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Mechanical characterization and quality of iron castings using optimized mold design: simulations and experimental validation

机译:使用优化模具设计的机械表征及铁铸件的质量:仿真与实验验证

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This paper presents a new approach to analyze the quality of ductile iron castings through simulations and experiments. Standard tensile test specimens are considered as simple cast products for which a multi-cavity mold is designed, simulated, and optimized to minimize porosity using MAGMASoft. X-ray imaging, hardness measurement, and tensile testing are done for selected specimens produced using optimized mold design. Next, finite element simulation of tensile testing until fracture is done in ABAQUS using elastic-plastic material model and porous metal plasticity model. Simulation results for sound specimen are found to be in good agreement with the experimental results. Since mold design optimization is solely based on porosity minimization, no porosity is observed in the final mold design. However, if multi-criteria optimization of mold is done, the specimens may show some porosity which can be integrated in the developed finite element model of tensile testing. It is concluded that simulation-based mold design optimization can produce nearly defect-free castings and at the same time exhibit the similar mechanical properties as their sound counterparts produced with other manufacturing processes.
机译:本文介绍了通过模拟和实验分析延性铁铸件的质量的新方法。标准拉伸试样被认为是简单的铸造产品,用于设计,模拟,并优化,以最小化使用磁带的孔隙率。使用优化的模具设计生产的所选样品进行X射线成像,硬度测量和拉伸试验。接下来,使用弹性塑料材料模型和多孔金属塑性模型在ABAQUS中完成抗拉性试验的有限元模拟。发现声音标本的仿真结果与实验结果很好。由于模具设计优化仅基于孔隙率最小化,因此在最终模具设计中没有观察到孔隙率。然而,如果模具的多标准优化完成,则样品可以显示一些可以集成在显影的拉伸试验的有限元模型中的孔隙率。得出结论,基于仿真的模具设计优化可以产生几乎无缺陷的铸件,同时表现出类似的机械性能作为与其他制造工艺产生的声音对应物。

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