[1] FAN Dongyu,HUANG Jihua,SUN Xiaowei,et al. Correlation between microstructure and mechanical properties of active brazed Cf/SiC composite joints using Ti-Zr-Be[J]. Materials Science & Engineering A,2016,667:332-339. [2] YANG Jia,ZHANG Xunye,MA Guanglu,et al. Microstructural evolution and mechanical property of a SiCf/SiC composite/Ni-based superalloy joint brazed with an Au-Cu-Ti filler[J]. Journal of the European Ceramic Society,2021,41:2312-2322. [3] FU Wei,SONG Xiaoguo,TIAN Ruichen,et al. Wettability and joining of SiC by Sn-Ti:Microstructure and mechanical properties[J]. Journal of Materials Science & Technology,2020,40:15-23. [4] WU Lixiang,ZHU Linlin,GUO Weiming,et al. Effects of the joining process on the microstructure and properties of liquidphase-sintered SiC-SiC joints formed with Ti foil[J]. Journal of the European Ceramic Society,2021,41:225-232. [5] MU Dekui,FENG Kuiyuan,LIN Qiaoli,et al. Low-temperature wetting of sapphire using Sn-Ti active solder alloys[J]. Ceramics International,2019,45:22175-22182. [6] FAN Yonggang,FAN Junxiang,WANG Cong. Detailing interfacial reaction layer products between cubic boron nitride and Cu-Sn-Ti active filler metal[J]. Journal of Materials Science & Technology,2021,688:35-39. [7] YANG Jian,LI Haodong,LEI Xuanwei,et al. Reactive wetting behavior and mechanism of AlN ceramic by CuNi-Xwt%Ti active filler metal[J]. Ceramics International,2020,46:4289-4299. [8] WANG Yonglei,WANG Wanlin,HUANG Jihua,et al. Reactive composite brazing of C/C composite and GH3044 with Ag-Ti mixed powder fller material[J]. Materials Science and Engineering A,2019,759:303-312. [9] ONG F,TOBE H,FUJII G,et al. Microstructural evolution and mechanical characterization of Nb-interlayer-inserted Ti-6Al-4V/Si3N4 joints brazed with AuNiTi fller[J]. Materials Science and Engineering A,2020,778:139093. [10] DAI Xiangyu,CAO Jian,WANG Zichen,et al. Brazing ZrO2 ceramic and TC4alloy by novel WB reinforced Ag-Cu composite filler:Microstructure and properties[J]. Ceramics International,2017,43:15296-15305. [11] LI Chun,HUANG Caiyan,CHEN Lei,et al. Microstructure and mechanical properties of the SiC/Nb joint brazed using AgCuTi+B4C composite filler metal[J]. International Journal of Refractory Metals and Hard Materials,2019,85:105049. [12] QI Junlei,BA Jin,LI Hang,et al. β-LiAlSiO4 reinforced Cu composite interlayer for brazing C/C composites and Nb[J]. Vacuum,2020,172:109102. [13] BA J,ZHENG X H,NING R,et al. C/SiC composite-Ti6Al4V joints brazed with negative thermal expansion ZrP2WO12nanoparticle reinforced AgCu alloy[J]. Journal of the European Ceramic Society,2019,39:755-761. [14] SONG Yanyu,LIU Duo,HU Shengpeng,et al. Graphene nanoplatelets reinforced AgCuTi composite filler for brazing SiC ceramic[J]. Journal of the European Ceramic Society,2019,39:696-704. [15] WANG Zeyu,LI Manni,BA Jin,et al. In-Situ synthesized TiC nano-flakes reinforced C/C composite-Nb brazed joint[J]. Journal of the European Ceramic Society,2018,38:1059-1068. [16] LI Zhen,WEI Renwei,WEN Qun,et al. Microstructure and mechanical properties of SiC ceramic joints vacuum brazed with in-situ formed SiC particulate reinforced Si-24Ti alloy[J]. Vacuum,2020,173:109160. [17] WANG Y,YANG Z W,ZHANG L X,et al. Microstructure and mechanical properties of SiO2-BN ceramic and Invar alloy joints brazed with Ag-Cu-Ti+TiH2+BN composite filler[J]. Journal of Materiomics,2016,2:66-74. [18] GUO Wei,ZHANG Hongqiang,MA Kaituo,et al. Reactive brazing of silicon nitride to Invar alloy using Ni foam and AgCuTi intermediate layers[J]. Ceramics International,2019,45:13979-13987. [19] WANG Gang,CAI Yingjun,WANG Wei,et al. AgCuTi/graphene-reinforced Cu foam:A novel filler to braze ZrB2-SiC ceramic to Inconel 600 alloy[J]. Ceramics International,2020,46:531-537. [20] 李娟,王克鸿. 采用Al-Si-Ti-Cu-In钎焊70% SiCp/Al复合材料工艺研究[J]. 机械工程学报,2016,52(12):59-66. LI Juan,WANG Kehong. Study on vacuum brazing of 70% SiCp/Al composites using Al-Si-Ti-Cu-In filler metal[J]. Journal of Mechanical Engineering,2016,52(12):59-66. [21] 杨红亮,张质良,OHNAKA I,等. ZL101合金半固态二次加热[J]. 中国有色金属学报,2003,13(3):626-630. YANG Hongliang,ZHANG Zhiliang,OHNAKA I,et al. Reheating of semi-solid ZL101 alloy[J]. The Chinese Journal of Nonferrous Metals,2003,13(3):626-630. |