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首页> 外文期刊>Journal of Materials Science >Viscoelastically generated prestress from ultra-high molecular weight polyethylene fibres
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Viscoelastically generated prestress from ultra-high molecular weight polyethylene fibres

机译:超高分子量聚乙烯纤维的粘弹性产生的预应力

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The viscoelastic characteristics of ultra-high molecular weight polyethylene (UHMWPE) fibres are investigated, in terms of creep-induced recovery strain and force output, to evaluate their potential for producing a novel form of prestressed composite. Composite production involves subjecting fibres to tensile creep, the applied load being removed before moulding the fibres into a resin matrix. After matrix curing, the viscoelastically strained fibres impart compressive stresses to the surrounding matrix, to produce a viscoelastically prestressed polymeric matrix composite (VPPMC). Previous research has demonstrated that nylon fibre-based VPPMCs can improve mechanical properties without needing to increase mass or section dimensions. The viability of UHMWPE fibre-based VPPMCs is demonstrated through flexural stiffness tests. Compared with control (unstressed) counterparts, these VPPMCs typically show increases of 20-40 % in flexural modulus. Studies on the viscoelastic characteristics indicate that these fibres can release mechanical energy over a long-timescale and fibre core-skin interactions may have an important role.
机译:研究了超高分子量聚乙烯(UHMWPE)纤维的粘弹性特征,涉及蠕变引起的回复应变和力输出,以评估其生产新型预应力复合材料的潜力。复合材料生产涉及使纤维经受拉伸蠕变,在将纤维成型为树脂基体之前除去施加的载荷。基质固化后,粘弹性拉伸纤维向周围的基质施加压缩应力,以产生粘弹性预应力的聚合物基质复合材料(VPPMC)。先前的研究表明,基于尼龙纤维的VPPMC可以改善机械性能,而无需增加质量或截面尺寸。通过弯曲刚度测试证明了基于UHMWPE纤维的VPPMC的可行性。与对照组(未受压)相比,这些VPPMC通常显示出20-40%的弯曲模量增加。对粘弹性特性的研究表明,这些纤维可以长期释放机械能,并且纤维芯-皮相互作用可能起重要作用。

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