1)  carbonization
碳化性
1.
In this parper ,the effect of carbonization performance of fly ash concrete have been studied.
研究了粉煤灰对混凝土碳化性能的影响,评价了粉煤灰在混凝土中的作用。
2)  carbonization resistance
抗碳化性
3)  carbonation resistance
碳化性能
1.
carbonation resistance is studied.
本文在研制成功大掺量煤矸石水泥的基础上,对其碳化性能进行了研究。
4)  carbonation resistance
抗碳化性能
1.
Study on the experiment of double-mixed highly fluidity concrete s capability of carbonation resistance;
双掺大流动性混凝土抗碳化性能试验研究
2.
The preparation techniques,curing condition and service environment of ready-mixed concrete are the three main factors influencing the carbonation resistance of ready-mixed concrete.
商品混凝土抗碳化性能是影响混凝土耐久性的一个重要方面。
3.
The gas anti-permeability and carbonation resistance of recycled concrete,which was prepared by using waste concrete as recycled coarse aggregate(RCA) and some cement and mineral additions as raw materials,were studied.
对再生混凝土的抗气渗性和抗碳化性能进行了研究,试验结果表明:再生混凝土的抗气渗性和抗碳化性能之间具有一定的相关性,但该两者均较普通混凝土差。
5)  carbonization
碳化
1.
Experimental research on mechanical performance of steel fiber reinforced concrete under the carbonization;
碳化作用下钢纤维混凝土力学性能的试验研究
2.
Application of gradation-carbonization process in Production of Coarse-grained Tungsten Carbide;
钨粉分级在粗晶碳化钨粉生产中的应用
3.
Fundamental and application of cellular automata on concrete carbonization;
细胞自动机原理及其在混凝土碳化模拟中的应用
6)  carburization
碳化
1.
Molybdenum carbide catalysts were prepared through temperature-programmed carburization of molybdenum trioxide with CH4/H2 gas mixture and characterized by XRD,BET,SEM,and XPS.
MoO3在CH4/H2气氛中程序升温还原碳化反应制备了Mo2C催化剂,用XRD、BET、SEM、XPS进行了表征。
2.
The causes and mechanism of both carburization and dusting, and carburization kinetics were discussed by means of Grabke Model.
采用扫描电镜、X射线衍射、差示热分析(DTA)等方法对Ni Cr/BN混合粉末在1250℃烧结时发生的碳化和粉化行为进行了分析,借用Grabke的模型探讨了这种现象产生的原因和机理,并进行了碳化动力学的讨论,提出了预防产生这种现象的措施。
3.
Synthesis of ultrafine WC-Co powders was investigated using WO_3, Co_3O_4 and graphite powders as starting materials by high energy ball milling followed by reduction and carburization.
研究了WO3、Co3O4和石墨混合粉末经高能球磨活化后再分步进行还原和碳化反应制备超细WC Co粉末的过程。
参考词条
补充资料:碳化硅晶须补强碳化硅陶瓷基复合材料
分子式:
CAS号:

性质:以碳化硅陶瓷为基和以碳化硅晶须为增强剂的新型陶瓷材料。通过晶须的载荷转移、拔出及裂纹偏转作用,获得比普通碳化硅更高的强度和韧性。使用温度达1400℃。是一种重要的高温结构陶瓷。用于燃气轮机叶片等高温部件和耐磨件制造。采用原位生长工艺和烧结工艺制取。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。