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Temperature and strain rate dependence of syntactic foam under tensile and shear loads

机译:拉伸和剪切载荷下复合泡沫的温度和应变率依赖性

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The behaviour of syntactic foam is strongly dependent on temperature and strain rate. This research focuses on the behaviour of syntactic foam made of epoxy and glass microballoons in the glassy, transition and rubbery regions. Both epoxy and epoxy foam are investigated separately under tension and shear loadings in order to study the strain rate and temperature effects. The results indicate that the strength and strain to failure data can be collapsed onto master curves depending on temperature reduced strain rate. The highest strain to failure occurs in the transition zone. The presence of glass microballoons reduces the strain to failure over the entire range considered, an effect that is particularly significant under tensile loading. However, as the microballoons increase the elastic modulus significantly in the rubbery zone but reduce it somewhat in the glassy zone, the effect on the strength is more complicated. Different failure mechanisms are identified over the temperature-frequency range considered. As the temperature reduced strain rate is decreased, the failure mechanism changes from microballoon fracture to matrix fracture and debonding between the matrix and microballoons.
机译:句法泡沫的行为在很大程度上取决于温度和应变率。这项研究的重点是在玻璃,过渡和橡胶区域,环氧和玻璃微气球制成的复合泡沫的行为。为了研究应变率和温度的影响,分别对拉伸和剪切载荷下的环氧泡沫塑料和环氧泡沫塑料进行了研究。结果表明,取决于温度降低的应变速率,强度和应变至破坏的数据可以折叠到主曲线上。最高的应变破坏发生在过渡区。玻璃微气球的存在降低了所考虑的整个范围内的应变破坏,这种作用在拉伸载荷下尤为明显。但是,由于微气球在橡胶区显着增加了弹性模量,而在玻璃区显着降低了弹性模量,因此对强度的影响更加复杂。在所考虑的温度-频率范围内识别出不同的故障机制。随着温度降低的应变率降低,破坏机理从微球断裂变为基体断裂,以及基体与微球之间的剥离。

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