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- Al-Zn-Mg-Cu-Li合金Al-Zn-Mg-Cu-Li alloy
- Mg-8%Li合金Mg-8%25 Li alloy
- Mg-Li合金Mg-Li alloy
- 1420A1-Li合金1420 A1-Li alloy
- 1420Al-Li合金1420Al-Li alloy
- 通过时效硬化曲线的测量、室温拉伸实验以及时效组织的电镜观察 ,研究了微量钪对低Cu/Mg比Al -Cu Mg Li合金时效行为、显微组织和力学性能的影响。The effects of addition of a trace amount of Sc on the aging behaviour, microstructure and mechanical properties of low Cu/Mg ratio Al-Cu-Mg-Li alloy have been investigated by measurement of age hardening curves, room temperature tensile test and electron microscopic observation of aging structure.
- Mg-Li-Al-Mn合金Mg-Li-Al-Mn alloy
- QCr0.8合金QCr0.8 alloy
- 含钪Al-Cu-Li-Zr合金Al- Cu- Li-Zr alloy containing Sc
- SiCw/Al-Li复合材料的拉伸断口呈穿晶韧窝状,不存在通常Al-Li合金中因时效引起的断口形貌由穿晶型向沿晶型过渡的现象Tensile fracture of the SiCw/Al Li composite is in the transgranular dimple type. The fracture mode does not change from transgranular to intergranular with aging time, which always exists in Al Li alloys.
- 热电池阳极Li-B合金放电前后的微观特征Microstructure Characteristics of Thermal Cells Anode Li-B Alloy before and after Discharge
- Mg-8.5Al-0.5Zn(ZM5)镁合金Mg-8.5Al-0. 5Zn(ZMS) magnesium alloy
- 本文研究了极低温度下8090Al-Li合金的力学性能,发现它在极低温度下的强度、延性和韧性均优于室温下的性能,且均在20K左右达到最大值;Cryogenic strength, ductility and toughness of 8090 Al-Li alloy were found to be superior to those at ambient temperature, and up to optima at about 20 K.
- Al-Mg合金Al-Mg alloy
- 采用Kahn撕裂法测试了高强度Al-Cu-Li合金2090在不同时效制度下的断裂韧性及其变化规律,并借助TEM和SEM对相应微观组织形貌及断口形貌进行了观察。The fracture toughness of high strength Al - Cu - Li alloy 2090 under different aging conditions is tested by utilizing"Kahn method",i. e. ,"tear-to-failure"method.
- Mg-Sn合金Mg-Sn alloy
- Mg-Mn合金Mg-Mn alloy
- Mg-Ni合金Mg-Ni alloy
- Mg-zn合金Mg - Zn alloy
- Mg-Sr合金Mg- Sr alloy