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- Krupp austenitic steel 克虏伯奥氏体不锈钢
- krupp austenite steel 奥氏体铬镍合金钢
- Mainly used for welding different type of steel and clad steel or similar kind of austenitic steel. 主要用于异种钢或复合钢的焊接或用于焊接相应成分的奥式体钢。
- The change in strength of cryogenic austenitic steel with temperature and alloying element content was studied. 研究了低温奥氏体钢的强度随温度及合金元素含量的变化规律。
- The trawsform on the weld penetration depth are studied after welding the Austenitic steel of activated flux with TIG welding. 在采用TIG焊接方法时,在奥氏体不锈钢的表面涂敷一层活性化焊剂进行焊接,会影响焊缝熔深的变化。
- The results show that a compound layer with good wear-resistance and corrosion resistance can be gained in 304 austenitic steel by chromizing sbusequent solid soluti. 研究了304奥氏体不锈钢经渗铬固溶渗氮复合处理后,复合渗层的金相组织、相结构、渗层硬度、渗层脆性、力学性能、渗层深度、铬浓度分布。
- The results show that a compound layer with good wear-resistance and corrosion resistance can be gained in 304 austenitic steel by chromizing sbusequent solid soluti... 结果表明,304奥氏体不锈钢经渗铬固溶渗氮复合处理后可获得性能优良的复合渗层,且耐磨、耐腐蚀。
- Application:It is used for boiler and superheater min wall thickness seamless steel ferrite and austenitic steel tubes and heat exchanger austenitic steel tube. 用途:适用于锅炉和过热器用最小壁厚的无缝铁素体和奥氏体钢管以及换热器用奥氏体钢管。
- Nitrogen alloyed austenitic steels showed excellent ballistic property,higher than that of martensite steel. 含氮奥氏体钢具有优良的抗弹性能,并优于传统马氏体钢的抗弹性能。
- The effect of laser shock processing on the microstructure, hardness and residual stress of an austenitic steel 1Cr18Ni9Ti and a Ni base superalloy GH30 is studied as a functions of laser shock processing variables. 利用激光冲击强化技术分别对奥氏体不锈钢 1Cr18Ni9Ti和镍基高温合金 GH30进行了表面强化处理 ;观察了激光表面强化处理后 1Cr18Ni9Ti和 GH30显微组织与结构的变化 ;测定了1Cr18Ni9Ti和 GH30的显微硬度和残余应力 .
- Detailed studies on formation and characteristics of dislocation-free zones (DFZ) in the high manganese austenitic steel, 304L steel and brass with face-center-cubic structure have been carried out. 论文观察分析了高锰奥氏体钢、304L钢和黄铜等面心立方金属中晶内无位错区(DFZ)的形成及特征。
- The impact toughness, hydrogen content and inclusion number of austenitic steel 22Mn 13Cr 5Ni 0.25N both before and after ESR at 77 K were measured. The effect of ESR on cryogenic toughness was investigated by means of TEM and SEM. 测定了 77K下 2 2 Mn- 13Cr- 5 Ni- 0 .;2 5 N奥氏体钢电渣重熔前后的冲击韧性、氢含量及夹杂物含量;并利用扫描电子显微镜和透射电子显微镜研究了电渣重熔对该钢低温韧性的影响。
- In this paper, some corrosion failures of austenitic steel expansion joint in FCC unit are discussed, the factors affecting corrosion analysed and some prevention measures proposed. 本文列举奥氏体不锈钢膨胀节在催化裂化装置使用中发生腐蚀破坏事例,分析腐蚀破坏的各种因素,提出预防的一些措施。
- Intergranular stress corrosion cracking behavior of austenitic steels on hydrogenated high-temperature. 奥氏体钢在高温氢化物中的晶间应力腐蚀开裂性能。
- The low temperature fracture mechanism of high manganese austenitic steels is studied. 研究了高锰奥氏体钢的低温断裂机制。
- By the penetration and ballistic test for different state nitrogen alloyed austenitic steels and low alloyed martensite steel,their penetration mechanism was analysed. 对不同状态含氮奥氏体钢板和马氏体钢板进行了抗枪弹与抗杆式模拟弹试验,分析了它们的穿甲机理。
- On the basis of systematical study,the comprehensive effects of alloying elements in cryogenic austenitic steels were analyzed. 在系统研究结果的基础上,分析总结了低温奥氏体钢中合金元素的综合作用。
- What is 4116 Krupp Stainless Steel? 问:什么是克鲁伯4116不锈钢?
- Research hardening austenitic steel development 高锰钢加工硬化机理研究
- Stacking Fault Energy of Cryogenic Austenitic Steel 低温奥氏体钢的层错能