Waste discharging mechanism of new energy automobile cutting die frame

By designing a new energy vehicle cutting die frame and using a nitrogen spring to drive the bracket and baffle structure, the problem of difficult waste removal is solved, the waste is quickly discharged, and production efficiency and mold life are improved.

CN223367959UActive Publication Date: 2025-09-23KUNSHAN YUHENG PRECISION MASCH CO LTD
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Patent Information

Application Number
CN202422773015.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-14
Publication Date
2025-09-23
Estimated Expiration
2034-11-14

AI Technical Summary

Technical Problem

The waste generated during the processing of the mold in the existing stamping equipment is difficult to be removed from the mold quickly and effectively, resulting in mold damage and low production efficiency.

Method used

A new energy vehicle cutting die frame is designed, which includes a machine table, a cutting die frame body, a base plate, a movable plate and a bracket. A nitrogen spring is used to drive the bracket to move up and down. Combined with the baffle and blanking port design, it ensures that the waste falls through the blanking port to avoid damage to the material body. Precise positioning and fixation are achieved through guide wheels and guide sleeves.

Benefits of technology

It achieves rapid and effective discharge of waste, reduces production losses, and improves production efficiency and mold life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a waste discharge mechanism of a new energy automobile cutting die frame, which comprises a machine table, a cutting die frame body is connected above the machine table, the cutting die frame body comprises a bottom plate, a movable plate and a bracket, the machine table is connected with the bottom plate, a plurality of first cutter dies are arranged on the upper surface of the bottom plate, a plurality of second cutter dies are arranged on the lower surface of the movable plate, and the bracket is connected with the first cutter dies. The first cutter dies and the second cutter dies are in one-to-one correspondence in position, the first cutter dies are provided with material cutting openings used for material cutting of the second cutter dies, the bottom plate is provided with material falling openings matched with the first cutter dies in position, the upper surface of the bottom plate is connected with a baffle, and the baffle is arranged at the outer edge of the material falling openings. And the baffle is flush with the outer edge of the blanking port, the two sides of the baffle are connected with the first cutter die, in the blanking process, the baffle is used for preventing cut waste from falling out from the side, it is guaranteed that the waste falls from the blanking port, a material body is not prone to being damaged, production loss is reduced, and production efficiency is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of automobile cutting dies, and more specifically relates to a waste discharge mechanism of a new energy vehicle cutting die frame. Background Art

[0002] In the stamping equipment processing industry, when using molds to process products, especially metal products, some waste materials, such as metal chips, will be generated. If these waste materials cannot be removed from the mold in a timely and rapid manner, they will damage the mold or the product, shorten the mold life, reduce product quality, and affect the processing efficiency of the product when cleaning during the processing process.

[0003] The punching die in the prior art will have some blanking holes in the die, and the punched waste will fall directly into the blanking holes and then fall into the waste collection tray below. However, due to the limitation of the die height, the capacity of the waste collection tray is limited, and it is not suitable for collecting larger waste. At the same time, there is also the problem that the waste will fall beside the blanking holes and will not fall into the waste collection tray below, which can easily cause friction damage to the molded material body, so the waste needs to be cleaned frequently. Utility Model Content

[0004] Therefore, in order to solve the above technical problems, the present invention proposes a waste discharge mechanism for a new energy vehicle cutting die frame, comprising a machine table 10, a cutting die frame body 20 is connected above the machine table 10, the cutting die frame body 20 comprises a bottom plate 201, a movable plate 202 and a bracket 203, the machine table 10 is connected to the bottom plate 201, a plurality of first cutting knife molds 30 are provided on the upper surface of the bottom plate 201, a plurality of second cutting knife molds 40 are provided on the lower surface of the movable plate 202, and the positions of the first cutting knife mold 30 and the second cutting knife mold 40 are one-to-one corresponding to each other, and the first cutting knife mold 30 is provided on the The cutting opening 50 is used for cutting materials by the second cutting die 40, and the bottom plate 201 is provided with a blanking opening 60 that matches the position of the first cutting die 30. The upper surface of the bottom plate 201 is connected with a baffle 70, and the baffle 70 is arranged at the outer edge of the blanking opening 60, and the baffle 70 is flush with the outer edge of the blanking opening 60. Both sides of the baffle 70 are connected to the first cutting die 30. During the cutting process, the baffle 70 is used to prevent the waste material after cutting from falling out from the side, ensuring that the waste material falls from the blanking opening 60, is not easy to damage the material body, reduces production losses, and improves production efficiency.

[0005] A waste discharge mechanism for a new energy vehicle cutting die frame includes a machine table 10, a cutting die frame body 20 is connected above the machine table 10, and the cutting die frame body 20 includes a bottom plate 201, a movable plate 202 and a bracket 203. The machine table 10 is connected to the bottom plate 201, and a plurality of first cutting die 30 is provided on the upper surface of the bottom plate 201, and a plurality of second cutting die 40 is provided on the lower surface of the movable plate 202, and the positions of the first cutting die 30 and the second cutting die 40 are one-to-one corresponding to each other. The first cutting die 30 is provided with a plurality of The cutting opening 50 is used for cutting materials by the second cutting die 40, and the bottom plate 201 is provided with a blanking opening 60 that matches the position of the first cutting die 30. The upper surface of the bottom plate 201 is connected with a baffle 70, and the baffle 70 is arranged at the outer edge of the blanking opening 60, and the baffle 70 is flush with the outer edge of the blanking opening 60. The two sides of the baffle 70 are connected to the first cutting die 30. During the cutting process, the baffle 70 is used to prevent the waste material after cutting from falling out from the side, ensuring that the waste material falls from the blanking opening 60.

[0006] Furthermore, a plurality of nitrogen springs 80 are connected to the upper surface of the bottom plate 201, and the nitrogen springs 80 are connected to the bracket 203. Under the elastic action of the nitrogen springs 80, the bracket 203 is driven to move up and down. When the product to be cut is placed on the bracket 203, the upper surface of the bracket 203 is flush with the upper surface of the first cutting die 30, and the product to be cut is transported. When cutting is required, the movable plate 202 is placed above the product to be cut. At this time, the upper end of the nitrogen spring 80 is flush with the upper surface of the movable plate 202. The lower surface abuts, and under the gravity of the movable plate 202, the nitrogen spring 80 moves downward, thereby driving the bracket 203 to move downward, so that the first cutting knife mold 30 supports the product to be cut, and then the second cutting knife mold 40 abuts against the product to be cut to perform cutting. After the cutting is completed, the movable plate 202 is lifted, and the elastic force of the nitrogen spring 80 is greater than the gravity of the product to be cut. The nitrogen spring 80 drives the bracket 203 to reset and move upward. At this time, the bracket 203 abuts against the product after cutting and sends it to the next workstation.

[0007] Furthermore, a reinforcement block 90 is provided at the bottom of the nitrogen spring 80 , and the reinforcement block 90 is connected to the bottom plate 201 . The reinforcement block 90 is sleeved with the nitrogen spring 80 to indirectly increase the contact surface between the nitrogen spring 80 and the bottom plate 201 .

[0008] Furthermore, a connecting block 100 is provided in the middle of the nitrogen spring 80, and the connecting block 100 is sleeved with the nitrogen spring 80. A clamping platform 110 is provided on the connecting block 100, and a clamping slot 120 matching the clamping platform 110 is provided on the bracket 203. The bracket 203 is clamped with the connecting block 100 for easy disassembly and replacement.

[0009] Furthermore, the bracket 203 is provided with a plurality of guide wheels 130 for conveying the cut products, which is convenient and labor-saving.

[0010] Furthermore, the bracket 203 is made of aluminum alloy, which has good corrosion resistance and is light in weight.

[0011] Furthermore, a guide wheel column 140 is provided at the feed end of the upper surface of the bottom plate 201 for precise positioning to facilitate the introduction of the cut product.

[0012] Furthermore, guide columns 150 are provided at the corners around the lower surface of the movable plate 202, and one end of the guide column 150 is connected to the lower surface of the movable plate 202. Guide sleeves 160 are provided at the corners around the upper surface of the base plate 201, and the bottom end of the guide sleeve 160 is connected to the upper surface of the base plate 201. When the movable plate 202 is closed, the lower part of the guide column 150 is slidably connected to the guide sleeve 160, so that the movable plate 202 can be quickly and accurately matched, and then slidably connected to the base plate 201.

[0013] Furthermore, stoppers 170 are provided at the corners around the lower surface of the movable plate 202 . After the stoppers 170 are sleeved with the guide pillars 150 , they are connected to the lower surface of the movable plate 202 .

[0014] Furthermore, fixing rods 180 are provided on both sides of the base plate 201 and the movable plate 202, and the two ends of the fixing rods 180 are respectively connected to the base plate 201 and the movable plate 202, so as to fix the base plate 201 and the movable plate 202 together when they are in a stationary state to prevent the movable plate 202 from falling.

[0015] Beneficial effects of the present invention: The present invention proposes a waste discharge mechanism for a new energy vehicle cutting die frame, comprising a machine table 10, a cutting die frame body 20 connected to the upper portion of the machine table 10, the cutting die frame body 20 comprising a bottom plate 201, a movable plate 202 and a bracket 203, the machine table 10 being connected to the bottom plate 201, a plurality of first cutting knife dies 30 being provided on the upper surface of the bottom plate 201, a plurality of second cutting knife dies 40 being provided on the lower surface of the movable plate 202, and the positions of the first cutting knife dies 30 and the second cutting knife dies 40 being corresponding to each other, the first cutting knife dies 30 being provided with a plurality of first cutting knife dies 30 and the second cutting knife dies 40 being provided with a plurality of ... The second cutting knife die 40 has a cutting opening 50 for cutting materials, and the bottom plate 201 is provided with a blanking opening 60 that matches the position of the first cutting knife die 30. The upper surface of the bottom plate 201 is connected with a baffle 70, and the baffle 70 is arranged at the outer edge of the blanking opening 60, and the baffle 70 is flush with the outer edge of the blanking opening 60. Both sides of the baffle 70 are connected to the first cutting knife die 30. During the cutting process, the baffle 70 is used to prevent the waste material after cutting from falling out from the side, ensuring that the waste material falls from the blanking opening 60, is not easy to damage the material body, reduces production losses, and improves production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a partial structural schematic diagram of a waste discharge mechanism of a new energy vehicle cutting die frame according to the present utility model.

[0017] Figure 2 This is a partially enlarged view of the waste discharge mechanism of a new energy vehicle cutting die frame according to the present utility model.

[0018] Figure 3 This is a schematic diagram of the overall structure of a waste discharge mechanism of a new energy vehicle cutting die frame according to the present utility model.

[0019] Figure 4 This is a bottom view of the bottom plate of the waste discharge mechanism of a new energy vehicle cutting die frame according to the present utility model.

[0020] Figure 5 This is a structural schematic diagram of the movable plate of the waste discharge mechanism of a new energy vehicle cutting die frame in the utility model.

[0021] Description of main component symbols:

[0022] Table 10, cutting die frame body 20, bottom plate 201, movable plate 202, bracket 203, first cutting die 30, second cutting die 40, cutting port 50, blanking port 60, baffle 70, nitrogen spring 80, reinforcement block 90, connecting block 100, clamping table 110, clamping slot 120, guide wheel 130, guide wheel column 140, guide column 150, guide sleeve 160, block 170, fixing rod 180.

[0023] The following specific embodiments will further illustrate the present invention in conjunction with the above-mentioned drawings. DETAILED DESCRIPTION

[0024] The following examples are described to assist in understanding the present application, and the examples are not and should not be interpreted in any way as limiting the scope of protection of the present application.

[0025] In the following description, those skilled in the art will recognize that throughout this discussion, components may be described as separate functional units (which may include sub-units), but those skilled in the art will recognize that various components or portions thereof may be divided into separate components or may be integrated together (including within a single system or component).

[0026] At the same time, the connections between components or systems are not intended to be limited to direct connections. Instead, data between these components may be modified, reformatted, or otherwise changed by intermediate components. In addition, additional or fewer connections may be used. It should also be noted that the terms "coupled," "connected," or "input" should be understood to include direct connections, indirect connections through one or more intermediate devices, and wireless connections. Example 1:

[0027] like Figure 1 As shown in FIG, it is a partial structural diagram of a waste discharge mechanism of a new energy vehicle cutting die frame of the utility model; Figure 2 As shown in FIG, it is a partial enlarged view of the waste discharge mechanism of a new energy vehicle cutting die frame of the utility model; Figure 3 As shown in FIG, it is a schematic diagram of the overall structure of a waste discharge mechanism of a new energy vehicle cutting die frame of the present utility model; Figure 4 As shown, this is a bottom view of the bottom plate of the waste discharge mechanism of the new energy vehicle cutting die frame of the utility model; Figure 5 The figure shows a schematic structural diagram of a movable plate of a waste discharge mechanism of a cutting die frame for a new energy vehicle according to the present invention.

[0028] A waste discharge mechanism for a new energy vehicle cutting die frame includes a machine table 10, a cutting die frame body 20 is connected above the machine table 10, and the cutting die frame body 20 includes a bottom plate 201, a movable plate 202 and a bracket 203. The machine table 10 is connected to the bottom plate 201, and a plurality of first cutting die 30 is provided on the upper surface of the bottom plate 201, and a plurality of second cutting die 40 is provided on the lower surface of the movable plate 202, and the positions of the first cutting die 30 and the second cutting die 40 are one-to-one corresponding to each other. The first cutting die 30 is provided with a plurality of The cutting opening 50 is used for cutting materials by the second cutting die 40, and the bottom plate 201 is provided with a blanking opening 60 that matches the position of the first cutting die 30. The upper surface of the bottom plate 201 is connected with a baffle 70, and the baffle 70 is arranged at the outer edge of the blanking opening 60, and the baffle 70 is flush with the outer edge of the blanking opening 60. The two sides of the baffle 70 are connected to the first cutting die 30. During the cutting process, the baffle 70 is used to prevent the waste material after cutting from falling out from the side, ensuring that the waste material falls from the blanking opening 60.

[0029] The upper surface of the bottom plate 201 is connected with a plurality of nitrogen springs 80, and the nitrogen springs 80 are connected to the bracket 203. Under the elastic action of the nitrogen springs 80, the bracket 203 is driven to move up and down. When the product to be cut is placed on the bracket 203, the upper surface of the bracket 203 is flush with the upper surface of the first cutting die 30, and the product to be cut is transported. When cutting is required, the movable plate 202 is placed above the product to be cut. At this time, the upper end of the nitrogen spring 80 is flush with the lower surface of the movable plate 202. The surfaces are in contact with each other. Under the gravity of the movable plate 202, the nitrogen spring 80 moves downward, thereby driving the bracket 203 to move downward, so that the first cutting die 30 supports the product to be cut, and then the second cutting die 40 abuts against the product to be cut to perform cutting. After the cutting is completed, the movable plate 202 is lifted. The elastic force of the nitrogen spring 80 is greater than the gravity of the product to be cut. The nitrogen spring 80 drives the bracket 203 to reset and move upward. At this time, the bracket 203 abuts against the product after cutting and sends it to the next station.

[0030] A reinforcing block 90 is provided at the bottom of the nitrogen spring 80 . The reinforcing block 90 is connected to the bottom plate 201 . The reinforcing block 90 is sleeved with the nitrogen spring 80 to indirectly increase the contact surface between the nitrogen spring 80 and the bottom plate 201 .

[0031] A connecting block 100 is provided in the middle of the nitrogen spring 80, and the connecting block 100 is sleeved with the nitrogen spring 80. A clamping platform 110 is provided on the connecting block 100, and a clamping slot 120 matching the clamping platform 110 is provided on the bracket 203. The bracket 203 is clamped with the connecting block 100 for easy disassembly and replacement.

[0032] The bracket 203 is provided with a plurality of guide wheels 130 for conveying the cut products, which is convenient and labor-saving.

[0033] The bracket 203 is made of aluminum alloy, which has good corrosion resistance and is light in weight.

[0034] The feed end of the upper surface of the bottom plate 201 is also provided with a guide wheel column 140 for precise positioning to facilitate the introduction of the cut product.

[0035] Guide columns 150 are provided at the corners around the lower surface of the movable plate 202, and one end of the guide column 150 is connected to the lower surface of the movable plate 202. Guide sleeves 160 are provided at the corners around the upper surface of the base plate 201, and the bottom end of the guide sleeve 160 is connected to the upper surface of the base plate 201. When the movable plate 202 is closed, the lower part of the guide column 150 is slidably connected to the guide sleeve 160, so that the movable plate 202 can be quickly and accurately matched, and then slidably connected to the base plate 201.

[0036] Stoppers 170 are further provided at the corners around the lower surface of the movable plate 202 . After the stoppers 170 are sleeved with the guide pillars 150 , they are connected to the lower surface of the movable plate 202 .

[0037] A fixing rod 180 is provided on both sides of the bottom plate 201 and the movable plate 202. The two ends of the fixing rod 180 are respectively connected to the bottom plate 201 and the movable plate 202, so as to fix the bottom plate 201 and the movable plate 202 together when they are in a stationary state to prevent the movable plate 202 from falling.

[0038] Beneficial effects of the present invention: The present invention proposes a waste discharge mechanism for a new energy vehicle cutting die frame, comprising a machine table 10, a cutting die frame body 20 connected to the upper portion of the machine table 10, the cutting die frame body 20 comprising a bottom plate 201, a movable plate 202 and a bracket 203, the machine table 10 being connected to the bottom plate 201, a plurality of first cutting knife dies 30 being provided on the upper surface of the bottom plate 201, a plurality of second cutting knife dies 40 being provided on the lower surface of the movable plate 202, and the positions of the first cutting knife dies 30 and the second cutting knife dies 40 being corresponding to each other, the first cutting knife dies 30 being provided with a plurality of first cutting knife dies 30 and the second cutting knife dies 40 being provided with a plurality of ... The second cutting knife die 40 has a cutting opening 50 for cutting materials, and the bottom plate 201 is provided with a blanking opening 60 that matches the position of the first cutting knife die 30. The upper surface of the bottom plate 201 is connected with a baffle 70, and the baffle 70 is arranged at the outer edge of the blanking opening 60, and the baffle 70 is flush with the outer edge of the blanking opening 60. Both sides of the baffle 70 are connected to the first cutting knife die 30. During the cutting process, the baffle 70 is used to prevent the waste material after cutting from falling out from the side, ensuring that the waste material falls from the blanking opening 60, is not easy to damage the material body, reduces production losses, and improves production efficiency.

[0039] The above-described embodiments merely represent several implementation methods of the present invention. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make various modifications and improvements without departing from the concept of the present invention, and these modifications and improvements fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.

Claims

1. A waste discharge mechanism for a cutting die frame for a new energy vehicle, comprising a machine platform (10), a cutting die frame body (20) connected to the upper portion of the machine platform (10), the cutting die frame body (20) comprising a bottom plate (201), a movable plate (202) and a bracket (203), the machine platform (10) being connected to the bottom plate (201), a plurality of first cutting dies (30) being provided on the upper surface of the bottom plate (201), a plurality of second cutting dies (40) being provided on the lower surface of the movable plate (202), and the positions of the first cutting dies (30) and the second cutting dies (40) being corresponding to each other, characterized in that: The first cutting die (30) is provided with a cutting opening (50) for the second cutting die (40) to cut materials, the bottom plate (201) is provided with a blanking opening (60) that matches the position of the first cutting die (30), and the upper surface of the bottom plate (201) is connected with a baffle (70), the baffle (70) is arranged at the outer edge of the blanking opening (60), and the baffle (70) is flush with the outer edge of the blanking opening (60), and both sides of the baffle (70) are connected to the first cutting die (30), and during the cutting process, the baffle (70) is used to prevent the waste material after cutting from falling out from the side, ensuring that the waste material falls from the blanking opening (60).

2. The waste discharge mechanism of the new energy vehicle cutting die frame according to claim 1 is characterized in that: The upper surface of the bottom plate (201) is connected to a plurality of nitrogen springs (80), which are connected to the bracket (203). Under the elastic action of the nitrogen springs (80), the bracket (203) is driven to move up and down. When the product to be cut is placed on the bracket (203), the upper surface of the bracket (203) is flush with the upper surface of the first cutting die (30), and the product to be cut is transported. When cutting is required, the movable plate (202) is placed above the product to be cut. At this time, the upper end of the nitrogen spring (80) is flush with the upper surface of the movable plate (202). The lower surface abuts, and under the gravity of the movable plate (202), the nitrogen spring (80) moves downward, thereby driving the bracket (203) to move downward, so that the first cutting die (30) supports the product to be cut, and then the second cutting die (40) abuts against the product to be cut to cut. After the cutting is completed, the movable plate (202) is lifted, and the elastic force of the nitrogen spring (80) is greater than the gravity of the product to be cut. The nitrogen spring (80) drives the bracket (203) to reset and move upward. At this time, the bracket (203) abuts against the product after cutting and is sent to the next station.

3. The waste discharge mechanism of the new energy vehicle cutting die frame according to claim 2 is characterized in that: A reinforcing block (90) is provided at the bottom of the nitrogen spring (80), the reinforcing block (90) being connected to the bottom plate (201), and the reinforcing block (90) being sleeved on the nitrogen spring (80) for indirectly increasing the contact surface between the nitrogen spring (80) and the bottom plate (201).

4. The waste discharge mechanism of the new energy vehicle cutting die frame according to claim 3 is characterized in that: A connecting block (100) is provided in the middle of the nitrogen spring (80), the connecting block (100) is sleeved with the nitrogen spring (80), a clamping platform (110) is provided on the connecting block (100), a clamping slot (120) matching the clamping platform (110) is provided on the bracket (203), and the bracket (203) is clamped with the connecting block (100) for easy disassembly and replacement.

5. The waste discharge mechanism of the new energy vehicle cutting die set according to claim 4 is characterized in that: The bracket (203) is provided with a plurality of guide wheels (130) for conveying the cut products, which is convenient and labor-saving.

6. The waste discharge mechanism of the new energy vehicle cutting die set according to claim 5 is characterized by: The bracket (203) is made of aluminum alloy, which has good corrosion resistance and is lightweight.

7. The waste discharge mechanism of the new energy vehicle cutting die frame according to claim 1 is characterized in that: A guide wheel column (140) is also provided at the feeding end of the upper surface of the bottom plate (201) for accurate positioning to facilitate the introduction of the cut product.

8. The waste discharge mechanism of the new energy vehicle cutting die set according to claim 7 is characterized in that: Guide posts (150) are provided at the corners around the lower surface of the movable plate (202), and one end of the guide post (150) is connected to the lower surface of the movable plate (202). Guide sleeves (160) are provided at the corners around the upper surface of the bottom plate (201), and the bottom end of the guide sleeve (160) is connected to the upper surface of the bottom plate (201). When the movable plate (202) is closed, the lower part of the guide post (150) is slidably connected to the guide sleeve (160), so that the movable plate (202) can be quickly and accurately matched, and then slidably connected to the bottom plate (201).

9. The waste discharge mechanism of the new energy vehicle cutting die set according to claim 8 is characterized by: Stoppers (170) are further provided at the corners around the lower surface of the movable plate (202). After the stoppers (170) are sleeved with the guide pillars (150), they are connected to the lower surface of the movable plate (202).

10. The waste discharge mechanism of the new energy vehicle cutting die set according to claim 1 is characterized in that: Both sides of the bottom plate (201) and the movable plate (202) are provided with fixing rods (180), and the two ends of the fixing rods (180) are respectively connected to the bottom plate (201) and the movable plate (202), and are used to fix the bottom plate (201) and the movable plate (202) together when in a stationary state, so as to prevent the movable plate (202) from falling.