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1)  seismic performance
抗震性态
1.
Verification of seismic performance control effects of reinforced concrete frames in China;
对我国钢筋混凝土框架抗震性态控制效果的识别
2)  Seismic performance indices
抗震性态指标
3)  thermal shock resistance
抗热震性
1.
Thermal shock resistance of nano BN-SiC composites;
纳米BN复合SiC材料的抗热震性研究
2.
Effect of ZrO_2-SiC composite powder addition on thermal shock resistance of Al_2O_3-C refractories;
添加ZrO_2-SiC复合粉体对Al_2O_3-C质耐火材料抗热震性能的影响
3.
Research on preparation technology and thermal shock resistance of Al_2O_3/cordierite ceramics;
Al_2O_3/堇青石陶瓷的制备和抗热震性能研究
4)  Resistance to thermal shock
抗热震性
1.
The study shows that the resistances to thermal shock and to slag corrosion of the β-Sialon/SiC are better than β-Sialon/corundum, the fracture times of the resistance to thermal shock are up to 40.
结果表明:β-Sialon/SiC的抗热震性、抗渣侵蚀性优于β-Sialon/刚玉,在1100℃时,抗热震断裂次数达到40次以上。
2.
the characters of sic and the appliance are introduced,the influence on the resistance to thermal shock of kiln furniture is studied through experiments.
本文介绍了碳化硅的特点及其在窑具中的应用 ,通过试验探讨了其对窑具抗热震性的影
5)  thermal shock
抗热震性
1.
The result shows that the coating,having high emissivity,bonds well with substrate and have better property of thermal shock resistance than Al2O3-SiC ceramic coating.
结果表明,该涂层有很高的发射率,与基材结合良好,抗热震性能明显优于Al2O3-SiC陶瓷涂层。
2.
The influences of RE2(CO3)3 content on the sintering temperatures,thermal shock,the bulk density on the solution and the phase comp.
以碳化硅、高岭土、氧化铝粉为原料,以质量分数为3%的混合碳酸稀土为助熔剂,烧制具有气孔率高、容重小、强度高、抗热震性高的莫来石-碳化硅质泡沫陶瓷过滤器。
6)  Seismic performance
抗震性能
1.
Study on the seismic performance of RC column confined by prestrssed steel plate hoops;
设置外包预应力钢板箍RC短柱抗震性能研究
2.
Experimental study on seismic performance of RC shear wall joint with bi-directional single row of steel bars;
双向单排配筋剪力墙节点抗震性能试验研究
3.
Analysis on seismic performance of SRC-RC transfer column and the anchoring length of shape steel;
SRC-RC转换柱抗震性能及型钢最小延伸长度分析
补充资料:态-态反应性散射截面
分子式:
CAS号:

性质:设有一态-态反应A+BC(υ,j)=AB(υ′,j′)+C,其中υ、υ′、j、j′分别为反应物和产物的振动量子数和转动量子数。根据微分反应截面σr的定义,则σr(υ、j︱υ′、j′)应为单位时间单位立体角中散射的具有υ′、j′能态的分子数占散射截面的分率。态-态反应性散射截面即其积分态-态反应截面Sr(n´∣n,g)=(n´∣n,g,θ) dΩ,n表示内部量子态,Z为相对速率。

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