Oxidation and particle deposition modeling in plasma spraying of Ti-6Al-4V/SiC fiber composites

被引:6
作者
Cochelin, E
Borit, F
Frot, G
Jeandin, M
Decker, L
Jeulin, D
Altaweel, B
Michaud, V
Noël, P
机构
[1] Ecole Mines Paris, Ctr Plasma Proc, F-91003 Evry, France
[2] Ecole Mines Paris, Ctr Morphol Math, F-77305 Fontainebleau, France
[3] Ecole Cent Paris, MSSMAT, F-92295 Chatenay Malabry, France
[4] MATRA BAE Dynam, F-78141 Velizy Villacoublay, France
关键词
composite; lattice-gas; LGM; modeling; oxidation; plasma spraying; SiC fiber; Ti-6Al-4V; TMC;
D O I
10.1361/105996399770350647
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Plasma spraying is known to be a promising process for the manufacturing of Ti/SiC long-fiber composites. However, some improvements remain for this process to be applied in an industrial route. These include: oxygen contamination of the sprayed material through that of titanium particles before and during spraying, damage to fibers due to a high level of thermal stresses induced at the spraying stage, adequate deposition of titanium-base powder to achieve a low-porosity matrix and good impregnation of the fiber array. This article deals with work that resulted in a threefold study of the process. Oxidation was studied using electron microprobe analysis of elementary particles quenched and trapped into a closed box at various given flight distances. Oxygen diffusion phenomena within the particles are discussed from a preliminary theoretical approach coupled with experimental data. Isothermal and thermomechanical calculations were made using the ABAQUS code to determine stresses arising from contact of a liquid Ti-6Al-4V particle onto a SiC fiber. On the scale of the sprayed powder flow, a two-dimensional new type of model simulating the deposition of droplets onto a substrate was developed. This new type of model is based on a lattice-gas automaton that reproduces the hydrodynamical behavior of fluids.
引用
收藏
页码:117 / 124
页数:8
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