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首页> 外文期刊>International Journal Cast Metals Research >Fatigue properties (S-N and da/dN-△K) of cast aluminium alloys
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Fatigue properties (S-N and da/dN-△K) of cast aluminium alloys

机译:铸造铝合金的疲劳特性(S-N和da / dN-△K)

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In this paper, the fatigue strengths of cast aluminium alloys have been examined using the S-N and da/dN-△K approaches on various cast samples having different microstructural characteristics. These were made by several different casting techniques, namely gravity casting, die casting and twin rolled continuous casting. Owing to the different microstructures, the fatigue properties varied. The S-N relations, e.g. the endurance limit, of the twin-rolled casting were apparently high compared to the other cast samples. The high fatigue strength was related to the high tensile strength and high ductility caused by the tiny spherical α-AI phase and fine eutectic structure. On the other hand, the low fatigue strength for the gravity and die cast samples was caused by the high stress concentration caused by the α-Al phase and needle-like eutectic silicon. Unlike the fatigue strength in the S-N approach, the da/dN-△K relationships for the twin rolled casting sample, i.e. the resistance to fatigue crack propagation, were low compared to the gravity casting and the die cast samples. Such a difference in the crack growth resistance was influenced by the crack growth characteristics. For example, for the gravity cast and the die cast samples, the crack growth occurs in the grain boundaries of the coarse α-Al phase and along the long eutectic silicon grains (zigzag crack path), which promotes a strong crack closure tendency, leading to high crack growth resistance. The difference in the fatigue strength determined from the S-N relation and da/dN-△K relation was interpreted by experimental and numerical examination of the stress-strain distribution.
机译:在本文中,已使用S-N和da / dN-△K方法对各种具有不同显微组织特征的铸件样品进行了铸造铝合金的疲劳强度测试。这些是通过几种不同的铸造技术制成的,即重力铸造,压铸和双辊连续铸造。由于不同的微观结构,疲劳性能有所不同。 S-N关系,例如与其他铸件相比,双轧铸件的耐久极限明显较高。高疲劳强度与微小的球形α-Al相和良好的共晶结构所引起的高拉伸强度和高延展性有关。另一方面,重力和压铸样品的疲劳强度低是由于α-Al相和针状共晶硅引起的高应力集中所致。与S-N方法的疲劳强度不同,双重力铸造样品的da / dN-△K关系(即疲劳裂纹扩展的抵抗力)与重力铸造和压铸样品相比较低。裂纹扩展阻力的这种差异受到裂纹扩展特性的影响。例如,对于重力铸造和压铸样品,裂纹扩展发生在粗α-Al相的晶界和沿长共晶硅晶粒(之字形裂纹路径),从而促进了强烈的裂纹闭合趋势,导致较高的抗裂纹扩展性。通过S-N关系和da / dN-△K关系确定的疲劳强度的差异通过应力-应变分布的实验和数值检验来解释。

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