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Experimental determination of mechanical properties of a single-ply broken twill 1/3 weave reinforced shape memory polymer composite

机译:单层破碎斜纹捻型机械性能的实验测定1/3编织增强形状记忆聚合物复合材料

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摘要

Thin weave reinforced composites are promising aerospace materials because of their advantages of high deformability, stiffness and strength. However, their tensile, compressive, shear and flexural mechanical properties typically behave differently due to the heterogeneous layout of the reinforcements. In this paper, a recently developed single-ply broken twill 1/3 weave-reinforced polymer composite intended for shape memory applications was thoroughly investigated. The large textile unit cell and ultra-thin specimen made the conventional test fixtures unsuitable. Newly modified compressive and shear test fixtures were proposed to provide reliable measurements. Due to the yarn crimps, the tensile stress-strain curves exhibited obviously three-stage nonlinear characteristics, and the compressive constitutive curves displayed significant stiffness degradation. The resin dominated shear property values were less than 1/10 of those in tension. Affected by the yarn thickness and layout, the ratios of flexural moduli to tensile moduli were approximately 0.6. In general, this study provides basic observations and comprehensive test guidelines for understanding the mechanical properties of single-ply woven composites.
机译:薄的编织增强复合材料是通往航空航天材料,因为它们具有高可变形性,刚度和强度的优点。然而,由于增强件的异质布局,它们的拉伸,压缩性,剪切和弯曲机械性能通常不同地表现不同。在本文中,彻底研究了最近开发的单层破碎的斜纹1/3编织增强聚合物复合材料。大型纺织单元电池和超薄标本使常规测试夹具不适合。提出了新改性的压缩和剪切试验夹具以提供可靠的测量。由于纱线卷曲,拉伸应力 - 应变曲线显着表现出三阶段的非线性特性,并且压缩组成曲线显示出显着的刚度降解。树脂标定的剪切特性值小于张力的1/10。受纱线厚度和布局影响,弯曲模量与拉伸模量的比率约为0.6。一般而言,本研究提供了理解单层编织复合材料的机械性能的基本观察和综合测试指南。

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