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制动盘热机械耦合仿真系统的开发 被引量:2
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作者 方明刚 杜利清 +2 位作者 郭立宾 金文伟 黄彪 《铁道机车车辆》 2014年第6期69-73,共5页
为实现制动盘不同工况下热机械耦合仿真分析,采用APDL(ANSYS Parametric Design Language)语言编程实现仿真过程的参数化,同时通过UIDL(User Interface Development Language)语言及TCL/TK语言编写界面,开发了嵌入ANSYS系统内部的仿真... 为实现制动盘不同工况下热机械耦合仿真分析,采用APDL(ANSYS Parametric Design Language)语言编程实现仿真过程的参数化,同时通过UIDL(User Interface Development Language)语言及TCL/TK语言编写界面,开发了嵌入ANSYS系统内部的仿真集成系统。提出的方法可为制动盘及其他车辆制动部件的热机械耦合仿真工作提供有效的指导和依据,开发的仿真系统具有一定的实用价值。 展开更多
关键词 制动盘 热机械耦合 参数化 系统开发
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基于数字散斑相关的封装热机械耦合效应测量
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作者 陈凡秀 何小元 +2 位作者 徐振斌 李明 宋竞 《光电子.激光》 EI CAS CSCD 北大核心 2007年第10期1228-1230,共3页
利用数字散斑相关方法(DSCM),对COB封装结构在热循环状态下的表面热机械耦合效应进行了测量。利用CCD摄像机采集封装芯片在不同温度场中的散斑图像,对比采集到的图像,获取封装芯片在温度场作用下的面内变形。根据三角法测量技术原理,将... 利用数字散斑相关方法(DSCM),对COB封装结构在热循环状态下的表面热机械耦合效应进行了测量。利用CCD摄像机采集封装芯片在不同温度场中的散斑图像,对比采集到的图像,获取封装芯片在温度场作用下的面内变形。根据三角法测量技术原理,将离面位移的测量转化为面内位移的测量,从而获得了芯片受热后的翘曲形变和弹性应变分布。将实验测量与有限元模拟以及理论计算的结果进行了对比,3种结果吻合得比较好,表明了实验方法的有效性和可行性。 展开更多
关键词 热机械耦合 数字散斑相关方法(DSCM) CMOS芯片 封装
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高速主轴轴承系统热机耦合动力学的研究
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作者 施劲宇 《现代制造工程》 CSCD 2008年第4期121-124,共4页
从轴承热动态特性,以及主轴-轴承系统的热动力学动态特性等角度,综述相关理论的研究进展以及影响电主轴工作性能的若干关键因素。
关键词 转子动力学 高速主轴 轴承动力学 热机械耦合 动力学特性
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列车紧急制动过程中踏面温度分布及磨耗预测 被引量:5
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作者 董永刚 仪帅 +2 位作者 黄鑫磊 宋剑锋 杜晓钟 《中国机械工程》 EI CAS CSCD 北大核心 2021年第4期431-438,445,共9页
列车紧急制动过程中踏面温度急剧升高导致车轮踏面的摩擦磨损机理与稳态运行时有显著差异。为了准确预测列车紧急制动过程中踏面磨耗,同时考虑踏面制动过程中车轮踏面与钢轨及闸瓦接触,基于有限元软件ABAQUS建立了踏面制动过程热机械耦... 列车紧急制动过程中踏面温度急剧升高导致车轮踏面的摩擦磨损机理与稳态运行时有显著差异。为了准确预测列车紧急制动过程中踏面磨耗,同时考虑踏面制动过程中车轮踏面与钢轨及闸瓦接触,基于有限元软件ABAQUS建立了踏面制动过程热机械耦合有限元模型,综合考虑制动温升对车轮踏面力学性能、硬度及摩擦因数的影响,仿真得到了紧急制动过程中车轮踏面上温度分布、硬度分布以及接触应力分布,并利用轮轨动力学软件UM得到了紧急制动过程中轮轨接触斑形状以及轮轨蠕滑区相对滑移分布,在此基础上结合Archard磨耗模型对单次紧急制动结束后的踏面磨损深度进行了定量预测。结果表明:对于制动初速度为130 km/h、160 km/h两种工况,踏面最高温度分别达到了397.0℃和485.9℃,踏面最大累积磨损深度分别为5.90μm和7.43μm,与踏面制动实验对比发现,预测结果与实验结果磨损位置及形貌分布趋势一致。 展开更多
关键词 踏面 紧急制动 热机械耦合 温度场 踏面磨耗
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Coupled thermo-hydro-mechanical-migratory model for dual-porosity medium and numerical analysis 被引量:6
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作者 张玉军 杨朝帅 《Journal of Central South University》 SCIE EI CAS 2011年第4期1256-1262,共7页
A coupled thermo-hydro-mechanical-migratory model of dual-porosity medium for saturated-unsaturated ubiquitous-joint rockmass was established,in which the stress field and the temperature field were single,but the see... A coupled thermo-hydro-mechanical-migratory model of dual-porosity medium for saturated-unsaturated ubiquitous-joint rockmass was established,in which the stress field and the temperature field were single,but the seepage field and the concentration field were double,and the influences of sets,spaces,angles,continuity ratios,stiffnesses of fractures on the constitutive relationship of the medium were considered.Also,the relative two-dimensional program of finite element method was developed.Taking a hypothetical nuclear waste repository as a calculation example,the case in which the rockmass was unsaturated dual-porosity medium and radioactive nuclide leak was simulated numerically,and the temperatures,negative pore pressures,saturations,flow velocities,nuclide concentrations and principal stresses in the rockmass were investigated.The results show that the negative pore pressures and nuclide concentrations in the porosity and fracture present different changes and distributions.Even though the saturation degree in porosity is only about 1/10 that in fracture,the flow velocity of underground water in fracture is about three times that in porosity because the permeability coefficient of fracture is almost four orders higher than that of porosity.The value of nuclide concentration in fracture is close to that in porosity. 展开更多
关键词 ubiquitous-joint rockmass dual-porosity medium thermo-hydro-mechanical-migratory coupling model numericalanalysis
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2D FEM analysis for coupled thermo-hydro-mechanical-migratory processes in near field of hypothetical nuclear waste repository 被引量:3
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作者 张玉军 张维庆 《Journal of Central South University》 SCIE EI CAS 2010年第3期612-620,共9页
In order to consider the influence of temperature and underground water movement, an elastoplastic model and a 2D FEM stress fields on the migration of radioactive nuclide with code for analysis of coupled thermo-hyd... In order to consider the influence of temperature and underground water movement, an elastoplastic model and a 2D FEM stress fields on the migration of radioactive nuclide with code for analysis of coupled thermo-hydro-mechanical (THM) processes in saturated and unsaturated porous media were extended and improved through introducing the percolation and migration equation, so that the code can be used for solving the temperature field, flow field, stress field and nuclide concentration field simultaneously. The states of temperatures, pore pressures and nuclide concentrations in the near field of a hypothetical nuclear waste repository were investigated. The influence of the half life of the radioactive nuclide on the temporal change of nuclide concentration was analyzed considering the thermo-hydro-mechanical-migratory coupling. The results show that, at the boundary of the vitrified waste, the concentration of radioactive nuclide with a half life of 10 a falls after a period of rising, with the maximum value of 0.182 mol/m3 and the minimum value of 0.181 mol/m^3 at the end of computation. For a half life of 1 000 a, the concentration of radioactive nuclide always increases with the increase of the time during the computation period; and the maximum value is 1.686 mol/m^3 at the end of the computation. Therefore, under the condition of THM coupling, the concentration of radioactive nuclide with a shorter half life will decrease more quickly with water flow; but for the radioactive nuclide with a longer half life, its concentration will keep at a higher level for a longer time in the migration process. 展开更多
关键词 radioactive nuclide CONCENTRATION thermo-hydro-mechanical-migratory coupling 2D FEM analysis
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Welding sequences optimization of box structure based on genetic algorithm method
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作者 崔晓芳 马君 +2 位作者 孟凯 兆文忠 赵海燕 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2006年第4期463-467,共5页
In this article, The genetic algorithm method was proposed, that is, to establish the box structure's nonlinear three-dimension optimization numerical model based on thermo-mechanical coupling algorithm, and the obje... In this article, The genetic algorithm method was proposed, that is, to establish the box structure's nonlinear three-dimension optimization numerical model based on thermo-mechanical coupling algorithm, and the objective function of welding distortion has been utilized to determine an optimum welding sequence by optimization simulation. The validity of genetic algorithm method combining with the thermo-mechanical nonlinear finite element model is verified by comparison with the experimental data where available. By choosing the appropriate objective function for the considered case, an optimum weldiing.sequence is determined by a genetic algorithm. All done in this study indicates that the new method presented in this article will have important practical application for designing the welding technical parameters in the future. 展开更多
关键词 box structure welding distortion thermo-mechanical coupling welding sequence optimization genetic algorithm
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Atom-continuum coupled model for thermo-mechanical behavior of materials in micro-nano scales 被引量:5
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作者 XIANG MeiZhen CUI JunZhi +1 位作者 LI BoWen TIAN Xia 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2012年第6期1125-1137,共13页
In this paper,an atom-continuum coupled model for thermo-mechanical behaviors in micro-nano scales is presented.A representative volume element consisting of atom clusters is used to represent the microstructure of ma... In this paper,an atom-continuum coupled model for thermo-mechanical behaviors in micro-nano scales is presented.A representative volume element consisting of atom clusters is used to represent the microstructure of materials.The atom motions in the RVE are divided into two phases,structural deformations and thermal vibrations.For the structural deformations,nonlinear and nonlocal deformation at atomic scales is considered.The atomistic-continuum equations are constructed based on momentum and energy conservation law.The non-locality and nonlinearity of atomistic interactions are built into the thermo-mechanical constitutive equations.The coupled atomistic-continuum thermal-mechanical simulation process is also suggested in this work. 展开更多
关键词 atom-continuum coupled (ACC) model atomistic model thermo-mechanical behaviors NONLOCALITY multiscale model
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