Automobile die machining and manufacturing auxiliary device

By designing an automobile mold processing device consisting of a base, a support frame, a screw and an electric telescopic rod, the problem of unreasonable mold surface shape adjustment is solved, uniform grinding and deburring of the mold surface are achieved, and processing quality and efficiency are improved.

CN223313651UActive Publication Date: 2025-09-09SHANGHAI SIYI IND PRODUCT DESIGN CO LTD
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Patent Information

Application Number
CN202422652478.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-09-09
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

Existing auxiliary devices for automobile mold processing and manufacturing cannot be reasonably adjusted according to the shape of the mold surface, resulting in uneven processing quality.

Method used

A device including a base, a support frame, a top plate, a screw, a slider, an electric telescopic rod and a processing component was designed. The motor drives the screw to rotate and the slider to slide, so as to adjust the height and position of the processing component to ensure that it fits the mold surface. Combined with the cooperation of the electric telescopic rod and the spring, it can achieve effective processing of uneven areas.

Benefits of technology

It improves the quality and efficiency of mold processing and ensures the uniformity and consistency of mold surface grinding and deburring.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of automobile dies, in particular to an automobile die machining and manufacturing auxiliary device which comprises a base, two supporting frames are welded to the two sides of the base respectively, a top plate is welded to the tops of the two supporting frames, a mounting groove is formed in the bottom of the top plate, and a lead screw is mounted in the mounting groove through a bearing. And the outer side of the lead screw is sleeved with a second sliding block through thread engagement, a connecting frame is welded to the bottom of the second sliding block, and a second mounting supporting plate is welded to the bottom of the connecting frame. The machining assembly can be driven to slide at a constant speed along the surface of the die through rotation of the output end of the first motor, the surface of the die can be polished and deburred through the machining assembly, and uneven parts of the surface of the die can be treated through stretching and retracting of the machining assembly; therefore, the fit with the surface of the die is ensured, and the quality of the processed die is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of automobile molds, in particular to an auxiliary device for machining and manufacturing automobile molds. Background Art

[0002] Automotive molds are a general term for the various molds used to manufacture automotive parts. These molds include stamping dies, injection molds, forging molds, casting wax molds, glass molds, and many other types. In the automotive manufacturing process, mold design and manufacture are crucial to ensuring component quality and production efficiency.

[0003] During the production process, automobile molds need to be processed, such as surface grinding, burr removal and other operations. However, the existing automobile mold processing process usually requires manual processing, which is very time-consuming and labor-intensive. Therefore, an automobile mold processing auxiliary device is needed.

[0004] An existing auxiliary device for automobile mold processing and manufacturing cannot be reasonably adjusted according to the shape of the mold surface being processed during use. For example, during the production process of automobile parts bending molds, their surfaces need to be polished and deburred. The surface shape of such parts has protrusions and depressions. When processing such molds, the auxiliary device cannot fit the mold surface shape, resulting in uneven quality after mold processing.

[0005] For this purpose, a kind of automobile mould processing and manufacturing auxiliary device is specially proposed. Utility Model Content

[0006] The purpose of the present utility model is to provide an automobile mold processing and manufacturing auxiliary device to solve the problems raised in the above-mentioned background technology. To achieve the above-mentioned purpose, the present utility model provides the following technical solutions: An automobile mold processing and manufacturing auxiliary device, comprising a base, a support frame welded on both sides of the base, a top plate welded on the top of the two support frames, a mounting groove formed at the bottom of the top plate, a screw rod installed inside the mounting groove through a bearing, a second slider provided on the outer side of the screw rod through a threaded engagement sleeve, a connecting frame welded at the bottom of the second slider, a second mounting support plate welded at the bottom of the connecting frame, a first mounting support plate installed on the top of the second mounting support plate, a processing assembly installed on the bottom of the first mounting support plate, an operating table installed on the top of the base through a rotating seat, a first electric telescopic rod fixed to one side of the support frame by bolts, the output end of the first electric telescopic rod passes through and extends out of the interior of the support frame, a splint is fixed on the output end of the first electric telescopic rod, and a first motor is installed inside the top plate.

[0007] Preferably, a plurality of discharge holes are provided at equal distances inside both sides of the base, and the discharge holes pass through the interior of the base.

[0008] Preferably, a first supporting slide bar is fixed on both sides of the interior of the installation groove, and a first slider is welded on both sides of the top of the connecting frame, and the first slider is slidably sleeved on the outer side of the first supporting slide bar.

[0009] Preferably, a second electric telescopic rod is fixed to the top of the second mounting support plate by bolts, the output end of the second electric telescopic rod passes through and extends out of the interior of the second mounting support plate, and the bottom of the output end of the second electric telescopic rod is connected to the top of the first mounting support plate by bolts.

[0010] Preferably, a fourth supporting slide bar is welded to both sides of the top of the first mounting support plate, and the top ends of the two fourth supporting slide bars slide through the interior of the second mounting support plate.

[0011] Preferably, the processing assembly includes a fixed plate, and two third support slide rods are welded on both sides of the top of the fixed plate. The top end of the third support slide rod slides through the interior of the first mounting support plate, and a spring is provided on the outer side of the third support slide rod.

[0012] Preferably, a mounting plate is welded to both sides of the bottom of the fixed plate, and a processing brush is installed between the two mounting plates through a rotating shaft. A second motor is fixed to one side of one of the mounting plates by bolts, and the output end of the second motor passes through and extends out of the interior of the mounting plate and is fixedly connected to the rotating shaft of the processing brush.

[0013] Preferably, a control ring is fixed to the outer side of the operating table through a connecting rod, and a second supporting slide rod is welded to one side of the splint, and one end of the second supporting slide rod slides through the interior of the support frame.

[0014] Compared with the prior art, the present invention provides an auxiliary device for automobile mold processing and manufacturing, which has the following beneficial effects:

[0015] The mold to be processed is placed above the operating table, and then the bottom end of the processing component is brought into contact with and squeezed against the mold surface by controlling the height of the processing component. The rotation of the output end of the first motor can drive the processing component to slide at a uniform speed along the surface of the mold. The mold surface can be polished and deburred by the processing component, and the uneven parts of the mold surface can be processed by the extension and contraction of the processing component, thereby ensuring that it fits the mold surface and improving the quality of the mold after processing. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a structural diagram of the main body of the utility model;

[0017] Figure 2This is a side structural diagram of the present utility model;

[0018] Figure 3 This is a schematic diagram of the top view of the base of the utility model;

[0019] Figure 4 For this utility model Figure 2 Schematic diagram of the enlarged structure at point A in the middle.

[0020] In the figure: 1. Base; 2. Rotating seat; 3. Operating table; 4. Processing assembly; 401. Fixed plate; 402. Processing brush; 403. Mounting plate; 404. Second motor; 405. Spring; 406. Third supporting slide; 5. Clamp; 6. First mounting support plate; 601. Fourth supporting slide; 7. First motor; 8. Screw; 9. Connecting frame; 901. First slider; 10. Second slider; 11. Mounting groove; 12. Top plate; 13. Support frame; 14. First electric telescopic rod; 15. Discharge hole; 16. Control ring; 17. Second mounting support plate; 18. Second electric telescopic rod; 19. First supporting slide; 20. Second supporting slide. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0022] Example 1: A support frame 13 is welded on both sides of the base 1, and a top plate 12 is welded on the top of the two support frames 13. A mounting groove 11 is provided at the bottom of the top plate 12. A screw rod 8 is installed inside the mounting groove 11 through a bearing, and a second slider 10 is provided on the outside of the screw rod 8 through a threaded engagement sleeve. A connecting frame 9 is welded to the bottom of the second slider 10, and a second mounting support plate 17 is welded to the bottom of the connecting frame 9. A first mounting support plate 6 is installed on the top of the second mounting support plate 17, and a processing component 4 is installed on the bottom of the first mounting support plate 6. An operating table 3 is installed on the top of the base 1 through a rotating seat 2. A first electric telescopic rod 14 is fixed to one side of the support frame 13 by bolts. The output end of the first electric telescopic rod 14 passes through and extends out of the interior of the support frame 13, and a splint 5 is fixed to the output end of the first electric telescopic rod 14. A first motor 7 is installed inside the top plate 12.

[0023] Specifically, such as Figure 1 and Figure 2As shown, the mold to be processed is placed above the operating table 3, and then the two clamps 5 are controlled by the first electric telescopic rod 14 to clamp the two sides of the mold placed above the operating table 3 to ensure the stability of the mold during the processing. Then, by controlling the height of the processing component 4, the bottom end of the processing component 4 is contacted and squeezed with the mold surface, and the rotation of the output end of the first motor 7 can drive the screw rod 8 to rotate, and the rotation of the screw rod 8 can drive the second slider 10 to slide along the installation direction of the screw rod 8. Since the processing component 4 is installed below the second slider 10 through the structure, the movement of the second slider 10 can drive the processing component 4 to slide at a uniform speed along the surface of the mold, and the processing component 4 can be used to grind and deburr the mold surface, and the extension and contraction of the processing component 4 can be used to process the uneven parts of the mold surface, thereby ensuring that it fits the mold surface, thereby improving the quality of the mold after processing.

[0024] Example 2: A plurality of discharge holes 15 are provided at equal distances on both sides of the base 1, and the discharge holes 15 pass through the interior of the base 1. A first support slide 19 is fixed on both sides of the interior of the mounting groove 11, and a first slider 901 is welded on both sides of the top of the connecting frame 9. The first slider 901 is slidably sleeved on the outside of the first support slide 19. The second electric telescopic rod 18 is fixed to the top of the second mounting support plate 17 by bolts. The output end of the second electric telescopic rod 18 passes through and extends out of the interior of the second mounting support plate 17. The bottom of the output end of the second electric telescopic rod 18 is connected to the top of the first mounting support plate 6 by bolts. A fourth support slide 601 is welded on both sides of the top of the first mounting support plate 6, and the top ends of the two fourth support slides 601 slide through the interior of the second mounting support plate 17. Component 4 includes a fixed plate 401, and two third support slides 406 are welded on both sides of the top of the fixed plate 401, the top of the third support slide 406 slides through the inside of the first mounting support plate 6, and the outer side of the third support slide 406 is sleeved with a spring 405, and a mounting plate 403 is welded on both sides of the bottom of the fixed plate 401, and a processing brush 402 is installed between the two mounting plates 403 through a rotating shaft, a second motor 404 is fixed to one side of a mounting plate 403 by bolts, and the output end of the second motor 404 passes through and extends out of the interior of the mounting plate 403 and is fixedly connected to the rotating shaft of the processing brush 402, a control ring 16 is fixed to the outside of the operating table 3 through a connecting rod, and a second support slide 20 is welded on one side of the splint 5, and one end of the second support slide 20 slides through the inside of the support frame 13.

[0025] Specifically, such as Figure 1 、 Figure 2 、 Figure 3 and Figure 4As shown, the debris and burrs processed on the mold can be processed through the discharge hole 15. When the debris falls on both sides of the top of the base 1, the operator can quickly clean the burrs from the top of the base 1 through the discharge hole 15. Since the bottom of the second slider 10 is welded with a connecting frame 9, when the second slider 10 moves, it will synchronously drive the connecting frame 9 to move. When the connecting frame 9 moves, the first sliders 901 welded on both sides of the top of the connecting frame 9 will slide along the installation direction of the first support slide bar 19, thereby ensuring the stability of the connecting frame 9 during movement. A second mounting support plate 17 is welded to the bottom, and a second electric telescopic rod 18 is installed on the top of the second mounting support plate 17. The output end of the second electric telescopic rod 18 passes through the second mounting support plate 17 and is connected to the top of the first mounting support plate 6. The fourth supporting slide bars 601 welded on both sides of the top of the first mounting support plate 6 are slidably installed in the second mounting support plate 17. Therefore, the movement of the connecting frame 9 can simultaneously drive the first mounting support plate 6 to move, and the extension of the output end of the second electric telescopic rod 18 can drive the processing assembly 4 to move downward. The processing assembly 4 is equipped with a processing assembly 4, and the first mounting support plate 6 is moved downward, so that the processing brush 402 can be brought into contact with and squeezed against the mold surface. At the same time, the third support slide bars 406 installed on both sides of the top of the fixed plate 401 will move inside the first mounting support plate 6 and compress the spring 405. Through the rebound force generated by the compression of the spring 405 and the gravity of the processing brush 402 itself, when a depression appears on the mold surface, the processing brush 402 will continue to move downward, so that the processing brush 402 is always in contact with the mold surface. When there is a bulge on the mold surface, the processing brush 402 will be squeezed, thereby making the processing The brush 402 moves upward and moves along the raised part of the mold for processing. The rotation of the output end of the second motor 404 can drive the processing brush 402 to rotate, thereby grinding and deburring the surface of the mold. The operating table 3 can be controlled to rotate above the rotating seat 2 through the control ring 16, so that the operator can change the position of the mold placed above the operating table 3. When the output end of the first electric telescopic rod 14 extends to drive the splint 5 to move, the two second support slides 20 installed on one side of the splint 5 will slide inside the support frame 13, thereby ensuring the supporting strength and stability of the splint 5.

[0026] Working principle: When in use, the mold to be processed is placed above the operating table 3, and then the two clamping plates 5 are controlled by the first electric telescopic rod 14 to clamp the two sides of the mold placed above the operating table 3 to ensure the stability of the mold during the processing. The extension of the output end of the second electric telescopic rod 18 can drive the processing component 4 to move downward. Since the processing component 4 is installed under the first mounting support plate 6, the downward movement of the first mounting support plate 6 can make the processing brush 402 contact and squeeze the mold surface, and at the same time, the third support slide bars 406 installed on both sides of the top of the fixed plate 401 will It moves inside the first mounting support plate 6 and compresses the spring 405 at the same time. Through the rebound force generated by the compression of the spring 405 and the gravity of the processing brush 402 itself, when a depression appears on the mold surface, the processing brush 402 will continue to move downward, so that the processing brush 402 is always in contact with the mold surface. When there is a protrusion on the mold surface, the processing brush 402 will be squeezed, so that the processing brush 402 moves upward and moves along the protruding part of the mold for processing. The rotation of the output end of the second motor 404 can drive the processing brush 402 to rotate, thereby grinding and deburring the surface of the mold.

[0027] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

Claims

1. An auxiliary device for automobile mold processing and manufacturing, comprising a base (1), characterized in that: A support frame (13) is welded to each side of the base (1), a top plate (12) is welded to the top of the two support frames (13), a mounting groove (11) is provided at the bottom of the top plate (12), a screw rod (8) is installed inside the mounting groove (11) through a bearing, a second slider (10) is provided on the outside of the screw rod (8) through a threaded engagement sleeve, a connecting frame (9) is welded to the bottom of the second slider (10), a second mounting support plate (17) is welded to the bottom of the connecting frame (9), and the second mounting support plate (17) is welded to the bottom of the second mounting support plate (17). A first mounting support plate (6) is installed on the top of the support frame (7), a processing assembly (4) is installed on the bottom of the first mounting support plate (6), an operating table (3) is installed on the top of the base (1) through a rotating seat (2), a first electric telescopic rod (14) is fixed to one side of the support frame (13) by bolts, an output end of the first electric telescopic rod (14) passes through and extends out of the interior of the support frame (13), a clamping plate (5) is fixed to the output end of the first electric telescopic rod (14), and a first motor (7) is installed inside the top plate (12).

2. The automobile mold processing and manufacturing auxiliary device according to claim 1, characterized in that: A plurality of discharge holes (15) are respectively provided at equal distances inside both sides of the base (1), and the discharge holes (15) penetrate the interior of the base (1).

3. The automobile mold manufacturing auxiliary device according to claim 1, characterized in that: A first supporting slide bar (19) is fixed on both sides of the interior of the mounting groove (11), and a first slider (901) is welded on both sides of the top of the connecting frame (9), and the first slider (901) is slidably sleeved on the outside of the first supporting slide bar (19).

4. The automobile mold manufacturing auxiliary device according to claim 1, characterized in that: A second electric telescopic rod (18) is fixed to the top of the second mounting support plate (17) by means of bolts, an output end of the second electric telescopic rod (18) passes through and extends out of the interior of the second mounting support plate (17), and a bottom of the output end of the second electric telescopic rod (18) is connected to the top of the first mounting support plate (6) by means of bolts.

5. The automobile mold manufacturing auxiliary device according to claim 4, characterized in that: A fourth support slide bar (601) is welded to both sides of the top of the first mounting support plate (6), and the top ends of the two fourth support slide bars (601) slide through the interior of the second mounting support plate (17).

6. The automobile mold manufacturing auxiliary device according to claim 1, characterized in that: The processing assembly (4) includes a fixed plate (401), and two third support slide bars (406) are welded on both sides of the top of the fixed plate (401), the top end of the third support slide bar (406) slides through the inside of the first mounting support plate (6), and the outer side of the third support slide bar (406) is provided with a spring (405).

7. The automobile mold manufacturing auxiliary device according to claim 6, characterized in that: A mounting plate (403) is welded to both sides of the bottom of the fixing plate (401), and a processing brush (402) is mounted between the two mounting plates (403) via a rotating shaft. A second motor (404) is fixed to one side of one mounting plate (403) via a bolt, and an output end of the second motor (404) passes through and extends out of the interior of the mounting plate (403) to be fixedly connected to the rotating shaft of the processing brush (402).

8. The automobile mold manufacturing auxiliary device according to claim 1, characterized in that: A control ring (16) is fixed to the outside of the operating table (3) via a connecting rod, and a second supporting slide bar (20) is welded to one side of each splint (5), and one end of the second supporting slide bar (20) slides through the interior of the support frame (13).