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Enlarged Zn, Mg Contents with a same Zn/Mg Ratio Improve Fatigue Crack Propagation Resistance of Al-Zn-Mg-Cu Alloys with T7651 State

机译:扩大Zn,Mg含量,具有相同的Zn / Mg比率,提高了具有T7651状态的Al-Zn-Mg-Cu合金的疲劳裂纹传播电阻

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The fatigue crack propagation of Al-Zn-Mg-Cu alloys could be influenced by the content of main alloying element. In the present work, two Al-Zn-Mg-Cu alloys with a same Zn/Mg ratio were treated by two stage over-aging aging treatment and typical T7651 states were extracted via mechanical properties. Fatigue crack propagation of the two alloys were tested and the related precipitation characteristics and fracture morphology were observed. The results showed that the alloy with higher Zn, Mg contents possessed a better fatigue crack propagation resistance compared with the alloy with lower Zn, Mg contents. The corresponding fracture morphology also showed the difference of fatigue striation, which provided an additional support. The precipitation observation demonstrated that the both alloys possessed GPII zone, η' phase and η phase while the alloy with higher Zn, Mg contents had a larger average precipitate size and a larger proportion of large size precipitates compared with the alloy with lower Zn, Mg contents. Cut and bypass mechanisms of dislocation-precipitate interactions were used to explain the difference of fatigue crack propagation between the two alloys.
机译:Al-Zn-Mg-Cu合金的疲劳裂纹繁殖可能受到主要合金元素的含量的影响。在本作工作中,通过两个阶段过老化的衰老处理处理具有相同Zn / mg比的Al-Zn-Mg-Cu合金,通过机械性能提取典型的T7651状态。测试了两种合金的疲劳裂纹繁殖,观察到相关沉淀特性和骨折形态。结果表明,与具有较低Zn,Mg含量的合金相比,具有较高Zn,Mg含量的合金具有更好的疲劳裂纹传播电阻。相应的裂缝形态还显示出疲劳突变的差异,其提供了另外的支持。沉淀观察表明,两种合金具有GPII区,η'相和η相,而具有较高Zn的合金,Mg含量较大的平均沉淀尺寸较大,与具有较低Zn,Mg的合金相比,大尺寸比例较大。内容。脱位沉淀相互作用的切割和旁路机制用于解释两种合金之间的疲劳裂纹繁殖的差异。

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