Automatic alignment device for cutting short bars

By setting up a material guide mechanism at the bottom frame of the conveyor body, the problem of scattering and stacking of short rod cutting materials at the end of the conveyor belt is solved, and the automatic alignment and neat sliding of short rod cutting materials is achieved, which improves packaging efficiency and safety.

CN223160578UActive Publication Date: 2025-07-29DONGGUAN THE SAME METAL MATERIALS CO LTD
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Patent Information

Application Number
CN202422784435.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-07-29
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

When the short rod cutting material is discharged at the end of the conveyor belt, it rushes to the packaging table due to inertia, causing scattering and accumulation, affecting the packaging efficiency and may cause drop.

Method used

The material guide mechanism is arranged at the base frame of the conveyor body, including L-shaped support plate, substrate, pallet, L-shaped joint plate, L-shaped enclosure plate, short enclosure plate, guide rod, calibration plate, rubber tube and U-shaped seat. Through the combined design of these components, the short rod cutting material can be buffered, guided and slide down one by one.

Benefits of technology

It realizes automatic alignment and neat slide of short rod cutting materials, reduces inertial impact force, and improves packaging efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic alignment device for short bar cutting, which comprises a conveyor body and a bottom frame, the bottom of the conveyor body is provided with the bottom frame, the automatic alignment device further comprises a material guide mechanism, the material guide mechanism comprises an L-shaped support plate, a base plate, a supporting plate, a footing rod, an L-shaped connecting plate, an L-shaped surrounding plate, a short surrounding plate, a guide rod, a correction plate, a rubber pipe, a U-shaped seat and a notch box, the guide mechanism is arranged at the position of the bottom frame of the conveyor body, the guide mechanism forms a structure for entering the cut short bars at the position of the conveyor body, the cut short bars can be blocked, buffered and guided at the position of the L-shaped coaming of the guide mechanism, and then the cut short bars can be arranged and slide down one by one along the V-shaped plate face of the correcting plate. At the moment, the short rod cut materials obliquely slide off along the inclined plate face of the L-shaped connecting plate between the short surrounding plate and the L-shaped surrounding plate, the short rod cut materials can be automatically aligned on the surface of the L-shaped connecting plate one by one and slide into the U-shaped base and the notch box, and the short rod cut materials can be conveniently and orderly taken away to be packaged.
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Description

Technical Field

[0001] The utility model relates to the technical field of short bar cutting and conveying, in particular to an automatic alignment device for short bar cutting. Background Technique

[0002] A bar refers to a material in the shape of a circular or polygonal long stick with a certain length. Generally, a bar is not a casting, but a raw material for forgings. It is usually obtained by stretching, die extrusion or machining. After the bar is cut and polished to obtain short bar cuttings, the short bar cuttings are usually conveyed to a packaging table by a conveyor belt for packaging.

[0003] When the short bar cuttings of the prior art are conveyed from the conveyor belt to the packaging table, the short bar cuttings move out at the end of the conveyor belt. After the short bar cuttings are discharged on the surface of the conveyor belt, they often rush towards the packaging table due to inertia, resulting in more short bar cuttings scattered on the surface of the packaging table, which is not conducive to packaging and taking. In addition, when a large number of short bar cuttings are stacked on the surface of the packaging table, they are also prone to collide with each other, causing the short bar cuttings at the edge of the packaging table to fall. For this reason, we propose an automatic alignment device for short bar cuttings. Content of the Utility Model

[0004] The main purpose of the utility model is to provide an automatic alignment device for short bar cuttings. A guiding mechanism is arranged at the chassis of the conveyor body. The guiding mechanism forms a structure for receiving short bar cuttings at the conveyor body. The short bar cuttings can be intercepted, buffered and guided at the L-shaped enclosing plate of the guiding mechanism. Then the short bar cuttings can slide down one by one along the V-shaped plate surface of the alignment plate. At this time, the short bar cuttings slide obliquely along the inclined plate surface of the L-shaped connecting plate between the short enclosing plate and the L-shaped enclosing plate. The short bar cuttings can be automatically aligned on the surface of the L-shaped connecting plate and slide into the U-shaped seat and the notch box, which is convenient for the short bar cuttings to be neatly taken away for packaging. And the back of the alignment plate obtains buffering at the L-shaped enclosing plate through a spring and a rubber tube, so as to reduce the inertial impact force when the short bar cuttings are discharged, ensure that the short bar cuttings can smoothly align and slide at the guiding mechanism, and can effectively solve the problems in the background technique.

[0005] To achieve the above purpose, the technical solution adopted by the utility model is as follows:

[0006] Short bar cutting material automatic alignment device, including a conveyor body and a chassis. The bottom of the conveyor body is installed with a chassis, and also includes a material guiding mechanism. The material guiding mechanism includes an L-shaped support plate, a base plate, a support plate, a bottom foot rod, an L-shaped connecting plate, an L-shaped enclosing plate, a short enclosing plate, a guide rod, a calibration plate, a rubber tube, a U-shaped seat and a notch box. The L-shaped support plate is locked to the outside of the chassis under the discharging end of the conveyor body through bolts, and a base plate is welded outside the plate body of the L-shaped support plate extending out of the conveyor body. The support plate and the bottom foot rod are respectively welded on the upper and lower plate surfaces of the base plate, and an L-shaped connecting plate is welded on the surface of the support plate. The short connecting plate of the L-shaped connecting plate extends into the frame of the conveyor body, and an L-shaped enclosing plate is welded on the L-shaped plate edge of the L-shaped connecting plate away from the conveyor body. A short enclosing plate is welded on the short plate edge of the L-shaped connecting plate away from the L-shaped enclosing plate, and guide holes for inserting the guide rod are symmetrically arranged on the long plate body surface of the L-shaped connecting plate facing the conveyor body. A calibration plate is welded on the rod body of the guide rod extending towards the conveyor body, and a rubber tube is adhered between the calibration plate and the surface of the L-shaped enclosing plate among the guide rods. A notch box is welded through a U-shaped seat outside the discharging end plates of the L-shaped connecting plate, the L-shaped enclosing plate and the short enclosing plate.

[0007] Furthermore, four groups of rubber tubes are arranged and adhered on the surfaces of the calibration plate and the L-shaped enclosing plate, and springs are sleeved outside the four groups of tube bodies of the rubber tubes;

[0008] By adopting the above technical scheme, there are more rubber tubes between the calibration plate and the L-shaped enclosing plate for soft connection, and then the spring can provide elastic support at the rubber tube.

[0009] Furthermore, two groups of guide holes are symmetrically arranged on the long plate body surface of the L-shaped enclosing plate, and the cavity size of the guide holes is the same as the rod body size of the guide rod;

[0010] By adopting the above technical scheme, the L-shaped enclosing plate can be connected by inserting the guide rod into the guide hole.

[0011] Furthermore, a rectangular opening is opened outside one side box wall of the notch box, and a U-shaped seat is welded at the rectangular opening of the notch box. The U-shaped plate surface of the U-shaped seat is welded to the L-shaped connecting plate, the L-shaped enclosing plate and the short enclosing plate;

[0012] By adopting the above technical scheme, the notch box is welded with the U-shaped seat at the rectangular opening, and the U-shaped seat is welded to the L-shaped connecting plate, the L-shaped enclosing plate and the short enclosing plate to form the table surface of the sliding rod.

[0013] Furthermore, an inward concave plate surface is arranged on the plate body surface of the calibration plate facing the conveyor body, and the inward concave plate surface of the calibration plate is a V-shaped inclined plate surface;

[0014] By adopting the above technical scheme, the calibration plate can guide the short bar cutting materials discharged from the conveyor body to align and slide down with its own V-shaped inclined plate surface.

[0015] Furthermore, the long plate body of the L-shaped connecting plate is provided with a plate surface that is inclined downward toward the U-shaped seat;

[0016] By adopting the above technical solution, the short bar cuttings discharged from the conveyor body can slide into the U-shaped seat and the notch box along the inclined plate surface of the L-shaped connecting plate.

[0017] Compared with the prior art, the present invention has the following beneficial effects:

[0018] The utility model provides a material guiding mechanism at the bottom frame of the conveyor body, and the material guiding mechanism forms a structure for receiving short-bar cuttings at the conveyor body. The short-bar cuttings can be intercepted, buffered and guided at the L-shaped enclosure of the material guiding mechanism, and then the short-bar cuttings can be arranged and slid down one by one along the V-shaped plate surface of the calibration plate. At this time, the short-bar cuttings can slide down along the inclined plate surface of the L-shaped connecting plate between the short enclosure and the L-shaped enclosure, and the short-bar cuttings can be automatically aligned one by one on the surface of the L-shaped connecting plate and slide into the U-shaped seat and the notch box, so that the short-bar cuttings can be neatly taken away for packaging.

[0019] In addition, the back of the calibration plate is cushioned by springs and rubber tubes at the L-shaped enclosure, thereby reducing the inertial impact force when the short stick cuttings are discharged, ensuring that the short stick cuttings can smoothly align and slide on the material guide mechanism. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a schematic diagram of the overall structure of the automatic alignment device for short bar cuttings of the utility model.

[0021] Figure 2 This is a schematic diagram of the disassembly of the support plate and L-shaped connecting plate of the automatic alignment device for short bar cuttings of the present invention.

[0022] Figure 3 This is an exploded view of the material guide mechanism of the automatic alignment device for short bar cutting in the utility model.

[0023] In the figure: 1. Conveyor body; 2. Base frame; 3. Material guiding mechanism; 4. L-shaped support plate; 5. Base plate; 6. Support plate; 7. Base rod; 8. L-shaped connecting plate; 9. L-shaped enclosure; 10. Short enclosure; 11. Guide hole; 12. Guide rod; 13. Alignment plate; 14. Rubber tube; 15. Spring; 16. U-shaped seat; 17. Notch box. DETAILED DESCRIPTION

[0024] In order to make the technical means, creative features, objectives and effects achieved by the present invention easy to understand, the present invention is further described below in conjunction with specific implementation methods.

[0025] like Figures 1-3As shown in the figure, the short bar cutting and automatic alignment device includes a conveyor body 1 and a chassis 2. The chassis 2 is installed at the bottom of the conveyor body 1. It also includes a feeding guide mechanism 3, which includes an L-shaped support plate 4, a base plate 5, a support plate 6, a bottom foot rod 7, an L-shaped connecting plate 8, an L-shaped enclosing plate 9, a short enclosing plate 10, a guide rod 12, a calibration plate 13, a rubber tube 14, a U-shaped seat 16, and a notch box 17. The L-shaped support plate 4 is bolted and locked outside the chassis 2 below the discharging end of the conveyor body 1, and the base plate 5 is welded outside the plate body of the L-shaped support plate 4 extending out of the conveyor body 1. The support plate 6 and the bottom foot rod 7 are respectively welded on the upper and lower plate surfaces of the base plate 5, and an L-shaped connecting plate 8 is welded on the surface of the support plate 6. The short connecting plate of the L-shaped connecting plate 8 extends between the frames of the conveyor body 1, and the L-shaped enclosing plate 9 is welded on the outer edge of the L-shaped plate of the L-shaped connecting plate 8 away from the conveyor body 1. The short enclosing plate 10 is welded on the outer edge of the short plate of the L-shaped connecting plate 8 away from the L-shaped enclosing plate 9, and guide holes 11 for inserting the guide rod 12 are symmetrically opened on the surface of the long plate body of the L-shaped connecting plate 8 facing the conveyor body 1. The calibration plate 13 is welded on the rod body of the guide rod 12 extending towards the conveyor body 1, and a rubber tube 14 is bonded between the calibration plate 13 and the surface of the L-shaped enclosing plate 9 among the guide rods 12. The notch box 17 is welded through the U-shaped seat 16 outside the discharging end plates of the L-shaped connecting plate 8, the L-shaped enclosing plate 9, and the short enclosing plate 10.

[0026] Among them, four groups of rubber tubes 14 are arranged and bonded on the surfaces of the calibration plate 13 and the L-shaped enclosing plate 9, and a spring 15 is sleeved outside the four groups of tube bodies of the rubber tubes 14;

[0027] By adopting the above technical solution, there are more rubber tubes 14 for soft connection between the calibration plate 13 and the L-shaped enclosing plate 9, and then the spring 15 can provide elastic support at the rubber tubes 14.

[0028] Among them, two groups of guide holes 11 are symmetrically opened on the surface of the long plate body of the L-shaped enclosing plate 9, and the cavity size of the guide holes 11 is the same as the rod body size of the guide rod 12;

[0029] By adopting the above technical solution, the L-shaped enclosing plate 9 can be connected by inserting the guide rod 12 into the guide holes 11.

[0030] Among them, a rectangular opening is opened outside one side wall of the notch box 17, and the U-shaped seat 16 is welded at the rectangular opening of the notch box 17. The U-shaped plate surface of the U-shaped seat 16 is welded to the L-shaped connecting plate 8, the L-shaped enclosing plate 9, and the short enclosing plate 10;

[0031] By adopting the above technical solution, the notch box 17 is welded with the U-shaped seat 16 at the rectangular opening, and the U-shaped seat 16 is welded to the L-shaped connecting plate 8, the L-shaped enclosing plate 9, and the short enclosing plate 10 to form the table surface of the sliding rod.

[0032] Among them, the plate surface of the alignment plate 13 facing the conveyor body 1 is provided with a concave plate surface, and the concave plate surface of the alignment plate 13 is a V-shaped inclined plate surface;

[0033] By adopting the above technical solution, the alignment plate 13 can guide the short rod cut materials discharged from the conveyor body 1 to slide down in alignment with its V-shaped inclined plate surface.

[0034] Among them, the long plate body of the L-shaped connecting plate 8 is provided with an inclined and decreasing plate surface in the direction of the U-shaped seat 16;

[0035] By adopting the above technical solution, the short rod cut materials discharged from the conveyor body 1 can slide into the U-shaped seat 16 and the notch box 17 along the inclined plate surface of the L-shaped connecting plate 8.

[0036] It should be noted that the present utility model is an automatic alignment device for short rod cut materials. A material guiding mechanism 3 is arranged at the underframe 2 of the conveyor body 1. The L-shaped support plate 4 of the material guiding mechanism 3 is locked on the surface of the underframe 2 by bolts. Then, the L-shaped support plate 4 welds a support plate 6 to the base plate 5 to support the L-shaped connecting plate 8. The outer side of the L-shaped connecting plate 8 is welded with an L-shaped enclosing plate 9 and a short enclosing plate 10 to form a structure for guiding the short rod cut materials to slide down. Then, the L-shaped connecting plate 8, the L-shaped enclosing plate 9 and the short enclosing plate 10 are welded with a U-shaped seat 16 and a notch box 17. When the short rod cut materials are placed vertically along the conveying direction on the surface of the conveyor body 1, the short rod cut materials can be conveyed to the surface of the L-shaped connecting plate 8. Then, under the action of inertia, the short rod cut materials can impact the alignment plate 13. The alignment plate 13 presses the rubber tube 14 and the spring 15 to obtain buffering at the L-shaped enclosing plate 9. And the alignment plate 13 is guided by a guide rod 12 at the guide hole 11 of the L-shaped enclosing plate 9 for guiding movement. The short rod cut materials can slide down one by one along the V-shaped plate surface of the alignment plate 13. Then, the short rod cut materials slide obliquely along the inclined plate surface of the L-shaped connecting plate 8 between the short enclosing plate 10 and the L-shaped enclosing plate 9. The short rod cut materials can be automatically aligned on the surface of the L-shaped connecting plate 8 and slide into the U-shaped seat 16 one by one. And the short rod cut materials in the U-shaped seat 16 can be squeezed into the notch box 17 under the action of mutual collision and taken away for packaging.

[0037] It should be noted that the present utility model is an automatic alignment device for short rod cut materials. The components in the present utility model are all components known to those skilled in the art, and their structures and principles can all be known by those skilled in the art through technical manuals or obtained through conventional experimental methods.

[0038] The foregoing has shown and described the basic principles, main features and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above-mentioned embodiments, and what is described in the above-mentioned embodiments and the specification only illustrates the principles of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.

Claims

1. Automatic alignment device for short bar cutting materials, comprising a conveyor body (1) and a chassis (2), the bottom of the conveyor body (1) is installed with the chassis (2), and it is characterized in that: It further includes a material guiding mechanism (3). The material guiding mechanism (3) includes an L-shaped support plate (4), a base plate (5), a supporting plate (6), a bottom foot rod (7), an L-shaped connecting plate (8), an L-shaped enclosing plate (9), a short enclosing plate (10), a guide rod (12), a calibration plate (13), a rubber tube (14), a U-shaped seat (16) and a notch box (17). An L-shaped support plate (4) is locked outside the chassis (2) below the discharging end of the conveyor body (1) through bolts, and a base plate (5) is welded outside the plate body of the L-shaped support plate (4) extending out of the conveyor body (1). A supporting plate (6) and a bottom foot rod (7) are respectively welded on the upper and lower plate surfaces of the base plate (5), and an L-shaped connecting plate (8) is welded on the surface of the supporting plate (6). The short connecting plate of the L-shaped connecting plate (8) extends into the space between the frames of the conveyor body (1), and an L-shaped enclosing plate (9) is welded on the L-shaped plate edge of the L-shaped connecting plate (8) away from the conveyor body (1). A short enclosing plate (10) is welded on the short plate edge of the L-shaped connecting plate (8) away from the L-shaped enclosing plate (9), and guide holes (11) for inserting the guide rod (12) are symmetrically formed on the long plate body surface of the L-shaped connecting plate (8) facing the conveyor body (1). A calibration plate (13) is welded on the rod body of the guide rod (12) extending towards the conveyor body (1), and a rubber tube (14) is adhesively bonded between the calibration plate (13) and the surface of the L-shaped enclosing plate (9) between the guide rods (12). A notch box (17) is welded through a U-shaped seat (16) outside the discharging end plates of the L-shaped connecting plate (8), the L-shaped enclosing plate (9) and the short enclosing plate (10).

2. The automatic alignment device for short bar cutting according to claim 1, characterized in that: Four groups of rubber tubes (14) are arranged and adhesively bonded on the surfaces of the calibration plate (13) and the L-shaped enclosing plate (9), and springs (15) are sleeved outside the four groups of tube bodies of the rubber tubes (14).

3. The short bar cutting and automatic alignment device according to claim 1, characterized in that: Two groups of guide holes (11) are symmetrically formed on the long plate body surface of the L-shaped enclosing plate (9), and the cavity size of the guide holes (11) is the same as the rod body size of the guide rod (12).

4. The short bar cutting and automatic alignment device according to claim 1, wherein: A rectangular opening is formed outside one side wall of the notch box (17), and a U-shaped seat (16) is welded at the rectangular opening of the notch box (17). The U-shaped plate surface of the U-shaped seat (16) is welded to the L-shaped connecting plate (8), the L-shaped enclosing plate (9) and the short enclosing plate (10).

5. The automatic alignment device for short bar cutting according to claim 1, characterized in that: The plate body surface of the calibration plate (13) facing the conveyor body (1) is provided with an inwardly concave plate surface, and the inwardly concave plate surface of the calibration plate (13) is a V-shaped inclined plate surface.

6. The short bar cutting and automatic alignment device according to claim 1, characterized in that: The long plate body of the L-shaped connecting plate (8) is provided with an inclined and decreasing plate surface towards the U-shaped seat (16).