[1]陈国琳, 吴鹏炜,王自东. 钛合金的发展现状及应用前景[J].舰船科学技术,2009,31(12):110-113.
Chen G L,Wu P W,Wang Z D. The development prospect and current status of titanium alloys[J]. Ship Science and Technology,2009,31(12):110-113.
[2]Qian G L,Song X Y,Ye W J,et al. Effects of ultrasonic impact treatment on the residual stress and microstructure of TA15 welded joint[J]. Materials Science Forum,2017,898(13):1056-1062.
[3]隋楠, 曹京霞,黄旭,等. 合金成分对TA15钛合金组织及力学性能的影响[J]. 航空材料学报,2019,39(1):48-54.
Sui N,Cao J X,Huang X,et al. Effect of composition on microstructure and mechanical properties of TA15 titanium alloy[J]. Journal of Aeronautical Materials,2019,39(1):48-54.
[4]史莹莹, 刘钊,陈峰,等. Φ1040 mm规格TA15钛合金铸锭生产工艺研究[J]. 世界有色金属,2018,16(23):9-12.
Shi Y Y,Liu Z,Chen F,et al. Preparation technology research of Φ1040 mm TA15 titanium alloy ingot[J]. World Nonferrous Metals,2018,16(23):9-12.
[5]梁培新, 朱卫东,杨刚,等. 渗氢工艺对 TA15 钛合金氢含量和显微组织的影响[J]. 锻压技术, 2020, 45(8):190-194.
Liang P X,Zhu W D,Yang G,et al. Influence of hydrogen permeation process on hydrogen content and microstructure of TA15 titanium alloy[J]. Forging & Stamping Technology,2020,45(8):190-194.
[6]侯艳荣, 赖运金,杜予晅,等. 热处理对TA15钛合金棒材冲击性能的影响[J]. 热加工工艺,2011,40(2):182-183.
Hou Y R,Lai Y J,Du Y X,et al. Effect of heat treatment process on impact property of TA15 alloy[J]. Hot Working Technology,2011,40(2):182-183.
[7]卢凯凯, 周立鹏,段启辉,等. 热处理工艺对TA15钛合金棒材组织和性能的影响[J]. 钛工业进展,2018,35(4):35-39.
Lu K K,Zhou L P,Duan Q H,et al. Effect of heat treatment procss on microstructure and mechanical properties of TA15 titanium alloy bars[J]. Titanium Industry Progress,2018,35(4):35-39.
[8]卢凯凯, 周立鹏, 李敏娜,等. 强韧化热处理对 TA15 钛合金组织和性能的影响[J]. 材料热处理学报,2020,41(1):44-49.
Lu K K,Zhou L P,Li M N,et al. Effect of strengthening and toughening heat treatment on microstructure and mechanical properties of TA15 titanium alloy[J]. Transactions of Materials and Heat Treatment,2020,41(1):44-49.
[9]刘航, 李伟,张镜斌. TA15 钛合金双重热处理三态组织中的片层α尺寸研究[J]. 热加工工艺,2021,50(14):142-145,149.
Liu H,Li W, Zhang J B. Study on size of lamellar α in tri-modal microstructure of TA15 Ti-alloy during dual heat treatment[J]. Hot Working Technology,2021,50(14):142-145,149.
[10]檀雯, 都海刚,杨军,等. TA15 钛合金厚板热轧变形规律研究[J]. 有色金属材料与工程,2020,41(4):17-23.
Tan W, Du H G,Yang J,et al. Study on deformation mechanisms of TA15 titanium alloy plate during hot rolling[J]. Nonferrous Metal Materials and Engineering,2020,41(4):17-23.
[11]纪小虎, 李萍,时迎宾,等. TA15 钛合金等温多向锻造晶粒细化机理与力学性能[J]. 中国有色金属学报,2019,29(11):2515-2523.
Ji X H, Li P,Shi Y B,et al. Grain refinement mechanism and mechanical properties of TA15 alloy during multi-directional isothermal forging[J]. The Chinese Journal of Nonferrous Metals,2019,29(11):2515-2523.
[12]李建伟, 刘浏,邹宗树. 不同等温锻TA15钛合金试验件的组织与力学性能研究[J]. 热加工工艺,2019,48(1):151-157.
Li J W,Liu L, Zou Z S. Study of microstructure and mechanical properties of TA15 titanium alloy test parts with different isothermal forging processes[J]. Hot Working Technology,2019,48(1):151-157.
[13]谢英杰, 付文杰,王蕊宁,等. 热处理对TA15钛合金中厚板材组织及力学性能的影响[J]. 钛工业进展,2013,30(6):26-29.
Xie Y J,Fu W J,Wang R N,et al. Effect of heat treatment on microstructure and mechanical properties of TA15 plats[J]. Titanium Industry Progress,2013,30(6):26-29.
[14]尤中源, 刘文言,陈荣,等. α相含量对新型亚稳β钛合金动态力学性能的影响[J].稀有金属,2021,45(7):891-896.
You Z Y,Liu W Y,Chen R,et al. Dynamic mechanical properties of new type of metastable titanium alloy with different α phase content[J]. Chinese Journal of Rare Metals,2021,45(7):891-896.
[15]ASTM E8/E8M—2011,金属材料拉伸试验方法[S].
ASTM E8/E8M—2011,Standard test methods for tension testing of metallic materials[S].
[16]GB/T 229—2020,金属材料夏比摆锤冲击试验方法[S].
GB/T 229—2020, Metallic materials Charpy pendulum impact test method[S].
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