首页> 外文会议>67th World Foundry Congress(wfc06): Casting the Future vol.2 >On the Effect of Cooling Conditions and Variation of Alloying Elements on the Microstructural and Mechanical Properties of Al-7Si Cast Alloys
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On the Effect of Cooling Conditions and Variation of Alloying Elements on the Microstructural and Mechanical Properties of Al-7Si Cast Alloys

机译:冷却条件和合金元素的变化对Al-7%Si铸造合金组织和力学性能的影响

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摘要

In order to study the isolated influence of microstructure and alloying elemets on the mechanical properties of Al-7%Si based alloys, the level of defects arising from the melt handling and cast process needs to be minimized. Therefore, gradient solidification technology has been applied, providing tensile test samples with a low content of defects and a well-fed homogenous microstructure. In the present work, the influence of cooling rate and Mg, Cu, Fe and Mn on the as-cast microstructure formations and mechanical properties such as ultimate tensile strength, yield strength, elongation to fracture etc. has been elucidated. While Cu and Mg strengthen the material, Fe deteriorates mostly the elongation. The length of Al_5FeSi-needles appears to be a function of the cooling rate and not of the content of iron in the melt.
机译:为了研究微观结构和合金元素对Al-7%Si基合金机械性能的孤立影响,需要将由熔体处理和铸造工艺引起的缺陷水平降至最低。因此,已经应用了梯度凝固技术,从而提供了具有低缺陷含量和良好均质微观结构的拉伸试样。在目前的工作中,已经阐明了冷却速率和Mg,Cu,Fe和Mn对铸态组织结构和机械性能如极限抗拉强度,屈服强度,断裂伸长率等的影响。尽管Cu和Mg增强了材料强度,但Fe的延伸率却大大降低。 Al_5FeSi针的长度似乎是冷却速率的函数,而不是熔体中铁含量的函数。

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