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Effect of testing temperature from cryogenic to high temperatures on dynamic fracture properties in 5083 aluminum alloy

机译:低温测试温度对5083铝合金动态断裂性能的影响

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Effect of temperature on mechanical properties of an 5083 aluminum alloy has been investigated for various testing temperatures from 10 to 773 K. For that purpose, the static tensile, dynamic fracture toughness test and fractography are carried out, and stop block method is employed to characterize fracture behavior at cryogenic temperatures. Mechanical properties such as 0.2percent proof stress and ultimate tensile strength increase with decreasing temperature. The high temperature embrittlement, which has been often reported for 5000 series alloys having high Mg content, was not observed in the present study. The dynamic fracture toughness value, J_d, and dynamic crack extension toughness, T_(mat), at 20 K are approximately 57percent and 74percent lower than that at 150 K, respectively. Fracture toughness at cryogenic temperatures shows strong dependence on formation of delamination cracks. The delamination cracks are initiated at grain boundaries. According to a SEM-EDX analysis, Mg is detected adjacent to the delamination cracks. Therefore, it is concluded that the formation of delamination cracks are concerned with #beta#(Al_3Mg_2) phase at the grain boundaries.
机译:对5083铝合金的温度对5083铝合金的机械性能的影响,各种测试温度为10至773K。为此目的,进行静态拉伸,动态断裂韧性试验和断裂,并采用停止块法表征低温温度的裂缝行为。机械性能,如0.2个衰竭应力和极限拉伸强度随着较低的温度而增加。在本研究中未观察到已经报道的高温脆化,该高温脆化常用于具有高Mg含量的5000系列合金。动态断裂韧性值,J_D和动态裂缝延伸韧性T_(垫),20 k约为57%,分别低于150 k的74%。低温温度的断裂韧性表现出强烈依赖于分层裂缝的形成。分层裂缝在晶界开始。根据SEM-EDX分析,与分层裂缝相邻检测MG。因此,得出结论,分层裂缝的形成涉及晶界处的#β(AL_3MG_2)相位。

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