电子送经、电子卷取,可满足高速高效织造高档织物的需要。
The electronic let-off and take-up motions can satisfy the requirement of high speed and efficiency weaving technology for the high grade fabric.
以两套电子送经机构分别控制丙只织轴的送经运动,是克服余纱长度不等的措施。
The difference of the length of the rest yarn can be overcome by the use of two sets of electronic let-off motion respectively used to control the let-off of two beams.
采用主、从单片机控制织机的电子送经与电子卷取运动,通过主单片机输入和修改织机有关参数。
The electronic let-off and electronic take-up in loom are controlled by principal microcomputer and subordinate microcomputers. The parameter concerned can be changed by principal microcomputer.
采用了RS485和CAN总线接口,实现了电子送经卷取控制系统和织机主控制系统之间的通讯。
The electronic let-off and electronic take-up system USES RS485 and CAN BUS to communicate with the main control system of a loom.
控制与检测:采用微电脑控制系统,具有电子送经电子选纬,自动寻纬,故障检测,液晶显示等功能。
Control and examine: adopt microcomputer control system, electronic let-off, electronic weft selecting, automatic wefting, self-check, LCD ect.
论文详细介绍了伺服控制的经编电子送经系统的开发过程及送经反馈偏差和停车横条与电子送经系统的关系。
This paper introduces the development of the servo control electronic yarn feed system and analyzes the warp knitting machine's let-off feedback deflection and the.
文章介绍了织机送经机构的改造技术,讨论了电子送经系统的动力、控制、张力探测部分的设计准则和选用方法。
Some improved techniques of the loom are introduced, and the electronic let-off system is developed, which consists of three parts: driven motor, controller and warp tension testing.
论文在分析和总结国外电子送经电子卷取系统的基础上,深入分析了电子送经卷取系统的功能、工作原理和两者之间的同步关系。
After analyzing and generalizing electronic let-off and electronic take-up control system, the paper analyses the functions, the work theory and the synchronous relationship of the above two.
给出了该织物的织造实现方法,相应的织机不仅需配置电子卷取和电子送经装置,而且还应具有输入纬密变化方式的人机交互接口。
The loom for weaving this fabric should not only be equipped with the electronic take-up and let-off devices, but also possess the interface of inputting pick density distribution pattern.
给出了该织物的织造实现方法,相应的织机不仅需配置电子卷取和电子送经装置,而且还应具有输入纬密变化方式的人机交互接口。
The loom for weaving this fabric should not only be equipped with the electronic take-up and let-off devices, but also possess the interface of inputting pick density distribution pattern.
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