Experimental characterization for uniaxial tensile properties of high‐performance TX30 polyesters

Longlong Chen, Chengjun Gao, Wujun Chen
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Abstract

Coated fabric is a composite textile consisting of fiber‐based cloth and surface coating. It features advantages such as lightweight, high strength, and multifunctionality, making it highly popular in architectural membrane structures. However, conventional coated fabrics have been facing bottlenecks such as short service life, difficult maintenance, and low dimensional stability. This paper introduces an innovative high‐performance PVC coated polyester named Flexlight Xtrem TX30, which possesses excellent longevity and durable aesthetics. The uniaxial tensile properties of three types of TX30 polyesters in the warp, weft, and 45° directions were comprehensively revealed through monotonic and cyclic tests. First, mono‐uniaxial tensile tests were performed on six specimens for each case. The failure characteristics were observed and strength at different angles was determined. Benefiting from the precontraint technology, the difference in strength between the warp and weft directions for TX30 is less than 5%. Second, uniaxial cyclic tensile tests were conducted on four specimens for each case. The initial tensile behavior exhibited the highest nonlinearity, with an R‐squared value greater than 0.999 for the cubic stress–strain relation. By the 15th cycle, the stiffness increment for all cases is less than 1%, indicating the attainment of material stabilization. Additionally, ratcheting effect and hysteresis loops were observed during the tests. The ratcheting strain and dissipated energy across different cases were thoroughly discussed and compared. In general, the experimental investigations in this study facilitate the understanding of the mechanical characteristics of the novel TX30 polyesters, providing insights for engineering applications and academic research.Highlights The uniaxial tensile properties of innovative TX30 polyesters were investigated. The failure mechanism and tensile strength at different angles were identified. The nonlinear stress–strain relations and cyclic material behaviors were determined.
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高性能 TX30 聚酯单轴拉伸性能的实验表征
涂层织物是一种由纤维布和表面涂层组成的复合纺织品。它具有轻质、高强、多功能等优点,在建筑膜结构中备受青睐。然而,传统涂层织物一直面临着使用寿命短、维护困难、尺寸稳定性低等瓶颈。本文介绍了一种名为 Flexlight Xtrem TX30 的创新型高性能 PVC 涂层聚酯,它具有出色的使用寿命和耐用美观性。通过单轴和循环测试,全面揭示了三种 TX30 聚酯在经向、纬向和 45° 方向上的单轴拉伸性能。首先,对每种情况的六个试样进行了单轴拉伸试验。观察了破坏特征,并确定了不同角度的强度。得益于预约束技术,TX30 的经纬向强度差异小于 5%。其次,对每种情况的四个试样进行了单轴循环拉伸试验。初始拉伸行为的非线性程度最高,立方应力-应变关系的 R 平方值大于 0.999。到第 15 个循环时,所有情况下的刚度增量都小于 1%,表明材料达到稳定。此外,在试验过程中还观察到了棘轮效应和滞后环。对不同情况下的棘轮应变和耗散能量进行了深入讨论和比较。总之,本研究中的实验调查有助于了解新型 TX30 聚酯的机械特性,为工程应用和学术研究提供了启示。确定了不同角度下的破坏机制和拉伸强度。确定了非线性应力-应变关系和循环材料行为。
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