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System analysis and industrial requirements of high-speed tufting machine System analysis and industrial requirements of wool tufting machine

one. content overview

This article focuses on the motion control system analysis and industrial requirements provided by Foshan MX brushmachinery, as a leading motion control solution provider in China, for the high-speed tufting machine industry.

two. Existing control system analysis

The control system on the traditional tufting machine generally uses single-chip microcomputer, PLC, and ordinary numerical control system as the upper controller to control the equipment.

Among them, the single-chip microcomputer is used as the control system, and the operation is cumbersome and the stability is poor, which is its fatal weakness;

Using PLC as the control system, the integration of the system is not good, which is not conducive to upgrading;

Using a common numerical control system as a control system is costly, inconvenient to operate, and wastes internal resources.

Foshan MX brushmachinery Machinery Factory specially launched the tufting machine control system, from two axes to six axes, the system is complete, the series is complete, the operation is simple, the performance is stable and reliable, and the cost of the control system is relatively low compared with ordinary numerical control systems. , The control program upgrade and development efficiency is high, and the overall cost performance is good.

This article is published by Foshan MX brushmachinery Machinery Factory, URL/

three. Industrial Requirements for Equipment

Technological requirements of high-speed toothbrush tufting machine:

1. Cut about 900 holes per minute;

2. The error is controlled within 1 wire;

3. The working conditions are divided into: fully automatic, test machine, semi-automatic;

4. When getting a new plate shape, the end user can either manually input the coordinates directly, or automatically obtain the coordinates through hole alignment;

5. It is possible to jack or delete holes during template input;

6. After the template input is completed, the overall displacement can be obtained automatically, or the overall displacement can be directly input manually;

7. A variety of product storage functions are reserved for end users.

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