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首页> 外文期刊>Engineering Geology >Microcracks in ultrabasic rocks under uniaxial compressive stress
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Microcracks in ultrabasic rocks under uniaxial compressive stress

机译:单轴压缩应力下超基性岩石中的微裂纹

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The initiation and propagation of microcracks under stress are highly dependent upon the mineralogical and textural characteristics of the various lithotypes. Detailed observation and quantification of microcracks before and after uniaxial compression test were conducted. A fresh olivine-rich harzburgite and a serpentinized dunite were analyzed, collected from the Pindos and Vourinos ophiolites (northern Greece) respectively, in order to compare their microcrack patterns. Quantitative analysis indicated that during uniaxial compression the intragranular microcracks, which are the dominating crack-type, are gradually transformed or organized into transgranular cracks. Some of the newly formed transgranular cracks may also be a result of the growth of existing grain-boundary cracks. The new intragranular microcracks in the olivinerich harzburgite are oriented predominantly parallel to the compressive stress direction, while those in the serpentinized dunite show a scattered orientation presumably due to the mesh texture of this rock-type. The new transgranular cracks of both peridotites tend to be subparallel to the compressive stress direction, however, many of them show a random orientation due to the fact that they have been formed as a result of the propagation of grain-boundary cracks. The occurrence of the soft serpentine along fracture surfaces of olivine, when it is in assemblage with orthopyroxene, tends to absorb the applied stress hampering the development of microcracks in olivine. On the other hand in serpentinized peridotites, the microcracks are enhanced in olivine because it is surrounded by large amounts of the much softer and flexible serpentine. Microcracks are usually formed along the cleavage planes of orthopyroxene porphyroclasts, indicating that such crystallographic preferred orientations act as planes of weakness, controlling the direction of the crack paths. Cr-spinel grains likely comprise locations of initiation of microcracks due to their very hard nature and different mechanical behaviour relative to the surrounding silicate phases. Knowledge of the mineralogical and textural characteristics may assist in the prediction of potential development of failure surfaces of anultrabasic rock in-service.
机译:应力作用下微裂纹的萌生和扩散高度依赖于各种岩石类型的矿物学和质地特征。进行了单轴压缩试验前后微裂纹的详细观察和定量。分析了新鲜的富含橄榄石的哈兹石和蛇纹石化的榴辉岩,分别从Pindos和Vourinos蛇绿岩(希腊北部)收集,以比较它们的微裂纹模式。定量分析表明,在单轴压缩过程中,占优势的裂纹类型的晶粒内微裂纹逐渐转变或组织为跨晶裂纹。一些新形成的跨晶裂纹也可能是现有晶界裂纹增长的结果。橄榄石型辉石岩中的新颗粒内微裂纹的取向主要与压应力方向平行,而蛇纹石化的榴辉岩中的新晶粒内裂纹表现出分散的取向,这可能是由于这种岩石类型的网状结构。两种橄榄岩的新的跨晶裂纹都趋于与压应力方向平行,但是,由于晶界裂纹的扩展而形成裂纹,因此许多裂纹晶显示出随机取向。当软蛇纹石与邻苯二甲酚组合在一起时,它们沿着橄榄石断裂面出现,往往会吸收所施加的应力,从而阻碍橄榄石微裂纹的发展。另一方面,在蛇纹石橄榄岩中,橄榄石中的微裂纹增强了,因为它被大量柔软得多且柔软的蛇纹石所包围。微裂纹通常沿着邻苯二茂基卟啉的分裂平面形成,表明这种晶体学优选的取向充当弱化平面,控制裂纹路径的方向。 Cr-尖晶石晶粒由于其非常坚硬的性质和相对于周围的硅酸盐相的不同机械性能而可能包含微裂纹的引发位置。了解矿物学和组织学特征可能有助于预测在役的无基础岩石破裂面的潜在发展。

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