Waste recovery equipment for forging machining

By designing a forging waste recycling equipment with a base plate, moving wheels, placement mechanism, and pushing device, the problem of existing equipment being unable to classify and store waste has been solved, and the efficient recycling, transportation, and reuse of large-volume waste materials has been achieved.

CN223791515UActive Publication Date: 2026-01-13CHONGQING LIANDA HEAVY FORGING TECH CO LTD
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Patent Information

Application Number
CN202520482225.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-19
Publication Date
2026-01-13
Estimated Expiration
2035-03-19

AI Technical Summary

Technical Problem

Existing forging waste recycling and transfer equipment cannot classify and store waste according to its size, which is not conducive to the recycling and transfer of large-volume waste that can be reused later.

Method used

A forging waste recycling device was designed, comprising a base plate, moving wheels, a placement mechanism, and a pushing device. By setting up first and second recycling bins, as well as locking seats, adjusting screws, and other structures, the device enables the classified storage and transfer of waste materials of different volumes.

Benefits of technology

This system enables the classification and storage of waste materials based on their volume, improving the efficiency of recycling and transporting large-volume waste materials and facilitating their subsequent reuse.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of waste recovery, in particular to waste recovery equipment for forging machining. Comprising a bottom plate, moving wheels and a placing mechanism, the placing mechanism comprises an abutting block, a first recycling box, a second recycling box, a locking seat, a T-shaped guide rod, a threaded seat, an adjusting screw rod, a limiting plate and a pushing device, after the equipment moves to a feeding point, large-size waste materials can be placed in the first recycling box, and meanwhile small-size scrap waste materials are stored in the second recycling box; and then equipment movement can be achieved through cooperation of a pushing device and moving wheels, waste recycling and transferring are achieved, and then the problems that existing forging machining waste recycling and transferring equipment cannot conduct classified storage according to the size of waste during use, and follow-up recycling and transferring of large-size waste capable of being reused are not facilitated can be solved.
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Description

Technical Field

[0001] This utility model relates to the field of waste recycling technology, and in particular to a waste recycling device for forging processing. Background Technology

[0002] In the forging process, a transfer device is needed to collect and transfer forging waste. Existing transfer devices have poor buffering effect and do not have a clamping structure. When people push the transfer device, it is easy to vibrate, which increases the difficulty of transfer. In addition, it is impossible to clamp and fix the transfer box, which is easy to fall off, making it inconvenient for people to use.

[0003] Existing technology CN221969587U discloses a forging waste recycling and transfer device, relating to the field of transfer equipment. A forging waste recycling and transfer device includes a base, with a recycling box mounted on the top of the base. An electric rod is fixedly connected to both the front and back of the base's inner cavity. A moving block is fixedly connected to the inner side of the electric rod, and a fixed column is fixedly connected to the top of the moving block. The top of the fixed column extends through to the top of the base and is fixedly connected to an L-shaped rod. This utility model provides a forging waste recycling and transfer device. First, the recycling box filled with forging waste is placed on the base. At this time, the electric rod drives the moving block to move relative to it. The moving block drives the rollers to slide within the base. Simultaneously, the moving block drives the fixed column to move relative to it. The fixed column drives the L-shaped rod to move relative to it. The L-shaped rod drives the arc-shaped retaining ring to move relative to it, causing the arc-shaped retaining ring to clamp and fix the surface of the recycling box, preventing displacement.

[0004] When the applicant used the above-mentioned equipment for the recycling and transfer of forging scrap, it found that: because the size of the forging scrap varies, the larger scrap can be reused, while the smaller fragments can be disposed of directly. However, the above-mentioned equipment cannot classify and store the scrap according to its size, which is not conducive to the recycling and transfer of large scrap that can be reused in the future. Utility Model Content

[0005] The purpose of this utility model is to provide a waste recycling device for forging processing, which aims to solve the problem that existing waste recycling and transfer equipment for forging processing cannot classify and store waste according to its size, which is not conducive to the recycling and transfer of large-volume waste that can be reused later.

[0006] To achieve the above objectives, this utility model provides a waste recycling device for forging processing, including a base plate with several casters at the bottom and a placement mechanism.

[0007] The placement mechanism includes an abutment block, a first recycling bin, a second recycling bin, a locking seat, a T-shaped guide rod, a threaded seat, an adjusting screw, a limiting plate, and a pushing device. The abutment block is fixedly connected to the base plate and is arranged in an L-shape and symmetrically installed. The first recycling bin is located on the left side of the base plate, and the second recycling bin is located on the right side of the base plate. The locking seat is symmetrically arranged on the base plate, and its two front positioning pins can slide into two positioning holes on the side wall of the first or second recycling bin. The T-shaped guide rod is threadedly connected to the locking seat and slidably connected to the base plate, and is symmetrically arranged at the bottom of the locking seat. The threaded seat is fixedly connected to the base plate and is located on the side of the base plate near the locking seat. The adjusting screw is threadedly connected to the threaded seat, and its front end is detachably connected to the locking seat. Two limiting plates are fixedly connected to the locking seat and are snapped onto the front side of the adjusting screw. The pushing device is located on one side of the base plate.

[0008] The first and second recycling bins each have handles welded to their sides.

[0009] The pushing device includes a U-shaped seat and a mating assembly. The U-shaped seat is fixedly connected to the base plate. The mating assembly is disposed on one side of the U-shaped seat.

[0010] The mating assembly includes a connecting rod and a push rod. The connecting rod is welded to one side of the U-shaped seat and is set at an angle; the push rod is welded to the connecting rod.

[0011] The waste recycling equipment for forging also includes an anti-slip mechanism, which includes an upper anti-slip plate and a lower anti-slip plate. The upper anti-slip plate is detachably connected to the push rod and is located on the upper side of the push rod; the lower anti-slip plate is detachably connected to the push rod and is fixedly connected to the upper anti-slip plate and is located at the bottom of the upper anti-slip plate.

[0012] This utility model discloses a waste recycling device for forging processing. In use, the device is first propelled by a pushing device, which, with the assistance of the moving wheels, allows for movement. After moving the device to the loading point, large-volume waste is placed in the first recycling bin, while smaller-volume scrap is stored in the second recycling bin. The device is then moved again by the pushing device and the moving wheels to achieve waste recycling and transfer. By rotating the adjusting screw, the locking seat is moved away from either the first or second recycling bin, releasing either bin and allowing for direct removal. This solves the problem of existing forging processing waste recycling and transfer equipment being unable to classify and store waste according to its size, hindering the recycling and transfer of large-volume waste suitable for subsequent reuse. Attached Figure Description

[0013] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0014] Figure 1 This is a schematic diagram of the overall structure of the waste recycling equipment for forging processing according to the first embodiment of this utility model.

[0015] Figure 2 This is a structural schematic diagram of the locking seat according to the first embodiment of this utility model.

[0016] Figure 3 This is a schematic diagram of the adjusting screw according to the first embodiment of the present invention.

[0017] Figure 4 This is a schematic diagram of the overall structure of the waste recycling equipment for forging processing according to the second embodiment of this utility model.

[0018] In the diagram: 101-base plate, 102-moving wheel, 103-abutment block, 104-first recycling bin, 105-second recycling bin, 106-locking seat, 107-T-shaped guide rod, 108-threaded seat, 109-adjusting screw, 110-limiting plate, 111-handle, 112-U-shaped seat, 113-connecting rod, 114-push rod, 201-upper anti-slip plate, 202-lower anti-slip plate. Detailed Implementation

[0019] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.

[0020] Example 1:

[0021] like Figures 1 to 3 As shown, where Figure 1 This is a schematic diagram of the overall structure of a waste recycling equipment for forging processing. Figure 2 This is a structural schematic diagram of the locking seat 106. Figure 3This is a schematic diagram of the adjusting screw 109. This utility model provides a waste recycling device for forging processing: it includes a base plate 101, moving wheels 102, and a placement mechanism. The placement mechanism includes an abutment block 103, a first recycling box 104, a second recycling box 105, a locking seat 106, a T-shaped guide rod 107, a threaded seat 108, an adjusting screw 109, a limiting plate 110, and a pushing device. The pushing device includes a U-shaped seat 112 and a mating assembly, which includes a connecting rod 113 and a push rod 114. This solution solves the problem that existing forging processing waste recycling and transfer equipment cannot classify and store waste according to its size, hindering the recycling and transfer of large-volume waste that can be reused later. It can be understood that the aforementioned solution can achieve classified recycling of forging waste.

[0022] In this embodiment, the bottom of the base plate 101 is provided with several casters 102, which facilitate the movement of the equipment, and the casters 102 can be universal self-locking casters.

[0023] The abutment block 103 is fixedly connected to the base plate 101 and is arranged in an L-shape and symmetrically installed. The first recycling bin 104 is located on the left side of the base plate 101, and the second recycling bin 105 is located on the right side of the base plate 101. The locking seat 106 is symmetrically arranged on the base plate 101, and its two front positioning pins can slide into two positioning holes on the side wall of the first recycling bin 104 or the second recycling bin 105. The T-shaped guide rod 107 is threadedly connected to the locking seat 106 and to the base plate. A sliding connection is provided, and the locking seat 106 is symmetrically arranged at the bottom of the locking seat 106. The threaded seat 108 is fixedly connected to the base plate 101 and is located on the side of the base plate 101 near the locking seat 106. The adjusting screw 109 is threadedly connected to the threaded seat 108, and its front end is detachably connected to the locking seat 106. Two limiting plates 110 are fixedly connected to the locking seat 106 and are snapped onto the front side of the adjusting screw 109. The pushing device is located on one side of the base plate 101.The abutment block 103 is fixed by positioning pins and bolts arranged from bottom to top, which facilitates positioning assistance when fixing the first recycling box 104 and the second recycling box 105. Two positioning pins are symmetrically arranged on the front side of the locking seat 106. The positioning pins can slide into the positioning holes of the first recycling box 104 or the second recycling box 105. When installing the first recycling box 104 and the second recycling box 105, they are placed on the base plate 101 respectively, with their two sides abutting against the abutment block 103. At this time, the positioning holes of the first recycling box 104 or the second recycling box 105 are aligned with the positioning pins on the locking seat 106. Then, maintaining the position, the adjusting screw 109 is rotated to push the locking seat 106 to move. When the positioning pins are inserted into the positioning holes, the first recycling box 104 or the second recycling box 105 can be fixed, preventing it from shaking and falling when the equipment is moved. The T-shaped guide rod 107 is vertically arranged, with the external threaded end at the top... The optical shaft is installed in the threaded hole at the bottom of the locking seat 106. The end of the optical shaft slides in the groove on the base plate 101. The lower side disc slides in the bottom surface of the base plate 101 and simultaneously limits the movement. A fitting hole for rotating an internal hexagonal wrench is provided on the bottom end face. The threaded seat 108 is fixed by a positioning pin and bolts to facilitate the setting of the adjusting screw 109. The adjusting screw 109 has a circular part on the front side and a slot on the rear side of the circular part. The slot facilitates the locking of the two limiting plates 110. The external hexagonal end on the rear side of the adjusting screw 109 facilitates the rotation of the wrench. A pre-tightening nut is provided on the adjusting screw 109. The pre-tightening nut needs to be loosened before adjustment. The limiting plate 110 is fixed by a positioning pin and bolts. After the limiting plate 110 is installed, it can ensure that the front end of the adjusting screw 109 is stably connected to the locking seat 106 without disengaging, and at the same time ensure that the adjusting screw 109 can rotate smoothly. The pushing device is used to push and move the equipment.

[0024] Secondly, handles 111 are welded to both sides of the first recycling bin 104 and the second recycling bin 105. The handles 111 facilitate the taking, placing, and moving of the first recycling bin 104 and the second recycling bin 105.

[0025] Then, the U-shaped seat 112 is fixedly connected to the base plate 101; the mating assembly is disposed on one side of the U-shaped seat 112. After the U-shaped seat 112 is snapped in, it is fixed by bolts, and the mating assembly is used for equipment movement.

[0026] Finally, the connecting rod 113 is welded to one side of the U-shaped seat 112 and is set at an angle; the push rod 114 is welded to the connecting rod 113. One end of the connecting rod 113 is welded to the U-shaped seat 112, and the push rod 114 is welded to the other end.

[0027] When using this utility model to solve the problem that existing forging waste recycling and transfer equipment cannot classify and store waste according to its size, which is not conducive to the recycling and transfer of large-volume waste that can be reused later, the equipment is first pushed by the pushing device. With the cooperation of the moving wheels 102, the equipment can be moved to the loading point. Large-volume waste can be placed in the first recycling box 104, while small-volume fragments are stored in the second recycling box 105. Then, the equipment can be moved again by the pushing device and the moving wheels 102 to realize the recycling and transfer of waste. By rotating the adjusting screw 109, the locking seat 106 is moved away from the first recycling box 104 or the second recycling box 105, which can be released. Then, it can be directly moved and removed by the handle 111. This solves the problem that existing forging waste recycling and transfer equipment cannot classify and store waste according to its size, which is not conducive to the recycling and transfer of large-volume waste that can be reused later.

[0028] Example 2:

[0029] like Figure 4 As shown, where Figure 4 This is a schematic diagram of the overall structure of a waste recycling device for forging processing. Based on the first embodiment, this utility model provides a waste recycling device for forging processing. The waste recycling device for forging processing also includes an anti-slip mechanism, which includes an upper anti-slip plate 201 and a lower anti-slip plate 202.

[0030] The upper anti-slip plate 201 is detachably connected to the push rod 114 and is located on the upper side of the push rod 114; the lower anti-slip plate 202 is detachably connected to the push rod 114 and fixedly connected to the upper anti-slip plate 201, and is located at the bottom of the upper anti-slip plate 201. The push rod 114 has symmetrically arranged circular non-through holes at its top, facilitating the engagement of the integrated pin on the semi-circular cavity of the upper anti-slip plate 201. Threaded holes are respectively provided on the planes on both sides of the upper anti-slip plate 201 that abut against the lower anti-slip plate 202. The lower anti-slip plate 202 fits against the bottom of the push rod 114 through its own semi-circular cavity and is then connected to the upper anti-slip plate 201 by bolts. Anti-slip textures are respectively provided on the surfaces of the upper anti-slip plate 201 and the lower anti-slip plate 202.

[0031] In this embodiment, by setting the upper anti-slip plate 201 and the lower anti-slip plate 202, the anti-slip performance of the push rod 114 when pushing and holding is improved, which is conducive to the stable pushing and moving of the device.

[0032] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.

Claims

1. A waste recycling device for forging processing, comprising a base plate, wherein a plurality of casters are provided on the bottom of the base plate, characterized in that: It also includes a placement mechanism; The placement mechanism includes an abutment block, a first recycling bin, a second recycling bin, a locking seat, a T-shaped guide rod, a threaded seat, an adjusting screw, a limiting plate, and a pushing device. The abutment block is fixedly connected to the base plate and is arranged in an L-shape and symmetrically installed. The first recycling bin is located on the left side of the base plate, and the second recycling bin is located on the right side of the base plate. The locking seat is symmetrically arranged on the base plate, and its two front positioning pins can slide into two positioning holes on the side wall of the first or second recycling bin. The T-shaped guide rod is threadedly connected to the locking seat and slidably connected to the base plate, and is symmetrically arranged at the bottom of the locking seat. The threaded seat is fixedly connected to the base plate and is located on the side of the base plate near the locking seat. The adjusting screw is threadedly connected to the threaded seat, and its front end is detachably connected to the locking seat. Two limiting plates are fixedly connected to the locking seat and are snapped onto the front side of the adjusting screw. The pushing device is located on one side of the base plate.

2. The waste recycling equipment for forging processing as described in claim 1, characterized in that: Handles are welded to both sides of the first and second recycling bins.

3. The waste recycling equipment for forging processing as described in claim 1, characterized in that: The pushing device includes a U-shaped seat and a mating assembly, wherein the U-shaped seat is fixedly connected to the base plate; the mating assembly is disposed on one side of the U-shaped seat.

4. The waste recycling equipment for forging processing as described in claim 3, characterized in that: The mating assembly includes a connecting rod and a push rod. The connecting rod is welded to one side of the U-shaped seat and is set at an angle; the push rod is welded to the connecting rod.

5. The waste recycling equipment for forging processing as described in claim 4, characterized in that... : The waste recycling equipment for forging also includes an anti-slip mechanism, which includes an upper anti-slip plate and a lower anti-slip plate. The upper anti-slip plate is detachably connected to the push rod and is located on the upper side of the push rod; the lower anti-slip plate is detachably connected to the push rod and is fixedly connected to the upper anti-slip plate and is located at the bottom of the upper anti-slip plate.

Citation Information

Patent Citations

  • Recycling and transferring device for forging machining waste

    CN221969587U