Experimental study of the torsional effect for yarn break load test of polymeric multifilaments

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY
Daniel Magalhães da Cruz, F. Clain, C. E. M. Guilherme
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引用次数: 1

Abstract

Polymeric multifilaments have gained a significant interest in recent decades. In the studies of mechanical characteristics, although there are different types of tests, such as rupture, abrasion, creep, impact and fatigue, it can be said that the main mechanical characterisation is the tensile rupture strength (Yarn Break Load, YBL), which also serves as a parameter for other tests. The objective of this work is to evaluate the results of breaking strength under different torsional conditions in polymeric multifilaments and to determine optimal twists for failures. The test were carried out with the following materials: polyamide, polyester, and high modulus polyethylene (HMPE), and for torsional conditions: 0, 20, 40, 60, 120, 240, and 480 turns per metre. As a result, for these torsion groups, curves were obtained for the three materials that present an optimal point of maximum rupture value, which was also experimentally proven. The twist that optimises the breaking strength of HMPE is 38 turns per metre, 56 turns per metre for polyester, and 95 turns per metre for polyamide. The twist groups that exceed the optimal torsion have a deleterious effect on the material, where the multifilament ceases to be homogeneous and starts to create an excessive "spring effect". The results found differ from the recommendation of the standard that regulates the YBL test, and thus, a relationship is built between groups of optimal torsion and linear density that provides evidence that the increase in linear density causes the optimal torsion for rupture to also increase, while the standard places a condition of 30 turns per metre for linear densities greater than 2200 dtex, and 60 turns per metre for linear densities less than 2200 dtex. In addition to optimal torsion values, this conclusion is paramount, the test procedure makes a general recommendation that does not optimise the breaking strength.
高分子多长丝断裂载荷试验扭转效应的实验研究
近几十年来,聚合物复丝引起了人们的极大兴趣。在机械特性的研究中,尽管有不同类型的试验,如断裂、磨损、蠕变、冲击和疲劳,但可以说,主要的机械特性是拉伸断裂强度(纱线断裂载荷,YBL),它也可以作为其他试验的参数。这项工作的目的是评估聚合物复丝在不同扭转条件下的断裂强度结果,并确定失效时的最佳扭转。试验采用以下材料进行:聚酰胺、聚酯和高模量聚乙烯(HMPE),扭转条件为:0、20、40、60、120、240和480转/米。结果,对于这些扭转组,获得了三种材料的曲线,这三种材料呈现出最大断裂值的最佳点,这也得到了实验证明。优化HMPE断裂强度的扭曲度为每米38匝,聚酯为每米56匝,聚酰胺为每米95匝。超过最佳扭转的扭曲组对材料有有害影响,复丝不再均匀,并开始产生过度的“弹簧效应”。发现的结果与规范YBL试验的标准的建议不同,因此,在最佳扭转和线密度的组之间建立了关系,该关系提供了证据,证明线密度的增加导致断裂的最佳扭转也增加,而对于大于2200分特的线密度,标准规定了每米30匝的条件,而对于小于2200分特线密度,则设定了每米60匝的条件。除了最佳扭转值外,这一结论也是至关重要的,试验程序提出了一个一般建议,但并未优化断裂强度。
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来源期刊
Acta Polytechnica
Acta Polytechnica ENGINEERING, MULTIDISCIPLINARY-
CiteScore
1.90
自引率
12.50%
发文量
49
审稿时长
24 weeks
期刊介绍: Acta Polytechnica is a scientific journal published by CTU in Prague. The main title, Acta Polytechnica, is accompanied by the subtitle Journal of Advanced Engineering, which defines the scope of the journal more precisely - Acta Polytechnica covers a wide spectrum of engineering topics, physics and mathematics. Our aim is to be a high-quality multi-disciplinary journal publishing the results of basic research and also applied research. We place emphasis on the quality of all published papers. The journal should also serve as a bridge between basic research in natural sciences and applied research in all technical disciplines. The innovative research results published by young researchers or by postdoctoral fellows, and also the high-quality papers by researchers from the international scientific community, reflect the good position of CTU in the World University Rankings. We hope that you will find our journal interesting, and that it will serve as a valuable source of scientific information.
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