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1)  composite chromizing and titanizing
铬钛复合渗
1.
A study of low-temperature salt-bath composite chromizing and titanizing of 3Cr2W8V steel;
3Cr2W8V钢低温盐浴铬钛复合渗的研究
2)  compound chromizing
复合渗铬
1.
The surface microhardness of steel 20 specimens was contrasted between the technics ofthe plasma-nitriding and low-temperature compound chromizing.
低温复合渗铬的保温温度的提高能够提高渗铬扩散速度,以获得更大的渗铬层厚度,且在保温6 h的条件下获得了最佳渗铬层组织。
3)  chromizing and subsequent nitriding
铬氮复合渗
1.
The higher mechanical properties on the surface of austenitic stainless steel parts can be obtained after chromizing and subsequent nitriding.
奥氏体不锈钢制零件经铬氮复合渗处理后,工件表面可获得较高的力学性能,在承受摩擦和夹持力的工况条件下,可有效地防止咬合、擦伤、磨损,具有良好的耐腐蚀性。
4)  chromized layrer
复合渗铬层
5)  complex vanadizing-chromizing
钒铬复合渗
1.
The experimental results show that the thickness of complex vanadizing-chromizing layer is obviously thicker than that of the single chromizing layer and the vanadochromizing layer, the hardness, wear resistance,corrosio.
结果表明,钒铬复合渗层的厚度显著高于单渗钒层与钒铬共渗层。
6)  Cr-Ti coating
铬钛共渗
1.
The microstructure of Cr-Ti coating was examined by electron probe scope,optical microscope and hardness meter.
对钢的铬钛共渗及其耐磨性进行分析研究,并与铬和钛的单渗层进行性能对比。
2.
The microstructure of Cr-Ti coating is examined by electron probe scope, optical microscope and hardness meter.
论文对钢的铬钛共渗及其耐磨性进行分析研究,并与铬和钛的单渗层进行性能对比。
补充资料:渗铬
分子式:
CAS号:

性质:渗镀品种之一,欲渗入的元素为铬。渗铬的目的是为了改善钢和耐热使铁耐蚀性及抗氧化性,提高持久强度和疲劳强度,这样就可以用普通的钢材代替较昂贵的不锈钢和耐热钢。渗铬方法有固体粉末渗铬、气体渗铬、盐浴渗铬等。

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