首页> 外文期刊>Environmental Geology >Influence of shape fabric and crystal texture on marble degradation phenomena: simulations
【24h】

Influence of shape fabric and crystal texture on marble degradation phenomena: simulations

机译:形状织物和晶体质地对大理石降解现象的影响:模拟

获取原文
获取原文并翻译 | 示例
           

摘要

Microstructure-based finite element simulations were used to study the influence of grain shape fabric and crystal texture on thermoelastic responses related to marble degradation phenomena. Calcite was used as an illustrative example for studying extremes of shape preferred orientation (SPO) in shape fabric and lattice preferred orientation (LPO) in crystal texture. Three SPOs were analyzed: equiaxed grains, elongated grains, and a mixture of equiaxed and elongated grains. Three LPOs were considered: a random orientation distribution function and two degrees of strong directional crystal texture. Finally, the correlation between the direction of the LPO with respect to that of the SPO was examined. Results show that certain combinations of SPO, LPO, and their directional relationship have significant influence on the thermomechanical behavior of marble. For instance, while there is no major dependence of the elastic strain energy density and the maximum principal stress on SPO for randomly textured microstructures, there is a strong synergy between LPO and its directional relationship with respect to the SPO direction. Microcracking precursors, elastic strain energy density, and maximum principal stress, decrease when the crystalline c-axes have fiber texture perpendicular to the SPO direction, but increase significantly when the c-axes have fiber texture parallel to the SPO direction. Moreover, the microstructural variability increases dramatically for these latter configurations. In general, the influence of LPO was as expected, namely, the strain energy density and the maximum principal stress decreased with more crystal texture, apart from for the exception noted above. Spatial variations of these precursors indicated regions in the microstructure with a propensity for microcracking. Unexpectedly, important variables were the microstructural standard deviations of the spatial distributions of the microcracking indicators. These microstructural standard deviations were as large as or larger than the variables themselves. The elastic misfit-strain contributions to the coefficients of thermal expansion were also calculated, but their dependence was as expected.
机译:基于微观结构的有限元模拟被用来研究晶粒形状织物和晶体纹理对与大理石降解现象有关的热弹性响应的影响。方解石用作研究形状织物中形状优选取向(SPO)和晶体织构中晶格优选取向(LPO)的极值的示例。分析了三个SPO:等轴晶粒,拉长晶粒以及等轴晶粒和拉长晶粒的混合物。考虑了三个LPO:一个随机的取向分布函数和两个度的强定向晶体织构。最后,检查了LPO方向与SPO方向之间的相关性。结果表明,SPO,LPO的某些组合及其方向关系对大理石的热机械行为具有重要影响。例如,尽管对于随机织构的微结构,弹性应变能密度和最大主应力对SPO没有主要依赖性,但LPO及其相对于SPO方向的方向关系之间存在很强的协同作用。当晶体c轴具有与SPO方向垂直的纤维织构时,微裂纹前驱体,弹性应变能密度和最大主应力会降低,但是当c轴具有与SPO方向平行的纤维织构时,微裂纹前体会明显增加。而且,对于这些后面的构造,微结构变异性急剧增加。通常,LPO的影响与预期的一样,即应变能密度和最大主应力随着更多的晶体织构而降低,除了上述例外。这些前体的空间变化表明了微结构中具有微裂纹倾向的区域。出乎意料的是,重要的变量是微裂纹指示剂的空间分布的微结构标准偏差。这些微观结构标准偏差与变量本身一样大或更大。弹性失配应变对热膨胀系数的贡献也被计算出来,但是它们的依赖性是预期的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号