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1)  TCS345 stainless steel
TCS345不锈钢
2)  stainless steel
不锈钢
1.
Vacuum hot roll bonding of TC4 titanium alloy and 0Cr18Ni10Ti stainless steel;
TC4钛合金与0Cr18Ni10Ti不锈钢真空热轧连接
2.
Research on cyclic ion nitriding technology catalyzed by rare earth for 2Cr13 stainless steel;
2Cr13不锈钢的稀土催渗循环离子渗氮工艺研究
3.
Analysis of the components of acid chemical coloring solutions for stainless steel;
不锈钢酸性化学着色液成分的分析方法
3)  2Cr13 stainless steel
2Cr13不锈钢
1.
Influence of the TiN film layer on the anti-erosion performance of the 2Cr13 stainless steel blade
TiN膜层提高2Cr13不锈钢叶片的抗冲刷腐蚀性能
2.
Study of hot deformation microstructure and properties for 2Cr13 stainless steel containing rare earth Y
含稀土元素Y的2Cr13不锈钢热变形组织与性能研究
3.
Effect of tempering temperature on stress-corrosion cracking and mechanical hysteresis of 2Cr13 stainless steel
回火温度对2Cr13不锈钢应力腐蚀开裂和力学滞后的影响
4)  1Cr13 stainless steel
1Cr13不锈钢
1.
Vacuum brazing between TiC/NiCr cermets and 1Cr13 stainless steel;
TiC/NiCr金属陶瓷与1Cr13不锈钢的真空钎焊
2.
Titanium coating had been deposited on 1Cr13 stainless steel substrate using cold spray technique.
0MPa,载气温度为500℃的状态下,用冷喷涂的方法在1Cr13不锈钢基体上制备了钛金属涂层。
3.
TiC/Ti(C, N)/TiN multi-layer coatings are prepared on the 1Cr13 stainless steel substrate by the technique of Chemical Vapour Deposition, and the fretting wear behaviour of 1Cr13 stainless steel and TiC/Ti(C, N)/TiN coatings are investigated and studied contrastively from 25℃ to 400℃ in the gross slip regime.
采用化学气相沉积(CVD)技术,在1Cr13不锈钢基体上制备TiC/Ti(C,N)/TiN复合涂层。
5)  254SMo stainless steel
254SMo不锈钢
6)  316L stainless steel
316L不锈钢
1.
Warm compaction technics of 316L stainless steel powder;
316L不锈钢粉末的温压工艺研究
2.
Influence of heat-treatment on the microstructure and properties of 316L stainless steel;
热处理对316L不锈钢组织和性能的影响
3.
Effect of surface mechanical attrition treatment on microstructures and mechanical properties of 316L stainless steel;
表面机械研磨处理对316L不锈钢组织和性能的影响
补充资料:TCs
分子式:
分子量:
CAS号:

性质:由链霉菌产生或经半合成制取的一类碱性的广谱抗生素。由链霉菌直接产生的有四环素、土霉素、金霉素。半合成制取的有美他环素(甲烯土霉素)、多西环素(强力霉素)、米诺环素(二甲胺四环素)等。具有四个环(并四苯)为母体的抗生素。黄色晶体。能抑制革兰阳性和阴性细菌、支原体、衣原体、立克次体、原虫和螺旋体,并可用于防止禽畜病害,促进幼年禽畜生长,防治植物病害和食物保鲜等。本类药物间存在着密切的交叉耐药性。近年一些常见病原菌耐药率很高,因此限制了本类药物的应用。

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