Based on the statics theory, a novel and feasible twice-suspended-mass method(TSMM) was proposed to deal with the seldom-studied issue of fault diagnosis for damping springs of large vibrating screen(LVS). With the st...Based on the statics theory, a novel and feasible twice-suspended-mass method(TSMM) was proposed to deal with the seldom-studied issue of fault diagnosis for damping springs of large vibrating screen(LVS). With the static balance characteristic of the screen body/surface as well as the deformation compatibility relation of springs considered, static model of the screen surface under a certain load was established to calculate compression deformation of each spring. Accuracy of the model was validated by both an experiment based on the suspended mass method and the properties of the 3D deformation space in a numerical simulation. Furthermore, by adopting the Taylor formula and the control variate method, quantitative relationship between the change of damping spring deformation and the change of spring stiffness, defined as the deformation sensitive coefficient(DSC), was derived mathematically, from which principle of the TSMM for spring fault diagnosis is clarified. In the end, an experiment was carried out and results show that the TSMM is applicable for diagnosing the fault of single spring in a LVS.展开更多
考虑岩体边坡滑动大变形破坏特性和现有研究分析手段,提出利用第一作者团队开发研制的Geo SM A-3D,在现场岩体结构信息采集的基础上,建立岩体边坡空间数值模型,实体表征岩体三维模型;利用现代数值流形法(NMM)模拟岩体大变形破坏分析手段...考虑岩体边坡滑动大变形破坏特性和现有研究分析手段,提出利用第一作者团队开发研制的Geo SM A-3D,在现场岩体结构信息采集的基础上,建立岩体边坡空间数值模型,实体表征岩体三维模型;利用现代数值流形法(NMM)模拟岩体大变形破坏分析手段,在块体理论的基础上,运用有限元分析中经常用到的重度增加法,不断增加岩体的重度,直到岩体边坡中的"关键块体"产生滑动,使边坡发生大变形破坏;同时以最危险"关键块体"水平位移随重度增加发生突变为破坏依据,对边坡的安全系数进行评定.实例分析某边坡工程的破坏过程,实现了岩体边坡大变形数字表征,为边坡支护提出解决方案,为工程施工和边坡灾害的处置提供参考和借鉴.展开更多
基金Project(20120095110001)supported by the PhD Programs Foundation of Ministry of Education of ChinaProject(51134022,51221462)supported by the National Natural Science Foundation of China+1 种基金Project(CXZZ13_0927)supported by Research and Innovation Program for College Graduates of Jiangsu Province,ChinaProject(2013DXS03)supported by the Fundamental Research Funds for Central Universities of China
文摘Based on the statics theory, a novel and feasible twice-suspended-mass method(TSMM) was proposed to deal with the seldom-studied issue of fault diagnosis for damping springs of large vibrating screen(LVS). With the static balance characteristic of the screen body/surface as well as the deformation compatibility relation of springs considered, static model of the screen surface under a certain load was established to calculate compression deformation of each spring. Accuracy of the model was validated by both an experiment based on the suspended mass method and the properties of the 3D deformation space in a numerical simulation. Furthermore, by adopting the Taylor formula and the control variate method, quantitative relationship between the change of damping spring deformation and the change of spring stiffness, defined as the deformation sensitive coefficient(DSC), was derived mathematically, from which principle of the TSMM for spring fault diagnosis is clarified. In the end, an experiment was carried out and results show that the TSMM is applicable for diagnosing the fault of single spring in a LVS.
文摘考虑岩体边坡滑动大变形破坏特性和现有研究分析手段,提出利用第一作者团队开发研制的Geo SM A-3D,在现场岩体结构信息采集的基础上,建立岩体边坡空间数值模型,实体表征岩体三维模型;利用现代数值流形法(NMM)模拟岩体大变形破坏分析手段,在块体理论的基础上,运用有限元分析中经常用到的重度增加法,不断增加岩体的重度,直到岩体边坡中的"关键块体"产生滑动,使边坡发生大变形破坏;同时以最危险"关键块体"水平位移随重度增加发生突变为破坏依据,对边坡的安全系数进行评定.实例分析某边坡工程的破坏过程,实现了岩体边坡大变形数字表征,为边坡支护提出解决方案,为工程施工和边坡灾害的处置提供参考和借鉴.