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A microcontroller-based yarn twist tester

机译:基于微控制器的纱线捻度测试仪

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摘要

Twist is important parameter in specifying a yarn for many textile applications. A prominent textile industry currently employs obsolete yarn twist testers in its quality control laboratory to check yarn performance. However, the twist mechanism part is mostly intact. The purpose of the research is to restore and improve the function of the old yarn twist tester by replacing conventional control system with the microcontroller based - one. The newly designed tester is able to directly display the twist level and transmit the measurement data to PC via RS232 link. An application program on PC also provided to facilitate data analysis and storage. The system consists of main controller and twist mechanism. The primary task of the main controller is to control the twist mechanism to perform tpi measurement of the yarn sample. The MOSFET driver in H-bridge arrangement is employed to control the speed and direction of the motor using PWM method. The main controller also incorporates serial EEPROM and RTC to hold twist per inch (tpi) measurement data temporarily and to provide time stamp respectively. Interaction between user and the system is made possible matrix keypad and character LCD. The twist mechanism is used to perform untwist/twist action. It consists of a dc motor, a rotary encoder, a Hall-effect sensor, an opto - interrupter, and miscellaneous mechanical parts. Featuring 4 selectable speed setting, the final design has capability to measure number of twist of both Z- and S-twist yarn with error less than ± 1 tpi. Basic summary statistics provided by GUI includes number of sample, sample minimum, maximum, average, and standard deviation.
机译:在为许多纺织品应用指定纱线时,捻度是重要的参数。当前,一个著名的纺织工业在其质量控制实验室中使用过时的纱线捻度测试仪来检查纱线性能。但是,扭转机构部分大部分是完整的。该研究的目的是通过用基于微控制器的传统控制系统代替传统的控制系统来恢复和改进旧的纱线捻度测试仪的功能。新设计的测试仪可以直接显示扭曲水平,并通过RS232链接将测量数据传输到PC。还提供了PC上的应用程序,以方便数据分析和存储。该系统由主控制器和扭转机构组成。主控制器的主要任务是控制加捻机构以执行纱线样品的tpi测量。采用H桥布置的MOSFET驱动器通过PWM方法控制电动机的速度和方向。主控制器还集成了串行EEPROM和RTC,以临时保存每英寸捻度(tpi)测量数据并分别提供时间戳。用户与系统之间的交互使矩阵键盘和字符LCD成为可能。扭曲机制用于执行非扭曲/扭曲动作。它由一个直流电动机,一个旋转编码器,一个霍尔效应传感器,一个光电断路器和其他机械部件组成。最终设计具有4种可选的速度设置,能够测量Z捻纱和S捻纱的加捻数,误差小于±1 tpi。 GUI提供的基本摘要统计信息包括样本数,样本最小值,最大值,平均值和标准偏差。

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