1)  RP-C18 sintered plate
					 
	
					
				
				 
	
					
				反相烧结板
			
					2)  liquid reactive sintering
					 
	
					
				
				 
	
					
				液相反应烧结
				1.
					The composites of different Mo/Si ratio were prepared by vacuum liquid reactive sintering.
						
						利用液相反应烧结制备不同配比的Mo-S i复合材料,用X射线分析相组成,扫描电镜观察微观组织形貌,热膨胀仪测不同块体材料的热膨胀系数(CTE)。
					
					3)  reactive liquid phase sintering
					 
	
					
				
				 
	
					
				反应液相烧结
				1.
					The result shows that these dense materials can be got by the reactive liquid phase sintering, with powders of B-Fe as raw material and Fe as reactive dose and adhesive agent.
						
						结果表明,以 B-Fe粉为原料,以 Fe粉作为反应剂和粘结剂来制备这种脆性材料,利用其反应液相烧结可以达到较致密的程度。
					2.
					The reaction equation of sintering CeB6 and reactive liquid phase sintering mechanism were studied.
						
						以氢直流电弧法制备CeHx纳米粉末,再采用放电等离子(SPS)反应液相烧结纳米CeHx和微米B的混合粉末,制备了高性能CeB6多晶块体热阴极材料。
					
					4)  solid phase reaction of sintering process
					 
	
					
				
				 
	
					
				烧结固相反应
			
					5)  solid-state reaction sintering
					 
	
					
				
				 
	
					
				固相反应烧结
				1.
					It was difficult to take place for the combination reaction between CuO and TiO_2,and the sintering densification of alumina ceramic was greatly enhanced by the addition of CuO as a liquid phase sintering aid and TiO_2 as a solid-state reaction sintering aid.
						
						结果表明,CuO与TiO_2不易发生化合反应,分别以液相烧结和固相反应烧结来促进氧化铝陶瓷的致密化进程;TiO_2与Al_2O_3反应生成Al_2Ti_7O_(15)的固相烧结,比CuO的液相烧结更能有效地促进陶瓷的晶粒生长与致密化。
					
					6)  In-situ reaction sintering
					 
	
					
				
				 
	
					
				原位反应液相烧结
	补充资料:反相
		1.旧称人有反叛的相貌。
		
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