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Numerical Simulation and Experimental Research on Fatigue Strength of the Injector Guide Pillar under Complex Loads

机译:复杂载荷下喷油嘴导柱疲劳强度的数值模拟与实验研究

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Under the complex loads, the injector guide pillar (IGP) used in injection machine was failure only after 1.5-year-service. In order to determine the cause of the fracture, the numerical simulation technology was applied to analyze the mechanical properties of the IGP. The contact between the mating surfaces of the clamping mechanism was modeled; nonlinear multi-region contact of surface-surface was applied to establish the contact model of FEA. The constraint of tie was used for modeling thread joint. The simulated results indicated that the smaller area of contact surface, the higher value of stress in the neck of IGP. Electronic measurement was also used to check the results of stress in IGP obtained by FEA. It was found that the experimental data agreed well with simulated results. Based on the numerical analysis and experimental study, the structure of IGP was improved by adopting a smoother double-round neck. The fatigue life of the improved structure was longer than that of the original machine.
机译:在复杂负载下,仅在使用1.5年后,注塑机中使用的喷射器导柱(IGP)才出现故障。为了确定断裂原因,采用数值模拟技术分析了IGP的力学性能。对夹紧机构配合面之间的接触进行了建模;应用表面的非线性多区域接触建立FEA的接触模型。领带约束用于建模螺纹接头。仿真结果表明,接触面面积越小,IGP颈部的应力值越高。电子测量还用于检查由FEA获得的IGP中的应力结果。发现实验数据与模拟结果吻合良好。在数值分析和实验研究的基础上,采用较光滑的双圆颈改进了IGP的结构。改进后的结构的疲劳寿命比原始机器更长。

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