Arrangement structure for stamping strip-shaped bayonet pieces

By designing an arrangement structure for stamping strip-shaped bayonet parts, and utilizing components such as electric push rods and hydraulic cylinders to achieve the correction and orderly arrangement of the bayonet parts, the problem of disordered stacking of strip-shaped bayonet parts is solved, and the efficiency of quality inspection and packaging is improved.

CN224181920UActive Publication Date: 2026-05-01KUNSHAN JUP PRECISION PARTS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
KUNSHAN JUP PRECISION PARTS CO LTD
Filing Date
2025-05-21
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

After the existing strip-shaped bayonet parts are stamped, the formed bayonet parts are stacked up in a disorderly manner, which affects the efficiency of subsequent quality inspection and packaging.

Method used

Design an arrangement structure for stamping strip-shaped bayonet parts, including a base frame, a support frame, a limiting mechanism and a conveyor belt. Utilize components such as electric push rods, rollers, a correction plate and a hydraulic cylinder to achieve correction and orderly arrangement of the strip-shaped bayonet parts.

Benefits of technology

By using correction and limiting mechanisms, the strip-shaped bayonet components are arranged in an orderly manner, improving the efficiency of quality inspection and packaging.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an arrangement structure for stamping strip-shaped bayonet pieces, which comprises a base frame, a stamping cavity is arranged on the surface of the base frame, a bearing frame is arranged in the stamping cavity, a limiting frame is driven by an electric push rod to move, so that the distance between opposite rollers is matched with the length of the strip-shaped bayonet pieces, and the strip-shaped bayonet pieces are arranged in the bearing frame. A set of small motors drive a set of deviation rectifying plates to rotate by 30 degrees towards the middle of a conveying belt, strip-shaped bayonet pieces which slide down from the side of a bearing frame after a strip-shaped bayonet piece material belt is punched are subjected to deviation rectifying and limiting conveniently, the strip-shaped bayonet pieces are straightened and located in the middle of the conveying belt at the same time, then the small motors drive the deviation rectifying plates to return, and the strip-shaped bayonet pieces are straightened. At the moment, the strip-shaped bayonet pieces are normally conveyed on the surface of the conveying belt, normal conveying of the strip-shaped bayonet pieces is not affected while the strip-shaped bayonet pieces are kept to be placed in the middle through the multiple rollers, when the strip-shaped bayonet pieces pass through the discharging frame, the auxiliary plates conduct auxiliary limiting on the strip-shaped bayonet pieces, and therefore the strip-shaped bayonet pieces can be arranged and discharged in order; and the subsequent quality inspection and packaging efficiency is improved.
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Description

An arrangement structure for stamping strip-shaped bayonet parts Technical Field

[0001] This utility model relates to the field of strip-shaped bayonet manufacturing technology, and in particular to an arrangement structure for stamping strip-shaped bayonet parts. Background Technology

[0002] The production process of strip-shaped bayonet parts requires the use of a stamping device to continuously stamp the material strip in order to produce multiple strip-shaped bayonet parts with specific shapes and sizes.

[0003] In existing strip-shaped bayonet parts, after the strip is stamped, the formed strip-shaped bayonet parts are unloaded by the conveyor belt. However, after unloading, several strip-shaped bayonet parts are piled up in a disorderly manner, which affects the efficiency of subsequent quality inspection and packaging. In view of this, we propose an arrangement structure for stamping strip-shaped bayonet parts. Summary of the Invention

[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology, adapt to the needs of reality, and provide an arrangement structure for stamping strip-shaped bayonet parts. This solves the technical problem that after the existing strip-shaped bayonet parts are stamped, the formed strip-shaped bayonet parts are unloaded by the conveyor belt, but several strip-shaped bayonet parts are stacked together in a disorderly manner after unloading, which affects the efficiency of subsequent quality inspection and packaging.

[0005] To achieve the purpose of this utility model, the technical solution adopted by this utility model is as follows: a strip-shaped bayonet part stamping arrangement structure is designed, including a base frame, a stamping cavity is provided on the surface of the base frame, a support frame is provided inside the stamping cavity, a strip-shaped bayonet part material strip is attached to the surface of the support frame, a limiting mechanism is provided on the side of the strip-shaped bayonet part material strip away from the support frame, a conveyor belt is provided inside one side of the base frame, a set of arrangement mechanisms are symmetrically provided on the surface of the conveyor belt, and a feeding frame is fixedly connected to the end of the base frame;

[0006] The arrangement mechanism includes a fixed plate, which is fixed to the surface of the base frame. A set of electric push rods are symmetrically arranged on the surface of the fixed plate. The movable end of the electric push rod is connected to a limit frame. Several rollers are evenly clamped inside the limit frame. An auxiliary plate is fixed to the end of the limit frame. A correction plate is provided on one side of the roller. A set of clamping shafts are symmetrically fixed at the upper and lower ends of the correction plate. A small motor is connected to the top of the upper clamping shaft. A positioning frame is sleeved on the outside of the small motor.

[0007] Preferably, the limiting frame forms a telescopic structure with the fixing plate via an electric push rod, and the fixing plate and the base frame are integrally formed.

[0008] Preferably, all of the rollers can rotate freely inside the limiting frame, with a portion of the roller body extending beyond the limiting frame. The correction plate forms a rotating structure with the limiting frame via a clamping shaft, a small motor, and the bottom of the auxiliary plate at one end of the limiting frame is in contact with the top of the unloading frame.

[0009] Preferably, the limiting mechanism includes a bracket, a set of brackets is symmetrically fixed on the surface of the base frame, an auxiliary roller is mounted inside the set of brackets, a set of limiting plates is symmetrically engaged on the surface of the auxiliary rollers, and a multi-stage hydraulic cylinder is connected to the surface of the limiting plate.

[0010] Preferably, the top of the auxiliary roller is flush with the top of the support frame, and the strip-shaped clamping component material strip is laid on the top of the support frame and the auxiliary roller.

[0011] Preferably, the limiting plate forms a telescopic structure with the bracket through a multi-stage hydraulic cylinder, and the arc-shaped groove opened on the inner side of the bottom of the limiting plate matches and fits the top of the auxiliary roller.

[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0013] 1. This utility model uses an electric push rod to move the limiting frame, so that the spacing between the opposing rollers is adapted to the length of the strip-shaped clamping piece. A set of small motors drives a set of correction plates to rotate 30 degrees towards the center of the conveyor belt, which facilitates the correction and limiting of the strip-shaped clamping piece that slides down from the side of the support frame after the material strip is stamped. While aligning the strip-shaped clamping piece, it is placed in the center of the conveyor belt. Then, the small motor drives the correction plates to return to their original position. At this time, the strip-shaped clamping piece is transported normally on the surface of the conveyor belt. Several rollers maintain the centered placement of the strip-shaped clamping piece without affecting its normal transport. When the strip-shaped clamping piece passes the unloading rack, the auxiliary plate provides auxiliary limiting for the strip-shaped clamping piece, so that several strip-shaped clamping pieces can be arranged and unloaded in an orderly manner, improving the efficiency of subsequent quality inspection and packaging.

[0014] 2. This utility model effectively drives a set of limiting plates to move away from or closer to each other through a set of multi-stage hydraulic cylinders, thereby adjusting the spacing between the limiting plates. This facilitates the adaptation of strip-shaped bayonet parts of different widths for limiting, while ensuring that the strip-shaped bayonet parts are placed in the center. This allows the stamped strip-shaped bayonet parts to fall as centrally as possible from the side of the support frame without significant deviation, which is beneficial for the correction of the subsequent arrangement mechanism. Attached Figure Description

[0015] Figure 1 is a schematic diagram of the overall structure of this utility model;

[0016] Figure 2 is a partial three-dimensional structural schematic diagram of this utility model;

[0017] Figure 3 is a partial structural diagram of the arrangement mechanism of this utility model;

[0018] In the diagram: 1. Base frame; 2. Stamping chamber; 3. Support frame; 4. Strip-shaped bayonet material strip; 5. Limiting mechanism; 6. Conveyor belt; 7. Arrangement mechanism; 8. Unloading rack;

[0019] 501. Support frame; 502. Auxiliary roller; 503. Limiting plate; 504. Multi-stage hydraulic cylinder;

[0020] 701. Fixed plate; 702. Electric push rod; 703. Limiting frame; 704. Roller; 705. Auxiliary plate; 706. Correcting plate; 707. Shaft clamp; 708. Small motor; 709. Positioning frame. Detailed Implementation

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments:

[0022] A strip-shaped bayonet stamping arrangement structure, as shown in Figures 1 to 3, includes a base frame 1, a stamping cavity 2 on the surface of the base frame 1, a support frame 3 inside the stamping cavity 2, a strip-shaped bayonet material strip 4 attached to the surface of the support frame 3, a limiting mechanism 5 on the side of the strip-shaped bayonet material strip 4 away from the support frame 3, a conveyor belt 6 inside one side of the base frame 1, a set of arrangement mechanisms 7 symmetrically arranged on the surface of the conveyor belt 6, and a feeding rack 8 fixedly connected to the end of the base frame 1.

[0023] The arranging mechanism 7 includes a fixed plate 701, which is fixed to the surface of the base frame 1. A set of electric push rods 702 are symmetrically arranged on the surface of the fixed plate 701. The movable end of the electric push rods 702 is connected to a limiting frame 703. The limiting frame 703 forms a telescopic structure with the fixed plate 701 through the electric push rods 702. The fixed plate 701 and the base frame 1 are integrally formed. Several rollers 704 are evenly clamped inside the limiting frame 703. An auxiliary plate 705 is fixedly connected to the end of the limiting frame 703. A correction plate 70 is provided on one side of the rollers 704. 6. A set of retaining shafts 707 are symmetrically fixed at the upper and lower ends of the correction plate 706. A small motor 708 is connected to the top of the upper retaining shaft 707. Furthermore, several rollers 704 can rotate freely inside the limiting frame 703. The cylinder of the roller 704 partially extends beyond the inside of the limiting frame 703. The correction plate 706 forms a rotating structure with the retaining shafts 707, the small motor 708 and the limiting frame 703. The bottom of the auxiliary plate 705 at one end of the limiting frame 703 is in contact with the top of the unloading frame 8. A positioning frame 709 is sleeved on the outside of the small motor 708. This invention uses an electric push rod 702 to move a limiting frame 703, so that the spacing between opposing rollers 704 is adapted to the length of the strip-shaped clamping piece. A set of small motors 708 drives a set of correction plates 706 to rotate 30 degrees toward the center of the conveyor belt 6, which facilitates the correction and limiting of the strip-shaped clamping piece that slides off the side of the support frame 3 after being stamped by the strip-shaped clamping piece material strip 4. While aligning the strip-shaped clamping piece, it is placed in the center of the conveyor belt 6. Then, the small motor 708 drives the correction plates 706 to return to their original positions. At this time, the strip-shaped clamping piece is transported normally on the surface of the conveyor belt 6. Several rollers 704 maintain the centered placement of the strip-shaped clamping piece without affecting its normal transport. When the strip-shaped clamping piece passes the unloading frame 8, the auxiliary plate 705 provides auxiliary limiting for the strip-shaped clamping piece, so that several strip-shaped clamping pieces can be arranged and unloaded in an orderly manner, improving the efficiency of subsequent quality inspection and packaging.

[0024] It is worth noting that the limiting mechanism 5 includes a bracket 501. A set of brackets 501 are symmetrically fixed on the surface of the base frame 1. An auxiliary roller 502 is mounted inside the set of brackets 501. The top of the auxiliary roller 502 is flush with the top of the support frame 3. The strip-shaped clamping material strip 4 is attached to the support frame 3 and the top of the auxiliary roller 502. A set of limiting plates 503 are symmetrically engaged on the surface of the auxiliary roller 502. The surface of the limiting plate 503 is connected to a multi-stage hydraulic cylinder 504. Furthermore, the limiting plate 503 and the bracket 501 form a telescopic structure through the multi-stage hydraulic cylinder 504. The arc-shaped groove opened on the inner side of the bottom of the limiting plate 503 matches and fits the top of the auxiliary roller 502. This utility model effectively drives a set of limiting plates 503 to move away from or closer to each other through a set of multi-stage hydraulic cylinders 504, thereby adjusting the spacing between the limiting plates 503. This facilitates the adaptation and limiting of strip-shaped bayonet parts 4 of different widths, while ensuring that the strip-shaped bayonet parts 4 are placed in the center. This allows the stamped strip-shaped bayonet parts to fall as centrally as possible from the side of the support frame 3 without causing large deviations, which is beneficial for the subsequent alignment mechanism 7 to correct the deviation.

[0025] Working principle: A set of multi-stage hydraulic cylinders 504 drives a set of limiting plates 503 to move closer or further apart, thereby adjusting the spacing between the limiting plates 503 to accommodate and limit a strip-shaped clamping component material strip 4 of a certain width. This ensures the strip-shaped clamping component material strip 4 is placed in the center, allowing the stamped strip-shaped clamping component to fall as centrally as possible from the side of the support frame 3 without significant deviation. Then, an electric push rod 702 drives the limiting frame 703 to move, so that the spacing between the opposing rollers 704 matches the length of the strip-shaped clamping component. A set of small motors 708 drives a set of correction plates 706 to move towards the conveyor belt 6. Rotating 30 degrees in the middle can correct and limit the strip-shaped clamping parts that slide down from the side of the support frame 3 after being stamped on the strip-shaped clamping parts 4. While aligning the strip-shaped clamping parts, it also places them in the center of the conveyor belt 6. Then, the small motor 708 drives the correction plate 706 to return to its position. At this time, the strip-shaped clamping parts are transported normally on the surface of the conveyor belt 6. Several rollers 704 maintain the centered placement of the strip-shaped clamping parts without affecting their normal transport. When the strip-shaped clamping parts pass through the unloading rack 8, the auxiliary plate 705 provides auxiliary limitation for the strip-shaped clamping parts, so that several strip-shaped clamping parts can be arranged in an orderly manner for unloading, improving the efficiency of subsequent quality inspection and packaging.

[0026] The embodiments disclosed herein are preferred embodiments, but are not limited thereto. Those skilled in the art can readily grasp the spirit of this utility model based on the above embodiments and make different extensions and variations. However, as long as they do not depart from the spirit of this utility model, they are all within the protection scope of this utility model.

Claims

1. A strip-shaped bayonet stamping arrangement structure, comprising a base frame (1), characterized in that, The base frame (1) has a stamping cavity (2) on its surface. A support frame (3) is located inside the stamping cavity (2). A strip-shaped bayonet material strip (4) is attached to the surface of the support frame (3). A limiting mechanism (5) is located on the side of the strip-shaped bayonet material strip (4) away from the support frame (3). A conveyor belt (6) is located inside one side of the base frame (1). A set of symmetrical arrangement mechanisms (7) is arranged on the surface of the conveyor belt (6). A feeding rack (8) is fixed to the end of the base frame (1). The arrangement mechanism (7) includes a fixing plate (701), which is fixed to the surface of the base frame (1). A set of electric push rods (702) are symmetrically arranged on the surface of the fixed plate (701). The movable end of the electric push rod (702) is connected to a limit frame (703). Several rollers (704) are evenly clamped inside the limit frame (703). An auxiliary plate (705) is fixedly connected to the end of the limit frame (703). A correction plate (706) is provided on one side of the roller (704). A set of clamping shafts (707) are symmetrically fixed at the upper and lower ends of the correction plate (706). A small motor (708) is connected to the top of the upper clamping shaft (707). A positioning frame (709) is sleeved on the outside of the small motor (708).

2. The arrangement structure for stamping strip-shaped bayonet parts as described in claim 1, characterized in that, The limiting frame (703) forms a telescopic structure with the fixing plate (701) via the electric push rod (702), and the fixing plate (701) and the base frame (1) are integrally formed.

3. The arrangement structure for stamping strip-shaped bayonet parts as described in claim 1, characterized in that, Several rollers (704) can rotate freely inside the limiting frame (703). The cylinder of the roller (704) extends partially beyond the inside of the limiting frame (703). The correction plate (706) forms a rotating structure with the limiting frame (703) through the clamping shaft (707) and the small motor (708). The bottom of the auxiliary plate (705) at one end of the limiting frame (703) is in contact with the top of the unloading frame (8).

4. The arrangement structure for stamping strip-shaped bayonet parts as described in claim 1, characterized in that, The limiting mechanism (5) includes a bracket (501), a set of brackets (501) are symmetrically fixed on the surface of the base frame (1), an auxiliary roller (502) is mounted inside the set of brackets (501), a set of limiting plates (503) are symmetrically engaged on the surface of the auxiliary roller (502), and a multi-stage hydraulic cylinder (504) is connected to the surface of the limiting plate (503).

5. The arrangement structure for stamping strip-shaped bayonet parts as described in claim 4, characterized in that, The top of the auxiliary roller (502) is flush with the top of the support frame (3), and the strip-shaped clamping material strip (4) is placed on the top of the support frame (3) and the auxiliary roller (502).

6. The arrangement structure for stamping strip-shaped bayonet parts as described in claim 4, characterized in that, The limiting plate (503) forms a telescopic structure with the bracket (501) through a multi-stage hydraulic cylinder (504), and the arc-shaped groove opened on the inner side of the bottom of the limiting plate (503) matches and fits the top of the auxiliary roller (502).