Combustion synthesis and thermal stress analysis of TiC-Ni functionally graded materials

被引:14
作者
Zhang, XH [1 ]
Han, JC
He, XD
Kvanin, VL
机构
[1] Harbin Inst Technol, Ctr Composite Mat, Harbin 150001, Peoples R China
[2] Russian Acad Sci, Inst Struct Macrokinet, Moscow, Russia
基金
中国国家自然科学基金;
关键词
functionally graded materials; combustion synthesis; thermal stress analysis;
D O I
10.1023/A:1009469610918
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Simultaneous combustion synthesis reaction and compaction of Ti, C, and Ni powders under a hydrostatic pressure was carried out to fabricate dense TiC-Ni functionally graded materials (FGMs) in a single processing operation. Scanning-electron microscope (SEM) and microprobe analysis (EPMA) was employed to investigate the microstructure and composition distribution. Experimental results demonstrate that Ni and Ti composition varies continuously and gradually along the thickness of the reacted sample, remarkably different from stepwise type prior to combustion synthesis. The constituents are continuous in microstructure everywhere and no distinct interaction occurs in TiC-Ni FGM. Moreover, the thermal physical and mechanical properties were measured as a function of composition. It was found that the properties of the FGMs were dependent on Ni content. The residual thermal stress of TiC-Ni FGM and dual-laminate non-FGM cooled to room temperature after combustion synthesis has been analyzed by finite element method. TiC-Ni FGM shows distortion and thermal stress relaxation, which is in striking contrast to the layered TiC-Ni non-FGM.
引用
收藏
页码:29 / 34
页数:6
相关论文
共 50 条
[31]   Numerical analysis of cracked functionally graded materials [J].
Zhang, C ;
Sladek, J ;
Sladek, V .
ADVANCES IN FRACTURE AND DAMAGE MECHANICS, 2003, 251-2 :463-471
[32]   Synthesis of TiB2-TiC-Ni/TiAl/Ti functionally gradient materials by FAPAS process [J].
Lianjie Liang ;
Qingsen Meng ;
Shaoping Chen ;
Zefeng Liu ;
Pengfei Xue ;
Ruixue Chen .
Rare Metals, 2011, 30 :467-471
[33]   Synthesis of TiB2-TiC-Ni/TiAl/Ti functionally gradient materials by FAPAS process [J].
Liang Lianjie ;
Meng Qingsen ;
Chen Shaoping ;
Liu Zefeng ;
Xue Pengfei ;
Chen Ruixue .
RARE METALS, 2011, 30 :467-471
[34]   Fabrication of Mo-Cu Functionally Graded Material by Combustion Synthesis and Centrifugal Infiltration [J].
He Gang ;
Liu Jiaxi ;
Lu Nan ;
Li Jiangtao .
RARE METAL MATERIALS AND ENGINEERING, 2018, 47 :307-310
[35]   Elasto-plastic damage analysis of functionally graded materials subjected to thermal shock and thermal cycle [J].
Lee, JM ;
Toi, Y .
JSME INTERNATIONAL JOURNAL SERIES A-SOLID MECHANICS AND MATERIAL ENGINEERING, 2002, 45 (03) :331-338
[36]   Thermal shock behaviors of functionally graded ceramic tool materials [J].
Zhao, J ;
Al, X ;
Deng, HX ;
Wang, JH .
JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 2004, 24 (05) :847-854
[37]   Analytical model for thermal elastoplastic stresses of functionally graded materials [J].
Zhai, P. C. ;
Chen, G. ;
Liu, L. S. ;
Fang, C. ;
Zhang, Q. J. .
MULTISCALE AND FUNCTIONALLY GRADED MATERIALS, 2008, 973 :129-134
[38]   The use of functionally graded materials to eliminate or control thermal deformation [J].
Wetherhold, RC ;
Seelman, S ;
Wang, JZ .
COMPOSITES SCIENCE AND TECHNOLOGY, 1996, 56 (09) :1099-1104
[39]   Sound radiation of functionally graded materials plates in thermal environment [J].
Yang, Tieliang ;
Zheng, Weiguang ;
Huang, Qibai ;
Li, Shande .
COMPOSITE STRUCTURES, 2016, 144 :165-176
[40]   Scattering of stress wave by a crack in functionally graded orthotropic materials [J].
Nu, Li ;
Wu, Lin-Zhi .
MULTISCALE AND FUNCTIONALLY GRADED MATERIALS, 2008, 973 :261-266