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Design and Development of a Heddle Shaft Mechanism for Air-Jet Weaving Machines

机译:空气喷射织机河流轴机构的设计与开发

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Air-jet weaving is the most productive weaving procedure. However, it is also the most energy-intensive procedure. In order to save energy newly developed high-volume-low-pressure relay nozzles can be used. The application of these nozzles requires changes in the heddle shaft movement. The design and development of a suitable mechanism to drive the heddle shaft is presented. After the determination of requirements a structural synthesis is conducted. The outcome of the structural synthesis is a set of mechanisms which in principal can solve the motion task. Subsequently a dimensional synthesis is performed to determine the kinematic parameters of each structure. The different mechanisms are then compared to each other. The most suited mechanism is a combination of a linkage and a cam mechanism. In order to improve the dynamic behavior of the heddle shaft mechanism a Fourier analysis of the shaft motion is carried out. The Fourier series of the shaft motion is then truncated and the disk cam profile is redesigned in order to drive the shaft with the desired harmonic motion. The result of the design and development process is a new heddle shaft mechanism for air-jet weaving machines with high-volume-low-pressure (HVLP) relay nozzles.
机译:空气喷射编织是最生产的织造程序。但是,它也是最能集中的程序。为了节省能源,可以使用新开发的高批量低压继电器喷嘴。这些喷嘴的应用需要变化轴运动。提出了一种驱动HEDDLE轴的合适机构的设计和开发。确定要求后进行结构合成。结构合成的结果是一组机制,其中校长可以解决运动任务。随后进行尺寸合成以确定每个结构的运动学参数。然后彼此相比,不同的机制。最适合的机制是连锁和凸轮机构的组合。为了改善蠕虫轴机构的动态行为,执行轴运动的傅里叶运动。然后截断轴运动的傅立叶运动,并且磁盘凸轮轮廓被重新设计,以便以所需的谐波运动驱动轴。设计和开发过程的结果是具有高批量低压(HVLP)继电器喷嘴的空气喷射织机的新蠕虫轴机构。

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