial effects of the utility model are as follows: compared with the prior art, the position of the side top block can be flexibly adjusted according to the shape, size and side top area of the machined part, the utility model has the characteristics of flexible adjustment, can be applied to various machining equipment, has high universality, low use cost and stronger economy.
[0018] The concept, specific structure and technical effects of the utility model will be further described below with reference to the drawings, so that the purpose, characteristics and effects of the utility model can be fully understood. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 is a structural schematic view of a fixing block of a preferred embodiment of the utility model;
[0020] Figure 2 is a structural schematic view of a fixing block of a preferred embodiment of the utility model;
[0021] Figure 3 is a structural schematic view of another angle of a fixing block of a preferred embodiment of the utility model;
[0022] Figure 4 is a structural schematic view of a fixing block of another preferred embodiment of the utility model;
[0023] Figure 5 is a structural schematic view of another angle of a fixing block of another preferred embodiment of the utility model;
[0024] Figure 6 is a mounting schematic view of a fixing block of a preferred embodiment of the utility model;
[0025] Figure 7 is a structural schematic view of an auxiliary block of a preferred embodiment of the utility model;
[0026] Figure 8 is a structural schematic view of another angle of an auxiliary block of a preferred embodiment of the utility model;
[0027] Figure 9 is a structural schematic view of an auxiliary block of another preferred embodiment of the utility model;
[0028] Figure 10 is a structural schematic view of another angle of an auxiliary block of another preferred embodiment of the utility model;
[0029] Figure 11 is a mounting schematic view of an auxiliary block of another preferred embodiment of the utility model.
[0030] Wherein, 10 - bottom plate, 11 - first positioning structure, 12 - second positioning structure, 13 - positioning pin, 14 - positioning pin hole, 15 - fixing block screw hole, 16 - positioning groove, 17 - auxiliary block screw hole, 18 - first side top block positioning screw hole, 20 - fixing block, 21 - abutting surface, 22 - fixing block screw, 30 - auxiliary block, 31 - limit end, 32 - positioning boss, 33 - auxiliary block screw, 34 - side top block mounting surface, 35 - second side top block positioning screw hole, 40 - side top block, 41 - side top block positioning adjusting screw, 50 - machined part. DETAILED DESCRIPTION
[0031] The following reference drawings of the specification introduce a plurality of preferred embodiments of the utility model, make its technical content more clear and convenient for understanding. The utility model can be embodied by many different forms of embodiments, and the protection scope of the utility model is not limited to the embodiments mentioned in the text.
[0032] In the drawings, the components with the same structure are indicated with the same numeral, and the components with similar structure or function are indicated with similar numerals. The size and thickness of each component shown in the drawings are arbitrarily shown, and the utility model does not limit the size and thickness of each component. In order to make the drawing clearer, the thickness of the components is appropriately exaggerated in some places in the drawing.
[0033] As Figure 1 shown, the embodiment provides a side top block flexible adjustment module, which comprises a bottom plate 10, a fixed block 20, an auxiliary block 30 and a side top block 40.
[0034] The bottom plate 10 has several specifications with different length and width dimensions, and different length and width dimensions of the bottom plate 10 can be selected according to the length and width dimensions of the machined part 50 and the type of the machining equipment.
[0035] The bottom plate 10 is provided with a plurality of first positioning structures 11 and a plurality of second positioning structures 12, the plurality of first positioning structures 11 are distributed on the bottom plate 10 at intervals, and the plurality of second positioning structures 12 are distributed on the bottom plate 10 at intervals. The fixed block 20 and the auxiliary block 30 can be installed at corresponding positions according to the shape and size of the machined part 50.
[0036] In the embodiment, the number of fixed blocks 20 is two, and the number of auxiliary blocks 30 is two. In other embodiments, the number of fixed blocks 20 can be more than two, and the number of auxiliary blocks 30 can also be more than two.
[0037] The fixed block 20 is installed on the bottom plate 10 through the first positioning structure 11, and the fixed block 20 comprises an abutting surface 21, which is arranged towards the edge of the machined part 50.
[0038] As Figure 6 shown, the first positioning structure 11 comprises a positioning pin 13, a positioning pin hole 14, a fixed block screw 22 and a fixed block threaded hole 15. The fixed block threaded hole 15 is formed in the bottom plate 10, the positioning pin hole 14 is formed in the corresponding position of the bottom plate 10 and the fixed block 20, the positioning pin 13 is inserted into the positioning pin hole 14, and the fixed block screw 22 is screwed into the fixed block threaded hole 15 through the through hole formed in the fixed block 20.
[0039] The fixing block 20 mainly serves to limit the movement of the workpiece 50 during side-top machining, ensuring that the workpiece 50 is always in a fixed position. Different types of fixing blocks 20 are provided depending on the part structure and side-top position. In particular, the height of the abutment surface 21 on the fixing block 20 is determined based on the height of the edge of the workpiece 50.
[0040] In one embodiment, when the bottom of the part is not suspended, the side top position is generally selected in the area close to the bottom surface of the part. In this case, a method such as... Figure 2 , 3 The fixed block 20 is shown.
[0041] In another embodiment, when the bottom of the part is suspended, the side top position needs to be selected in an area close to the top surface of the part. In this case, a method such as... Figure 4 , 5 The fixed block 20 is shown.
[0042] like Figure 6 As shown, when installing the fixing block 20 on the base plate 10, the fixing block 20 is first limited on the base plate 10 by the positioning pin 13, and then the fixing block screw 22 is inserted into the through hole opened on the fixing block 20. After the fixing block screw 22 is tightened into the threaded hole 15 of the fixing block, the fixing block 20 is fastened to the base plate 10.
[0043] like Figure 1 As shown, the auxiliary block 30 is mounted on the base plate 10 via the second positioning structure 12. The auxiliary block 30 includes a limiting end 31 and a side top block 40 is mounted between the limiting end 31 and the other edge of the workpiece 50. The size of the side top block 40 between the limiting end 31 and the other edge of the workpiece 50 can be adjusted.
[0044] In this embodiment, the side top block 40 adopts the commercially available OK-VISE clamp. The middle of the side top block 40 is a wedge block part including an adjustment through hole. When the side top block positioning adjustment screw 41 is tightened, the wedge block part expands from the center to both sides at the same time, which can realize the function of uniform force clamping.
[0045] The auxiliary block 30 is mainly used to limit the side-top block 40 during the side-top parting process. It is used in combination with the fixing block 20. Depending on the part structure and the side-top position, different structural styles of auxiliary blocks 30 will be provided.
[0046] In one embodiment, when the bottom of the part is not suspended, the side top position is generally selected in the area close to the bottom surface of the part. In this case, a method such as... Figure 7 , 8 The auxiliary block 30 shown.
[0047] The second positioning structure 12 includes a positioning groove 16, an auxiliary block screw 33, and an auxiliary block threaded hole 17. The positioning groove 16 is formed on the base plate 10. A positioning boss 32 is provided on the auxiliary block 30 at a position corresponding to the positioning groove 16. The positioning boss 32 cooperates with the positioning groove 16.
[0048] The auxiliary block threaded hole 17 is opened in the positioning groove 16, and the auxiliary block screw 33 passes through the through hole opened on the auxiliary block 30 and is screwed into the auxiliary block threaded hole 17.
[0049] The first side top block positioning threaded hole 18 is opened on the base plate 10, and the side top block positioning adjustment screw 41 passes through the adjustment through hole opened on the side top block 40 and is screwed into the first side top block positioning threaded hole 18.
[0050] In another embodiment, when the bottom of the part is suspended, the side top position needs to be selected in an area close to the top surface of the part. In this case, a method such as... Figure 9 , 10 The auxiliary block 30 shown can adjust the position of the side top block 40 in addition to its limiting function.
[0051] like Figure 9 , 11 As shown, the second positioning structure 12 includes a positioning groove 16, an auxiliary block screw 33, and an auxiliary block threaded hole 17. The positioning groove 16 is formed on the base plate 10. A positioning boss 32 is provided on the auxiliary block 30 at a position corresponding to the positioning groove 16. The positioning boss 32 cooperates with the positioning groove 16.
[0052] The auxiliary block threaded hole 17 is opened in the positioning groove 16, and the auxiliary block screw 33 passes through the through hole opened on the auxiliary block 30 and is screwed into the auxiliary block threaded hole 17.
[0053] The auxiliary block 30 includes a side top block mounting surface 34, a second side top block positioning threaded hole 35 is opened on the side top block mounting surface 34, and a side top block positioning adjustment screw 41 passes through the adjustment through hole opened on the side top block 40 and is screwed into the second side top block positioning threaded hole 35.
[0054] When installing the auxiliary block 30 on the base plate 10, first mate the positioning boss 32 of the auxiliary block 30 with the positioning groove 16 on the base plate 10, then insert the auxiliary block screw 33 into the two through holes on the auxiliary block 30, tighten the auxiliary block screw 33 into the auxiliary block threaded hole 17, and then fasten the auxiliary block 30 to the base plate 10.
[0055] The utility model discloses a flexible adjusting module is combined in different parts, makes fixed block and auxiliary block installation position can be adjusted according to the part shape, can realize the convenient adjustment of side top block side top position, and different adjusting module parts are replaced to different parts structure, make it have high flexibility, and the manufacturing cost is low, effectively solve the many bad factors of traditional side top scheme.
[0056] Through the adjustment of the bottom plate, the module can be installed on different equipment, and the side top area requirement of different parts can be met by adjusting the fixed block and the auxiliary block, the structure is simple, the operation is convenient, the use demand of different processing equipment can be met, and high universality is realized.
[0057] Compared with the traditional side top mode: the side top block flexible adjusting module is simple in structure and low in manufacturing cost; it is convenient to adjust, and it is rapidly assembled; it is strong in universality and can meet different use scenarios.
[0058] The above describes the preferred embodiment of the utility model in detail. It should be understood that those skilled in the art can make many modifications and changes according to the concept of the utility model without creative labor. Therefore, any technical scheme obtained by logical analysis, reasoning or limited experiment on the basis of the prior art according to the concept of the utility model should be within the protection scope determined by the claims.
Claims
1. A side and top block flexible adjustment module, characterized by, The application relates to a fixing device for a machining part, which comprises a base plate, a fixing block, an auxiliary block and a side top block, wherein the base plate is provided with a first positioning structure and a second positioning structure, the fixing block is installed on the base plate through the first positioning structure, the fixing block comprises an abutting surface, the abutting surface is arranged towards the edge of the machining part, the auxiliary block is installed on the base plate through the second positioning structure, the auxiliary block comprises a limiting end, and the size of the side top block between the limiting end and the other edge of the machining part can be adjusted.
2. The side shoe flexible adjustment module of claim 1, wherein, The number of the fixing blocks is more than two, and the number of the auxiliary blocks is more than two.
3. The side shoe flexible adjustment module of claim 1, wherein, The height of the abutting surface on the fixing block is determined according to the height of the edge of the machining part.
4. The side shoe flexible adjustment module of claim 1, wherein, The first positioning structure comprises a positioning pin, a positioning pin hole, a fixing block screw and a fixing block threaded hole, the fixing block threaded hole is arranged on the base plate, the positioning pin hole is arranged at the corresponding position of the base plate and the fixing block, the positioning pin is inserted into the positioning pin hole, and the fixing block screw is screwed into the fixing block threaded hole through the through hole arranged on the fixing block.
5. The side shoe flexible adjustment module of claim 1, wherein, The second positioning structure comprises a positioning groove, the positioning groove is arranged on the base plate, the auxiliary block is provided with a positioning boss at the corresponding position of the positioning groove, and the positioning boss is matched with the positioning groove.
6. The side shoe flexible adjustment module of claim 5, wherein, The second positioning structure further comprises an auxiliary block screw and an auxiliary block threaded hole, the auxiliary block threaded hole is arranged in the positioning groove, and the auxiliary block screw is screwed into the auxiliary block threaded hole through the through hole arranged on the auxiliary block.
7. The side shoe flexible adjustment module of claim 6, wherein, The side top block positioning adjustment screw and the side top block positioning threaded hole are further arranged, the side top block positioning threaded hole is arranged on the base plate, and the side top block positioning adjustment screw is screwed into the side top block positioning threaded hole through the adjustment through hole arranged on the side top block.
8. The side shoe flexible adjustment module of claim 6, wherein, The side top block positioning adjustment screw and the side top block positioning threaded hole are further arranged, the auxiliary block comprises a side top block mounting surface, the side top block positioning threaded hole is arranged on the side top block mounting surface, and the side top block positioning adjustment screw is screwed into the side top block positioning threaded hole through the adjustment through hole arranged on the side top block.
9. The side shoe flexible adjustment module of claim 1, wherein, The first positioning structure is a plurality of first positioning structures, and the plurality of first positioning structures are distributed on the base plate at intervals.
10. The side shoe flexible adjustment module of claim 1, wherein, The second positioning structure is a plurality of second positioning structures, and the plurality of second positioning structures are distributed on the base plate at intervals.