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1)  Heat Resistant Stainless Steel 310S
310S耐热不锈钢
1.
Analysis on Surface Longitudinal Crack of Concasting Slab of Heat Resistant Stainless Steel 310S and Process Improvement
310S耐热不锈钢连铸板坯表面纵裂分析和工艺改进
2)  310S stainless steel
310S不锈钢
1.
310S stainless steel and 20G steel heat-exchange tubes are coated by graphite to isolate Al-Si alloy.
采用石墨套环包覆310S不锈钢、20G钢换热管,使换热管与熔融铝硅合金隔离。
3)  310S
310S耐热钢
1.
Effect of Aluminum on Microstructure and Mechanical Properties of 310S Steel
Al元素对310S耐热钢组织和力学性能的影响研究
4)  heat-resistant stainless steel
耐热不锈钢
1.
The heat-resistant stainless steel(1Cr18Ni9Ti) was prepared by investment casting.
采用熔模精密铸造法制备1Cr18Ni9Ti耐热不锈钢,用氧化增重法在800℃对1Cr18Ni9Ti耐热不锈钢进行100h氧化腐蚀实验。
5)  heat resisting stainless steel
耐热不锈钢
1.
Then,some factors are analyzed which influence the EMS process of heat resisting stainless steel.
本文介绍了一种适于制备中小尺寸特种合金铸件的完全无接触电磁成形技术 ,分析了影响耐热不锈钢无接触电磁成形过程稳定性的因素 ,并在此基础上 ,选择合理的工艺参数 ,试验获得了表面质量良好的不锈钢样件。
6)  heat resistant steel
耐热不锈钢
1.
In order to further investigate the influence of material factors on FFR, the FFR of two heat resistant steels with different tension strength and two titanium alloys with different microstructure was compared.
5Sn(α型 ) ]和两种结构相同 (马氏体 )但强度与硬度差别较大的耐热不锈钢 (lCr11Ni2W 2MoV和Cr17Ni2 )的微动疲劳 (FF)抗力及微动垫材料的影响 ,以进一步探讨材料因素对FF抗力的作用规律和机制。
2.
The process of dual-frequency electromagnetic hold shaping has been studied for heat resistant steel parts.
研究了真空下耐热不锈钢的双频电磁约束成形过程,建立了真空下电磁约束成形的双感应器-熔体-屏蔽罩耦合系统。
补充资料:[3-(aminosulfonyl)-4-chloro-N-(2.3-dihydro-2-methyl-1H-indol-1-yl)benzamide]
分子式:C16H16ClN3O3S
分子量:365.5
CAS号:26807-65-8

性质:暂无

制备方法:暂无

用途:用于轻、中度原发性高血压。

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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