VACUUM ›› 2023, Vol. 60 ›› Issue (2): 73-77.doi: 10.13385/j.cnki.vacuum.2023.02.13
• Vacuum Metallurgy and Thermal Engineering • Previous Articles Next Articles
SONG Jing-si1, ZHANG Qiang2, ZUO Ye1, CHEN Jiu-qiang1, LI Xiu-zhang1, LI Hong-lei1, ZHANG Zhe-kui1
CLC Number:
[1] 彭友梅. 苏联/俄罗斯/乌克兰航空发动机的发展[M]. 北京: 航空工业出版社, 2015. [2] 詹姆斯·圣·彼得. 美国飞机燃气涡轮发动机发展史[M]. 张健, 译. 北京: 航空工业出版社, 2016. [3] 张美娟, 南海, 鞠忠强, 等. 航空铸造钛合金及其成型技术发展[J]. 航空材料学报, 2016, 36(3): 13-19. [4] 周彦邦. 钛合金铸造概论[M]. 北京: 航空工业出版社, 2000. [5] 耿浩然, 丁宏升, 张景德, 等. 铸造钛、轴承合金[M]. 北京: 化学工业出版社, 2007. [6] SMITH T.Investment casting of titanium using the induction skull melting process[J]. Aluminium International today, 2004, 16(3): 17-18. [7] ALD VACUUM TECHNOLOGIES GMBH.LEICOMELT 带有冷壁感应坩埚[EB/OL].[2022-10-23].https://www.ald-vt.com/cn/portfolio/engineering/vacuum-metallurgy/leicomelt-leybold-induction-cold-melting/. [8] CONSARC CORPORATION.Single chamber induction skull melting furnace[EB/OL].[2022-10-24].https://consarc.com/products/single-chamber/. [9] RETECH SYSTME LLC.Vacuum induction melting(VIM)products[EB/OL].[2022-10-24].https://www.retechsystemsllc. com/products. [10] BOJAREVICS V, PERICLEOUS K, HARDING R A, et al.The development and experimental validation of a numerical model of an induction skull melting furnace[J]. Metallurgical and Materials Transactions B, 2004, 35(4): 785-803. [11] 郭景杰, 苏彦庆. 钛合金ISM熔炼过程热力学与动力学分析[M]. 哈尔滨: 哈尔滨工业大学出版社, 1998. [12] 苏彦庆, 郭景杰, 刘贵仲. 有色合金真空熔炼过程熔体质量控制[M]. 哈尔滨: 哈尔滨工业大学出版社, 2005. [13] 中国科学院冶金研究所. 国外钛合金的铸造性能[M]. 上海: 科学技术情报研究所, 1974. [14] 周思君, 屈银虎, 符寒光, 等. 钛合金高温离心铸造装置设计及其铸造充型率研究[J]. 铸造, 2017, 66(10): 1082-1084. [15] SPICER R A, PRICE A R. Mold heating vacuum casting furnace: US5931214A[P].1999-08-03. [16] LOVEGREN C.Evaluating the risk of corona discharge in superalloy vacuum induction melting furnace applications[J]. International journal of metalcasting, 2020, 14(4): 926-936. [17] BROIHANNE G, BANNISTER J.Using cold-crucible melting for titanium precision castings[J]. JOM, 2000, 52: 21-23. [18] 宋静思, 訾雁, 牟鑫, 等. 真空感应凝壳炉熔炼系统的设计[J]. 真空, 2016, 53(5): 72-77. [19] CHAMORRO X, HERRERO-DORCA N, BERNAL D, et al.Induction skull melting of Ti-6Al-4V: process control and efficiency optimization[J]. Metals, 2019, 9: 539. [20] 宋静思, 王婷, 李秀章, 等. 一种大型真空精密铸造炉结构布局的研究[J]. 真空, 2021, 58(2): 31-36. [21] 宋静思, 赵帅, 王婷, 等. 真空精密铸造装备——细晶铸造炉[J]. 真空, 2019, 56(4): 44-48. [22] 苑世剑. 精密热加工新技术[M]. 北京: 国防工业出版社, 2016. [23] 四川省金属学会, 攀枝花市科学技术协会. 钛: 让世界更精彩[M]. 四川: 科学技术出版社, 2018. |
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