Please wait a minute...
Chin J Mater Res  2011, Vol. 25 Issue (4): 413-416    DOI:
论文 Current Issue | Archive | Adv Search |
Synthesis and Performance of In–situ Ti–B–C–Si Composites
XIAO Daihong, YUAN Teichui, HE Yuehui
State Key Lab of Powder Metallurgy, Central South University, Changsha 410083
Cite this article: 

XIAO Daihong YUAN Teichui HE Yuehui. Synthesis and Performance of In–situ Ti–B–C–Si Composites. Chin J Mater Res, 2011, 25(4): 413-416.

Download:  PDF(713KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  A in–situ Ti–B–C–Si composite with fine TiB2, TiC and Ti–Si phase dispersed in composite was synthesized using titanium, B4C and SiC powders using hot–pressing sintering. The microstructure and mechanical properties of the composite were observed by using X–ray diffraction (XRD) analysis, scanning electron microscope and mechanical property testing. The results show that starting powder reactants have much effect on in–situ phase content and mechanical properties in titanium matrix composites.
Key words:  composites      titanium matrix composites      in–situ      mechanical properties     
Received:  01 April 2011     
ZTFLH: 

TB333

 
Fund: 

Supported by Hunan Provincial Natural Science Foundation No.10JJ6066, State Key Laboratory of Powder Metallurgy Innovation Fund No.PM2010, and National Natural Science Foundation No.50825102.

URL: 

https://www.cjmr.org/EN/     OR     https://www.cjmr.org/EN/Y2011/V25/I4/413

1 Tjong S C, Ma Z Y, Microstructure and mechanical characteristics of in situ metal matrix composites, Materials Science and Engineering R, 2000, 29: 49–113.

2 LU Weijie, ZHANG Xiaonong, ZHANG Di, Microstructure and mechanical properties of in situ synthesized (TiB+TiC)/Ti matrix composites, The Chinese Journal of Nonferrous Metals, 2000, 10 (2): 163–169

(吕维洁, 张小农, 张  荻, 原位合成TiC和TiB增强钛基复合材料微结构与力学性能, 中国有色金属学报, 2000, 10(2):163--169)

3 Dubey S, Li Y, Reece K, Fatigue crack growth in an in–situ titanium matrix composite, Materials Science and Engineering A, 1999, A266: 303–309

4 Radhakrishna Bhat B.V, Subramanyam J, Bhanu Prasad V.V, Preparation of Ti–TiB–TiC & Ti–TiB composites by in–situ reaction hot pressing, Materials Science and Engineering,

2002, A325: 126–130.

5 Lu W J, Zhang D, Zhang X N, Microstructural characterization of TiB in situ synthesized titanium matrix composites prepared by common casting technique, Journal of Alloys and Compounds, 2001, 327(1–2): 240–247.

6 Ni D R, Geng L, Zhang Z Z, Effect of B4C particle size on microstructure of in situ titanium matrix composites prepared by reactive processing of Ti–B4C system, Scripta Materialia, 2006, 55: 429–432

7 Yeh C L, Chen Y L, Combustion synthesis of TiC–TiB2 composites, Journal of Alloys and Compounds, 2008, 463: 373–377.

8 Yeh C L, Chen W H, Hsu C C, Formation of titanium silicates Ti5Si3 and TiSi2 by self–propagating combustion synthesis, Journal of Alloys and Compounds, 2007, 432: 90–95.

9 Gu D D, Hgedorn Y C, Meiners W, Wissenbach K, Poprawe R, Selective Laser Melting of in–situ TiC/Ti5Si3 composites with novel reinforcement architecture and elevated performance, Surface & Coating Technology, 2011, 205: 3285–3297.

10 Poletti C, Balog M, Schubert T, Liedtke V, Edtmaier C, Production of titanium matrix composites reinforced with SiC particles, Composites Science and Technology, 2008, 68: 2171–2177.

11 Zhang Z F, Sun Z M, Hashimoto H, Abe A, A new systhesis reaction of Ti3SiC2 through pluse discharge sintering Ti/SiC/TiC powder, Scripta Material, 2001, 45: 1461–1467.
[1] MAO Jianjun, FU Tong, PAN Hucheng, TENG Changqing, ZHANG Wei, XIE Dongsheng, WU Lu. Kr Ions Irradiation Damage Behavior of AlNbMoZrB Refractory High-entropy Alloy[J]. 材料研究学报, 2023, 37(9): 641-648.
[2] JI Yuchen, LIU Shuhe, ZHANG Tianyu, ZHA Cheng. Research Progress of MXene Used in Lithium Sulfur Battery[J]. 材料研究学报, 2023, 37(7): 481-494.
[3] QIN Heyong, LI Zhentuan, ZHAO Guangpu, ZHANG Wenyun, ZHANG Xiaomin. Effect of Solution Temperature on Mechanical Properties and γ' Phase of GH4742 Superalloy[J]. 材料研究学报, 2023, 37(7): 502-510.
[4] FENG Ye, CHEN Zhiyong, JIANG Sumeng, GONG Jun, SHAN Yiyin, LIU Jianrong, WANG Qingjiang. Effect of a NiCrAlSiY Coating on Cyclic Oxidation and Room Temperature Tensile Properties of Ti65 Alloy Plate[J]. 材料研究学报, 2023, 37(7): 523-534.
[5] SHI Chang, DU Yuhang, LAI Liming, XIAO Siming, GUO Ning, GUO Shengfeng. Mechanical Properties and Oxidation Resistance of a Refractory Medium-entropy Alloy CrTaTi[J]. 材料研究学报, 2023, 37(6): 443-452.
[6] ZHANG Tengxin, WANG Han, HAO Yabin, ZHANG Jiangang, SUN Xinyang, ZENG You. Damping Enhancement of Graphene/Polymer Composites Based on Interfacial Interactions of Hydrogen Bonds[J]. 材料研究学报, 2023, 37(6): 401-407.
[7] SHAO Mengmeng, CHEN Zhaoke, XIONG Xiang, ZENG Yi, WANG Duo, WANG Xuhui. Effect of Si2+ Ion Beam Irradiation on Performance of C/C-ZrC-SiC Composites[J]. 材料研究学报, 2023, 37(6): 472-480.
[8] JIANG Shuimiao, MING Kaisheng, ZHENG Shijian. A Review on Grain Boundary Segregation, Interfacial Phase and Mechanical Property Adjusting-controlling for Nanocrystalline Materials[J]. 材料研究学报, 2023, 37(5): 321-331.
[9] CHEN Zhipeng, ZHU Zhihao, SONG Mengfan, ZHANG Shuang, LIU Tianyu, DONG Chuang. An Ultra-high-strength Ti-Al-V-Mo-Nb-Zr Alloy Designed from Ti-6Al-4V Cluster Formula[J]. 材料研究学报, 2023, 37(4): 308-314.
[10] YE Jiaofeng, WANG Fei, ZUO Yang, ZHANG Junxiang, LUO Xiaoxiao, FENG Libang. Epoxy Resin-modified Thermo-reversible Polyurethane with High Strength, Toughness, and Self-healing Performance[J]. 材料研究学报, 2023, 37(4): 257-263.
[11] LIN Shifeng, XU Dongan, ZHUANG Yanxin, ZHANG Haifeng, ZHU Zhengwang. Preparation and Mechanical Properties of TiZr-based Bulk Metallic Glass/TC21 Titanium Alloy Dual-layered Composites[J]. 材料研究学报, 2023, 37(3): 193-202.
[12] MIAO Qi, ZUO Xiaoqing, ZHOU Yun, WANG Yingwu, GUO Lu, WANG Tan, HUANG Bei. Pore Structure, Mechanical and Sound Absorption Performance for Composite Foam of 304 Stainless Steel Fiber/ZL104 Aluminum Alloy[J]. 材料研究学报, 2023, 37(3): 175-183.
[13] ZHAO Yunmei, ZHAO Hongze, WU Jie, TIAN Xiaosheng, XU Lei. Effect of Heat Treatment on Microstructure and Properties of TIG Welded Joints of Powder Metallurgy Inconel 718 Alloy[J]. 材料研究学报, 2023, 37(3): 184-192.
[14] LIU Dongyang, TONG Guangzhe, GAO Wenli, WANG Weikai. Anisotropy of 2060 Al-Li Alloy Thick Plate[J]. 材料研究学报, 2023, 37(3): 235-240.
[15] ZHOU Cong, ZAN Yuning, WANG Dong, WANG Quanzhao, XIAO Bolv, MA Zongyi. High Temperature Properties and Strengthening Mechanism of (Al11La3+Al2O3)/Al Composite[J]. 材料研究学报, 2023, 37(2): 81-88.
No Suggested Reading articles found!