Die steel processing auxiliary butt joint device

CN224601620UActive Publication Date: 2026-08-07MAANSHAN HENGDA TOOL & MOULD MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
MAANSHAN HENGDA TOOL & MOULD MATERIAL CO LTD
Filing Date
2025-08-28
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0005]本实用新型的目的在于提供模具钢加工用辅助对接装置,以解决上述背景技术中提出的现有的辅助对接装置在使用的时候,虽然能够对模具钢进行限位对接,但是放置板顶部缺乏清洁结构,如果放置板上有残渣的话,非常容易划伤模具钢,从而导致实用性变差的问题

Benefits of technology

[0015]1. By setting up a base, a placement seat, and cleaning components, the cylinder can push the brush to move back and forth, thereby cleaning the residue on the top of the placement seat. The blower can generate suction, which can draw the residue into the corrugated pipe through the air inlet and then into the storage box. This can clean and collect the residue, preventing it from scratching the mold steel and protecting it, thus greatly improving the practicality of the device.

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Abstract

The utility model discloses a mould steel processing is with the supplementary butt joint device, including base, the base top is equipped with the placing seat, be equipped with the cleaning part on the base, be equipped with the adjusting part between the placing seat and base, the cleaning part includes with the bottom one side fixed connection of base's storage miscellaneous box, with the filter screen of storage miscellaneous box inner wall fixed connection, with the suction pipe of storage miscellaneous box one side fixed connection, with the fan of suction pipe fixed connection, with the first air inlet pipe of storage miscellaneous box other side fixed connection and with the corrugated pipe of first air inlet pipe fixed connection, the utility model discloses a base, placing seat and cleaning part are set up, have solved the supplementary butt joint device of current when using, although can be to mould steel position butt joint, but the top of placing plate lacks clean structure, if there is residue on the placing plate, very easy to scratch mould steel, thereby lead to the problem of practicality to be worse.
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Description

Technical Field

[0001] This utility model relates to the field of mold steel processing technology, specifically to an auxiliary docking device for mold steel processing. Background Technology

[0002] Die steel is an alloy tool steel used to manufacture molds such as cold stamping dies, hot forging dies, and die casting molds. It has characteristics such as high hardness, wear resistance, and toughness, and is widely used in metal forming and plastic processing in industrial production. In the process of die steel processing, it is necessary to join two separate pieces of die steel together and then process the joined part.

[0003] Existing patent CN218697824U discloses an auxiliary docking device for mold steel processing, including a mounting plate, a placement plate, a fixing plate, and a support rod. The placement plates are spaced above the mounting plate. One end of the support rod is fixedly connected to the placement plate, and the other end is movably connected to the mounting plate. It also includes an adjustment mechanism movably mounted on the placement plate. The adjustment mechanism is used to adjust the placement width on the placement plate. This invention rotates the threaded rod by turning the handle, which in turn moves the movable block, causing the movable plate to move. This allows the movable plate and the fixing plate to press and fix the mold steel, thus facilitating the docking of mold steel of different specifications. A spring applies elastic force to the slider, causing the support rod and the placement plate to move, thereby ensuring a tight docking of the mold steel and maintaining a tight connection between the mold steel parts.

[0004] Based on the search of the aforementioned patents and in conjunction with the auxiliary docking devices in the prior art, it was found that although the aforementioned auxiliary docking devices can limit the docking of mold steel when in use, the top of the placement plate lacks a cleaning structure. If there are residues on the placement plate, they can easily scratch the mold steel, thus reducing its practicality. Utility Model Content

[0005] The purpose of this utility model is to provide an auxiliary docking device for mold steel processing, so as to solve the problem that the existing auxiliary docking devices mentioned in the background art, although able to limit the docking of mold steel, lack a cleaning structure on the top of the placement plate. If there are residues on the placement plate, they can easily scratch the mold steel, thus reducing its practicality.

[0006] To achieve the above objectives, this utility model provides the following technical solution: an auxiliary docking device for mold steel processing, including a base, a placement seat above the base, a cleaning component on the base, and an adjustment component between the placement seat and the base;

[0007] The cleaning components include a storage box fixedly connected to one side of the base bottom, a filter screen fixedly connected to the inner wall of the storage box, an air intake pipe fixedly connected to one side of the storage box, a fan fixedly connected to the air intake pipe, a first air inlet pipe fixedly connected to the other side of the storage box, a corrugated pipe fixedly connected to the first air inlet pipe, a second air inlet pipe fixedly connected to one end of the corrugated pipe, a brush fixedly connected to the second air inlet pipe, a cavity opened inside the brush, multiple air inlets evenly arranged at the bottom of the cavity, and a moving component for increasing the cleaning range. The air intake pipe and the first air inlet pipe are both connected to the storage box.

[0008] Preferably, the adjusting component includes a rotating shaft connected to the base, a driven gear fixedly connected to the outside of the rotating shaft, a main gear connected to the driven gear, a drive shaft fixedly connected to the main gear, and a first motor fixedly connected to the bottom of the drive shaft. The top of the rotating shaft is fixedly connected to the bottom of the placement seat. Both the rotating shaft and the drive shaft are rotatably connected to the base. The main gear and the driven gear mesh.

[0009] Preferably, the moving component includes a first vertical plate fixedly connected to one side of the top of the base and a cylinder fixedly connected to the first vertical plate, wherein the output end of the cylinder is fixedly connected to the brush.

[0010] Preferably, a rotating disk is fixedly connected to the outside of the rotating shaft, and a support groove is provided on the top of the base along the axis of the rotating shaft. Support blocks are slidably connected to both sides of the support groove, and the support blocks are fixedly connected to the rotating disk.

[0011] Preferably, a support plate is fixedly connected to both sides of the bottom of the placement seat, a bidirectional screw is provided between the two support plates, a second motor is fixedly connected to one end of the bidirectional screw, a drive plate is screwed to both sides of the bidirectional screw, a drive frame is fixedly connected to the bottom of the drive plate, a limit plate is fixedly connected to one end of the drive frame, and the bidirectional screw is rotatably connected to the support plate.

[0012] Preferably, a second vertical plate is fixedly connected to the top of the base on the side away from the first vertical plate, and a support rod is slidably connected to the second vertical plate, the support rod being fixedly connected to the brush.

[0013] Preferably, a protective box is fitted around the main gear and the driven gear, the rotating shaft and the drive shaft are rotatably connected to the protective box, and the first motor is fixedly connected to the protective box.

[0014] Compared with the prior art, the beneficial effects of this utility model are:

[0015] 1. By setting up a base, a placement seat, and cleaning components, the cylinder can push the brush to move back and forth, thereby cleaning the residue on the top of the placement seat. The blower can generate suction, which can draw the residue into the corrugated pipe through the air inlet and then into the storage box. This can clean and collect the residue, preventing it from scratching the mold steel and protecting it, thus greatly improving the practicality of the device.

[0016] 2. With the addition of an adjustment component, the first motor can drive the main gear to rotate, which in turn drives the driven gear to rotate, which in turn drives the placement seat to rotate, which in turn drives the mold steel to rotate. This allows for fine-tuning and control of the mold steel's position, facilitating its docking and further improving its practicality. Attached Figure Description

[0017] Figure 1 A three-dimensional structural schematic diagram provided for this utility model;

[0018] Figure 2 Front view provided for this utility model;

[0019] Figure 3 Provided by this utility model Figure 2 A three-dimensional cross-sectional view at point AA;

[0020] Figure 4 Provided by this utility model Figure 3 Enlarged view of point C in the middle;

[0021] Figure 5 The left view provided for this utility model;

[0022] Figure 6 Provided by this utility model Figure 5 3D cross-sectional view at point BB;

[0023] Figure 7 Provided by this utility model Figure 6 Enlarged view of point D in the middle.

[0024] In the diagram: 1. Base; 11. Placement seat; 21. Storage box; 22. Filter screen; 23. Intake pipe; 24. Fan; 25. First intake pipe; 26. Corrugated pipe; 27. Second intake pipe; 28. Brush; 29. ​​Cavity; 30. Air inlet; 31. Rotating shaft; 32. Driven gear; 33. Main gear; 34. Drive shaft; 35. First motor; 41. First vertical plate; 42. Cylinder; 51. Rotating disk; 52. Support groove; 53. Support block; 61. Support plate; 62. Bidirectional screw; 63. Second motor; 64. Drive plate; 65. Drive frame; 66. Limiting plate; 71. Second vertical plate; 72. Support rod; 81. Protective box. Detailed Implementation

[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0026] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 as well as Figure 6This utility model provides a technical solution: an auxiliary docking device for mold steel processing, including a base 1, a placement seat 11 on top of the base 1, a cleaning component on the base 1, and an adjusting component between the placement seat 11 and the base 1. The cleaning component includes a storage box 21 fixedly connected to one side of the bottom of the base 1, a filter screen 22 fixedly connected to the inner wall of the storage box 21, an air intake pipe 23 fixedly connected to one side of the storage box 21, a fan 24 fixedly connected to the air intake pipe 23, a first air inlet pipe 25 fixedly connected to the other side of the storage box 21, a corrugated pipe 26 fixedly connected to the first air inlet pipe 25, a second air inlet pipe 27 fixedly connected to one end of the corrugated pipe 26, and a third air inlet pipe 27 fixedly connected to the fourth air inlet pipe 25. The brush 28 is fixedly connected to the two air inlets 27. A cavity 29 is located inside the brush 28. Multiple air inlets 30 are evenly arranged at the bottom of the cavity 29. A moving component is used to increase the cleaning range. The suction pipe 23 and the first air inlet 25 are both connected to the storage box 21. The movement of the brush 28 cleans the residue on the top of the placement seat 11. Simultaneously, the fan 24 operates, generating suction to draw the cleaned residue from the air inlets into the storage box 21, preventing the residue from scratching the mold steel. The corrugated pipe 26 facilitates the back-and-forth movement of the brush 28. The filter screen 22 filters the residue, preventing it from entering the fan 24 and protecting the fan 24. The moving components include a first vertical plate 41 fixedly connected to one side of the top of the base 1 and a cylinder 42 fixedly connected to the first vertical plate 41. The output end of the cylinder 42 is fixedly connected to the brush 28. The first vertical plate 41 can fix the cylinder 42. The operation of the cylinder 42 can facilitate pushing the brush 28 to move back and forth, thereby increasing the cleaning range. Support plates 61 are fixedly connected to both sides of the bottom of the base 11. A bidirectional screw 62 is provided between the two support plates 61. A second motor 63 is fixedly connected to one end of the bidirectional screw 62. Drive plates 64 are screwed to both sides of the bidirectional screw 62. A drive frame 65 is fixedly connected to the bottom of the drive plate 64. A limiter is fixedly connected to one end of the drive frame 65. Plate 66, bidirectional screw 62 is rotatably connected to support plate 61, second motor 63 can drive bidirectional screw 62 to rotate, which in turn can drive two drive plates 64 and drive frame 65 to move, which in turn can drive limit plate 66 to move. The movement of the two limit plates 66 can limit the mold steel, which is convenient for subsequent docking. A second vertical plate 71 is fixedly connected to the top of the base 1 away from the first vertical plate 41. A support rod 72 is slidably connected to the second vertical plate 71. The support rod 72 is fixedly connected to brush 28. The second vertical plate 71 can support the support rod 72. The movement of brush 28 can drive the support rod 72 to move. The support rod 72 can improve the stability of the movement of brush 28.

[0027] Please see Figure 1 , Figure 5 , Figure 6 as well as Figure 7The adjusting components include a rotating shaft 31 connected to the base 1, a driven gear 32 fixedly connected to the outside of the rotating shaft 31, a main gear 33 connected to the driven gear 32, a drive shaft 34 fixedly connected to the main gear 33, and a first motor 35 fixedly connected to the bottom of the drive shaft 34. The top of the rotating shaft 31 is fixedly connected to the bottom of the placement seat 11. Both the rotating shaft 31 and the drive shaft 34 are rotatably connected to the base 1. The main gear 33 and the driven gear 32 mesh. When the first motor 35 is started, it can drive the drive shaft 34 to rotate, which in turn drives the main gear 33 to drive the driven gear 32 to rotate. The driven gear 32 can drive the rotating shaft 31 and the placement seat 11 to rotate, thereby adjusting the position of the mold steel for quick docking. The outside of the rotating shaft 31 is fixedly connected to the base 1. A rotating disk 51 is fixedly connected to the base 1. A support groove 52 is provided on the top of the base 1 along the axis of the rotating shaft 31. Support blocks 53 are slidably connected to both sides of the support groove 52. The support blocks 53 are fixedly connected to the rotating disk 51. The rotation of the rotating shaft 31 can drive the rotating disk 51 to rotate, and the rotation of the rotating disk 51 can drive the support blocks 53 to rotate. The rotation stability of the placement base 11 can be improved by the rotating blocks and the rotating disk 51. A protective box 81 is sleeved on the outside of the main gear 33 and the driven gear 32. The rotating shaft 31 and the drive shaft 34 are rotatably connected to the protective box 81. The first motor 35 is fixedly connected to the protective box 81. The protective box 81 can protect the main gear 33 and the driven gear 32, prevent impurities from entering them, and improve their service life.

[0028] Working principle: During operation, the placement base 11 is first cleaned. The cylinder 42 and fan 24 are then activated. The cylinder 42 moves the brush 28, which contacts the top of the placement base 11 to clean away any residue. The fan 24 generates suction, drawing the residue into the cavity 29 through the air inlet. The residue is then drawn into the storage box 21 and filtered through the filter screen 22 to prevent it from entering the fan 24. Next, the mold steel is placed on top of the placement base 11, and the second motor 63 is activated, driving the bidirectional screw 62 to rotate. The rotation of the bidirectional screw 62 can drive the two drive plates 64 to move towards the center, which in turn can drive the drive frame 65 and the limiting plate 66 to move, thus limiting and fixing the mold steel. The start of the first motor 35 can drive the drive shaft 34 to rotate, which in turn can drive the main gear 33 to rotate. The main gear 33 can drive the driven gear 32 to rotate, which in turn can drive the rotating shaft 31 and the placement seat 11 to rotate, thus adjusting the position of the mold steel for quick docking. The above is the working process of the entire device. All contents not described in detail in this specification are existing technologies known to those skilled in the art.

[0029] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An auxiliary docking device for machining mold steel, comprising a base (1), characterized in that: A placement seat (11) is provided above the base (1), a cleaning component is provided on the base (1), and an adjustment component is provided between the placement seat (11) and the base (1); The cleaning components include a storage box (21) fixedly connected to one side of the bottom of the base (1), a filter screen (22) fixedly connected to the inner wall of the storage box (21), an air intake pipe (23) fixedly connected to one side of the storage box (21), a fan (24) fixedly connected to the air intake pipe (23), a first air inlet pipe (25) fixedly connected to the other side of the storage box (21), a corrugated pipe (26) fixedly connected to the first air inlet pipe (25), a second air inlet pipe (27) fixedly connected to one end of the corrugated pipe (26), a brush (28) fixedly connected to the second air inlet pipe (27), a cavity (29) opened inside the brush (28), a plurality of air inlets (30) evenly arranged at the bottom of the cavity (29), and a moving component for increasing the cleaning range. The air intake pipe (23) and the first air inlet pipe (25) are both connected to the storage box (21).

2. The auxiliary docking device for mold steel processing according to claim 1, characterized in that: The adjustment component includes a rotating shaft (31) connected to the base (1), a driven gear (32) fixedly connected to the outside of the rotating shaft (31), a main gear (33) connected to the driven gear (32), a drive shaft (34) fixedly connected to the main gear (33), and a first motor (35) fixedly connected to the bottom of the drive shaft (34). The top of the rotating shaft (31) is fixedly connected to the bottom of the placement seat (11). Both the rotating shaft (31) and the drive shaft (34) are rotatably connected to the base (1). The main gear (33) and the driven gear (32) mesh.

3. The auxiliary docking device for mold steel processing according to claim 1, characterized in that: The moving component includes a first vertical plate (41) fixedly connected to one side of the top of the base (1) and a cylinder (42) fixedly connected to the first vertical plate (41), the output end of the cylinder (42) being fixedly connected to the brush (28).

4. The auxiliary docking device for mold steel processing according to claim 2, characterized in that: A rotating disk (51) is fixedly connected to the outside of the rotating shaft (31). A support groove (52) is provided on the top of the base (1) along the axis of the rotating shaft (31). Support blocks (53) are slidably connected to both sides of the support groove (52). The support blocks (53) are fixedly connected to the rotating disk (51).

5. The auxiliary docking device for mold steel processing according to claim 1, characterized in that: The bottom of the placement base (11) is fixedly connected to two support plates (61), and a bidirectional screw (62) is provided between the two support plates (61). A second motor (63) is fixedly connected to one end of the bidirectional screw (62), and a drive plate (64) is screwed to both sides of the bidirectional screw (62). A drive frame (65) is fixedly connected to the bottom of the drive plate (64), and a limit plate (66) is fixedly connected to one end of the drive frame (65). The bidirectional screw (62) is rotatably connected to the support plate (61).

6. The auxiliary docking device for mold steel processing according to claim 3, characterized in that: A second vertical plate (71) is fixedly connected to the top of the base (1) on the side away from the first vertical plate (41). A support rod (72) is slidably connected to the second vertical plate (71), and the support rod (72) is fixedly connected to the brush (28).

7. The auxiliary docking device for mold steel processing according to claim 2, characterized in that: The main gear (33) and the driven gear (32) are fitted with protective boxes (81), the rotating shaft (31) and the drive shaft (34) are rotatably connected to the protective boxes (81), and the first motor (35) is fixedly connected to the protective boxes (81).