Synthesis of the heddle drive mechanism

Yuriy Podgornyj, V Yu Skeeba, T. Martynova, D. Lobanov, N. Martyushev, Semyon Papko, Egor Rozhnov, Ivan Yulusov
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Abstract

Introduction. Domestic enterprises in various industries use a variety of process equipment, including weaving machines. Modern weaving machines have several unique features, including a close relationship between technical condition, productivity, and product quality. Weaving machines are widely used in the textile industry in Russia and other countries. To produce cotton, silk, wool, linen, and other types of fabrics, appropriate machines are designed, including shuttle, shuttleless, pneumatic, and hydraulic machines. One of the most crucial parts of the machine is the heddle lifting mechanism, which determines the weave pattern and the quality of the fabric produced. The purpose of the work is to reduce the dimensions of the loom by changing the design parameters of the heddle lifting mechanism. The research methods are based on the theory of machines and mechanisms. They enable the development of a method for synthesizing the heddle lifting mechanism and designing a device with reduced dimensions. The paper presents the synthesis and analysis of the Assur group algorithm, which can determine the kinematic characteristics of the mechanism. Results and discussion. Following the proposed methodology, the mechanism design was modified by removing the fixing device from the lever mechanism operating area. This allowed for a reduction in interaxial distances and a change in the kinematic scheme. As a result of the new position of the fixed axes, some levers, the connecting rod, and the angle of the double-arm lever were also altered. The synthesis of the mechanism is proposed to begin with the last Assur group, setting it a specific value for the G-point motion equal to 75 mm. (motion of the fourth heddle shaft). As a limitation, the equality of arcs (chords) E´E = F´F ` was accepted. By assigning these values to the input element for the second-class first-type Assur group and bearing in mind the accepted conditions, the motions for point D were obtained. Thus, the value of the swing angle  of the roller shaft equal to 22.46° was obtained, which is 27.44 mm along the chord. Applying the interpolation principle, we found the initial motion value of 28 mm. Since the loom is planned to produce interlacing fabric patterns using 10 heddles, the design provides for a variable parameter that allows changing the motion of the heddles depending on their location in the depth of the machine. This role was assigned to the lever B03D. A cam pair synthesis was performed after determining the maximum and minimum values of the center of the roller motion. In total, 5 types of laws of motion were considered: straight-line, harmonic, double harmonic, power-law, cycloidal ones. For the center of the roller, the cycloidal law of motion was selected since it better corresponds to the specified conditions. The synthesis's accuracy was confirmed by the constructed cam profile and conducted kinematic studies for the Assur groups.
综丝驱动机构的合成
导言。国内各行各业的企业都在使用包括织机在内的各种加工设备。现代织机有几个独特的特点,包括技术条件、生产率和产品质量之间的密切关系。织机在俄罗斯和其他国家的纺织工业中得到广泛应用。为了生产棉、丝、羊毛、亚麻和其他类型的织物,设计了相应的机器,包括有梭、无梭、气动和液压机器。机器最关键的部分之一是综丝提升装置,它决定了织物的编织方式和质量。这项工作的目的是通过改变综丝提升机构的设计参数来减小织机的尺寸。研究方法以机器和机构理论为基础。这些方法有助于开发一种综合综丝提升机构的方法,并设计出一种尺寸更小的设备。论文介绍了 Assur 组算法的合成和分析,该算法可确定机构的运动学特征。结果与讨论。根据提出的方法,对机构设计进行了修改,将固定装置从杠杆机构操作区移除。这样可以减少轴间距离并改变运动学方案。由于固定轴的新位置,一些杠杆、连杆和双臂杠杆的角度也发生了变化。建议从最后一个 Assur 组开始对机械装置进行综合,将其 G 点运动的特定值设定为 75 毫米。(第四根综轴的运动)。作为限制,弧(弦)的相等 E´E = F´F ` 被接受。通过将这些值分配给第二级第一类 Assur 组的输入元件,并牢记已接受的条件,得到了 D 点的运动。因此,滚子轴的摆动角  的值等于 22.46°,沿弦方向为 27.44 mm。根据内插法原理,我们得出初始运动值为 28 毫米。由于该织机计划使用 10 个综丝来生产交错织物图案,因此在设计中提供了一个可变参数,可以根据综丝在机器深度中的位置来改变其运动。B03D 操纵杆承担了这一任务。在确定滚子运动中心的最大值和最小值后,进行凸轮对合成。总共考虑了 5 种运动规律:直线运动、谐波运动、双谐波运动、幂律运动和摆线运动。对于滚筒中心,选择了摆线运动规律,因为它更符合特定条件。通过构建凸轮轮廓和对 Assur 组进行运动学研究,确认了合成的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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