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1)  Carbides and Nitrides
碳化物和氮化物
2)  carbonitride [,kɑ:bəu'naitraid]
碳氮化物
1.
Precipitation Law of Secondary Phase Particles Within Carbonitride of Nb-bearing Steel During Controlled Rolling and Controlled Cooling Process;
含铌钢碳氮化物二相粒子在控轧控冷工艺中析出规律
2.
The Precipitation Behavior of Carbonitride of Nb+V Microalloyed Steel Under Controlled Rolling and Cooling Process;
控轧控冷工艺条件下Nb-V钢碳氮化物的析出行为
3.
Numerical simulation of thermodynamic for carbonitride precipitation in austenite of complex microalloyed high strength and low alloy steels;
复合微合金化高强度低合金钢奥氏体相中碳氮化物析出热力学数值模拟
3)  carbo-nitride
碳氮化物
1.
Effect of Rolling Process on Carbo-Nitride Precipitation of Microalloy Steel EH420;
轧制工艺对微合金钢EH420变形奥氏体中碳氮化物析出的影响
2.
The experimental results have shown that the undissolved particles were mainly complex carbo-nitride containing Nb and Ti with a spherical or ellipsoidal shape when the steel was soaked at a given temperature lower than 1 200 ℃ for 30 min.
采用SEM、TEM及EDS分析技术,研究了含钛、铌等多种微合金元素的高强钢中碳氮化物的溶解行为。
3.
Base on regular solution model and traditional nucleation theory, carbo-nitride precipitation model in austenite of HSLA steel during continuous cooling process is developed.
采用规则溶液描述低合金高强度钢奥氏体相中碳氮化物的热力学性质,以经典形核理论为基础,建立了低合金高强度钢奥氏体相中碳氮化物在连续冷却过程中碳氮化物析出模型。
4)  Carbonitrides
碳氮化物
1.
Thermodynamic calculations of carbonitrides in V-Ti-N microalloyed steels for non-quenched/tempered seamless oil-well tubes;
V-Ti-N微合金非调质无缝油井管钢中碳氮化物的热力学计算
5)  carbide/nitride
碳/氮化物
6)  nitrides(carbides)
氮(碳)化物
1.
The precipitation of nitrides(carbides) which occurred in solution treatment and aging process of 18Cr18Mn2MoN high nitrogen austenitic stainless steel was investigated by the use of metallography and electron microscopy analysis.
用金相法、电镜观察等分析研究了固溶+时效处理过程中18Cr18Mn2MoN高氮奥氏体不锈钢氮(碳)化物及金属间相析出行为。
补充资料:缩水甘油基叠氮化物聚合物
分子式:
CAS号:

性质:常温下为琥珀色黏液。Mn1000-4000。△Hf+957kJ/kg。密度1.30g/cm3。Tg-45℃。起始分解温度224℃。冲击感度19.5J。常用的合成方法是用相应分子量的聚环氧氯丙烷进行叠氮化反应而制得。支化GAP的官能度7~11,Mn500~50 000。与相同分子量的线型GAP相比,其Tg低、黏度低、生成热高。它是用Mn约106的聚环氧氯丙烷与环氧氯丙烷、NaN3反应制得。GAP主要用作固体推进剂、枪炮发射药和不敏感高能炸药的黏合剂。

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