[1]张文博, 姜达郁, 巢 锐. 核级压力变送器发展现状及国内产品改进思路[J]. 中国仪器仪表, 2022(6): 41-45. Zhang Wenbo, Jang Dayu, Chao Rui. Development status and domestic product improvement ideas of nuclear grade pressure transmitter[J]. China Instrumentation, 2022(6): 41-45. [2]聂绍忠. 核级压力变送器传感器烧结技术研究[J]. 自动化仪表, 2019, 40(6): 117-121. Nie Shaozhong. Research on sintering technology of nuclear grade pressure transmitter sensor[J]. Process Automation Instrumentation, 2019, 40(6): 117-121. [3]史去非, 余 颖, 王 颖, 等. 电阻温度计/温度计量测试丛书[M]. 北京: 中国计量出版社, 2009. Shi Qufei, Yu Ying, Wang Ying, et al. Resistance Thermometer/Temperature Measurement Test Series[M]. Beijing: China Metrology Press, 2009. [4]李永友, 李济林, 孙 威. 传感器用恒弹性合金的研制[C]//2011 中国功能材料科技与产业高层论坛论文集 (第三卷). 2011. Li Yongyou, Li Jilin, Sun Wei. Development of constant elastic alloy for sensor[C]//2011 China Functional Materials Technology and Industry Forum (Volume III). 2011. [5]朱亚辉, 于一鹏. 谐振传感器用新型恒弹性合金研究[J]. 金属功能材料, 2018, 25(4): 50-53. Zhu Yahui, Yu Yipeng. Study on new constant elastic alloy for resonant sensor[J]. Metallic Functional Materials, 2018, 25(4): 50-53 [6]朱亚辉, 李永友, 王东哲, 等. 固溶处理对新型 Fe-Ni-Cr-Ti 合金组织及性能的影响. [J]. 功能材料, 2018, 49(8): 08211-08216. Zhu Yahui, Li Yongyou, Wang Dongzhe, et al. Effect of solution treatment on microstructure and properties of new Fe-Ni-Cr-Ti alloy[J]. Journal of Functional Materials, 2018, 49(8): 08211-08216. [7]朱宝辉, 韩俊钢, 王宏亮, 等. Nb-40Ti-5.5Al 铌合金的组织和性能[J]. 稀有金属, 2012, 36(6): 870-875. Zhu Baohui, Han Jungang, Wang Hongliang, et al. Microstructure and properties of Nb-40Ti-5.5Al niobium alloy[J]. Chinese Journal of Rare Metals, 2012, 36(6): 870-875. [8]张玉成, 贾浩梅. 固溶处理对Incoloy825合金钢管组织和性能的影响[J]. 金属热处理, 2022, 47(9): 134-139. Zhang Yucheng, Jia Haomei. Effect of solution treatment on microstructure and properties of Incoloy825 alloy pipe[J]. Heat Treatment of Metals, 2022, 47(9): 134-139. [9]武希哲. 3J53 恒弹合金不同时效温度下的组织和硬度[C]//第三届弹性合金与工艺学术交流会论文集. 1991: 131-134. Wu Xizhe. Microstructure and hardness of 3J53 constant elastic alloy aged at different temperatures[C]//Proceedings of the Third Symposium on Elastic Alloys and Technology. 1991: 131-134. [10]侯利锋. Fe-Ni 基恒弹性合金效相变过程及性能的研究[D]. 太原: 太原理工大学, 2002. Hou Lifeng. Study on the effective phase transformation process and properties of Fe-Ni based constant elastic alloy[D]. Taiyuan: Taiyuan University of Technology, 2002. [11]黄友桥, 李 望, 朱新平, 等. Inconel783高温合金螺栓的组织与织构[J]. 金属热处理, 2022, 47(9): 214-219. Huang Youqiao, Li Wang, Zhu Xinping, et al. Microstructure and texture of Inconel783 superalloy bolt[J]. Heat Treatment of Metals, 2022, 47(9): 214-219. [12]郭卫民, 潘 雄, 王金太. 工艺参数对FeNi35Co20AlNbTi高温恒弹性合金性能的影响研究[J]. 功能材料, 2010, 41(8): 1383-1386. Guo Weimin, Pan Xiong, Wang Jintai. Effect of process parameters on properties of FeNi35Co20AlNbTi high temperature constant elasticity alloy[J]. Journal of Functional Materials, 2010, 41(8): 1383-1386. [13]孙振岩, 李春生, 崔建忠. 冷变形 2Cr19Ni9Mo 钢的时效处理[J]. 东北大学学报(自然科学版), 1998, 19(2): 143-145. Sun Zhenyan, Li Chunsheng, Cui Jianzhong. Aging treatment of cold deformed 2Cr19Ni9Mo steel[J]. Journal of Northeastern University (Natural Science), 1998, 19(2): 143-145. |