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Low temperature brittle debond damage under normal compression of sandwich plates: Analytical modeling and experimental validation

机译:夹层板正常压缩下的低温脆性脱胶破坏:分析模型和实验验证

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Experimental study and analytical modeling of brittle debond damage formation in polymethacrylimide (PM1) foam sandwich plates under slow normal compression are reported in this paper. The major cause of damage formation under quasi static compression is found to be low temperature brittle cracking effects taking place below some critical temperature levels within the range from -20 ℃ to -30 ℃. The magnitude of critical temperature is increasing as the displacement controlled loading speed increases. The maximal strain achieved during the compression phase is found to be less influential, however it still significantly affects the shape and size of damage. The phenomenon is described in terms of the theory of thin elastic plates (beams) on a piece-wise linear foundation of Kelvin-Voight type. In particular, exact analytical solutions are derived to describe the damage formation. The dependence of the corresponding load on effective strain reveals a jump of slope at yielding point, which is in perfect match with experimental observations.
机译:本文报道了在慢速正常压缩下聚甲基丙烯酰亚胺(PM1)泡沫夹芯板脆性脱粘破坏形成的实验研究和分析模型。发现在准静态压缩下损坏形成的主要原因是在低于-20℃至-30℃的某些临界温度水平下发生的低温脆性开裂效应。临界温度的大小随着位移控制加载速度的增加而增加。发现在压缩阶段达到的最大应变影响较小,但是仍会显着影响损伤的形状和大小。根据开尔文-沃特型分段线性基础上的薄弹性板(梁)的理论来描述这种现象。特别是,得出了精确的分析解来描述损伤的形成。相应载荷对有效应变的依赖性揭示出屈服点处的斜率跃变,这与实验观察结果十分吻合。

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