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牵引式弹力特性转换桥的特征与分类 被引量:1
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作者 辛岩 《机械传动》 CSCD 北大核心 1998年第1期50-51,共2页
通过对牵引式弹力特征转换桥典型机构传动特征的分析,提出了分类方案,以机械配重为例说明应用方式,对相关的产品设计有指导意义。
关键词 弹力特性转换桥 传动特征 弹力传递 原型机构
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Elasticity solution of laminated beams with temperature-dependent material properties under a combination of uniform thermo-load and mechanical loads 被引量:2
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作者 ZHANG Zhong ZHOU Wen-ling +2 位作者 ZHOU Ding HUO Rui-li XU Xiu-li 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第10期2537-2549,共13页
An exact solution for simply-supported laminated beams with material properties variable with temperature under a combination of uniform thermo-load and mechanical loads was investigated,based on the two-dimensional(2... An exact solution for simply-supported laminated beams with material properties variable with temperature under a combination of uniform thermo-load and mechanical loads was investigated,based on the two-dimensional(2-D)thermo-elasticity theory.Firstly,the beam was divided into a series of layers with uniform material properties along the interfaces of the beam.The uniform thermo-load acted on each layer was transformed into a combination of the normal surface forces acted at the two ends and the transverse thermo-load.Secondly,the state space method was employed to obtain the general solutions of displacements and stresses in an arbitrary layer.Thirdly,based on the interfacial continuity conditions between adjacent layers,the relations of displacement and stress components between the top and bottom layers of the beam were recursively derived by use of the transfer-matrix method.The unknowns in the solutions can be solved by the mechanical loads acted on the top and bottom surfaces.The convergence of the present solutions was checked.The comparative study of the present solutions with the Timoshenko’s solutions and the finite element(FE)solutions was carried out.The effects of material properties variable with temperature on the thermo-elastic behavior of laminated beams were discussed in detail. 展开更多
关键词 laminated beam THERMO-ELASTICITY analytical solution transfer-matrix method temperature-dependent material
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