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Analysis of Mechanical Behavior of Multi-functional CFRP under Bending and DCB Mode-I Fracture

机译:弯曲和DCB模式下多功能CFRP的力学行为分析 - 我骨折

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Biomimicry has been a source of inspiration for scientists in a quest for development. Natural materials are multifunctional to some extent. Similarly, in pursuit of multiple functionalities, a carbon fibre reinforced epoxy composite (ref specimen) and carbon fibre reinforced epoxy composite enhanced by functionalised interlayer technology (FIT) touted as an electrically conductive specimen (ec specimen) are compared based on their tensile, flexural and Gic Mode-I fracture properties. Tensile, flexural and DCB mode-I fracture tests were performed according to test standards ASTM D3039, ASTM D790, and ASTM D5528 respectively. Comparison of these two distinct specimens showed similar tensile stress values, 13.24% increase in tensile strain and 15.17% decrease of elastic modulus for ec specimen. Flexural stress increases by 6.43%, flexural strain suffered a decline of 41.60% and flexural modulus increased by 32.76% for ec specimen. For Mode-I fracture tests, ec specimens absorbed more energy before the crack jump corresponding to the first unloading. However, both ref and ec specimens showed similar permanent deformation after the second unloading. Energy release rate (ERR) of ec specimens was lower when compared with ref specimens. On comparison, modulus values for ec specimen showed an increase, as the delamination front progressed beyond 60 mm.
机译:生物合理是科学家在寻求发展中的灵感来源。天然材料在一定程度上是多功能的。类似地,为了追求多种功能,基于其拉伸,弯曲和GIC模式-I裂缝性能。根据试验标准ASTM D3039,ASTM D790和ASTM D5528,进行拉伸,弯曲和DCB模式-I断裂试验。这些两种不同标本的比较显示出类似的拉应力值,拉伸应变增加13.24%,EC样本的弹性模量减少15.17%。弯曲应力增加6.43%,弯曲应变遭受41.60%的下降,EC样本的弯曲模量增加了32.76%。对于模式-I裂缝试验,EC标本在裂缝跳跃对应于第一次卸载之前吸收更多能量。然而,在第二次卸载后,ref和ec标本均显示出类似的永久变形。与REF标本相比,EC样本的能量释放率(ERR)较低。相比之下,由于分层前沿超过60mm,EC样本的模量值显示出增加。

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