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Experimental Study to Design an Analog Material for Jinping Marble with High Strength, High Brittleness and High Unit Weight and Ductility

机译:实验研究设计锦井大理石模拟材料,高强度,高脆性和高单位重量和延展性

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摘要

The rockburst and spalling problems encountered in the Jinping Underground Laboratory are to be investigated using 3-D physical model testing. New similarity relationships for the brittleness, brittle-ductile transition and ductility characteristics of deep hard rock are first established based on the characteristics of the deep rock mass, thereby providing guidance for the development of analog materials with new characteristics that are appropriate for investigating deep rock engineering disasters via large-scale 3-D physical model tests. Achieving similarity simultaneously among the multiple physical-mechanical properties of deep hard rock constitutes the major challenge of research on analog materials. Consequently, a new method for designing analog materials by controlling the aggregate characteristics is proposed. The test results indicate that the aggregates of the analog materials can be controlled to achieve properties that are similar to those of the original rock. The newly developed analog material exhibits basic mechanical parameters and properties that are similar to those of Jinping marble, including high strength, high brittleness, and high unit weight in addition to brittle-ductile transition and ductility characteristics and deformation and failure modes. The new analog material successfully simulates the major physical-mechanical properties of Jinping marble and overcomes the limitations of preexisting methods, which develop analog materials via cementing agents, in which the achievement of similarity simultaneously among multiple properties is impossible.
机译:在金平地下实验室遇到的摇滚乐和拼写问题将使用3-D物理模型测试来调查。基于深层岩石质量的特征,首先建立了深硬岩的脆性,脆性转变和延展性特性的新相似关系,从而为模拟材料开发具有适当调查深层岩石的新特性的指导通过大规模的3-D物理模型测试进行工程灾害。同时在深硬岩的多种物理机械性质同时实现相似性构成了模拟材料研究的主要挑战。因此,提出了一种通过控制聚集特性来设计模拟材料的新方法。测试结果表明,可以控制模拟材料的聚集体以实现与原始岩石类似的性质。新开发的类似物材料表现出基本的机械参数和性质,其类似于金杨大理石,包括高强度,高脆性和高单位重量,除了脆性 - 延展转换和延展性特性以及变形以及变形和故障模式之外。新的模拟材料成功地模拟了金杨大理石的主要物理 - 力学性能,克服了通过胶结剂形成模拟材料的预先存在的方法的局限性,其中不可能同时实现相似性的相似性。

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