The Interaction of the Punch Toroidal Surface with the Eyelet During Grommeting Textile Materials

IF 0.6 Q3 MULTIDISCIPLINARY SCIENCES Science and innovation Pub Date : 2024-07-02 DOI:10.15407/scine20.04.081
O. Polishchuk, V. Neimak, T. Romanets, A. Polishchuk, A. Karmalita, L. Bilyi, O. Tymoshchuk, O. Korotych, O. Shpak
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Abstract

Introduction. For the effective use of equipment for setting metal fi ttings in light industry products, in particular in footwear, leather goods, textiles, corsetry, and curtain products, the regularities of changing the strain force acting on metal grommets during their interaction with the punch toroidal surface should be taken into account.Problems Statement. For solving many practical problems, it is necessary to calculate the parameters of the strain force acting on metal accessories (in particular grommets) from the working surface of the tool. Knowing the force parameters allows us to calculate the strength of the punch, to predict its wear resistance, and to determine the necessary kinematic and energy characteristics of the equipment.Purpose. Establishing the regularities of changes in the strain force acting on metal fi ttings during their interaction with the toroidal surface of the punch, given the conditions of contact interaction and the physical and mechanical properties of the fi ttings material.Materials and Methods. Theoretical and experimental methods of research based on the classical laws of mechanics and the simulation of the process of deformation with the use of information technologies have been employed. Microsoft Excel has been used to create the computation program. The analytical calculations and the experiment have been made for a 08 kp steel eyelet.Results. The dependence of the total strain force acting on the eyelet on the punch step has been analytically established; the process of grommet deformation by the toroidal surface of the punch has been experimentally studied. The strain forces are most signifi cantly aff ected by: the grommet thickness, the radius of the punch toroidal part, the radius of the point of transition of the punch conical surface into the toroidal one. Conclusions. The shape of the working surfaces and the geometric parameters of the punch have a decisive influence on the process pressure values. The resulting dependencies can be used for developing new press equipment for grommeting light industry products, as well as for selecting the operating conditions of the existing equipment. This improves the quality of process operations, reduces the energy consumption of equipment, and increases the labor productivity.
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纺织材料扣眼时冲头环形表面与孔眼的相互作用
简介为有效使用轻工业产品,特别是鞋类、皮革制品、纺织品、胸衣和窗帘产品中的金属扣环镶嵌设备,应考虑到金属扣环与冲头环形表面相互作用时应变力变化的规律性。为了解决许多实际问题,有必要计算从工具工作表面作用在金属配件(特别是扣眼)上的应变力参数。知道了力的参数,我们就可以计算冲头的强度,预测其耐磨性,并确定设备必要的运动和能量特性。在接触相互作用的条件下,根据金属冲头材料的物理和机械特性,确定金属冲头在与冲头环形表面相互作用过程中应变力变化的规律性。研究采用了基于经典力学定律的理论和实验方法,并利用信息技术对变形过程进行了模拟。计算程序使用 Microsoft Excel 制作。对一个 08 kp 的钢制孔眼进行了分析计算和实验。通过分析确定了作用在孔眼上的总应变力与冲头步距的关系;通过实验研究了冲头环形表面的扣眼变形过程。应变力受以下因素的影响最为显著:扣眼厚度、冲头环形部分的半径、冲头锥形表面向环形表面过渡点的半径。工作面的形状和冲头的几何参数对加工压力值有决定性影响。由此得出的依赖关系可用于开发新的轻工产品扣眼冲压设备,也可用于选择现有设备的运行条件。这样可以提高工艺操作的质量,降低设备能耗,提高劳动生产率。
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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来源期刊
Science and innovation
Science and innovation MULTIDISCIPLINARY SCIENCES-
CiteScore
1.10
自引率
0.00%
发文量
55
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