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Temperature Influence on Formability and Microstructure of AZ31B during Electric Hot Temperature-Controlled Incremental Forming

机译:电热温度控制增量成型期间AZ31b成形性和微观结构的温度影响

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摘要

The straight groove test of AZ31B magnesium alloy sheet by electric hot temperature-controlled incremental sheet forming (ISF) was conducted at different temperatures. The temperature influence on fracture depth, deformation force and strain distribution was investigated. It was found that the limit depth and major strain increased as the temperature rose and that the forming force decreased correspondingly. Furthermore, the fracture behavior changed from brittle fracture to ductile fracture. Considering the formability and surface wear comprehensively, the optimized forming temperature was determined to be 300 °C. The microstructure of the groove specimen was analyzed and the dynamic recrystallization (DRX) was considered to be the reason for the improved formability. The degree of DRX depended on the temperature and degree of deformation, which resulted in non-uniform distribution of hardness within the cross section of the groove specimen.
机译:通过电热温度控制的增量板形成(ISF)的AZ31B镁合金板的直槽试验在不同的温度下进行。研究了对裂缝深度,变形力和应变分布的温度影响。结果发现,随着温度升高而增加的极限深度和重大应变增加,成形力相应地降低。此外,断裂行为从脆性骨折变为韧性骨折。考虑到可线性和表面磨损,优化的成形温度确定为300℃。分析了凹槽样品的微观结构,并认为动态再结晶(DRX)是改善成形性的原因。 DRX的程度取决于变形的温度和程度,导致沟槽样品的横截面内的硬度不均匀分布。

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