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[an error occurred while processing this directive]Shear Mechanical Properties and Microseismic Signal Characteristics of Ionadsorption Rare Earth Ore
Received date: 2022-07-19
Revised date: 2022-10-11
Online published: 2023-01-06
The in-situ leaching process is used to mine ion-adsorption rare earth ore.Due to the infiltration and seepage of leaching solution,it is easy to induce landslide instability,and shear failure is considered to be the main failure mode.In order to study the mechanical properties of shear failure of the orebody landslide,the ion adsorption type rare earth ore was taken as the research object,and the microseismic monitoring technology was used to carry out the direct shear test of the remolded soil sample in the indoor environment.The mechanical properties and microseismic signal characteristics of the specimens under different impregnation state were studied,and the influence of water content on the shear strength of the samples and the change process of shear stress-displacement under different normal stress conditions during the shear failure process were obtained.At the same time,microseismic monitoring and recording equipment was used to collect microseismic signals in the test process of rare earth samples simultaneously.The frequency domain characteristics of the test microseismic data were obtained by fast Fourier transform of the signal based on Python open source software Scipy.The corresponding waveform,time-frequency and spectral images were analyzed to obtain the spectral characteristics of the microseismic signals and the energy distribution characteristics in the frequency domain during the shear process of samples with different water content.The results show that:(1)With the increase of water content,the cohesion of rare earth samples decreases,and the failure characteristics change from plastic failure to viscous failure,and the failure behavior changes from strain softening to strain hardening.For the samples with the same water content,the strain softening characteristics of the samples are more significant with the increase of the consolidation normal stress,and there is an obvious peak strength when the water content is low.(2)The background noise does not affect the results,and the amplitude of the microseismic signal jumped significantly in a short time during the shear process.The comparative analysis of time-frequency and waveform images show that the microseismic signal existes and the main frequency is 10~20 Hz,and the change of water content does not affect the signal main frequency.With the increase of water content,the shear signal has a higher peak amplitude,the overall released energy increases,and the main shock type changes to the group shock type.(3) The signal waveform and spectrum image reflects the rare earth sample shear energy evolution characteristics of upper and lower when the soil relative sliding,including extrusion,rupture,friction,collision between particles and the formation of crack behavior such as the release of the micro size of the strength of the shock wave energy and frequency distribution,microtremor signals as rare earth soil internal activities forward the external manifestations of form.The results can be used as the discriminative basis for the microseismic signal of landslide in ion-adsorption rare earth ore.
Xiaojun WANG , Qiping ZHONG , Kaijian HU , Hao WANG , Yu WANG , Lihao LI , Liang FENG . Shear Mechanical Properties and Microseismic Signal Characteristics of Ionadsorption Rare Earth Ore[J]. Gold Science and Technology, 2022 , 30(6) : 912 -922 . DOI: 10.11872/j.issn.1005-2518.2022.06.116
新疆有色获批成立战略金属产业创新研究院
12月5日,新疆维吾尔自治区工信厅发布《关于拟认定成立的新疆维吾尔自治区产业创新研究院的公示(第一批)》,新疆有色集团榜上有名,获批组建“战略金属产业创新研究院”。
2022年10月,新疆有色集团启动相关申报工作,期间努力克服疫情不利影响,通过申报书的编制及4次修改完善,同时吸取先进企业创新中心建设方案,最终定稿申报书并参与了线上汇报答辩。战略金属产业创新研究院是在自治区政府领导下,由新疆有色集团牵头,依托新疆有色金属研究所、新疆新鑫矿业股份有限公司、西部黄金股份有限公司等企业,会同新疆大学、中南大学、东北大学、矿冶科技集团有限公司、中国有研科技集团有限公司等高校、科研院所及企业集团共同组建,致力于打造“体系化、任务型、开放式”的创新联合体。
“战略金属产业创新研究院”的成立,将促进各类创新要素向企业集聚,以产业创新为引领、以技术转化为重点、以人才培养为支撑、以校企合作为基础、以产研融合为桥梁,构建产业技术创新和研发成果转化体系,形成“产业创新、科研应用、人才培养”融合新模式,推动产业链、创新链、人才链的协同发展,全面提升自治区有色金属产业竞争力。
中国有色金属报)
http://www.goldsci.ac.cn/article/2022/1005-2518/1005-2518-2022-30-6-912.shtml
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