Tan Yinxun, Xie Haofeng, Feng Xue, Huang Shuhui, Zhang Wenjing, Peng Lijun, Wang Wanyu, Zhao Yizhi
State Key Laboratory of Nonferrous Metals and Processes, China GRINM Group Co., Ltd., Beijing 100088, China.
GRIMAT Engineering Institute Co., Ltd., Beijing 101407, China.
Materials (Basel). 2024 Mar 14;17(6):1330. doi: 10.3390/ma17061330.
To study the effect of aluminum and nickel elements on the microstructures and properties of the nickel-aluminum bronze (NAB) alloy, four kinds of alloys with different compositions, ZCuAl7-7-4-2, ZCuAl8-6-4-2, ZCuAl9-5-4-2, and ZCuAl10-4-4-2, are prepared by vacuum-melting technology. The effects of different Al/Ni ratios on the microstructures of NAB are investigated using a metalloscope, scanning electron microscopy, transmission electron microscopy, and XPS analysis. The mechanical property is evaluated with microhardness testing and tensile mechanical testing. The corrosion resistance is evaluated using mass-loss testing, electrochemical testing, and corrosion-product characterization. The results show that with the increase of the Al/Ni ratio, the content of precipitated phases increases, while β' and hard κ, which have a different morphology, appear. As the Al/Ni ratio rises from 1 to 2.5, the hardness increases from 104 HV to 202 HV, and the tensile strength increases by 394 MPa from 356 MPa to 751 MPa, but the elongation decreases substantially from 50.50% to 11.00%. The best corrosion resistance is shown on ZCuAl7-7-4-2, with a corrosion rate of 0.00267 mm/a after 30 d of static immersion corrosion in 3.5 wt.% NaCl solution. Through electrochemical testing and corrosion-product characterization, it is found that ZCuAl7-7-4-2 has the largest polarization resistance R, and the selective corrosion of the surface is mild.
为研究铝和镍元素对镍铝青铜(NAB)合金微观组织和性能的影响,采用真空熔炼技术制备了ZCuAl7-7-4-2、ZCuAl8-6-4-2、ZCuAl9-5-4-2和ZCuAl10-4-4-2四种不同成分的合金。利用金相显微镜、扫描电子显微镜、透射电子显微镜和XPS分析研究了不同Al/Ni比对NAB微观组织的影响。通过显微硬度测试和拉伸力学测试评估力学性能。采用质量损失测试、电化学测试和腐蚀产物表征评估耐蚀性。结果表明,随着Al/Ni比的增加,析出相含量增加,同时出现了形态不同的β'相和硬κ相。当Al/Ni比从1增加到2.5时,硬度从104 HV增加到202 HV,抗拉强度从356 MPa增加394 MPa至751 MPa,但伸长率从50.50%大幅降至11.00%。ZCuAl7-7-4-2表现出最佳的耐蚀性,在3.5 wt.% NaCl溶液中静态浸泡腐蚀30 d后的腐蚀速率为0.00267 mm/a。通过电化学测试和腐蚀产物表征发现,ZCuAl7-7-4-2具有最大的极化电阻R,表面的选择性腐蚀较轻。