Mo/Mo硅化物复合材料的结构与熔融Ni的渗透和随后的HIP压实

K. Iždinský, L. Senčeková, F. Simančík, M. Nosko, A. Schoberth
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摘要

在这项工作中,定性地评估了Mo/Mo硅化金属丝在Ni渗透和随后用HIP压实过程中的反应。记录了Ni与Mo/Mo硅化物的强烈反应。这些反应的程度是由可用Ni的量决定的。过量的Ni会导致Mo和Mo硅化物的溶解,对复合材料的结构产生不利影响。如果Ni用量较少,且Ni与Mo/Mo硅化物的密切接触时间大大缩短,则反应强度较低,从而形成MoSi2板条在Ni2Si基体中结晶,三元MoNiSi作为Mo5Si3和Ni2Si基体之间的中间相的结构。HIP使系统进一步达到平衡。在Ni2Si二元相和Mo硅化相的基础上,额外的扩散导致MoNiSi三元相的生长。HIP提高了Mo/Mo硅化物/Ni复合材料的结构完整性,但新形成相的抗氧化性有待进一步研究。研究方向:钼硅化物,渗透,热等静压,结构分析
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Structure of Mo/Mo silicide composites infiltrated with molten Ni and subsequently compacted by HIP
Reactions during infiltration of Mo/Mo silicide wires with Ni and subsequent compaction with HIP were qualitatively assessed in this work. Intense reactions of Ni with Mo/Mo silicide composites were recorded. The extent of these reactions is determined by the amount of available Ni. If excessive Ni is available, Mo and Mo silicides are dissolved with detrimental effect on the composite structure. If less Ni is applied and the intimate contact of Ni with Mo/Mo silicides is shortened substantially, less intense reaction takes place providing the structure with MoSi2 laths crystallized in Ni2Si matrix and ternary MoNiSi appearing as intermediate phase between Mo5Si3 and Ni2Si matrix. HIP moves the system further to equilibrium. Additional diffusion leads to the growth of ternary MoNiSi phase on the cost of Ni2Si binary and Mo silicide phases. HIP improved the structural integrity of the Mo/Mo silicide/Ni composite, however, the oxidation resistance of newly formed phases should be further examined. K e y w o r d s: Mo silicides, infiltration, hot isostatic pressing, structural analysis
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