A heat treatment feeding device for mold manufacturing

CN224604563UActive Publication Date: 2026-08-07HAIKOU YAOXUNBAI MOLD MANUFACTURING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HAIKOU YAOXUNBAI MOLD MANUFACTURING CO LTD
Filing Date
2024-11-13
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0006]针对现有技术的不足,本实用新型提供了一种模具制造的热处理上料装置,解决了现有装置通过钢丝绳连接夹持组件,在移动模具材料时,钢丝绳和夹持组件会晃动,不便于稳定模具材料,且容易导致模具材料掉落的问题

Benefits of technology

[0018] 1. The heat treatment feeding device for mold manufacturing uses an electric push rod to push a third motor and its bottom clamping assembly and mold material downwards, which moves the mold material into the preheating furnace. When it is necessary to adjust the position and angle of the mold material, the first drive assembly can drive the moving seat to move, and the second lead screw drive assembly can drive the electric push rod to move, thereby adjusting the position of the clamping assembly and the mold material it clamps. The third motor can drive the clamping assembly to rotate, which can adjust the angle of the mold material. This achieves the purpose of facilitating the adjustment of the position and angle of the mold material. During the adjustment process, the mold material will not shake, avoiding the situation where the mold material falls due to shaking. It has better stability and higher safety, and solves the problem of existing devices that use steel wire ropes to connect the clamping assembly. When moving the mold material, the steel wire rope and clamping assembly will shake, which is not conducive to stabilizing the mold material and is prone to causing the mold material to fall.

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Abstract

The utility model discloses a heat treatment feeding device of mould manufacturing belongs to mould manufacturing technical field, has solved present device through the steel wire rope connection clamping assembly, when moving mould material, the steel wire rope and clamping assembly can sway, inconveniently stabilize mould material, and can easily lead to the problem of mould material falling, including moving frame, the four corners fixed mounting of moving frame bottom surface has the hydraulic cylinder, the below of moving frame is provided with clamping assembly, be provided with adjusting assembly on the moving frame, clamping assembly installs on adjusting assembly, through first drive assembly and drive mobile seat movement, through second screw drive assembly and drive electric push rod movement simultaneously, can adjust the position of clamping assembly and the mould material clamped by it, and third motor can drive clamping assembly rotation, can adjust the angle of mould material, has reached the purpose of being convenient for adjusting the position and angle of mould material, avoided the situation of mould material falling due to sway.
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Description

Technical Field

[0001] This utility model relates to the field of mold manufacturing technology, specifically to a heat treatment feeding device for mold manufacturing. Background Technology

[0002] Mold manufacturing refers to the process of processing mold blanks under specific manufacturing equipment and process conditions, changing their shape, size, relative position, and properties to make them conform to requirements, and then fitting, positioning, connecting, and assembling these parts into a mold. During mold manufacturing, mold parts need to be moved to a preheating furnace for heat treatment, and a feeding device is required for feeding. The opening direction of the preheating furnace can be determined according to specific design and usage requirements; common opening directions include top openings and side openings.

[0003] A search revealed that patent application number 202221506022.1 discloses a heat treatment feeding device for mold manufacturing, comprising two movable seats arranged symmetrically from left to right. Each movable seat has two movable wheels arranged symmetrically from front to back at its bottom. The inner bottom wall of each movable seat is provided with a height adjustment component extending to its top. The top of the left height adjustment component is provided with a horizontal plate whose end is fixedly connected to the top of the right height adjustment component. Each of the two movable seats has a rotating component whose end extends into its interior and engages with the outside of the height adjustment component on its opposite sides. A displacement component whose end extends to its bottom is provided between the front and back sides of the inner wall of the horizontal plate. The bottom of the displacement component is provided with a lifting component, and the bottom of the lifting component is provided with a clamping component.

[0004] Although the heat treatment feeding device for mold manufacturing can move the strip plate and mold material upward through the cooperation of the rotating shaft, winding roller and steel wire rope, and at the same time, through the cooperation of the first servo motor, gear and rack plate, the rectangular block can drive the limiting plate and mold material to make fine left and right adjustments, the heat treatment feeding device for mold manufacturing is connected to the clamping component by steel wire rope. When moving the mold material, the steel wire rope and clamping component will shake, which is not easy to stabilize the mold material and is prone to causing the mold material to fall.

[0005] Therefore, we propose a heat treatment feeding device for mold manufacturing. Utility Model Content

[0006] To address the shortcomings of existing technologies, this utility model provides a heat treatment feeding device for mold manufacturing, which solves the problem that existing devices connect clamping components with steel wire ropes, causing the steel wire ropes and clamping components to sway when moving mold materials, making it difficult to stabilize the mold materials and easily leading to the mold materials falling off.

[0007] To achieve the above objectives, this utility model is implemented through the following technical solution: a heat treatment feeding device for mold manufacturing, comprising a movable frame, hydraulic cylinders fixedly installed at the four corners of the bottom surface of the movable frame, an mounting plate fixedly installed on the bottom surface of the hydraulic cylinders, a traveling wheel fixedly installed on the bottom surface of the mounting plate, and a clamping assembly provided below the movable frame.

[0008] The top surface of the movable frame is provided with symmetrically distributed first sliding grooves on the left and right sides. The movable frame is provided with an adjustment component, and the clamping component is installed on the adjustment component.

[0009] The adjustment assembly includes a first drive assembly, a movable base, a second drive assembly, an electric push rod, and a third motor. The first drive assembly is disposed inside the first slide groove. The movable base is mounted on the first drive assembly. A second slide groove is formed through the middle of the top surface of the movable base. The second drive assembly is disposed in the second slide groove. The electric push rod is mounted on the second drive assembly. The bottom end of the electric push rod is fixedly mounted with the third motor. The clamping assembly is mounted on the third motor.

[0010] The hydraulic cylinder is equipped with a position sensor. Both the hydraulic cylinder and the position sensor are connected to an external feedback control system and controller. When high-precision synchronization is required, the position sensor detects the real-time displacement of the hydraulic cylinder and transmits this data to the controller through the feedback control system. The controller then fine-tunes the hydraulic valves based on the feedback data to ensure that the movement of each hydraulic cylinder remains synchronized. This is the existing structure and will not be described in detail here.

[0011] Preferably, the first driving assembly includes a first motor, a first threaded rod, a first slider, and a guide rod. The first motor is fixedly mounted on the side wall of the first slide groove located on the right side. The output end of the first motor is fixedly connected to the first threaded rod. The end of the first threaded rod away from the first motor is rotatably mounted on the side wall of the first slide groove through a bearing ring. The first motor can drive the first threaded rod to rotate.

[0012] Preferably, the outer surface of the first threaded rod is threaded with a first slider, and a guide rod is fixedly installed in the inner wall of the first groove on the left side. The outer surface of the guide rod is slidably fitted with the same first slider. The first sliders are slidably fitted in the first grooves at their corresponding positions. The movable seat is fixedly installed on the top surface of the first slider. When the first threaded rod rotates, it can drive the first slider and the movable seat to move together along the inner wall of the first groove.

[0013] Preferably, the second drive assembly includes a second motor, a second threaded rod, and a second slider. The second motor is fixedly installed on the inner wall of the second slide groove. One end of the second threaded rod is fixedly connected to the output end of the second slide groove. The other end of the second threaded rod is rotatably installed on the inner wall of the second slide groove through a bearing ring. The second motor drives the second threaded rod to rotate.

[0014] Preferably, the outer surface of the second threaded rod is threaded with a second slider that is slidably fitted inside the second groove. An electric push rod is fixedly installed in the middle of the bottom surface of the second slider. When the second threaded rod rotates, it can drive the second slider, the electric push rod at its bottom, and the third motor to move together along the inside of the second groove, thereby driving the clamping assembly to move synchronously.

[0015] Preferably, the clamping assembly includes a clamping seat, a third sliding groove, a fourth motor, a third threaded rod, a third slider, and a clamping plate. The clamping seat is fixedly installed on the output end of the third motor. The third sliding groove is formed in the middle of the bottom surface of the clamping seat. The fourth motor is fixedly installed on the side wall of the clamping seat. The output end of the fourth motor is fixedly connected to the third threaded rod through the side wall of the clamping seat. The third threaded rod is rotated by the fourth motor.

[0016] Preferably, the end of the third threaded rod away from the fourth motor is rotatably mounted on the side wall of the clamping seat via a bearing ring. Two third sliders with opposite thread directions are threaded onto the outer surface of the third threaded rod. A clamping plate is fixedly mounted on the bottom surface of the third slider. When the third threaded rod rotates, it can drive the third slider and the clamping plate on its bottom surface to move along the inner wall of the third groove, thereby completing the clamping and fixing of the mold material.

[0017] This utility model provides a heat treatment feeding device for mold manufacturing. It has the following beneficial effects:

[0018] 1. The heat treatment feeding device for mold manufacturing uses an electric push rod to push a third motor and its bottom clamping assembly and mold material downwards, which moves the mold material into the preheating furnace. When it is necessary to adjust the position and angle of the mold material, the first drive assembly can drive the moving seat to move, and the second lead screw drive assembly can drive the electric push rod to move, thereby adjusting the position of the clamping assembly and the mold material it clamps. The third motor can drive the clamping assembly to rotate, which can adjust the angle of the mold material. This achieves the purpose of facilitating the adjustment of the position and angle of the mold material. During the adjustment process, the mold material will not shake, avoiding the situation where the mold material falls due to shaking. It has better stability and higher safety, and solves the problem of existing devices that use steel wire ropes to connect the clamping assembly. When moving the mold material, the steel wire rope and clamping assembly will shake, which is not conducive to stabilizing the mold material and is prone to causing the mold material to fall.

[0019] 2. The heat treatment feeding device for this mold manufacturing uses a fourth motor to drive the third threaded rod to rotate, which in turn drives the third slider and its bottom clamping plate to move along the inner wall of the third slide groove, thereby completing the clamping and fixing of the mold material and achieving the purpose of facilitating the clamping of the mold material. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the structure of this utility model;

[0021] Figure 2 This is a schematic diagram of the movable frame structure of this utility model;

[0022] Figure 3 This is a schematic diagram of the adjustment component structure of this utility model;

[0023] Figure 4 This is a schematic diagram of the clamping component structure of this utility model.

[0024] In the diagram: 1. Moving frame; 11. First slide rail; 12. Hydraulic cylinder; 13. Mounting plate; 14. Traveling wheel; 2. Adjustment assembly; 21. First motor; 22. First threaded rod; 23. First slider; 24. Guide rod; 25. Moving seat; 26. Second slide rail; 27. Second motor; 28. Second threaded rod; 29. ​​Second slider; 210. Electric push rod; 211. Third motor; 3. Clamping assembly; 31. Clamping seat; 32. Third slide rail; 33. Fourth motor; 34. Third threaded rod; 35. Third slider; 36. Clamping plate. 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] Example 1:

[0027] like Figure 1-4As shown: The system includes a movable frame 1, with hydraulic cylinders 12 fixedly mounted at the four corners of the bottom surface of the movable frame 1. A mounting plate 13 is fixedly mounted on the bottom surface of the hydraulic cylinders 12, and a traveling wheel 14 is fixedly mounted on the bottom surface of the mounting plate 13. A clamping assembly 3 is located below the movable frame 1. Symmetrically distributed first sliding grooves 11 are formed on the left and right sides of the top surface of the movable frame 1. An adjusting assembly 2 is mounted on the movable frame 1, and the clamping assembly 3 is mounted on the adjusting assembly 2. The adjusting assembly 2 includes a first drive assembly, a movable base 25, a second drive assembly, an electric push rod 210, and a third motor 211. The first drive assembly is located inside the first sliding groove 11, and the movable base 25 is mounted on the first drive assembly. A second sliding groove 26 is formed through the center of the top surface of the movable base 25. A second drive assembly is provided in slot 26. An electric push rod 210 is mounted on the second drive assembly. A third motor 211 is fixedly mounted on the bottom end of the electric push rod 210. A clamping assembly 3 is mounted on the third motor 211. The first drive assembly includes a first motor 21, a first threaded rod 22, a first slider 23, and a guide rod 24. The first motor 21 is fixedly mounted on the side wall of the first slide groove 11 located on the right side. The output end of the first motor 21 is fixedly connected to the first threaded rod 22. The end of the first threaded rod 22 away from the first motor 21 is rotatably mounted on the side wall of the first slide groove 11 through a bearing ring. The first slider 23 is threaded onto the outer surface of the first threaded rod 22. A guide rod 24 is fixedly mounted in the inner wall of the first slide groove 11 located on the left side. The outer surface of the guide rod 24 is fitted with identical first sliders 23. Each first slider 23 is slidably fitted inside a corresponding first groove 11. A movable seat 25 is fixedly mounted on the top surface of the first slider 23. The second drive assembly includes a second motor 27, a second threaded rod 28, and a second slider 29. The second motor 27 is fixedly mounted on the inner wall of the second groove 26. One end of the second threaded rod 28 is fixedly connected to the output end of the second groove 26. The other end of the second threaded rod 28 is rotatably mounted on the inner wall of the second groove 26 via a bearing ring. The outer surface of the second threaded rod 28 is threaded with a second slider 29 that is slidably fitted inside the second groove 26. An electric push rod 210 is fixedly mounted at the center of the bottom surface of the second slider 29. The electric push rod 210 pushes the third motor 211 and its bottom clamping assembly 3 and mold material downwards, which can move the mold material into the preheating furnace. When it is necessary to adjust the position and angle of the mold material, the first drive assembly can drive the moving seat 25 to move, and the second lead screw drive assembly can drive the electric push rod 210 to move, which can adjust the position of the clamping assembly 3 and the mold material it clamps. The third motor 211 can drive the clamping assembly 3 to rotate, which can adjust the angle of the mold material. This achieves the purpose of facilitating the adjustment of the position and angle of the mold material. During the adjustment process, the mold material will not shake, which will prevent the mold material from falling due to shaking. The stability is better and the safety is higher.

[0028] Example 2:

[0029] like Figure 1 , 3 As shown in Figure 4, the clamping assembly 3 includes a clamping seat 31, a third slide groove 32, a fourth motor 33, a third threaded rod 34, a third slider 35, and a clamping plate 36. The clamping seat 31 is fixedly installed on the output end of the third motor 211. The third slide groove 32 is opened in the middle of the bottom surface of the clamping seat 31. The fourth motor 33 is fixedly installed on the side wall of the clamping seat 31. The output end of the fourth motor 33 passes through the side wall of the clamping seat 31 and is fixedly connected to the third threaded rod 34. The end of the third threaded rod 34 away from the fourth motor 33 is rotatably installed on the side wall of the clamping seat 31 through a bearing ring. Two third sliders 35 with opposite thread directions are threaded on the outer surface of the third threaded rod 34. The clamping plate 36 is fixedly installed on the bottom surface of the third slider 35. The third threaded rod 34 is rotated by the fourth motor 33, which in turn drives the third slider 35 and the clamping plate 36 on its bottom surface to move along the inner wall of the third slide groove 32, thereby completing the clamping and fixing of the mold material and achieving the purpose of facilitating the clamping of the mold material.

[0030] The working principle and usage process of this utility model: In use, the heat treatment feeding device for this mold manufacturing process clamps and fixes the mold material using the clamping assembly 3. Then, the hydraulic cylinder 12 is activated to push the moving frame 1 upwards until the mold material clamped by the clamping assembly 3 is higher than the opening at the top of the preheating furnace. Next, the mold material is moved to the top side of the preheating furnace opening using the traveling wheels 14. Then, the electric push rod 210 is activated to push the third motor 211 and its bottom clamping assembly 3 and mold material downwards, thus moving the mold material into the preheating furnace. When it is necessary to adjust the position and angle of the mold material, the device can be activated... The first motor 21 can drive the first threaded rod 22 to rotate, which in turn drives the first slider 23 and the moving seat 25 to move together along the inner wall of the first slide groove 11. At the same time, the second motor 27 drives the second threaded rod 28 to rotate, which in turn drives the second slider 29, its bottom electric push rod 210, and the third motor 211 to move together along the inside of the second slide groove 26, thereby driving the clamping assembly 3 to move synchronously. This allows the position of the clamping assembly 3 and the mold material it clamps to be adjusted. Activating the third motor 211 can drive the clamping assembly 3 to rotate, thereby adjusting the angle of the mold material.

[0031] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It will be apparent to those skilled in the art that this utility model is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or basic characteristics of this utility model. Therefore, the embodiments should be considered exemplary and non-limiting in all respects. The scope of this utility model is defined by the appended claims rather than the foregoing description, and thus all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this utility model. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0032] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A heat treatment feeding device for mold manufacturing, comprising a movable frame (1), wherein hydraulic cylinders (12) are fixedly installed at the four corners of the bottom surface of the movable frame (1), an mounting plate (13) is fixedly installed on the bottom surface of the hydraulic cylinders (12), a traveling wheel (14) is fixedly installed on the bottom surface of the mounting plate (13), and a clamping assembly (3) is provided below the movable frame (1); Its features are: The top surface of the movable frame (1) is provided with symmetrically distributed first sliding grooves (11) on the left and right sides. The movable frame (1) is provided with an adjustment component (2), and the clamping component (3) is installed on the adjustment component (2). The adjustment component (2) includes a first drive component, a movable seat (25), a second drive component, an electric push rod (210), and a third motor (211). The first drive component is disposed inside the first slide groove (11). The movable seat (25) is mounted on the first drive component. A second slide groove (26) is provided through the middle of the top surface of the movable seat (25). The second drive component is disposed in the second slide groove (26). The electric push rod (210) is mounted on the second drive component. The third motor (211) is fixedly mounted at the bottom end of the electric push rod (210). The clamping component (3) is mounted on the third motor (211).

2. The heat treatment feeding device for mold manufacturing according to claim 1, characterized in that: The first drive assembly includes a first motor (21), a first threaded rod (22), a first slider (23), and a guide rod (24). The first motor (21) is fixedly installed on the side wall of the first slide groove (11) located on the right side. The output end of the first motor (21) is fixedly connected to the first threaded rod (22). The end of the first threaded rod (22) away from the first motor (21) is rotatably installed on the side wall of the first slide groove (11) through a bearing ring.

3. The heat treatment feeding device for mold manufacturing according to claim 2, characterized in that: The outer surface of the first threaded rod (22) is threaded with a first slider (23). A guide rod (24) is fixedly installed in the inner wall of the first groove (11) on the left side. The outer surface of the guide rod (24) is slidably fitted with the same first slider (23). The first slider (23) is slidably fitted in the first groove (11) at its corresponding position. The movable seat (25) is fixedly installed on the top surface of the first slider (23).

4. The heat treatment feeding device for mold manufacturing according to claim 1, characterized in that: The second drive assembly includes a second motor (27), a second threaded rod (28), and a second slider (29). The second motor (27) is fixedly installed on the inner wall of the second slide (26). One end of the second threaded rod (28) is fixedly connected to the output end of the second slide (26). The other end of the second threaded rod (28) is rotatably installed on the inner wall of the second slide (26) through a bearing ring.

5. A heat treatment feeding device for mold manufacturing according to claim 4, characterized in that: The outer surface of the second threaded rod (28) is threaded with a second slider (29) that is slidably fitted inside the second slide groove (26). An electric push rod (210) is fixedly installed in the middle of the bottom surface of the second slider (29).

6. The heat treatment feeding device for mold manufacturing according to claim 5, characterized in that: The clamping assembly (3) includes a clamping seat (31), a third slide groove (32), a fourth motor (33), a third threaded rod (34), a third slider (35), and a clamping plate (36). The clamping seat (31) is fixedly installed on the output end of the third motor (211). The third slide groove (32) is provided in the middle of the bottom surface of the clamping seat (31). The fourth motor (33) is fixedly installed on the side wall of the clamping seat (31). The output end of the fourth motor (33) is fixedly connected to the third threaded rod (34) through the side wall of the clamping seat (31).

7. A heat treatment feeding device for mold manufacturing according to claim 6, characterized in that: The end of the third threaded rod (34) away from the fourth motor (33) is rotatably mounted on the side wall of the clamping seat (31) through a bearing ring. The outer surface of the third threaded rod (34) is threaded with two third sliders (35) with opposite thread directions. The bottom surface of the third slider (35) is fixedly mounted with a clamping plate (36).

Citation Information

Patent Citations

  • A heat treatment feeding device for mold manufacturing

    CN218808881U