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Experimental and theoretical fracture toughness investigation of PUR foams under mixed mode I plus III loading

机译:混合模式下PUR泡沫的实验性和理论断裂韧性研究Plus III载荷

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摘要

Foam materials can be subjected to tensile and out-of-plane sliding deformation during their service life. Hence, catastrophic brittle fractures initiated from the pre-existing cracks under combined influence of modes I and III is one of the possible failure mechanism in rigid foams. However, at the best knowledge of authors there are no mixed mode (I + III) fracture toughness data for foam materials in the literature. To fill this research gap, in this research unique and new sets of mixed mode I/III fracture toughness data (i.e. K-IC and K-IIIc) are obtained and reported for the first time for PUR foam materials with different densities. The fracture experiments were conducted using "edge notched disc bend" (ENDS) specimen which has been recently developed for conducting mixed mode VIII investigations by the authors. Based on the obtained results, by increasing the contribution of out-of-plane sliding deformation the fracture growth resistance of the tested foams was decreased, such that the ratio of pure mode III fracture toughness over pure mode I fracture toughness (K-IIIc/K-Ic) is about 0.65. Furthermore, by increasing the foam density the mixed mode fracture toughness envelope (K-Ic - K-IIIc) becomes greater for all mode mixities. Indeed, when the density increases from 100 to 300 kg/m(3), the corresponding modes I and III fracture toughness values increase up to 400%. Meanwhile, the experimental fracture toughness results are predicted very well using the maximum tangential strain density.
机译:在其使用寿命期间,可以对泡沫材料进行拉伸和平面外滑动变形。因此,从模型I和III的组合影响下,从预先存在的裂缝引发的灾难性脆性骨折是刚性泡沫中可能的失效机制之一。然而,在作者的最佳知识,在文献中没有混合模式(I + III)泡沫材料的混合模式(I + III)断裂韧性数据。为了填补该研究差距,在本研究中,获得了独特的混合模式I / III裂缝韧性数据(即K-IC和K-II型),并首次向Pur泡沫材料具有不同密度的PUR泡沫材料。使用“边缘缺口盘弯曲”(末端)样本进行了裂缝实验,该样本已被开发用于作者进行混合模式VIII调查。基于所得结果,通过提高平面外滑动变形的贡献,降低了测试泡沫的骨折生长抗性,使得纯模式III裂缝韧性与纯模式的比例I断裂韧性(K-II ic / K-IC)约为0.65。此外,通过增加泡沫密度,混合模式断裂韧性包络(K-IC - K-II型)对于所有模式混合变大。实际上,当密度从100升至300kg / m(3)增加时,相应的模式I和III断裂韧性值增加到400%。同时,使用最大的切向应变密度预测实验性裂缝韧性结果。

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