1) carbon / manganese ratio
碳锰比
2) ratio of MnO_2 to C
锰碳比
1.
Mensuration of the ratio of MnO_2 to C in positive powder by direct combustion IR-spectrometric method;
红外吸收法测定正极粉的锰碳比
3) C-Mn steel
碳锰钢
1.
Difference in grain growth between the submicron-sized and the micron-sized ferrite in C-Mn steels;
碳锰钢中亚微米和微米尺寸铁素体晶粒的长大行为
2.
The effect of deformation parameters,such as initial grain size,deformation temperature,strain rate and strain on dynamic recrystallization of C-Mn steel was investigated by means of single-hit compression tests.
采用单道次热模拟实验分析了各变形参数(初始晶粒尺寸、变形速率、变形温度和变形量)对碳锰钢动态再结晶的影响。
4) manganese carbonate
碳酸锰
1.
Potassium periodate spectrophotometric determination of manganese carbonate produced during the bioreduction;
高碘酸钾分光光度法测定微生物还原产物碳酸锰
2.
Controlling of the particle size in the preparation process of manganese carbonate and its effect on the product quality;
高纯微晶碳酸锰制备中的粒度和质量控制
3.
The drop-to-drop mixing method of manganese sulfate and ammonium acid carbonate was used to prepare manganese carbonate(MnCO3)particles.
用硫酸锰和碳酸氢铵点接触反应法制备了亚微米级碳酸锰(MnCO3),分析了MnCO3的粒度和形貌控制。
5) medium carbon steel containing manganese
中碳锰钢
1.
This paper analyses the characteristic of medium carbon steel containing manganese and the demand to casting powder.
通过对中碳锰钢钢种特点及其对保护渣要求的深刻剖析,结合包钢的生产实际,对方、圆坯中碳锰钢生产所用保护渣的使用性能和理化性能进行了综合分析研究。
6) low carbon manganese steel
低碳锰钢
1.
Influences of deformation parameters on microstructures and mechanical properties of low carbon manganese steel
变形制度对低碳锰钢组织性能的影响
2.
Controlled rolling and controlled cooling experiments under various technology parameters have been carried out on low carbon manganese steels.
在实验室对低碳锰钢进行了控轧控冷试验。
3.
Thermo-mechanical controlled process (TMCP) experiments with finish-rolling temperatures (FRT) higher than Ar3 and different coiling temperatures (CT) have been carried out on a low carbon manganese steel.
对一种低碳锰钢进行了终轧温度高于Ar3卷取温度的不同控轧控冷处理。
补充资料:废水碳/氮比
分子式:
CAS号:
性质:废水中有机碳与有效的固定氮(即NH4+,NO2-,NO3-等)的比率。用好氧生物氧化法进行废水处理时,常常以BOD:N:P来表达,通常认为其合适的比率为100:5:1。
CAS号:
性质:废水中有机碳与有效的固定氮(即NH4+,NO2-,NO3-等)的比率。用好氧生物氧化法进行废水处理时,常常以BOD:N:P来表达,通常认为其合适的比率为100:5:1。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条