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A method and mechanism for automatic pipe material synchronous conveying

A technology of conveying mechanism and pipe material, applied in the direction of conveyor, transportation and packaging, can solve the problems of insufficient synchronization, slippage and occupation of pipe material, and achieve the effect of avoiding asynchronous phenomenon and preventing slippage.

Active Publication Date: 2018-03-20
唐山宏正机械设备有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

First: It occupies a large space and lacks flexibility. Once the direction or position needs to be changed, it needs to be completely disassembled and then reinstalled for integration, which is very troublesome.
Second, insufficient synchronization. Due to the difference in rotation speed between the rollers, the synchronization is insufficient, and the speed is difficult to control, which is not conducive to the automatic transformation of the assembly line.
Third, the directionality is insufficient. Since the flat roller has no left and right limit, the pipe material conveyed on it is prone to left and right deviation problems, and straight-line conveyance cannot be guaranteed, which is not conducive to the development of subsequent processes.
Fourth, the accuracy is insufficient. Due to the conveying roller or the parts in contact with the pipe material, it is easy to produce slippage between the pipe material and the pipe material, which affects the accuracy of the conveying. It is often fast and slow at one time, affecting the accuracy and controllability
Second, it is easy to damage the pipe material. The rotating roller is generally made of hard material. It is easy to scratch the pipe material during the contact with the pipe material and cause damage to the pipe material.
Obviously, the current pipe material feeding method and related structures can not meet the requirements

Method used

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  • A method and mechanism for automatic pipe material synchronous conveying
  • A method and mechanism for automatic pipe material synchronous conveying
  • A method and mechanism for automatic pipe material synchronous conveying

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0030] See figure 1 , image 3 , Figure 4 , The automatic pipe material synchronous conveying method provided in this embodiment includes the following steps:

[0031] 1) Set up an automatic pipe material synchronous conveying mechanism, which includes left guide wheel group 1, right guide wheel group 2, left synchronous wheel group 3, right synchronous wheel group 4, left conveyor belt 5, and right conveying Belt 6, timing belt 7, left mounting base 8, right mounting base 9 and front mounting base 10; wherein, the left guide wheel set 1 includes four left guide wheels, the four left guide wheels are arranged on the left The right guide wheel set 2 includes four right guide wheels. The four right guide wheels are arranged on the right installation base 9 and are distributed in a square shape. The left synchronous wheel The group 3 is arranged on the left side of the front mounting base 10 and includes an upper left synchronous wheel and a lower left synchronous wheel connected ...

Embodiment 2

[0039] See figure 2 , image 3 , Figure 4 This embodiment is basically the same as embodiment 1, and the difference lies in:

[0040] In step 1), the automatic pipe material synchronous conveying mechanism further includes a pipe material clamping degree control assembly 16. The pipe material clamping degree control assembly 16 includes two groups, which are respectively arranged on the left mounting base 8 and the right mounting base. On the seat 9 and located in the left conveyor belt 5 and the right conveyor belt 6, the tube material clamping degree control assembly 16 is composed of an elastic wheel, an adjusting seat and a telescopic spring, wherein the elastic wheel abuts the left conveyor belt 5 , The inner side of the right conveyor belt 6, the adjusting seat adjusts the compression of the telescopic spring, so as to adjust the force of the elastic wheel against the inner side of the left conveyor belt 5 and the right conveyor belt 6, thereby controlling the left convey...

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PUM

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Abstract

The invention discloses an automatic synchronous transmission method and mechanism for pipes. Through the mutual cooperation of a left guiding wheel group, a right guiding wheel group, a left synchronizing wheel group, a right synchronizing wheel group, a left conveyor belt, a right conveyor belt and a synchronous belt, linear synchronous transmission of the pipes is realized, the conditions of slipping, non-synchronous transmission, leftward and rightward deviation are avoided, the pipes are not damaged, and no marks are left on the outer walls of the pipes. The synchronous belt sleeves a left lower synchronizing wheel and a right lower synchronizing wheel in a crossed manner (similar to mobius strips), a single motor is adopted for driving, the left synchronizing wheel group and the right synchronizing wheel group rotate synchronously in the opposite directions, the non-synchronous phenomenon generated by two motors is avoided, and the slipping phenomenon of a traditional synchronous belt arranged in a non-crossed manner is also avoided. The left conveyor belt and the right conveyor belt are elastic rubber conveyor belts, arc-shaped grooves are formed in the outer side surfaces of the left conveyor belt and the right conveyor belt in the pipe conveying direction, elastic sawtooth-shaped structures are arranged in the arc-shaped grooves, wrap the pipes flexibly and omnidirectionally, and have high adaptivity, and the pipes are prevented from shifting up and down and deviating.

Description

Technical field [0001] The invention relates to pipe material conveying technology, in particular to an automatic pipe material synchronous conveying method and mechanism. Background technique [0002] Traditional pipe material transportation generally uses several horizontally laid rollers, and the pipe material is transported forward through the rotation of the rollers. The tube material conveying mechanism of these two transmissions has the following shortcomings. First: It occupies a large space and lacks flexibility. Once you need to change the direction or position, you need to disassemble and re-install and integrate, which is very troublesome. Second, the synchronization is insufficient. Due to the difference in the rotation speed between the rollers, the synchronization is insufficient, and the speed is difficult to control, which is not conducive to the automation of the assembly line. Third, the directionality is insufficient. Because the flat rollers have no left an...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B65G15/14
CPCB65G15/14
Inventor 梁洪文
Owner 唐山宏正机械设备有限公司