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服役条件下螺栓弹性应力建模及性能保持研究
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作者 高学敏 殷小健 +4 位作者 米保卫 冯德荣 张钦莹 谢洪斌 傅国宇 《制造技术与机床》 北大核心 2025年第1期111-119,共9页
为了揭示螺栓连接在长期服役过程中的应力松弛机理,对服役条件下螺栓连接的蠕变机理与性能保持行为进行了系统性分析,结合简化解析方法和有限元分析,对螺栓和法兰在不同服役时间内的应力松弛进行了深入探讨。采用了一种简化的解析方法,... 为了揭示螺栓连接在长期服役过程中的应力松弛机理,对服役条件下螺栓连接的蠕变机理与性能保持行为进行了系统性分析,结合简化解析方法和有限元分析,对螺栓和法兰在不同服役时间内的应力松弛进行了深入探讨。采用了一种简化的解析方法,以解决螺栓法兰连接中的蠕变应力松弛问题,特别关注法兰和螺栓材料的蠕变松弛。通过与三维数值有限元方法比较,验证了该方法的有效性,分析了不同服役时间对螺栓预紧力衰退的影响。仿真结果显示,仿真模型1 000 h时整体蠕变松弛为45.2%,3 000 h时整体蠕变松弛为50.8%,6 000 h时整体蠕变松弛为63.3%。解析结果显示,解析模型1 000 h时整体蠕变松弛为53.4%,3 000 h时整体蠕变松弛为60.5%,6 000 h时整体蠕变松弛为73.4%。结果表明,服役时间越长,预紧力先快速下降,随后逐渐趋于稳定。总之,通过详细的理论分析和数值模拟,揭示了螺栓连接在长期服役中的应力松弛机理,提供了可靠的预测方法和设计优化方案。 展开更多
关键词 螺栓连接 应力松弛 弹性应力建模 解析方法 理论分析 有限元分析
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Elastodynamic modeling and joint reaction prediction for 3-PRS PKM 被引量:4
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作者 张俊 赵艳芹 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第8期2971-2979,共9页
To gain a thorough understanding of the load state of parallel kinematic machines(PKMs), a methodology of elastodynamic modeling and joint reaction prediction is proposed. For this purpose, a Sprint Z3 model is used a... To gain a thorough understanding of the load state of parallel kinematic machines(PKMs), a methodology of elastodynamic modeling and joint reaction prediction is proposed. For this purpose, a Sprint Z3 model is used as a case study to illustrate the process of joint reaction analysis. The substructure synthesis method is applied to deriving an analytical elastodynamic model for the 3-PRS PKM device, in which the compliances of limbs and joints are considered. Each limb assembly is modeled as a spatial beam with non-uniform cross-section supported by lumped virtual springs at the centers of revolute and spherical joints. By introducing the deformation compatibility conditions between the limbs and the platform, the governing equations of motion of the system are obtained. After degenerating the governing equations into quasi-static equations, the effects of the gravity on system deflections and joint reactions are investigated with the purpose of providing useful information for the kinematic calibration and component strength calculations as well as structural optimizations of the 3-PRS PKM module. The simulation results indicate that the elastic deformation of the moving platform in the direction of gravity caused by gravity is quite large and cannot be ignored. Meanwhile, the distributions of joint reactions are axisymmetric and position-dependent. It is worthy to note that the proposed elastodynamic modeling method combines the benefits of accuracy of finite element method and concision of analytical method so that it can be used to predict the stiffness characteristics and joint reactions of a PKM throughout its entire workspace in a quick and accurate manner. Moreover, the present model can also be easily applied to evaluating the overall rigidity performance as well as statics of other PKMs with high efficiency after minor modifications. 展开更多
关键词 parallelkinematic machine (PKM) 3-PRS PKM Sprint Z3 head elastodynamic modeling joint reaction
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