Upper division bar device for production of automatic framing machine

By designing an automated partition conveying device in the frame loader, using technical means such as servo motors, linkage gears and lifters, the problem of small spacing between adjacent partitions is solved, and the convenience and efficiency of the automated frame loading process is achieved.

CN222906932UActive Publication Date: 2025-05-27FOSHAN JUYUAN INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202422014072.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-20
Publication Date
2025-05-27
Estimated Expiration
2034-08-20

AI Technical Summary

Technical Problem

During the framing process, the existing frame loader has a small spacing between the spacers, which may be transported at the same time. It requires manual adjustment by staff, which is inconvenient to use.

Method used

A top partition device for production of automatic frame loading machines is designed. The servo motor is used to drive the linkage gear to rotate. The linkage gear drives the rack to move along the conveyor seat. The material transfer seat and the rack are moved back and forth between the upper conveyor and the material picking conveyor. The lifter is used to drive the lifting plate to move up and down, and the partition bars on the material picking conveyor are placed one by one on the loading conveyor.

Benefits of technology

It ensures that the partition strips are conveyed at the same time without staff monitoring and adjustment, and improves the automation and convenience of the framing process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an upper parting strip device for automatic framing machine production, which comprises a conveying seat, a feeding conveyor, a material taking conveyor, a servo motor, a material moving seat and a lifter, the conveying seat and the feeding conveyor are sequentially arranged along the parting strip conveying direction, and the material taking conveyor is arranged at the top of the conveying seat and is positioned on the same horizontal line with the feeding conveyor; the lifter is arranged on the material moving seat, and a jacking plate is arranged at the output end of the lifter; a servo motor of the upper parting strip device for production of the automatic framing machine can drive a linkage gear to rotate, the linkage gear drives a rack to move along a conveying base, a material moving base and the rack can move in a reciprocating mode between an upper conveyor and a material taking conveyor along with the rack, and a lifting device on the material moving base can drive a jacking plate to move up and down. In this way, the division bars on the material taking conveyor can be placed on the feeding conveyor one by one, the situation that two adjacent division bars are conveyed along the feeding conveyor at the same time is avoided, workers do not need to monitor and adjust the division bars, and use is convenient.
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Description

Technical Field

[0001] The utility model relates to the technical field of frame assembling machines, in particular to an upper spacer device for producing automatic frame assembling machines. Background Art

[0002] Aluminum profiles are produced and formed from aluminum rods through processes such as extrusion, cooling and cutting. After production and forming, aluminum profiles are generally framed by aluminum profile framing machines. During the framing process, aluminum profiles need to be separated by spacers to prevent friction between the upper and lower layers of aluminum profiles and cause damage to the surface of the aluminum profiles. The spacers are stacked in a spacer frame and taken out layer by layer from the spacer frame by a material taking mechanism and placed on a conveyor belt for transportation. The spacing between the spacers needs to be increased in order to support the aluminum profiles. However, existing framing machines directly set two conveyor belts with different conveying speeds to convey the spacers. One conveyor belt conveys the taken out spacers in a step-by-step manner, and the other conveyor belt continuously conveys and moves, so that the spacers in contact with the continuously moving conveyor belt can be separated from other spacers. However, since the spacing between two adjacent spacers of each layer of spacers taken out is small, it is easy for two adjacent spacers to be conveyed at the same time, which requires manual adjustment and correction by the staff, and is inconvenient to use. Utility Model Content

[0003] In order to solve the above technical problems, the utility model provides a servo motor of an upper spacer device for automatic framing machine production, which can drive a linkage gear to rotate, and the linkage gear drives the rack to move along a conveying seat, and the material transfer seat and the rack can move back and forth between the upper conveyor and the material taking conveyor, and the lifter on the material transfer seat can drive the lifting plate to move up and down, so that the spacers on the material taking conveyor can be placed one by one on the loading conveyor to avoid the situation where two adjacent spacers are conveyed along the loading conveyor at the same time. It does not require staff to monitor and adjust, and is easy to use.

[0004] A spacer device for automatic framing machine production includes a conveying seat, a loading conveyor, a picking conveyor, a servo motor, a material moving seat and a lifter. The conveying seat and the loading conveyor are arranged in sequence along the spacer conveying direction, and the picking conveyor is arranged on the top of the conveying seat and is located on the same horizontal line as the loading conveyor. The lifter is arranged on the material moving seat, and a lifting plate is provided at the output end of the lifter. The material moving seat is slidably connected to the conveying seat, and the material moving seat is provided with a rack slidably connected to the conveying seat. The servo motor is arranged on the conveying seat, and the output end of the servo motor is meshed with the rack through a linkage gear.

[0005] Preferably, the conveying seat is a concave seat body, the loading conveyor and the material picking conveyor both include a conveying mechanism with two pulleys cooperating with a conveying belt, the material picking conveyor is arranged at the top of the left and right sides of the conveying seat, and the material picking conveyor also includes a baffle arranged on the conveying seat, and the baffle can block the partition bar conveyed by the material picking conveyor.

[0006] Preferably, the lifter is vertically fixed on the material transfer seat, the length of the lifting plate is smaller than the distance between the two conveying mechanisms of the loading conveyor, and a plurality of limit columns are provided on the side of the top surface of the lifting plate away from the servo motor.

[0007] Preferably, a conveying rail extending to the position of the loading conveyor is provided at the bottom of the conveying seat, the material moving seat is slidably connected to the conveying rail, and a limiting plate is provided on the side of the top surface of the conveying rail away from the conveying seat.

[0008] Preferably, a slide groove is provided in the middle of the conveying seat, the rack is slidably connected to the slide groove, and the rack is connected to the front side of the material transfer seat, the servo motor is arranged in front of the conveying guide rail, and the linkage gear on the conveying end of the servo motor is meshed with the rack.

[0009] The beneficial effects of the utility model are as follows: the upper spacer device cylinder for production of the automatic framing machine cooperates with each other through the conveying seat, the loading conveyor, the picking conveyor, the servo motor, the material moving seat and the lifter, so that the servo motor can drive the linkage gear to rotate, and the linkage gear drives the rack to move along the conveying seat, and the material moving seat and the rack can move back and forth between the upper conveyor and the picking conveyor, and the lifter on the material moving seat can drive the lifting plate to move up and down, so that the spacers on the picking conveyor can be placed one by one on the loading conveyor to avoid the situation where two adjacent spacers are conveyed along the loading conveyor at the same time, and no staff monitoring and adjustment are required and it is easy to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0010] Attached Figure 1 This is the front view of the utility model;

[0011] Attached Figure 2 It is a top view of the utility model;

[0012] Attached Figure 3 It is a right side view of the utility model.

[0013] In the figure: 1 conveying seat, 2 loading conveyor, 3 taking material conveyor, 4 servo motor, 5 material transfer seat, 6 lifter, 7 lifting plate, 8 rack, 9 linkage gear, 10 baffle, 11 limit column, 12 conveying guide rail, 13 limit plate, 14 slide. DETAILED DESCRIPTION

[0014] The present invention is further described below in conjunction with the accompanying drawings and specific embodiments, so as to provide a clearer understanding of the technical concept to be protected by the present invention.

[0015] like Figures 1 to 3 As shown, an upper spacer device for automatic framing machine production includes a conveying seat 1, a loading conveyor 2, a picking conveyor 3, a servo motor 4, a material moving seat 5 and a lifter 6. The conveying seat 1 and the loading conveyor 2 are arranged in sequence along the spacer conveying direction, and the picking conveyor 3 is arranged on the top of the conveying seat 1 and is located on the same horizontal line with the loading conveyor 2. The lifter 6 is arranged on the material moving seat 5, and a lifting plate 7 is provided at the output end of the lifter 6. The material moving seat 5 is slidably connected to the conveying seat 1, and the material moving seat 5 is provided with a rack 8 slidably connected to the conveying seat 1. The servo motor 4 is arranged on the conveying seat 1, and the output end of the servo motor 4 is meshed with the rack 8 through a linkage gear 9.

[0016] The working principle of the automatic framing machine production upper spacer device described in the utility model is realized by the cooperation of the conveying seat 1, the loading conveyor 2, the taking conveyor 3, the servo motor 4, the material moving seat 5 and the lifting device 6. Figures 1 to 3 As shown, after the strips are taken out, they move along the material taking conveyor 3, and a plurality of strips move to a position close to the loading conveyor 2 and stop, and the initial state is described with the material transfer seat 5 being located at the loading conveyor 2. The servo motor 4 drives the linkage gear 9 to rotate, and the linkage gear 9 drives the rack 8 to move along the conveying seat 1. The servo motor 4 has the characteristics of metering and precise positioning, so that the material transfer seat 5 and the rack 8 follow and move from the position of the loading conveyor 2 to the bottom of the strips to be transported, and then the lifter 6 drives the lifting plate 7 to move upward. The lifter 6 can adopt a lifting cylinder, and the lifting plate 7 lifts the strips to be transported from the material taking conveyor 3. Then the servo motor 4 drives the linkage gear 9 to reverse, and the rack 8 moves in the opposite direction. In this way, the material moving seat 5 is reset to the position of the loading conveyor 2, and finally the lifter 6 drives the lifting plate 7 to move downward, and the partition bars on the lifting plate 7 are placed on the loading conveyor 2, so that the partition bars on the material taking conveyor 3 are cyclically transported to the loading conveyor 2, and in the process of transporting the partition bars from the material taking conveyor 3 to the loading conveyor 2, the partition bars on the loading conveyor 2 continue to move, thereby increasing the spacing between the partition bars on the loading conveyor 2. Compared with the traditional framing machine, the automatic framing machine production spacer device can place the spacers on the material taking conveyor 3 on the loading conveyor 2 one by one, so as to avoid the situation where two adjacent spacers are transported along the loading conveyor 2 at the same time, and does not require staff to monitor and adjust, and is easy to use.

[0017] Specifically, the conveying seat 1 is a concave seat body, the loading conveyor 2 and the retrieving conveyor 3 each include a conveying mechanism in which two pulleys cooperate with a conveying belt, the retrieving conveyor 3 is arranged on the top of the left and right sides of the conveying seat 1, and the retrieving conveyor 3 also includes a baffle 10 arranged on the conveying seat 1, and the baffle 10 can block the partition bars conveyed by the retrieving conveyor 3, such as Figures 1 to 3 As shown, the conveying belt is connected to two pulleys for conveying, and one pulley can be driven by a motor. This is a conventional belt conveying structure, so it is not described in detail. The baffle 10 on the material-taking conveyor 3 can facilitate the positioning of the partition bar. The partition bar on the material-taking conveyor 3 moves to the position of the baffle 10 and stops. In this way, the material moving seat 5 can move to the position of the baffle 10 each time it conveys the partition bar, so that the lifter 6 drives the lifting plate 7 to lift the partition bar, which is convenient for positioning the partition bar for use.

[0018] Furthermore, the lifter 6 is vertically fixed on the material transfer seat 5, the length of the lifting plate 7 is less than the distance between the two conveying mechanisms of the loading conveyor 2, and a plurality of limit columns 11 are provided on the top surface of the lifting plate 7 away from the servo motor 4. Figures 1 to 3 As shown, the lifter 6 drives the lifting plate 7 to lift the partition bar, and the limiting column 11 on the lifting plate 7 can be against the partition bar, so that the limiting column 11 cooperates with the lifting plate 7 to transport the partition bar.

[0019] Furthermore, a conveying guide rail 12 extending to the position of the loading conveyor 2 is provided at the bottom of the conveying seat 1, the material moving seat 5 is slidably connected to the conveying guide rail 12, and a limiting plate 13 is provided on the side of the top surface of the conveying guide rail 12 away from the conveying seat 1, wherein a slide groove 14 is provided in the middle of the conveying seat 1, the rack 8 is slidably connected to the slide groove 14, and the rack 8 is connected to the front side of the material moving seat 5, the servo motor 4 is arranged in front of the conveying guide rail 12, and the linkage gear 9 on the conveying end of the servo motor 4 is meshed with the rack 8, as shown in FIG. Figures 1 to 3 As shown, the servo motor 4 drives the rack 8 to move along the slide 14 through the linkage gear 9, and the material transfer seat 5 moves along the conveying guide rail 12, so that the material transfer seat 5 can reciprocate and convey the partition bar between the material removal conveyor 3 and the loading conveyor 2, and the limit plate 13 on the conveying guide rail 12 can prevent the material transfer seat 5 from falling off the conveying guide rail 12.

[0020] The above are only specific embodiments of the present invention, and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention specification and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. An upper spacer device for automatic framing machine production, characterized in that: It includes a conveying seat, a loading conveyor, a picking conveyor, a servo motor, a material moving seat and a lifter. The conveying seat and the loading conveyor are arranged in sequence along the conveying direction of the partition bar, and the picking conveyor is arranged on the top of the conveying seat and is located on the same horizontal line with the loading conveyor. The lifter is arranged on the material moving seat, and a lifting plate is arranged at the output end of the lifter. The material moving seat is slidably connected to the conveying seat, and the material moving seat is provided with a rack slidably connected to the conveying seat. The servo motor is arranged on the conveying seat, and the output end of the servo motor is meshed with the rack through a linkage gear.

2. The upper spacer device for automatic framing machine production according to claim 1, characterized in that: The conveying seat is a concave seat body, and the loading conveyor and the material picking conveyor both include a conveying mechanism with two pulleys cooperating with a conveying belt. The material picking conveyor is arranged on the top of the left and right sides of the conveying seat, and the material picking conveyor also includes a baffle plate arranged on the conveying seat, and the baffle plate can block the partition bar conveyed by the material picking conveyor.

3. The upper spacer device for automatic framing machine production according to claim 2, characterized in that: The lifter is vertically fixed on the material shifting seat, the length of the lifting plate is smaller than the distance between the two conveying mechanisms of the loading conveyor, and a plurality of limit columns are arranged on the side of the top surface of the lifting plate away from the servo motor.

4. The upper spacer device for automatic framing machine production according to claim 3, characterized in that: A conveying guide rail extending to the position of the loading conveyor is arranged at the bottom of the conveying seat, the material shifting seat is slidably connected to the conveying guide rail, and a limiting plate is arranged on a side of the top surface of the conveying guide rail away from the conveying seat.

5. The upper spacer device for automatic framing machine production according to claim 4, characterized in that: The middle part of the conveying seat is provided with a slide groove, the rack is slidably connected to the slide groove, and the The rack is connected to the front side of the material transfer seat, and the servo motor is arranged in front of the conveying guide rail. And the linkage gear on the delivery end of the servo motor is meshed with the rack.