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首页> 外文期刊>Journal of Sandwich Structures and Materials >Polyethylene terephthalate/basalt stab-resistant sandwich composites based on the Box-Behnken design: Parameter optimization and empirical regression model
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Polyethylene terephthalate/basalt stab-resistant sandwich composites based on the Box-Behnken design: Parameter optimization and empirical regression model

机译:基于Box-Behnken设计的聚乙烯对苯二甲酸乙二醇酯/玄武岩耐刺夹芯复合材料:参数优化和经验回归模型

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摘要

In this study, the thicknesswise fibers of the low-melting polyethylene terephthalate (LPET) nonwoven fabrics are needle punched and intertwined with the intra-laminar basalt fibers (BF) of basalt plain woven fabric in order to strengthen the stab-resistant property of LPET/BF sandwich composites as well as to fabricate armor that is composed of less lamination layers. Two LPET nonwoven fabrics and a BF plain woven fabric as an interlayer are laminated and combined using a needle-punch reinforcing method. The response surface analysis based on the Box-Behnken design is used to examine the influences of structure parameters of low-melting PET nonwoven fabrics including areal density (AD) and manufacture parameters including needle punching density (ND), and depth of needle punch (DP) on the spike stab resistance, knife stab resistance, bursting resistance, and tensile property. An empirical regression model of AD, ND, and DP is thereby established. The test results show that the bursting strength and quasi-static stab resistance of sandwich composites are highly dependent on AD and ND. Likewise, DP has a significant influence on the knife stab resistance and bursting strength, while the tensile strength is solely dependent on ND. According to the empirical regress model, the acquired optimal needle punching parameters of sandwich composites are an AD of 400 g/m(2), ND of 143.77 needles/cm(2), and DP of 6.41 mm. The 95% confidence interval yielded by the empirical regression model is in conformity with the test results. The empirical regression model of the stab resistance is proven to provide effective prediction of the number of lamination layers required by armor in the future.
机译:在该研究中,低熔点聚对苯二甲酸乙二醇酯(LPET)非织造织物的厚度纤维是针对玄武岩型织物的层内玄武岩纤维(BF)的针刺,以加强LPET的抗刺的特性/ BF夹层复合材料以及制造由较少层叠层组成的护甲。使用针刺加强方法层压并组合两个LPET非织造织物和作为中间层的BF平纹织物。基于Box-Behnken设计的响应表面分析用于检查低熔点PET非织造织物的结构参数,包括面密度(AD)和包括针刺密度(ND)的制造参数,以及针刺的深度( DP)在尖峰抗刺,刀刺,抗置性,抗粘连性和拉伸性能。由此建立了AD,ND和DP的经验回归模型。测试结果表明,夹心复合材料的爆破强度和准静态抗抗硬阻力高度依赖于AD和Nd。同样地,DP对刀刺抗性和爆破强度具有显着影响,而拉伸强度仅取决于Nd。根据经验回归模型,夹层复合材料的获得的最佳针刺参数是400g / m(2),Nd为143.77针/ cm(2)的ad,DP为6.41mm。经验回归模型产生的95%置信区间符合测试结果。证明了抗硬阻力的经验回归模型,以提供未来装甲所需的层压层数量的有效预测。

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