1)Ultra-Low Carbon超低碳
1.Research and Production on Medium and Heavy Plate of HQ590DB Ultra-Low Carbon Bainitic Steel;HQ590DB超低碳贝氏体钢中厚板的研制
2.VOD refining of ultra-low carbon martensitic stainless steelVOD冶炼超低碳马氏体不锈钢
3.Research on hot deformation resistance and continuous cooling transformation of ultra-low carbon bake hardening steels超低碳BH钢变形抗力和连续冷却转变热模拟
英文短句/例句
1.A Study on Cryogenic Toughness of Super Low Carbon 9Ni Steel Welding Joint超低碳9Ni钢焊接接头低温韧性研究
2.PRODUCTION OF ULTRA-LOW CARBON STEEL STRIP USED FOR HIODEN COVER IN CRT彩色显象管用超低碳荫罩钢带的研制
3.Study on Edge Folding Control for Hot-rolled Strip Ultra-low Carbon热轧超低碳带钢边部折叠控制的研究
4.Analysis of Different Technological Processes on the Clean Degree of Ultra-low Carbon SteelBOF-RH-CC生产超低碳钢板坯洁净度研究
5.Total oxygen content control of ULC steel in the process of RH treatmentRH处理超低碳钢中总氧含量的控制
6.A Model for Predicting the Total Oxygen of Steel in the Process of RH TreatmentRH处理超低碳钢中总氧含量预报模型
7.Design of 308m~3 ultralow carbon Stainless Steel Spherical Tanks308m~3超低碳不锈钢球罐产品的设计
8.PROCUTION OF UL RA-LOW-CARBON STEEL WITH RH REFINING济钢RH精炼法生产超低碳钢的实践
9.Discussion on procedure for submerged are welding of 316L extra-low-carbon stainless steel316L超低碳不锈钢埋弧焊焊接工艺探讨
10.Process optimization for production of ultra-low carbon steel by RH-MFBRH-MFB生产超低碳钢的工艺优化
11.Study on Microstructures and Properties of Ultra Low-carbon Nb+Ti-IF Steel超低碳Ti+Nb-IF钢组织与性能的研究
12.Comparison of different flow stress models for ultra low carbon steels during warm deformation超低碳钢低温变形流动应力模型的比较
13.The Analysis of Carburization for Extra Low Carbon Steels Produced by ASP Process at Anshan Iron and Steel Group Co.鞍钢1700ASP中薄板坯连铸生产超低碳钢钢水增碳分析
14.STUDY AND APPLICATION OF SAW FOR ULTRA-LOW CARBON STAINLESS STEEL WITH MO CONTENT超低碳含钼不锈钢自动埋弧焊工艺试验及应用
15.Influence of RE Modifier on As-cast Grain Refinement of Super-low Carbon Cast Steel稀土变质剂对超低碳钢铸态晶粒细化的研究
16.STUDY ON THE LOCAL CORROSION BEHAVIOR OF CAST STAINLESS STEEL WITH ULTRA LOW CARBON CONTENT超低碳不锈钢的铸态局部腐蚀行为研究
17.Fatigue Properties of Martensitic Stainless Steels with Ultra-low Carbon and High Cleanliness;纯净超低碳马氏体不锈钢材料的疲劳性能研究
18.Effect of Copper on the Corrosion Resistance of a Ultra-low Carbon Bainitic Steel;铜对超低碳贝氏体钢耐腐蚀性能的影响
相关短句/例句
ultra low carbon超低碳
1.Effect of Control Rolling and Aging on Structure and Properties of 570 MPa Ultra Low Carbon Bainitic Steel;控轧和时效对570 MPa超低碳贝氏体钢组织和性能的影响
2.Microstructure, properties and boron distribution of HAZ in an ultra low carbon bainitic Cu containing steel were investigated by welding simulation on a Gleeble 1500 thermal simulator.用Gleeble1500热模拟机对含铜超低碳贝氏体钢进行不同焊接工艺下热模拟试验。
3)extra-low carbon超低碳
1.Structure Evolution of a Nb-Microalloyed Extra-Low Carbon Steel during Simulated Thermomechanical Control Process;模拟控轧控冷过程含Nb超低碳钢的组织演变
2.A Study on Reducing Dephosphorization of Extra-Low Carbon Austenite Stainless Steel 00Cr18Ni10;超低碳奥氏体不锈钢00Cr18Ni10还原脱磷研究
4)super low carbon超低碳
1.The influences of fluoride, limestone and silicate on the welding technicalities of super low carbon martensite stainless steel electrode and anti blowhole ability in welded metal had been studied.系统研究了氟化物、大理石和硅酸盐对超低碳马氏体不锈钢焊条的焊接工艺性能和抗气孔性能的影响。
5)extra low carbon超低碳
1.This paper discusses the effect of hot rolling finishing temperature on the microstructures and properties of hood-type annealed Ti + Nb extra low carbon bake hardening steel.讨论了热轧终轧温度对罩式退火生产的Ti+Nb超低碳烘烤硬化钢板的组织和性能的影响。
2.The carbon in extra low carbon steel influenced the quality of steel.钢中的碳对超低碳钢的性能有很大的影响,针对鞍钢 ASP 中薄板坯连铸生产超低碳钢异钢种连浇过程中铸坯增碳的问题,通过理论计算和取样分析,对异钢种连浇过程铸坯增碳进行了研究,并对工艺进行改进。
6)ULC steel超低碳钢
1.Study on the optimum process of refining ULC steel by RH degasserRH冶炼超低碳钢的最优工艺研究
2.Inclusions and total oxygen content in ultra-low carbon(ULC) steel were studied for the control of cluster inclusions in ULC steel.为控制超低碳钢中的簇状夹杂物,对超低碳钢中的夹杂物和与全氧含量的关系进行了研究。
3.The polarization curve of the ULC steel with titanium and niobium was measured to determine the suitable electrolytic parameters for preparation of TEM carbon replica samples.测定了一种复合添加钛、铌超低碳钢的极化曲线,选用合适的电流密度和电解时间以碳复型方法萃取钢中的析出相制备透射电镜观察用样品。
延伸阅读
超低碳不锈钢分子式:CAS号:性质:含碳量低于0.03%的不锈钢,一般指奥氏体不锈钢。不锈钢中的碳含量降低到0.03%以下,即超低碳化,能有效地避免不锈钢出现贫铬区和防止晶间腐蚀敏感性。碳在铁素体不锈钢中的危害更加严重,当大约从927℃;以上快冷时就会沿晶界析出铬的碳化物,形成晶界贫铬区,而在腐蚀环境中容易发生晶间腐蚀,为了避免晶间腐蚀就要求碳含量必须低于0.01%。采用氩氧脱碳精炼法和真空氧脱碳精炼法,都能生产超低碳不锈钢。