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现代矿业 ›› 2025, Vol. 41 ›› Issue (09): 50-56.

• 综合述评 • 上一篇    下一篇

离子型稀土矿体力学特性研究现状及展望

曾云霜1,2 潘栋彬1,2 周 扬1,2 谢 昱1,2   

  1. 1. 战略金属矿产资源低碳加工与利用江西省重点实验室;2. 江西理工大学资源与环境工程学院
  • 出版日期:2025-09-25 发布日期:2025-11-04

Research Status and Prospect of Mechanical Properties of Ionic Rare Earth Ore Body

  1. 1. Jiangxi Provincial Key Laboratory of Low-Carbon Processing and Utilization of Strategic Metal Mineral Resources; 2. School of Resources and Environmental Engineering,Jiangxi University of Science and Technology
  • Online:2025-09-25 Published:2025-11-04

摘要: 离子型稀土矿是中国独具特色、世界罕见的矿产资源。目前离子型稀土矿主要利用原 地浸矿法进行开采,但开采过程中稀土矿体长期受到浸矿液的侵蚀作用,导致力学性能持续劣化,进 而产生山体滑坡灾害。针对原地浸矿法的力学特性,分析并综述了离子型稀土矿体应力-应变行为、 变形特征、力学强度演变特性以及矿体本构模型。研究结果表明:已有的研究成果缺少对矿体微观 力学特性、浸矿液渗流侵蚀作用及其与化学侵蚀耦合效应的关注,矿体应力-应变本构模型尚不能全 面描述原地浸矿过程中矿体力学行为。为深入探究稀土矿体的宏微观力学响应,应当加强对矿体数 值模拟方法、本构模型以及渗流侵蚀与化学侵蚀耦合作用的研究。

关键词: 离子型稀土矿, 渗流侵蚀, 化学侵蚀, 应力-应变行为, 力学强度参数, 本构模型

Abstract: Ionic rare earth ore is a mineral resource with unique characteristics in China and rare worldwide. Currently,in-situ leaching method is mainly used for the mining of ionic rare earth ore. Howev⁃ er,during the mining process,the rare earth ore body is eroded by the leaching solution for a long time, which causes continuous deterioration of its mechanical properties and thus leads to landslide disasters. Fo⁃ cusing on the mechanical characteristics of the in-situ leaching method,this study analyzes and summarizes the stress-strain behavior,deformation characteristics,evolution characteristics of mechanical strength of the ionic rare earth ore body,as well as the ore body constitutive model. Research results show that existing research results lack attention to the micromechanical properties of the ore body,the seepage erosion effect of the leaching solution,and its coupling effect with chemical erosion. The stress-strain constitutive model of the ore body still cannot fully describe the mechanical behavior of the ore body during the in-situ leaching process. To further explore the macro-micro mechanical responses of the rare earth ore body,efforts should be made to strengthen research on the numerical simulation method of the ore body,the constitutive model, and the coupling effect between seepage erosion and chemical erosion.

Key words: ionic rare earth ores, seepage erosion, chemical erosion, stress-strain behavior, mechani? cal strength parameters, constitutive model