首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Iron and Combined Iron and Beryllium Additions on the Fracture Toughness and Microstructures of Squeeze-Cast Al-7Si-0.3Mg Alloy
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Effect of Iron and Combined Iron and Beryllium Additions on the Fracture Toughness and Microstructures of Squeeze-Cast Al-7Si-0.3Mg Alloy

机译:铁及铁和铍联合添加对挤压铸造Al-7Si-0.3Mg合金的断裂韧性和组织的影响

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摘要

Squeeze casting is a near-net-shape process of casting under pressure that yields a fine-grain structure with higher density and mechanical properties compared to conventional casting processes. Iron is the most commonly present impurity element in Ai-7Si-0.3Mg, the alloy investigated. An increase in iron content significantly decreases fracture toughness. However, trace additions of beryllium completely neutralize the detrimental effect of iron. The variables of the squeeze casting process greatly govern the microstructures and macrostructures and thus the defects in the casting. This case study deals with Al-7Si-0.3Mg squeeze-cast cranks with four major defects-blistering, debonding, porosity, and patches of silicon segregation on the casting surface-and the appropriate remedial measures to eliminate these defects.
机译:挤压铸造是一种在压力下进行铸造的接近最终形状的过程,与常规铸造工艺相比,该工艺可产生具有更高密度和机械性能的细晶粒结构。研究的合金是在Ai-7Si-0.3Mg中最常见的杂质元素。铁含量的增加显着降低了断裂韧性。然而,痕量的铍添加完全中和了铁的有害作用。挤压铸造工艺的变量极大地控制了微观组织和宏观组织,因此也决定了铸造中的缺陷。本案例研究涉及具有四个主要缺陷的Al-7Si-0.3Mg挤压铸造曲柄-铸件表面的起泡,脱胶,气孔和硅偏析斑,并采取了适当的补救措施来消除这些缺陷。

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