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Evaluation of microstructure of A356 aluminum alloy casting prepared under vibratory conditions during the solidification

机译:振动条件下凝固过程中制备的A356铝合金铸件的组织评价

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The objective of this investigation was to evaluate the effect of vibrations (during solidification) on the metallurgical properties of A356 aluminum casting. Mechanical vibrations were applied to A356 aluminum alloy through set up. A356 melt has been subjected to mechanical vibration with the frequency range from 0 to 400 Hz with constant amplitude 5 lm. Grain refinement was obtained through mold vibration. Metallurgical properties were examined through optical microstructure, tensile fracture scanning electron microscope (SEM) and SEM image of test specimens prepared under different conditions of solidification. Results indicate that mold vibration effectively modified the microstructure of A356 casting and it has uniform and smaller grain sizewith fibrous silicon particle than nonvibrated casting. Grain refinement results increase in mechanical properties with increase in frequency of vibration of mold during the solidification. SEM micrograph of tensile fracture surface was carried out to study the influence of microstructure on fracture mode. SEM image of tensile fractured surface shows transgranular cleavage facets due to fracture of primary silicon particles. Fractures are brittle in nature so observation indicates low ductility and brittle fracture.
机译:这项研究的目的是评估振动(凝固过程中)对A356铝铸件的冶金性能的影响。通过设置将机械振动应用于A356铝合金。 A356熔体已受到机械振动,频率范围从0到400 Hz,恒定振幅为5 lm。通过模具振动获得晶粒细化。通过光学显微组织,拉伸断裂扫描电子显微镜(SEM)和在不同凝固条件下制备的试样的SEM图像来检查冶金性能。结果表明,结晶器振动有效地改变了A356铸件的组织,并且与非振动铸件相比,具有纤维硅颗粒的铸模具有均匀且较小的晶粒尺寸。晶粒细化的结果是,随着凝固过程中模具振动频率的增加,机械性能也随之提高。进行了拉伸断裂表面的SEM显微照片,以研究显微组织对断裂模式的影响。拉伸断裂表面的SEM图像显示由于原始硅颗粒的断裂而产生的沿晶分裂面。断裂本质上是脆性的,因此观察表明延展性低和脆性断裂。

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