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Mechanical characteristics, constitutive models and fracture behaviors of short basalt fiber reinforced thermoplastic composites under varying strain rates

机译:不同应变率下短玄武岩纤维增强热塑性复合材料的机械特性,结构型模型和断裂行为

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Mechanical properties and fracture behaviors of polypropylene (PP) and short basalt fiber reinforced polypropylene (BFRPP) composites were studied at varying strain rates ranging from 0.001 s-1 to 400 s-1. Full-field strain analyses were performed via Digital Image Correlation (DIC) methods to evaluate the entire progressive failure process. The strain localization phenomenon caused by the strong toughness of PP matrix is found. Based on Halpin-Tsai model, the tensile strength prediction model of BFRPP composites was established, and the tensile strength under different fiber content and strain rate was predicted. Based on Cowper-Symonds model, a onedimensional phenomenological constitutive model related to the strain rate of BFRPP composites was established by introducing strain rate related functions. It reveals the strain rate dependent behavior of the stressstrain curve of BFRPP composites. Results show that the tensile strength of PP and BFRPP has strongly positive strain rate sensitivity. Microscopic failure modes of BFRPP composites mainly include matrix cracking, interfacial debonding, fibers pulled out and fibers breakage. As the strain rate increases, the fracture behavior of PP matrix in BFRPP composites changes from ductile to brittle, however basalt fiber is always brittle fracture from relatively flat transverse fracture to oblique fracture with an angle.
机译:研究了聚丙烯(PP)和短玄武岩纤维增强聚丙烯(BFRPP)复合材料的机械性能和断裂行为以0.001S-1至400S-1的不同应变率进行了研究。通过数字图像相关(DIC)方法进行全场应变分析,以评估整个逐行故障过程。发现由PP基质的强韧性引起的应变定位现象。基于Halpin-Tsai模型,建立了BFRPP复合材料的拉伸强度预测模型,预测了不同纤维含量和应变率下的拉伸强度。基于Codper-Symonds模型,通过引入应变率相关功能建立了与BFRPP复合材料的应变率相关的onemensional现象学组成型模型。它揭示了BFRPP复合材料的应力率曲线的应变率依赖性行为。结果表明,PP和BFRPP的拉伸强度具有强烈阳性应变率灵敏度。 BFRPP复合材料的微观故障模式主要包括矩阵开裂,界面剥离,纤维拉出和纤维破损。随着应变速率的增加,BFRPP复合材料中PP矩阵的断裂行为从韧性变得脆性变化,但是玄武岩纤维总是从相对平坦的横向断裂到倾斜骨折以一定角度的脆性骨折。

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