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Optimization of wood plastic composite decks

机译:木材塑料复合甲板的优化

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Wood Plastic Composite (WPC) is a new class of natural fibre based composite material that contains plastic matrix reinforced with wood fibres or wood flour. In the present work, Wood Plastic Composite was prepared with 70-wt% of wood flour reinforced in polypropylene matrix. Mechanical characterization of the composite was done by carrying out laboratory tests such as tensile test and flexural test as per the American Society for Testing and Materials (ASTM) standards. Computer Aided Design (CAD) model of the laboratory test specimen (tensile test) was created and explicit finite element analysis was carried out on the finite element model in non-linear Explicit FE code LS - DYNA. The piecewise linear plasticity (MAT 24) material model was identified as a suitable model in LS-DYNA material library, describing the material behavior of the developed composite. The composite structures for decking application in construction industry were then optimized for cross sectional area and distance between two successive supports (span length) by carrying out various numerical experiments in LS-DYNA. The optimized WPC deck (Elliptical channel-2 E10) has 45% reduced weight than the baseline model (solid cross-section) considered in this study with the load carrying capacity meeting acceptance criterion (allowable deflection & stress) for outdoor decking application.
机译:木塑料复合材料(WPC)是一种新型的天然纤维基复合材料,含有木纤维或木面粉加固的塑料基质。在本作本作中,用70-重量%的木粉在聚丙烯基质中加强了木塑料复合材料。通过根据美国测试和材料(ASTM)标准(ASTM)标准,进行实验室测试,通过进行实验室试验来进行复合材料的机械表征。在非线性显式Fe代码LS - DYNA中的有限元模型中进行了实验室试样(拉伸试验)的计算机辅助设计(CAD)模型,并在非线性显式FE代码LS-DYNA中的有限元模型进行了明确的有限元分析。分段线性可塑性(垫24)材料模型被鉴定为LS-DYNA材料库中的合适模型,描述了发育复合材料的材料行为。然后通过在LS-DYNA中执行各种数值实验,优化用于建筑业在建筑业中的复合结构,用于横截面积和两个连续支持(跨度长度)之间的距离。优化的WPC甲板(椭圆通道-2E10)的重量比本研究中考虑的基线模型(实心横截面)减轻了45%,与室外装饰应用的负载承载能力(允许偏转和应力)。

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