1)  low alkalinity steel slag
					
	
					
				
				
	
					
				低碱度钢渣
				1.
					Autoclaved performances of two low alkalinity steel slags were studied with mechanical properties and bound water.
						
						通过力学性能、化学结合水量的测定,研究了2种低碱度钢渣的水热反应特性;应用扫描电镜、X射线衍射、红外光谱等,研究了低碱度钢渣蒸压试件的水化产物形貌和晶体结构。
					
					2)  high-MgO low-alkalinity steel slag
					
	
					
				
				
	
					
				富镁低碱度钢渣
				1.
					Via studying hydrothermal reaction of high-MgO low-alkalinity steel slag, the results indicate, high-MgO low-alkalinity steel slag formed Mg-rich calcium silicate which has cementitious characteristics hydrates under hydrothermal condition, so we can conclude it has hydrothermal activity.
						
						通过研究富镁低碱度钢渣的水热反应得出 :富镁低碱度钢渣具有水热活性 ,水热条件下形成具有胶凝性的富镁水化硅酸钙产物。
					
					3)  Iron-Rich Low-Alkalinity Steel Slag
					
	
					
				
				
	
					
				富铁低碱度钢渣
			
					4)  low-basicity slag
					
	
					
				
				
	
					
				低碱度熔渣
				1.
					Based on dynamic and thermodynamic analyses,some technological measures,for example low-basicity slag refining were taken.
						
						通过动力学和热力学分析,在炼钢工艺中采取了低碱度熔渣精炼等措施,有效地改变了夹杂物的性状,减少了引起脆断的大颗粒夹杂的数量。
					
					5)  Lower basicity reducing slag
					
	
					
				
				
	
					
				低碱度还原渣
			
					6)  slag basicity
					
	
					
				
				
	
					
				炉渣碱度
				1.
					The results showed that the lime consumption was reduced from 65~70kg to 50~55kg per one ton steel,the slag consumption was reduced from 95~105kg to 80~90kg per one ton steel,the slag basicity was reduced to 2.
						
						介绍安钢第一炼轧厂100 t转炉在生产中实施小渣量操作,吨钢石灰加入量由65~70 kg降低至50~55kg,渣料消耗由90~105 kg降低至75~90 kg,使炉渣碱度降至2。
					2.
					Based on the mass balances of blast furnace,typical slag basicity was calculated and analyzed in different zones of the blast furnace.
						
						根据高炉的炉料平衡,对典型高炉不同区域内的炉渣碱度进行计算。
					3.
					In this presentation,the effects of LF-slag oxygenation,slag basicity,consumption per ton on the slag sulphur capacity were analyzed and discussed in the process of LF refining treatment.
						
						本文结合生产试验对LF炉精炼工艺中的炉渣氧化性控制,吨钢渣料消耗、炉渣碱度对炉渣硫容量的影响等问题进行分析与探讨,以期在此基础上对本厂LF精炼炉渣的改进提供指导,达到精炼目的,满足连铸生产对钢水质量的要求。
					补充资料:低都儿低
		1.低而又低,很低。
		
		说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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