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首页> 外文期刊>Journal of Materials Science >Ductility and toughenability study of epoxy resins under multiaxial stress states
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Ductility and toughenability study of epoxy resins under multiaxial stress states

机译:环氧树脂在多轴应力状态下的延展性和韧性研究

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The local strains in unmodified and rubber-modified epoxies under multiaxial stress states were examined. Matrix ductility was varied by using epoxide resins of different epoxide monomer molecular weights. The stress state was altered from a pi a ne strain case to a plane stress case by varying the thickness of the test specimens. It was confirmed that, in the case of unmodified resins, the thinner specimens which experienced nearly uniaxial tensile stress exhibited much higher local strains at failure than the thicker counterparts which experienced highly triaxial tensile stress. Also, the cross-link density was reduced as monomer molecular weight increased, thus the increase in local plastic strain due to the stress state change also became greater. Furthermore, it was found that rubber modification markedly increased the plastic strain to failure, irrespective of the specimen dimensions, and that the extent of this plastic strain increased as cross-link density was lowered. These results are consistent with the concept that the cavitation of rubber particles relieves the initial multiaxial constraint in a thick specimen, induces a stress state closer to plane stress throughout the specimen, and consequently enables the matrix to deform to a larger extent. The results also show clearly that the toughenability of a matrix resin is not independent of the stress state and the matrix ductility. (C) 1998 Kluwer Academic Publishers. [References: 24]
机译:检查了未改性和橡胶改性的环氧树脂在多轴应力状态下的局部应变。通过使用具有不同环氧化物单体分子量的环氧树脂来改变基质的延展性。通过改变试样的厚度,应力状态从初始应变情况变为平面应力情况。可以确认的是,在未改性树脂的情况下,承受接近单轴拉伸应力的较薄试样在断裂时表现出的局部应变要比承受较高三轴拉伸应力的较厚试样的断裂应变高得多。另外,随着单体分子量的增加,交联密度降低,因此,由于应力状态变化而引起的局部塑性应变的增加也变得更大。此外,发现橡胶改性显着增加了破坏塑性应变的能力,而与样品尺寸无关,并且随着交联密度的降低,这种塑性应变的程度也增加了。这些结果与以下概念一致:橡胶颗粒的气穴现象减轻了厚样品中的初始多轴约束,在整个样品中引发了更接近平面应力的应力状态,从而使基体能够更大程度地变形。结果还清楚地表明,基体树脂的可韧性与应力状态和基体延展性无关。 (C)1998 Kluwer学术出版社。 [参考:24]

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