Hardware stamping turnover machine

By designing a metal stamping turning machine with a T-shaped clamp and motor drive, the problems of shaking and inconvenient feeding of metal stamping parts during the turning process are solved, achieving stable clamping and efficient turning, and improving stamping efficiency.

CN223946642UActive Publication Date: 2026-02-27DONGGUAN LANMAO TECHNOLOGY EQUIPMENT CO LTD
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Patent Information

Application Number
CN202520622956.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-02-27
Estimated Expiration
2035-04-03

AI Technical Summary

Technical Problem

The existing metal stamping and turning machine lacks a clamping structure, which makes the metal easy to shake during stamping and makes feeding inconvenient, thus affecting stamping efficiency.

Method used

A metal stamping and turning machine was designed, which includes a control platform, support frame, rotating plate, cylinder, T-shaped clamp and motor. The cylinder drives the slider to close with the T-shaped clamp to clamp the metal stamping parts, and the drive shaft and motor realize 360-degree turning, ensuring stable clamping and turning of the metal stamping parts.

Benefits of technology

It achieves stable clamping and flipping of metal stamping parts, improves feeding efficiency, and ensures the safety and stability of the metal stamping process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a hardware stamping upender which comprises a control machine table, the control machine table and a supporting frame vertically located on one side of the control machine table, a driving shaft is transversely arranged on one side of the top end of the control machine table, the driving shaft rotates on one side of the top end of the control machine table, a rotating plate is vertically arranged at the other end of the driving shaft, and a rotating shaft is arranged on the rotating plate. The rotating plate is vertically located on one side of the exterior of the control machine table, an air cylinder is vertically arranged on one side of the rotating plate, a limiting connecting block and a sliding block are transversely arranged at the upper end and the lower end of the front face of the rotating plate correspondingly, and the air cylinder is in driving connection with the sliding block; the air cylinder drives the sliding block to move up and down at the bottom end of the front face of the rotating plate, a first T-shaped clamping frame is transversely arranged on one side of the limiting connecting block, and a second T-shaped clamping frame is transversely arranged on one side of the sliding block. And the first T-shaped clamping frame and the second T-shaped clamping frame are parallel to each other, and a hardware stamping part is transversely placed at the top end of the second T-shaped clamping frame.
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Description

TECHNICAL FIELD

[0001] The utility model relates to hardware processing field especially is related to hardware stamping turnover machine. BACKGROUND

[0002] The turnover machine can adapt to the engineering turnover requirement of goods of different specifications, and safely, stably and effectively provide process conveying, and is widely applied to metallurgy, stamping, sheet metal, mould, papermaking, refrigeration, steel belt, wire coil, barrel material and coil material industries, but the existing stamping turnover machine generally does not have a clamping structure, so that the hardware is prone to left and right shaking during stamping, which is not conducive to the stamping process of the hardware, and there is no feeding structure, so that the hardware needs to be hoisted to the turnover machine, thereby causing the feeding to be inconvenient and reducing the feeding efficiency, and therefore the hardware stamping turnover machine is proposed. SUMMARY

[0003] The utility model discloses to overcome the above-mentioned situation shortage, aims at providing a kind of technical scheme that can solve above-mentioned problem.

[0004] Hardware stamping turnover machine, including control machine, the support frame vertically located in the control machine one side, the control machine top one side transverse of the control machine and the vertical location control machine top one side is provided with driving shaft, and driving shaft is at the vertical location control machine top one side place and rotates, the other end of the driving shaft is vertically provided with rotating plate, and rotating plate vertically located in the one side outside the control machine, the one side of the rotating plate is vertically provided with cylinder, and the upper and lower ends of the front surface of rotating plate are respectively transversely provided with limit connecting block and sliding block, and cylinder and sliding block are driven to be connected, and cylinder drives sliding block to move up and down at the bottom of the front surface of rotating plate, so that sliding block and limit connecting block are closed, the one side of the limit connecting block is transversely provided with first T type clamping frame, and the one side of the sliding block is transversely provided with second T type clamping frame, and first T type clamping frame and second T type clamping frame are mutually parallel and the top of second T type clamping frame is transversely placed with hardware stamping piece.

[0005] Preferably, the first T type clamping frame is provided with a first clamping edge beam, and the first clamping edge beam is transversely located on both sides of the bottom end of the first T type clamping frame, and the first clamping edge beam is mutually parallel with the second T type clamping frame and transversely arranged on both sides of the surface of the hardware stamping piece; the second T type clamping frame is provided with a second clamping edge beam, and the second clamping edge beam is transversely located on both sides of the surface of the second T type clamping frame, and the second clamping edge beam is mutually parallel with the first clamping edge beam and arranged on both sides of the bottom surface of the hardware stamping piece.

[0006] Preferably, the first clamping edge beam is provided with a first limiting piece, and the first limiting piece is vertically located on the front end of the side surface of the first clamping edge beam, and the first limiting piece is in the same moving direction as the first clamping edge beam.

[0007] Preferably, the second clamping edge beams are provided with second limiting sheets, and the second limiting sheets are vertically located at the rear ends of the side faces of the second clamping edge beams, and the second limiting sheets are in the same moving direction with the second clamping edge beams.

[0008] Preferably, guide rails are arranged between the sliding blocks and the rotating plates, and the guide rails are vertically located at the two sides of the front faces of the rotating plates, and the sliding blocks are horizontally arranged between the guide rails and slide with the guide rails.

[0009] Preferably, a motor is arranged between the driving shafts and the control tables, and the motor is horizontally located at the top end inside the control table, one side of the motor is drivingly connected with a driving gear, the driving gear is engaged with a driven gear, the driven gear is sleeved on the driving shaft, and the driving shaft and the driven gear are coaxially rotated.

[0010] Compared with the prior art, the utility model has the advantages that when the hardware stamping parts are horizontally placed on the surface of the second T-shaped clamping frame, the cylinder drives the sliding block and the second T-shaped frame to move upward from the bottom end of the front face of the rotating plate, until the second T-shaped clamping frame is folded with the first T-shaped clamping frame, so that the hardware stamping parts are clamped, and after the hardware stamping parts are clamped, the driving shaft drives the rotating plate, the first T-shaped clamping frame and the second T-shaped clamping frame and the hardware stamping frame clamped between the first T-shaped clamping frame and the second T-shaped clamping frame to rotate 360 degrees, so that the hardware stamping parts are turned over, at this time, the first T-shaped clamping frame is located at the bottom end of the front face of the rotating plate, and the second T-shaped clamping frame is located at the top end of the front face of the rotating plate, so that subsequent stamping of the hardware stamping parts can be turned over.

[0011] The additional aspects and advantages of the utility model will be partially given in the following description, partially will become obvious from the following description, or will be understood through the practice of the utility model. BRIEF DESCRIPTION OF DRAWINGS

[0012] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or the prior art description, obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can also be obtained according to these drawings without creating labor.

[0013] Fig. 1 It is a structural schematic view of hardware stamping turnover machine;

[0014] Fig. 2 It is another structural schematic view of hardware stamping turnover machine;

[0015] Fig. 3 It is still another structural schematic view of hardware stamping turnover machine.

[0016] As shown in the figure: 1, control machine, 2, support frame, 3, rotating plate, 4, limit connecting block, 5, first T-shaped bracket, 6, first clamping edge beam, 7, hardware stamping part, 8, sliding block, 9, second clamping edge beam, 10, guide rail, 11, air cylinder, 12, drive shaft, 13, driven gear, 14, motor, 15, driving gear, 16, first limit piece, 17, second limit piece, 18, second T-shaped bracket. DETAILED DESCRIPTION

[0017] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0018] Please refer to Figs. 1-3 In the embodiments of the utility model, the hardware stamping turnover machine comprises a control machine 1, a support frame 2 vertically arranged on one side of the control machine 1, a drive shaft 12 horizontally arranged on one side of the top end of the control machine 1 and self-rotating at one side of the top end of the control machine 1, a rotating plate 3 vertically arranged on the other end of the drive shaft 12 and on one side of the outside of the control machine 1, an air cylinder 11 vertically arranged on one side of the rotating plate 3, limit connecting blocks 4 and sliding blocks 8 horizontally arranged on the upper and lower ends of the front face of the rotating plate 3 respectively, the air cylinder 11 being drivingly connected with the sliding blocks 8, the air cylinder 11 driving the sliding blocks 8 to move up and down at the bottom end of the front face of the rotating plate 3, so that the sliding blocks 8 and the limit connecting blocks 4 are folded, a first T-shaped bracket 5 horizontally arranged on one side of the limit connecting blocks 4, a second T-shaped bracket 18 horizontally arranged on one side of the sliding blocks 8, the first T-shaped bracket 5 and the second T-shaped bracket 18 being parallel to each other, and a hardware stamping part 7 horizontally arranged on the top end of the second T-shaped bracket 18, so that when the hardware stamping part 7 is horizontally arranged on the surface of the second T-shaped bracket 18, the air cylinder 11 drives the sliding blocks 8 and the second T-shaped bracket 18 to move upward from the bottom end of the front face of the rotating plate 3 until the second T-shaped bracket 18 is folded with the first T-shaped bracket 5, so that the hardware stamping part 7 is clamped, and when the clamping of the hardware stamping part 7 is completed, the drive shaft 12 drives the rotating plate 3, the first T-shaped bracket 5 and the second T-shaped bracket 18 and the hardware stamping part 7 clamped between the first T-shaped bracket 5 and the second T-shaped bracket 18 to rotate by 360 degrees, so that the hardware stamping part 7 is turned over, at this time, the first T-shaped bracket 5 is located at the bottom end of the front face of the rotating plate 3 and the second T-shaped bracket 18 is located at the top end of the front face of the rotating plate 3, so that subsequent stamping for turning over the hardware stamping part 7 can be carried out.

[0019] The first T-shaped bracket 5 is provided with first clamping edge beams 6, and the first clamping edge beams 6 are located at both sides of the bottom end of the first T-shaped bracket 5 in the transverse direction, and the first clamping edge beams 6 are parallel to the second T-shaped bracket 18 and are transversely arranged on both sides of the surface of the hardware stamping part 7; the second T-shaped bracket 18 is provided with second clamping edge beams 9, and the second clamping edge beams 9 are located at both sides of the surface of the second T-shaped bracket 9 in the transverse direction, and the second clamping edge beams 9 are parallel to the first clamping edge beams 6 and are arranged on both sides of the bottom surface of the hardware stamping part 7, so that the cylinder 11 drives the sliding block 8 and the second T-shaped bracket 18 to move upward from the bottom end of the front side of the rotating plate 3, until the second T-shaped bracket 18 is folded with the first T-shaped bracket 5, so that the first clamping edge beams 6 and the second clamping edge beams 9 are folded and the hardware stamping part 7 is clamped.

[0020] The first clamping edge beams 6 are provided with first limiting pieces 16, and the first limiting pieces 16 are vertically located at the front end of the side of the first clamping edge beams 6, and the first limiting pieces 16 are in the same moving direction as the first clamping edge beams 6, so that when the first clamping edge beams 6 and the second clamping edge beams 9 are folded, the bottom end of the first limiting pieces 16 is vertically attached to the side of the outside of the second T-shaped bracket 18, preventing the first clamping edge beams 6 from being offset when the first clamping edge beams 6 and the second clamping edge beams 9 are folded, so that the hardware stamping part 7 cannot be accurately edge clamped.

[0021] The second clamping edge beams 9 are provided with second limiting pieces 17, and the second limiting pieces 17 are vertically located at the rear end of the side of the second clamping edge beams 9, and the second limiting pieces 17 are in the same moving direction as the second clamping edge beams 9, so that when the first clamping edge beams 6 and the second clamping edge beams 9 are folded, the bottom end of the second limiting pieces 17 is vertically attached to the side of the outside of the first T-shaped bracket 5, preventing the second clamping edge beams 9 from being offset when the first clamping edge beams 6 and the second clamping edge beams 9 are folded, so that the hardware stamping part 7 cannot be accurately edge clamped.

[0022] The sliding block 8 and the rotating plate 3 are provided with guide rails 10, and the guide rails 10 are vertically located at both sides of the front side of the rotating plate 3, and the sliding block 8 is transversely arranged between the guide rails 10 and the sliding block 8 and the guide rails 10 are slidably connected, so that the sliding block 8 and the second T-shaped bracket 18 move up and down more stably on the front side of the rotating plate 3 through the guide rails 10.

[0023] The motor 14 is arranged between the driving shaft 12 and the control table 1, and is horizontally arranged at the top end of the control table 1, one side of the motor 14 is driven and matched with a driving gear 15, the driving gear 15 is engaged with a driven gear 13, the driven gear 13 is sleeved on the driving shaft 12, and the driving shaft 12 and the driven gear 13 are coaxially rotated, so that when the motor 14 drives the driving gear 15 to drive the driven gear 13 to rotate, the driving shaft 12 is driven to rotate, and the rotating plate 3 is rotated, so that the hardware stamping part 7 is turned over.

[0024] The second T-shaped clamping frame 18 is horizontally arranged on the supporting frame 2, so that when the hardware stamping part 7 is placed on the second T-shaped clamping frame 18, the second T-shaped clamping frame 18 and the hardware stamping part 7 placed on the second T-shaped clamping frame 18 are supported by the supporting frame 2, so as to facilitate subsequent lifting of the second T-shaped clamping frame 18 and the hardware stamping part 7.

[0025] It is obvious for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, and the present application can be implemented in other specific forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be regarded as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the above description, and all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application.

Claims

1. A metal stamping turner comprising a control console, characterized in that, The control machine and the support frame vertically located on one side of the control machine, the control machine top end of one side transversely provided with a drive shaft, and the drive shaft at the control machine top end of one side from the rotation, the other end of the drive shaft is vertically provided with a rotating plate, and the rotating plate is vertically located on one side of the control machine outside, one side of the rotating plate is vertically provided with a cylinder, and the upper and lower ends of the front face of the rotating plate are respectively transversely provided with a limiting connecting block and a sliding block, and the cylinder and the sliding block are drivingly connected, and the cylinder drives the sliding block to move up and down at the bottom end of the front face of the rotating plate, so that the sliding block and the limiting connecting block are folded, one side of the limiting connecting block is transversely provided with a first T-shaped bracket, and one side of the sliding block is transversely provided with a second T-shaped bracket, and the first T-shaped bracket and the second T-shaped bracket are parallel to each other and the top end of the second T-shaped bracket is transversely placed with a hardware stamping part.

2. The hardware stamping inverter of claim 1, wherein, The first T-shaped bracket is provided with a first clamping edge beam, and the first clamping edge beam is transversely located at both sides of the bottom end of the first T-shaped bracket, and the first clamping edge beam is parallel to the second T-shaped bracket and the first clamping edge beam is transversely arranged on both sides of the surface of the hardware stamping part; the second T-shaped bracket is provided with a second clamping edge beam, and the second clamping edge beam is transversely located at both sides of the surface of the second T-shaped bracket, and the second clamping edge beam is parallel to the first clamping edge beam and the second clamping edge beam is arranged on both sides of the bottom surface of the hardware stamping part.

3. The hardware stamping inverter of claim 2, wherein, The first clamping edge beam is provided with a first limiting piece, and the first limiting piece is vertically located at the front end of the side of the first clamping edge beam, and the first limiting piece is in the same moving direction as the first clamping edge beam.

4. The hardware stamping inverter of claim 2, wherein, The second clamping edge beam is provided with a second limiting piece, and the second limiting piece is vertically located at the rear end of the side of the second clamping edge beam, and the second limiting piece is in the same moving direction as the second clamping edge beam.

5. The hardware stamping inverter of claim 1, wherein, The sliding block and the rotating plate are provided with guide rails, and the guide rails are vertically located at both sides of the front face of the rotating plate, and the sliding block is transversely arranged between the guide rails and the sliding block is slidingly connected with the guide rails.

6. The hardware stamping inverter of claim 1, wherein, The drive shaft and the control machine are provided with a motor, and the motor is transversely located at the top end of the control machine, one side of the motor is drivingly connected with a driving gear, the driving gear is engaged with a driven gear, the driven gear is sleeved on the drive shaft, and the drive shaft and the driven gear are coaxially rotated.