Die steel composite treatment tool
By designing a tooling system for composite processing of mold steel, the problems of unstable steel fixing and cumbersome process transitions were solved, achieving stable processing and efficient operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DONGGUAN XINSHUANGMAO MOLD STEEL CO LTD
- Filing Date
- 2025-01-25
- Publication Date
- 2026-04-14
AI Technical Summary
Existing tooling for composite processing of mold steel has drawbacks: the steel is not securely fixed during processing, causing it to shake and affecting the processing effect; in addition, the process changeover is cumbersome and inefficient.
A composite processing fixture for mold steel was designed, comprising a processing mechanism, a moving mechanism, and a clamping mechanism. The moving mechanism enables the adjustment of the position of the processing device, and the clamping mechanism ensures the firm fixation of the steel, thereby improving the efficiency of process changeover.
The clamping mechanism design ensures that the steel does not shake during processing, improving the processing effect, simplifying process changeover operations, and reducing labor intensity.
Smart Images

Figure CN224115987U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mold steel processing technology, specifically to a composite processing tooling for mold steel. Background Technology
[0002] Mold steel usually needs to undergo multiple treatments before use, such as quenching, tempering, and surface nitriding, to improve its hardness, wear resistance, and corrosion resistance. In the process of treatment, mold steel composite treatment tooling is required.
[0003] Currently, some existing composite processing fixtures for mold steel suffer from problems such as insecure steel fixation during processing, leading to wobbling and affecting the processing effect. Furthermore, the operation is cumbersome and inefficient when switching between different processing steps. Therefore, we propose a composite processing fixture for mold steel. Utility Model Content
[0004] The purpose of this utility model is to provide a composite processing fixture for mold steel, in order to solve the problems mentioned in the background art, such as the insecure fixing of steel in some existing composite processing fixtures, the easy shaking of the mold steel during processing, which affects the processing effect; and the cumbersome and inefficient operation when switching between different processing steps.
[0005] To achieve the above objectives, this utility model provides the following technical solution:
[0006] A composite processing fixture for mold steel includes a work plate, a plurality of support columns fixed to the bottom end of the work plate, and support plates fixed to the bottom ends of the support columns. A processing mechanism for processing mold steel is provided on the top surface of the work plate near its left end. The processing mechanism includes a U-shaped vertical plate slidably connected to the top surface of the work plate, a mounting plate located on the right side of the vertical plate end for mounting processing equipment, and a lead screw installed between the two horizontal plates of the vertical plate for driving the mounting plate to rise and fall. It also includes:
[0007] A moving mechanism is set on the top surface of the work plate and is used to drive the vertical plate to move left and right. The moving mechanism includes two fixed plates fixed on the top surface of the work plate and symmetrical to each other, two rotating rollers respectively rotatably connected to the fixed plates on the same side, a screw fixed coaxially between the two rotating rollers, a connecting rod fixed on the front surface of the vertical plate end and threadedly connected to the screw, and a moving motor installed on the surface of one of the fixed plates away from the screw and whose output shaft is coaxially connected to the rotating roller on the same side. The connecting rod is slidably connected to the top surface of the work plate.
[0008] A clamping mechanism is located on the top surface of the work plate near the right end and is used to clamp the mold steel. The clamping mechanism includes a frame fixed on the top surface of the work plate, two rotating columns rotatably connected to the two vertical plate ends of the frame, a double-acting screw coaxially fixed between the two rotating columns and arranged in a front-to-back configuration, two moving rods threaded to the double-acting screw and shaped like an L, a rotating rod coaxially fixed to the surface of one of the rotating columns away from the double-acting screw, and a clamping motor installed on the surface of one of the vertical plate ends of the frame away from the double-acting screw for driving the rotating rod to rotate. The two moving rods are symmetrical to each other and are slidably connected to the bottom surface of the horizontal plate end of the frame. The opposing surfaces of the horizontal rod ends of the two moving rods are fixed with clamping plates for clamping the mold steel.
[0009] In a preferred embodiment, the clamping mechanism further includes two gears located above the working plate and meshing with each other, and a rotating shaft coaxially connected to the output shaft of the clamping motor, wherein the two gears are respectively coaxially fixed on the outer circumferential wall of the rotating rod and the rotating shaft.
[0010] In a preferred embodiment, a guide groove is provided on the bottom surface of the horizontal plate of the frame, and a guide block is fixed on the top surface of the vertical rod of the moving rod, which is slidably connected to the guide groove on the bottom surface of the horizontal plate of the frame.
[0011] In a preferred embodiment, the processing mechanism further includes two connecting columns rotatably connected to the two horizontal ends of the vertical plate, a mounting rod slidably connected to the right side surface of the vertical plate end of the vertical plate and threadedly connected to the lead screw, a mounting column coaxially fixed to the top surface of the upper connecting column, a turntable coaxially fixed to the top surface of the mounting column, and a deflector fixed to the top surface of the turntable near the edge. The lead screw is coaxially fixed between the two connecting columns, the mounting plate is fixed to the right side surface of the mounting rod, and the right side surface of the mounting plate is provided with a plurality of threaded holes.
[0012] In a preferred embodiment, the top surface of the working plate is provided with a sliding groove and a limiting groove. The connecting rod is L-shaped. A slider that is slidably connected to the sliding groove on the top surface of the working plate is fixed on the bottom surface of the vertical end of the connecting rod. A limiting strip that is slidably connected to the limiting groove on the top surface of the working plate is fixed on the bottom surface of the horizontal end of the vertical plate. An installation groove is provided on the right side surface of the vertical end of the vertical plate, and an installation block that is slidably connected to the installation groove on the right side surface of the vertical end of the vertical plate is fixed on the left side surface of the installation rod.
[0013] In a preferred embodiment, the bottom end of the support plate is fixed with an anti-slip plate that is adapted to its shape. The thickness of the anti-slip plate is 1-3cm, and the bottom surface of the anti-slip plate is provided with anti-slip texture.
[0014] In a preferred embodiment, protective plates are fixed to the opposite sides of both clamps, the protective plates being adapted to the shape of the clamps on the same side, and the thickness of the protective plates being 1-4 cm.
[0015] In a preferred embodiment, the moving mechanism further includes a fixed box fixed to the surface of one of the fixed plates away from the screw, the moving motor being located inside the fixed box, and the clamping mechanism further includes a protective box fixed to the surface of one of the vertical plates of the frame away from the bidirectional lead screw, the clamping motor being located inside the protective box, and the rotating shaft passing through the outer wall of the protective box away from the bidirectional lead screw.
[0016] In a preferred embodiment, the longitudinal cross-sectional shape of the groove on the top surface of the work plate is I-shaped, and the shape of the slider is I-shaped to match the shape of the groove on the top surface of the work plate.
[0017] Compared with the prior art, the beneficial effects of this utility model are:
[0018] 1. This utility model can install and raise external processing devices by setting up a processing mechanism. It can also move external processing devices horizontally by setting up a moving mechanism, so that external processing devices can be easily moved to different positions, which facilitates the operation of multiple composite processing processes, improves the efficiency of process conversion, and reduces the labor intensity of operators. By setting up a clamping mechanism, the mold steel to be processed can be clamped and fixed, which can firmly clamp the mold steel and prevent the steel from shaking during composite processing, thus ensuring the processing effect.
[0019] 2. In this utility model, a guide groove is provided on the bottom surface of the horizontal plate of the frame, and a guide block is fixed on the top surface of the vertical rod of the moving rod, which is slidably connected to the guide groove on the bottom surface of the horizontal plate of the frame. This can guide the movement of the moving rod, and thus indirectly guide the movement of the two clamping plates. Attached Figure Description
[0020] Figure 1 This is one of the overall structural schematic diagrams of this utility model;
[0021] Figure 2 This is the second schematic diagram of the overall structure of this utility model;
[0022] Figure 3 This is a schematic diagram of the overall structure of the processing mechanism in this utility model;
[0023] Figure 4 This is a partial exploded view of the processing mechanism in this utility model;
[0024] Figure 5 This is a schematic diagram of the overall structure of the moving mechanism in this utility model;
[0025] Figure 6 This is an exploded view of the moving mechanism in this utility model;
[0026] Figure 7 This is a schematic diagram of the overall structure of the clamping mechanism in this utility model;
[0027] Figure 8 This is one of the exploded partial views of the clamping mechanism in this utility model;
[0028] Figure 9 This is the second partially exploded view of the clamping mechanism in this utility model;
[0029] The meanings of the labels in the diagram are as follows:
[0030] 1. Working plate; 2. Support column; 3. Support plate; 4. Anti-slip plate; 5. Processing mechanism; 51. Vertical plate; 52. Limiting strip; 53. Connecting column; 54. Lead screw; 55. Mounting rod; 56. Mounting block; 57. Mounting plate; 58. Mounting column; 59. Turntable; 510. Pulley; 6. Moving mechanism; 61. Fixed plate; 62. Rotary roller; 63. Screw; 64. Connecting rod; 65. Slider; 66. Moving motor; 67. Fixed box; 7. Clamping mechanism; 71. Frame; 72. Rotating column; 73. Bidirectional lead screw; 74. Moving rod; 75. Guide block; 76. Clamping plate; 77. Protective plate; 78. Rotating rod; 79. Gear; 710. Clamping motor; 711. Rotating shaft; 712. Protective box. Detailed Implementation
[0031] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. 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.
[0032] Please see Figures 1-9 This utility model provides a technical solution: a composite processing fixture for mold steel, including a working plate 1, a plurality of support columns 2 fixed at the bottom end of the working plate 1, a support plate 3 fixed at the bottom end of the support columns 2, and a processing mechanism 5 for processing mold steel provided on the top surface of the working plate 1 near the left end. The processing mechanism 5 includes a U-shaped vertical plate 51 slidably connected to the top surface of the working plate 1, a mounting plate 57 located on the right side of the vertical plate end of the vertical plate 51 for installing processing equipment, and a lead screw 54 installed between the two horizontal plates of the vertical plate 51 for driving the mounting plate 57 to rise and fall. It also includes:
[0033] The moving mechanism 6 is set on the top surface of the work plate 1 and is used to drive the vertical plate 51 to move left and right. The moving mechanism 6 includes two fixed plates 61 fixed on the top surface of the work plate 1 and symmetrical to each other, two rotating rollers 62 respectively rotatably connected to the fixed plates 61 on the same side, a screw 63 coaxially fixed between the two rotating rollers 62, a connecting rod 64 fixed on the front surface of the vertical plate end of the vertical plate 51 and threadedly connected to the screw 63, and a moving motor 66 installed on the surface of one of the fixed plates 61 away from the screw 63 and whose output shaft is coaxially connected to the rotating roller 62 on the same side. The connecting rod 64 is slidably connected to the top surface of the work plate 1.
[0034] Clamping mechanism 7, located on the top surface of work plate 1 near the right end, is used to clamp the mold steel. Clamping mechanism 7 includes a frame 71 fixed to the top surface of work plate 1, two rotating columns 72 rotatably connected to the two vertical ends of the frame 71, a bidirectional lead screw 73 coaxially fixed between the two rotating columns 72 and arranged front-to-back, two L-shaped moving rods 74 threaded to the bidirectional lead screw 73, a rotating rod 78 coaxially fixed to the surface of one of the rotating columns 72 away from the bidirectional lead screw 73, and a clamping motor 710 installed on the surface of one of the vertical ends of the frame 71 away from the bidirectional lead screw 73 to drive the rotating rod 78 to rotate. The two moving rods 74 are symmetrical to each other and slidably connected to the frame 71. On the bottom surface of the horizontal plate, and on the opposite sides of the ends of the two moving rods 74, there are clamping plates 76 for holding the mold steel. The processing mechanism 5 can be used to install the external processing device and also to raise and lower the external processing device. The moving mechanism 6 can be used to move the external processing device horizontally, so that the external processing device can be easily moved to different positions, which facilitates the operation of multiple composite processing processes, improves the efficiency of process conversion, and reduces the labor intensity of operators. The clamping mechanism 7 can be used to clamp and fix the mold steel to be processed, which can firmly clamp the mold steel and prevent the steel from shaking during the composite processing, thus ensuring the processing effect.
[0035] In this embodiment, the clamping mechanism 7 also includes two gears 79 located above the working plate 1 and meshing with each other, and a rotating shaft 711 coaxially connected to the output shaft of the clamping motor 710. The two gears 79 are respectively coaxially fixed on the outer circumference of the rotating rod 78 and the rotating shaft 711, which can smoothly drive the rotating rod 78 to rotate, and thus smoothly drive the bidirectional lead screw 73 to rotate.
[0036] In addition, a guide groove is provided on the bottom surface of the horizontal plate end of the frame 71, and a guide block 75 is fixed on the top surface of the vertical rod end of the moving rod 74 and is slidably connected to the guide groove on the bottom surface of the horizontal plate end of the frame 71. This can guide the movement of the moving rod 74, and thus indirectly guide the movement of the two clamping plates 76.
[0037] Furthermore, the processing mechanism 5 also includes two connecting columns 53 that are rotatably connected to the two horizontal ends of the vertical plate 51, a mounting rod 55 that is slidably connected to the right side surface of the vertical end of the vertical plate 51 and threadedly connected to the lead screw 54, a mounting column 58 that is coaxially fixed to the top surface of the upper connecting column 53, a turntable 59 that is coaxially fixed to the top surface of the mounting column 58, and a lever 510 that is fixed to the top surface of the turntable 59 near the edge. The lead screw 54 is coaxially fixed between the two connecting columns 53. The mounting plate 57 is fixed to the right side surface of the mounting rod 55, and the right side surface of the mounting plate 57 is provided with several threaded holes, so that the height of the mounting plate 57 can be easily adjusted, and it is also convenient to install external processing devices.
[0038] Furthermore, the top surface of the work plate 1 is provided with a sliding groove and a limiting groove. The connecting rod 64 is L-shaped. A slider 65 is fixed on the bottom surface of the vertical end of the connecting rod 64 and is slidably connected to the sliding groove on the top surface of the work plate 1. A limiting strip 52 is fixed on the bottom surface of the horizontal plate end of the lower side of the upright plate 51 and is slidably connected to the limiting groove on the top surface of the work plate 1. An installation groove is provided on the right side surface of the vertical plate end of the upright plate 51, and an installation block 56 is fixed on the left side surface of the installation rod 55 and is slidably connected to the installation groove on the right side surface of the vertical plate end of the upright plate 51. This can guide the movement of the connecting rod 64, and also guide the movement of the upright plate 51 and the external processing device.
[0039] Specifically, the bottom of the support plate 3 is fixed with an anti-slip plate 4 that matches its shape. The thickness of the anti-slip plate 4 is 1-3cm, and the bottom surface of the anti-slip plate 4 is provided with anti-slip texture. In this paper, it is preferably 2cm, which increases the friction between the entire device and the ground, thereby making the entire device more stable during operation.
[0040] It is worth noting that protective plates 77 are fixed on the opposite sides of the two clamping plates 76. The protective plates 77 are adapted to the shape of the clamping plates 76 on the same side, and the thickness of the protective plates 77 is 1-4cm, preferably cm in this paper, so as to protect the mold steel to be processed.
[0041] It is worth noting that the moving mechanism 6 also includes a fixed box 67 fixed to the surface of one of the fixed plates 61 away from the screw 63. The moving motor 66 is located inside the fixed box 67. The clamping mechanism 7 also includes a protective box 712 fixed to the surface of one of the vertical plates of the frame 71 away from the double-acting lead screw 73. The clamping motor 710 is located inside the protective box 712, and the rotating shaft 711 passes through the outer wall of the protective box 712 away from the double-acting lead screw 73. This can protect the moving motor 66 and the clamping motor 710, thereby extending the service life of the moving motor 66 and the clamping motor 710.
[0042] It is worth emphasizing that the longitudinal cross-sectional shape of the groove on the top surface of the work plate 1 is I-shaped, and the shape of the slider 65 is I-shaped to match the shape of the groove on the top surface of the work plate 1. This can make the connection between the slider 65 and the groove on the top surface of the work plate 1 tighter, thereby indirectly making the vertical plate 51, the mounting plate 57 and the external processing device more stable during the movement.
[0043] It should be added that the clamping motor 710 is electrically connected to the external PLC and the external power supply via wires, and the moving motor 66 is electrically connected to the external PLC and the external power supply via wires.
[0044] Finally, it should be noted that the moving motor 66, clamping motor 710, and other components involved in this utility model are all general standard parts or components known to those skilled in the art. Their structures and principles can be learned by those skilled in the art through technical manuals or conventional experimental methods. In the idle space of this device, all the above-mentioned electrical components, which refer to power elements, electrical components, and the matching controller and power supply, are connected by wires. The specific connection methods should refer to the working principle of this utility model. The electrical connections between each electrical component are completed in the order of operation. The detailed connection methods are all technologies known in the art.
[0045] In practical use, when processing the mold steel, the mold steel is first placed between two protective plates 77. Then, the clamping motor 710 is started by an external PLC. The output shaft of the clamping motor 710 rotates, driving the rotating shaft 711 coaxially connected to it to rotate. The rotation of the rotating shaft 711 drives the gear 79 fixed on the same side coaxially with it to rotate. The rotation of this gear 79 drives another gear 79 meshing with it to rotate. The rotation of this other gear 79 drives the rotating rod 78 fixed on the same side coaxially with it to rotate. The rotation of the rotating rod 78 drives the rotating rod 78 fixed on the same side coaxially with it to rotate. The rotating column 72 rotates, which drives the bidirectional lead screw 73 fixed coaxially with it to rotate. The rotation of the bidirectional lead screw 73 drives the two moving rods 74 threaded to it to move closer to each other. The moving rods 74 move under the guidance of the guide block 75 on the same side and the guide groove on the bottom surface of the horizontal plate of the frame 71. The two moving rods 74 move closer to each other, thereby driving the two clamping plates 76 and the two protective plates 77 to move closer to each other. When the surface of the protective plate 77 away from the clamping plate 76 on the same side is tightly attached to the outer wall of the mold steel on the same side, the clamping motor 710 is turned off by the external PLC.
[0046] Next, the external processing device is installed together with the mounting plate 57 using several external screws. Then, the external PLC starts the moving motor 66. The output shaft of the moving motor 66 rotates, driving the same-side rotating roller 62 connected to it to rotate. The rotation of the rotating roller 62 drives the connecting rod 64, which is threaded to it, to move to the right. Under the guidance of the slider 65 and the sliding groove on the top surface of the working plate 1, the connecting rod 64 moves to the right, thereby driving the vertical plate 51 fixed to it to move to the right. Under the guidance of the limiting strip 52 and the upper limit groove on the top surface of the working plate 1, the vertical plate 51 moves to the right. The movement of the vertical plate 51 indirectly drives the external processing device to move to the right. When the external processing device moves to the appropriate position, the external PLC shuts down the moving motor 66.
[0047] Next, the turntable 59 is rotated by the pivot 510. The rotation of the turntable 59 drives the mounting column 58, which is fixed coaxially with it, to rotate. The rotation of the mounting column 58 drives the upper connecting column 53, which is fixed coaxially with it, to rotate. The rotation of the connecting column 53 drives the lead screw 54, which is fixed coaxially with it, to rotate. The rotation of the lead screw 54 drives the mounting rod 55, which is threadedly connected to it, to move in the vertical direction. The mounting rod 55 moves under the guidance of the mounting block 56 and the mounting groove on the right side of the vertical plate end of the vertical plate 51. The movement of the mounting rod 55 drives the mounting plate 57, which is fixed to it, and the external processing device to move in the vertical direction. When the external processing device moves to a suitable height position, the turntable 59 stops rotating. By starting the external processing device, the mold steel can be processed.
[0048] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely preferred examples and are not intended to limit the utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A tooling for composite processing of mold steel, comprising a work plate (1), characterized in that, The bottom of the working plate (1) is fixed with several support columns (2), and the bottom of the support columns (2) is fixed with a support plate (3). The top surface of the working plate (1) near the left end is provided with a processing mechanism (5) for processing mold steel. The processing mechanism (5) includes a U-shaped vertical plate (51) slidably connected to the top surface of the working plate (1), a mounting plate (57) located on the right side of the vertical plate end of the vertical plate (51) for installing processing equipment, and a screw (54) installed between the two horizontal plates of the vertical plate (51) for driving the mounting plate (57) to rise and fall. It also includes: The moving mechanism (6) is set on the top surface of the working plate (1) and is used to drive the vertical plate (51) to move left and right. The moving mechanism (6) includes two fixed plates (61) fixed on the top surface of the working plate (1) and symmetrical to each other, two rotating rollers (62) respectively rotatably connected to the fixed plate (61) on the same side, a screw (63) coaxially fixed between the two rotating rollers (62), a connecting rod (64) fixed on the front surface of the vertical plate end of the vertical plate (51) and threadedly connected to the screw (63), and a moving motor (66) installed on the surface of one of the fixed plates (61) away from the screw (63) and whose output shaft is coaxially connected to the rotating roller (62) on the same side. The connecting rod (64) is slidably connected to the top surface of the working plate (1). The clamping mechanism (7) is located on the top surface of the work plate (1) near the right end and is used to clamp the mold steel. The clamping mechanism (7) includes a frame (71) fixed on the top surface of the work plate (1), two rotating columns (72) rotatably connected to the two vertical plate ends of the frame (71), a two-way lead screw (73) coaxially fixed between the two rotating columns (72) and arranged in a front-to-back manner, two moving rods (74) threadedly connected to the two-way lead screw (73) and in an L-shape, and a clamping mechanism (74) coaxially fixed to the work plate (1). A rotating rod (78) on the side of a rotating column (72) away from the double-acting lead screw (73), a clamping motor (710) installed on the side of one of the vertical plates of the frame (71) away from the double-acting lead screw (73) and used to drive the rotating rod (78) to rotate, two moving rods (74) are symmetrical to each other and are slidably connected to the bottom surface of the horizontal plate end of the frame (71), and the opposing surfaces of the horizontal rod ends of the two moving rods (74) are fixed with clamping plates (76) for clamping the mold steel.
2. The tooling for composite treatment of mold steel according to claim 1, characterized in that: The clamping mechanism (7) also includes two gears (79) located above the working plate (1) and meshing with each other, and a rotating shaft (711) coaxially connected to the output shaft of the clamping motor (710). The two gears (79) are respectively coaxially fixed on the outer circumference of the rotating rod (78) and the rotating shaft (711).
3. The tooling for composite treatment of mold steel according to claim 1, characterized in that: The bottom surface of the horizontal plate of the frame (71) is provided with a guide groove, and the top surface of the vertical rod of the moving rod (74) is fixed with a guide block (75) that is slidably connected to the guide groove on the bottom surface of the horizontal plate of the frame (71).
4. The tooling for composite treatment of mold steel according to claim 1, characterized in that: The processing mechanism (5) further includes two connecting columns (53) that are rotatably connected to the two horizontal ends of the vertical plate (51), an installation rod (55) that is slidably connected to the right side surface of the vertical plate end of the vertical plate (51) and threadedly connected to the lead screw (54), an installation column (58) that is coaxially fixed to the top surface of the upper connecting column (53), a turntable (59) that is coaxially fixed to the top surface of the installation column (58), and a lever (510) that is fixed to the top surface of the turntable (59) near the edge. The lead screw (54) is coaxially fixed between the two connecting columns (53), and the installation plate (57) is fixed to the right side surface of the installation rod (55). The right side surface of the installation plate (57) is provided with several threaded holes.
5. The tooling for composite treatment of mold steel according to claim 4, characterized in that: The top surface of the working plate (1) is provided with a sliding groove and a limiting groove. The connecting rod (64) is L-shaped. A slider (65) is fixed on the bottom surface of the vertical end of the connecting rod (64) and is slidably connected to the sliding groove on the top surface of the working plate (1). A limiting strip (52) is fixed on the bottom surface of the horizontal plate end of the lower side of the upright plate (51) and is slidably connected to the limiting groove on the top surface of the working plate (1). An installation groove is provided on the right side surface of the vertical plate end of the upright plate (51), and an installation block (56) is fixed on the left side surface of the installation rod (55) and is slidably connected to the installation groove on the right side surface of the vertical plate end of the upright plate (51).
6. The tooling for composite treatment of mold steel according to claim 1, characterized in that: The bottom end of the support plate (3) is fixed with an anti-slip plate (4) that matches its shape. The thickness of the anti-slip plate (4) is 1-3cm, and the bottom surface of the anti-slip plate (4) is provided with anti-slip texture.
7. The tooling for composite treatment of mold steel according to claim 1, characterized in that: Protective plates (77) are fixed to the opposite sides of the two clamps (76). The protective plates (77) are adapted to the shape of the clamps (76) on the same side, and the thickness of the protective plates (77) is 1-4cm.
8. The tooling for composite treatment of mold steel according to claim 2, characterized in that: The moving mechanism (6) further includes a fixed box (67) fixed to the surface of one of the fixed plates (61) away from the screw (63), the moving motor (66) is located inside the fixed box (67), the clamping mechanism (7) further includes a protective box (712) fixed to the surface of one of the vertical plates of the frame (71) away from the double-acting screw (73), the clamping motor (710) is located inside the protective box (712), and the rotating shaft (711) passes through the outer wall of the protective box (712) away from the double-acting screw (73).
9. The tooling for composite treatment of mold steel according to claim 5, characterized in that: The longitudinal cross-sectional shape of the groove on the top surface of the working plate (1) is I-shaped, and the shape of the slider (65) is I-shaped to match the shape of the groove on the top surface of the working plate (1).