首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Influences of Hydrogen Micropores and Intermetallic Particles on Fracture Behaviors of Al-Zn-Mg-Cu Aluminum Alloys
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Influences of Hydrogen Micropores and Intermetallic Particles on Fracture Behaviors of Al-Zn-Mg-Cu Aluminum Alloys

机译:氢微孔和金属间粒子对Al-Zn-Mg-Cu铝合金断裂行为的影响

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摘要

The combined effects of hydrogen micropores and intermetallic particles on the voids initiation and growth behavior of Al-Zn-Mg-Cu aluminum alloys during deformation and fracture are investigated with the help of the high-resolution X-ray tomography. It is interesting to note that the high-hydrogen concentration induced by an EDM cutting process results in the initiation of quasi-cleavage fracture near surface. With the increase of strain, the quasi-cleavage fracture is gradually replaced by dimple fracture. Voids initiation related to the dimple fracture is caused by both intermetallic particles fracture and interfacial debonding between particles and matrix. The nucleation of hydrogen micropores on intermetallic particles accelerates the voids initiation. The existence of triaxial stress ahead of the tip of a quasi-cleavage crack enhances growth rate for both hydrogen micropores and voids.
机译:借助于高分辨率X射线断层扫描,研究了氢微孔和金属间颗粒对变形和裂缝期间Al-Zn-Mg-Cu铝合金的空隙引发和生长行为的组合作用。 值得注意的是,通过EDM切割过程诱导的高氢浓度导致在表面附近的准切割骨折开始。 随着菌株的增加,准切割骨折逐渐被凹坑骨折替代。 与凹坑骨折相关的空隙引起是由金属间颗粒骨折和颗粒和基质之间的界面脱粘引起的。 金属间颗粒上的氢微孔的成核加速了空隙引发。 在准切割裂纹尖端前面的三轴应力提高了氢微孔和空隙的生长速率。

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