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1)  3Cr13 stainless steel
3Cr13不锈钢
1.
Diamond-like carbon(DLC) films are prepared on 3Cr13 stainless steel substrates by pulsed vacuum arc ion deposition.
利用脉冲真空电弧离子镀技术在3Cr13不锈钢基底上制备类金刚石(DLC)薄膜,采用X射线光电子能谱技术分析DLC薄膜中sp3键及sp2键含量和组分。
2.
The cause for surface fine crack of 3Cr13 stainless steel transmission shaft was analyzed by chemical analyzing and metallographic examination.
通过化学成分分析及金相检验手段,对3Cr13不锈钢传动轴表面细纹的产生原因进行了分析。
3.
In practice,the experiences are very useful for improving the processability of 3Cr13 stainless steel.
实践证明,获得的经验对3Cr13不锈钢加工性能的改善效果明显。
2)  3Cr13 Martensite stainless steel
3Cr13马氏体不锈钢
1.
Solid Solution Nitriding of 304 Austenitic stainless steel and 3Cr13 Martensite stainless steel was investigated under the following technical parameters: temperature 900℃~1150℃,nitrogen pressure 0.
本文对304奥氏体不锈钢和3Cr13马氏体不锈钢的固溶渗氮进行了研究,固溶渗氮工艺参数的变化范围为:渗氮温度900℃~1150℃,氮气压力0。
3)  3Cr13 steel
3Cr13钢
1.
The effects of common heat treatment and cryogenic treatment on microstructure and mechanical properties of 3Cr13 steel were studied using a SLX-30 cryogenic box with program control,and metallography microscope,SEM and HRC sclerometer.
利用SLX-30程序控制深冷箱、金相显微镜、扫描电镜和洛氏硬度计,研究了刀剪材料3Cr13钢经普通热处理、深冷处理后的微观组织及力学性能变化。
4)  3Cr13 steel coating
3Cr13钢涂层
1.
In order to solve the problem of the wear in sand containing oil lubrication,the 3Cr13 steel coating was prepared by high velocity arc spray.
为了解决含沙油润滑条件下材料的磨损问题,采用高速电弧喷涂技术制备了3Cr13钢涂层,使用SEM、XRD及MM200摩擦磨损试验机测试了涂层的组织结构及在含细沙油润滑条件下的磨损性能。
2.
Effects of different spraying voltage and current,surface pretreatment,pre-heat,and subsequently heat treatment on bonding strength of arc sprayed 3Cr13 steel coating were investigated.
研究了喷涂电压、喷涂电流、表面预处理、预热、后热处理对电弧喷涂3Cr13钢涂层结合强度的影响。
5)  valve plate steel 3Cr13
阀片钢3Cr13
6)  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
补充资料:Ti-13V-11Cr-3A1 alloy
分子式:
CAS号:

性质:β钛合金。成分为钒13%,铬11%,铝3%,余量钛。退火后室温机械性能:抗拉强度862MPa,屈服强度827MPa,延伸率10%,弹性模量10.34×104MPa,HRC硬度32~36。采用真空自耗电弧炉熔炼制取。制造紧固件和较大面积的模锻件。  

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