Investigation of the effect of thermal stress on the interface damage of hybrid biocomposite materials

S. Sadat, A. Mokaddem, B. Doumi, M. Berber, A. Boutaous
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引用次数: 1

Abstract

Abstract In this paper, we have studied the effect of thermal stress on the damage of fiber-matrix interface of a hybrid biocomposite composed of two natural fibers, Hemp, Sisal, and Starch matrix. Our genetic modeling used the nonlinear acoustic technique based on Cox’s analytical model, Weibull’s probabilistic model, and Lebrun’s model describing the thermal stress by the two coefficients of expansion. The stress applied to our representative elementary volume is a uni-axial tensile stress. The numerical simulation shows that the Hemp- Sisal/Starch hybrid biocomposite is most resistant to thermal stresses as compared with Hemp/Starch biocomposite. It also shows that hybrid biocomposite materials have a high resistance to applied stresses (mechanical and thermal) compared to traditional materials and biocomposite materials. The results obtained in our study coincide perfectly with the results of Antoine et al., which showed through experimental tests that natural fibers perfectly improve the mechanical properties of biocomposite materials.
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热应力对杂化生物复合材料界面损伤影响的研究
摘要本文研究了热应力对由大麻、剑麻和淀粉基质两种天然纤维组成的杂化生物复合材料纤维-基质界面损伤的影响。我们的遗传建模使用了基于Cox分析模型、Weibull概率模型和Lebrun模型的非线性声学技术,通过两个膨胀系数来描述热应力。施加在我们的代表性基本体积上的应力是单轴拉伸应力。数值模拟表明,与大麻/淀粉生物复合材料相比,大麻-剑麻/淀粉杂化生物复合材料最能抵抗热应力。它还表明,与传统材料和生物复合材料相比,杂化生物复合材料对施加的应力(机械和热)具有较高的抵抗力。我们的研究结果与Antoine等人的研究结果完全一致,Antoine等通过实验测试表明,天然纤维完美地改善了生物复合材料的力学性能。
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Mechanics and Mechanical Engineering
Mechanics and Mechanical Engineering Engineering-Automotive Engineering
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