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首页> 外文期刊>Journal of Applied Polymer Science >Three-dimensional imaging of large compressive deformations in elastomeric foams
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Three-dimensional imaging of large compressive deformations in elastomeric foams

机译:弹性泡沫中大压缩变形的三维成像

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摘要

Specimens of silica-reinforced polysiloxane foam pads were three-dimensionally imaged during axial compressive loading to densification. The foams' behavior was highly nonlinear and showed the three characteristic regions of linear elastic, elastic buckling, and densification. A finite-element technique, based upon conversion of the image voxels to finite elements, was used to calculate the mechanical properties of the foams. The results were compared with conventional mechanical testing and theory. The finite-element calculations were in excellent agreement with experimental stress-strain data over the entire range of compressive loading. Theoretical models, on the other hand, overestimated the stiffness of the foam above the elastic buckling stress by not correctly predicting the abruptness of the transition from elastic buckling to densification. Three-dimensional analysis of the deformed microstructures indicated that there was a critical foam density beyond which the cell morphology suddenly changed from open-celled to closed-celled and that this "phase"-like transition was responsible for the abrupt increase in stiffness near densification. (C) 2001 John Wiley & Sons, Inc. [References: 19]
机译:二氧化硅增强的聚硅氧烷泡沫垫的样品在轴向压缩载荷致密化过程中进行了三维成像。泡沫的行为是高度非线性的,并且表现出线性弹性,弹性屈曲和致密化的三个特征区域。基于图像体素到有限元的转换的有限元技术被用来计算泡沫的机械性能。将结果与常规机械测试和理论进行了比较。在整个压缩载荷范围内,有限元计算与实验应力-应变数据非常吻合。另一方面,理论模型通过不正确地预测从弹性屈曲到致密化转变的突然性,高估了泡沫在弹性屈曲应力之上的刚度。变形微观结构的三维分析表明,存在临界泡沫密度,超过该密度时,泡孔形态突然从开孔转变为闭孔,并且这种“相”状转变是致密化附近刚度急剧增加的原因。 (C)2001 John Wiley&Sons,Inc. [参考:19]

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