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Analysis of the influence of the cutting edge geometry on parameters of the perforation process for conveyor and transmission belts

机译:切削刃几何形状对传送带和传送带穿孔过程参数的影响分析

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Perforated belts, which are used in vacuum conveyor belts, can have significantly different mechanical properties like strength and elasticity due to a variety of used materials and can have different thickness from very thin (0,7 mm) to thick belts (6 mm). In order to design a complex machine for mechanical perforation, which can perforate whole range of belts, it is necessary to research the influence of the cutting edge geometry on the parameters of the perforation process. Three most important parameters, which describe the perforation process are the cutting force, the velocity and the temperature of the piercing punch. The results presented in this paper consider two different types of punching (a piercing punch with the punching die or with the reducer plate) and different cutting edge directions, angles, diameters and material properties. Test were made for different groups of composites belts – with polyurethane and polyester fabric, polyamide core or aramid-fibre reinforced polymers. The main goal of this research is to specify effective tools and parameters of the perforation process for each group of composites belts.
机译:真空输送带中使用的穿孔带,由于使用了多种材料,因此可能具有明显不同的机械性能,例如强度和弹性,并且厚度可能从非常薄(0.7毫米)到较厚的皮带(6毫米)不等。为了设计复杂的机械穿孔机,可以对整个皮带进行穿孔,有必要研究切削刃几何形状对穿孔工艺参数的影响。描述穿孔过程的三个最重要的参数是穿孔力,切割力,速度和温度。本文介绍的结果考虑了两种不同类型的冲孔(使用冲模或异径冲孔的冲头)以及不同的切削刃方向,角度,直径和材料特性。对不同类型的复合材料皮带进行了测试–用聚氨酯和聚酯纤维,聚酰胺芯或芳纶纤维增强聚合物制成。这项研究的主要目的是为每组复合带指定有效的射孔工艺工具和参数。

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