在岩体微观损伤力学研究领域,存在多种破坏矿物胶体的微观影响因素,在这其中重金属侵入的影响是最为直接的,也是破坏最大的。岩体微观结构水解置换作的英语翻译

在岩体微观损伤力学研究领域,存在多种破坏矿物胶体的微观影响因素,在这其

在岩体微观损伤力学研究领域,存在多种破坏矿物胶体的微观影响因素,在这其中重金属侵入的影响是最为直接的,也是破坏最大的。岩体微观结构水解置换作用是产生裂变破坏的主要原因,但由于国内外学者在这方面开展的研究较少,加之水解作用过程相对漫长、复杂,对于重金属离子侵入后的水解破坏过程与机理研究迄今还未有大的进展。
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结果 (英语) 1: [复制]
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In the field of rock mass micro-damage mechanics, there are many micro-influencing factors that damage mineral colloids. Among them, the impact of heavy metal intrusion is the most direct and the most damaged. The hydrolysis and replacement of rock mass microstructure is the main cause of fission damage. However, because domestic and foreign scholars have carried out less research in this area, and the hydrolysis process is relatively long and complicated, the process and mechanism of hydrolysis failure after heavy metal ion intrusion are studied. So far there has been no major progress.
正在翻译中..
结果 (英语) 2:[复制]
复制成功!
In the field of rock micro-damaged forces, there are many micro-influence factors that destroy mineral collage, among which the influence of heavy metal intrusion is the most direct and the most destructive. Hydrolycrystion and replacement of rock microstructures is the main cause of fission damage, but due to the lack of research carried out by domestic and foreign scholars in this area, coupled with the relatively long and complex process of hydrolysalization, there has not been much progress in the study of hydrolysal damage process and structure after the invasion of heavy metal ions.
正在翻译中..
结果 (英语) 3:[复制]
复制成功!
In the field of micro damage mechanics of rock mass, there are many micro influencing factors that destroy mineral colloid, among which the influence of heavy metal intrusion is the most direct and the most destructive. The hydrolysis displacement of rock microstructure is the main cause of fission failure. However, due to the lack of research in this field by scholars at home and abroad, and the relatively long and complex hydrolysis process, the research on the hydrolysis failure process and mechanism after heavy metal ions intrusion has not made great progress.<br>
正在翻译中..
 
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