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Relationship between Fracture Toughness and Tensile Properties of A357 Cast Aluminum Alloy

机译:A357铸造铝合金断裂韧性与拉伸性能的关系。

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摘要

The fracture-related mechanical properties of the A357 cast aluminum alloy, namely, elongation to fracture, tensile strain energy density (tensile toughness), strain-hardening exponent, and plane strain fracture toughness were investigated. Correlations between these properties have been established for 25 different artificial aging heat-treatment conditions and for five minor variations in chemical composition. Empirical relationships between the strain energy density and both the tensile elongation to fracture and the strain-hardening exponent have been developed. Analysis of the fracture surfaces indicated that the fracture mechanism of the investigated specimens varies according to the artificial aging conditions. Moreover, empirical relationships between the fracture toughness and strain energy density and between fracture toughness and strain-hardening exponent have been developed; these can be used to estimate the plane strain fracture toughness of A357 as a function of yield strength and tensile toughness.
机译:研究了A357铸造铝合金与断裂有关的力学性能,即断裂伸长率,拉伸应变能密度(拉伸韧性),应变硬化指数和平面应变断裂韧性。已经针对25种不同的人工时效热处理条件和5种化学成分的微小变化建立了这些特性之间的关联。已经建立了应变能密度与断裂拉伸伸长率和应变硬化指数之间的经验关系。断裂表面的分析表明,所研究样品的断裂机理根据人工时效条件而变化。此外,还建立了断裂韧性和应变能密度之间的经验关系,以及断裂韧性和应变硬化指数之间的经验关系。这些可以用来估计A357的平面应变断裂韧性与屈服强度和拉伸韧性的关系。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2009年第3期|702-716|共15页
  • 作者单位

    Department of Financial and Management Engineering University of the Aegean Chios 821 00 Greece;

    Department of Engineering Robert Morris University Moon Township PA 15108 USA;

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  • 正文语种 eng
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