基于神经网络技术,根据M963铸造镍基高温合金疲劳试验数据,建立了高温合金疲劳性能预测模型,并进行了M963铸造镍基高温合金相关疲劳验证和分析。结果表明:从提高M963高温合金疲劳性能的角度出发,合金元素添加量(质量分数)优选为7%Cr+5%V+0.5%RE;熔体过热温度优选为1030℃;表面超音速火焰喷涂合金粉末配比优选为Cr-20Al-30V-0.5Y。
According to the experimental data of fatigue test,prediction model of fatigue performance of M963 Ni-based superalloy was built by using neural network technology,and experimental validation and analysis were carried out. The results show that for improving the fatigue performance of M963 superalloy,the optimized amount of alloying elements is 7%Cr+5%V+0.5%RE;the optimized melt superheat temperature is 1 030 ℃;the optimized matching ratio of alloy powder for high-velocity oxygen fuel spraying is Cr-20Al-30V-0.5Y.
参考文献
[1] | K495高温合金的高周疲劳性能[J].热加工工艺,2012(24):87-90. |
[2] | 孙跃军,姜晓琳,尚勇.Ta对镍基高温合金电子结构参数的影响[J].兵器材料科学与工程,2013(01):36-38. |
[3] | 肖旋,许辉,秦学智,郭永安,郭建亭,周兰章.3种铸造镍基高温合金热疲劳行为研究[J].金属学报,2011(09):1129-1134. |
[4] | 胡壮麒,刘丽荣,金涛,孙晓峰.镍基单晶高温合金的发展[J].航空发动机,2005(03):1-7. |
[5] | 唐增武,李金山,胡锐,姚草根.固溶强化型高温合金Ni-20Cr-18W-Mo的性能研究[J].材料导报,2012(16):1-4. |
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