铁素体不锈钢,ferritic stainless steel
1)ferritic stainless steel铁素体不锈钢
1.Analysis of the welding methods of TCS ferritic stainless steel used on railway vehicle;铁路货车车体用TCS铁素体不锈钢焊接方法分析
2.Influence of rare earth element on the mechanical properties and microstructure of ferritic stainless steel;稀土对低铬铁素体不锈钢组织与力学性能的影响
3.Electrolytic dissolving ferritic stainless steel by layers and determination of chromium and silicon in the surface and the matrix of the stainless steel;电解法逐层溶解铁素体不锈钢并测定表层和基体中铬和硅的含量
英文短句/例句

1.Optimizing on Welding Parameters of TCS Ferritic Stainless Steel;TCS铁素体不锈钢焊接工艺参数的优化
2.Production Controlling Method during Hot-rolling of Super-pure Ferritic Stainless Steel超纯铁素体不锈钢热轧生产控制方法
3.Investigation on Pitting Corrosion-resistant of 00Cr12Ti Ferrite Stainless Steel00Cr12Ti铁素体不锈钢耐点蚀性能研究
4.Research Welding Characteristics of SUS410S Ferrite Stainless SteelSUS410S铁素体不锈钢焊接性能研究
5.The Control of Decarburization and Denitrogenization VOD Process in Smelting of Ferritic Stainless SteelVOD法冶炼铁素体不锈钢的碳氮控制
6.Welding procedure of JYH21CT ferrite stainless steelJYH21CT铁素体不锈钢的焊接性
7.Analysis on the application technology of ferritic stainless steel thin wall water pipe铁素体不锈钢薄壁水管应用技术浅析
8.Properties of Surface Passivating Film of Ferritic Stainless Steel 409L409L铁素体不锈钢的表面钝化膜性能
9.The MN Test Evaluate the Biocompatibility of AUSI and Fe Stainless Steels;微核实验评价奥氏体不锈钢与铁素体不锈钢的生物相容性
10.Practice on Smelting Ultra Purity Stainless Steels with VOD in TISCO太钢VOD冶炼超纯铁素体不锈钢的工艺进步
11.Development of Ferritic Stainless Steel Used in the Automobile Exhaust System in TISCO太钢汽车排气系统用铁素体不锈钢的开发
12.Process Technology Development of Smelting Ultra Purity Ferritic Stainless Steels With VOD in TISCO太钢VOD冶炼超纯铁素体不锈钢的工艺技术进步
13.The Researches into the Grain Refinement and Corrosion Resisting Property of the Ferritic Stainless Steel;铁素体不锈钢晶粒细化及耐腐蚀性研究
14.Study on the Microstructure and Properties of Ferritic Stainless Steel Used in Phosphoric Production Equipments;磷化工设备用铁素体不锈钢的组织、性能研究
15.Study of Ferritic Stainless Steel Development Outlook under the Influence of Economic Crisis经济危机下我国拓展铁素体不锈钢的前景研究
16.The Study on Structure and Property of Ultra-pure 430 Ferritic Stainless Steel超纯430铁素体不锈钢组织和性能的研究
17.Extruding Process Development of Ferritic Stainless Steel Seamless Tube 06Cr13 with Low Carbon低碳铁素体不锈钢06Cr13挤压无缝管工艺开发
18.Microstructure and Mechanical Properties of 1.4003 Ferritic Stainless Steel Welded Joints1.4003铁素体不锈钢焊接接头的组织和力学性能
相关短句/例句

ferrite stainless steel铁素体不锈钢
1.Appearance of weld and impact toughness for the joints of ferrite stainless steel by laser-MAG hybrid welding铁素体不锈钢激光-MAG复合热源焊缝成形及接头冲击韧性分析
2.The effect of welding heat input on the microstructure and mechanical property of HAZ of 00Cr12NiTi ferrite stainless steel,which is used in manufacture of rail trucks,welded by MAG welding was investigated.研究了铁道车辆用铁素体不锈钢00Cr12NiTi在MAG焊时,焊接热输入对HAZ的组织及性能的影响。
3.RE effect and mechanism in ferrite stainless steel have been studied by metallographic analysis,SEM and EDAX.采用金相、扫描电镜和能谱仪等手段,研究了稀土在430铁素体不锈钢的作用及作用机理,研究结果表明,稀土通过缩小柱状晶区域及细化柱状晶,扩大中心等轴晶区域及细化中心等轴晶,可提高冷轧板薄板成型性能;稀土改善夹杂物形貌、变性夹杂物组分,提高了430铁素体不锈钢冲击性能;稀土促进Cr和Mn元素在氧化层的富集,使氧化层致密,氧化层与基体的粘附性增强,大幅度提高了430铁素体不锈钢抗高温氧化性能。
3)Cr11 Ferritic Stainless SteelsCr11铁素体不锈钢
4)ferrite stainless steel pipe铁素体不锈钢管
1.Through the study we founded that laser weld ferrite stainless steel pipe has many advantages than TIG weld,such as narrow heat-affected zone(HAZ),the degree of the grain size grow up is low and better cool process performance.结果表明:激光焊接铁素体不锈钢管具有接头热影响区窄、晶粒长大程度小、冷加工成形性能好的优点,可以很好地满足汽车排气管生产后续的所有冷加工工艺要求。
5)439 Ferritic Stainless Steel439铁素体不锈钢
6)Cr17 ferritic stainless steelCr17铁素体不锈钢
1.The effects of initial solidification structure on microstructure and texture and formability of Cr17 ferritic stainless steel were investigated.研究了初始凝固组织对Cr17铁素体不锈钢组织、织构、成形性的影响。
延伸阅读

铁素体不锈钢分子式:CAS号:性质:含铬量一般在12%~230%,金相组织为铁素体的铁基合金。这类钢一般不含镍,有的钢种含有有少量Ti、Nb、V或Mo,有的也含少量镍。其特点是价格低,抗应力腐蚀性能好,但冲击韧性差、焊接后的塑性和耐蚀性差、对晶间腐蚀敏感、耐点蚀性差,这些缺点限制了它的广泛应用。铁素体不锈钢按铬含量分为低铬铁素体不锈钢(铬含量11%~14%,如0Cr13Al,00Cr1);中铬铁素体不锈钢(铬14%~19%,如1Cr17,1Cr17Mo);高铬铁素体不锈钢(铬19%~30%,如00Cr27Mo,00Cr30Mo2)。这类钢主要用于工具、机械部件、化学装置、石油化工设备、能源工业、食品工业以及日用品等方面。