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1)  calcinations temperature and cooling method
烧成温度与冷却制度
2)  cooling temperature
冷却温度
1.
Effect of cooling temperature on main quality traits of instant green tea;
冷却温度对速溶绿茶主要品质特性的影响
2.
The variation of the cooling temperature of the green carbon anode with the cooling time, the temperature of cooling water and the forming temperature has been studied by computing simulation.
通过数学模型描述炭阳极生坯冷却过程,研究炭阳极冷却温度与冷却时间、冷却水温及成型温度间的关系。
3.
In order to improve the surface quality of steel scale on wire rod,the influence of the cooling rate and the cooling temperature on the corrosion resistance of iron oxide scale on hot-rolled wire rod was investigated.
为了提高热轧盘条的表面质量,采用热模拟实验研究了不同冷却温度、不同冷却速度对热轧盘条表面氧化皮性质的影响。
3)  Cooling System
冷却制度
1.
The cooling system of No.
在对包钢4#高炉各冷却部位冷却水量和冷却水温差进行全面测试的基础上,分析研究了包钢4#高炉冷却制度特征。
4)  cooling condition
冷却制度
1.
The influence of cooling conditions on the quality and metallurgical properties of sinters was studied in lab.
通过实验室体系研究了不同的冷却制度对烧结矿质量以及冶金性能的影响,对比分析结果表明,采用保温冷却综合效果最好,在冷却过程中采用变风量冷却对于提高烧结矿成品率有利。
2.
Moreover, they investigated systematically agglomeration temperature, cooling conditions, strength and setting time of the cement.
分析了含钛尾矿的矿物组成,结合高硅贝利特硫铝酸盐水泥的特点,提出了应用提取氧化钛后的尾矿、低品位铝矾土、含钛石膏制备高硅贝利特硫铝酸盐水泥的全新观点,并对该种水泥的烧结温度,冷却制度,强度及凝结时间等进行了系统的分析和讨论,结果表明它的烧结温度低,凝结时间及强度介于硅酸盐水泥和快硬硫铝酸盐水泥之间,含氧化钛较高的原料对高硅贝利特硫铝酸盐水泥性能没有明显负面影响。
5)  cooling process
冷却制度
1.
Effect of cooling process on microstructure and mechanical properties of 700MPa grade low carbon bainitic steel;
冷却制度对700MPa级低碳贝氏体钢组织与性能的影响
2.
The existing cooling ability of bloom continuous casting mold at PZH Steel was evaluated, then, the mold cooling process was optimized.
在分析攀钢大方坯连铸现行结晶器冷却能力的基础上,优化调整了结晶器冷却制度。
3.
Based on the results of hot-simulation and rolling test,the influences of cooling process on the microstructure and yield ratio of low carbon bainite steel were studied by multi-function material testing machine and SEM.
在热模拟及轧制实验的基础上,利用扫描电镜和多功能材料试验机研究了轧后冷却制度对低碳贝氏体钢组织及屈强比的影响。
6)  half-cooling temperature
半冷却温度
补充资料:绝热冷却温度
分子式:
CAS号:

性质:空气-水蒸气体系的绝热饱和温度称为绝热冷却温度。

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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