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1)  charcoal wire
超低碳钢丝
2)  Low carbon steel wire
低碳钢丝
1.
To introduce natural aging of galvanized low carbon steel wire after softening treatment and effect of the aging on mechanical properties of steel wire.
介绍镀锌低碳钢丝经软化处理后产生的自然时效及其对钢丝力学性能的影响。
2.
To analyze the characteristics of the coal powder burning furnace The practice experiences of low carbon steel wire heat treatment with coal powder burning furnace are introduced Three pieces of norms about laying down the annealing technology of low carbon steel wire are pointed ou
分析燃煤粉炉的特点,介绍燃煤粉炉热处理低碳钢丝的实践经验,指出制定低碳钢丝退火工艺的3条准则。
3.
o introduce the drawing of low carbon steel wire without pickling and the keys to the technique.
介绍低碳钢丝无酸拉拔技术及无酸洗拉拔的技术关键,分析新工艺的优点,指出应进一步完善的技术要点。
3)  ULC steel
超低碳钢
1.
Study on the optimum process of refining ULC steel by RH degasser
RH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。
4)  ultra-low-carbon steel
超低碳钢
1.
Development on ultra-low-carbon steel mold powder of Baosteel;
宝钢超低碳钢保护渣的开发
2.
Effect of Mould Shielded Fluxes on Concasting Billet Surface Carbonization of Ultra-Low-Carbon Steel;
结晶器保护渣对超低碳钢连铸坯表面渗碳的影响
3.
Composite Treatment of Concasting Mold Flux for Ultra-Low-Carbon Steel;
超低碳钢连铸结晶器用保护渣的超细复合处理
5)  Ultra Low Carbon Steel
超低碳钢
1.
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
2.
To address the characteristics of deformation behavior and flowing stress of ultra low carbon steel in the hot-strip mill processing,a set of simulations were performed with THERMECMASTOR-Z thermo dynamic simulator.
采用 THERMECMASTOR-Z 热/力模拟试验机研究了超低碳钢在铁素体区轧制过程的形变特征和流变应力,采用双段压缩试验方法研究了不同变形温度、道次间隔时间和变形程度对钢的流变应力和组织的影响。
3.
The reason and mathematic analysis for carbon pick up from mold flux have been investigated in ultra low carbon steel.
探讨了保护渣引起超低碳钢增碳的机理并进行了数学分析。
6)  ultra-low carbon steel
超低碳钢
1.
Metallurgical effect test of tundish flux for ultra-low carbon steel;
超低碳钢中间包覆盖剂的冶金效果试验
2.
Influence of BN on ultra-low carbon steel continuous casting mold fluxes properties;
BN对超低碳钢连铸保护渣性能的影响
3.
Process optimization for production of ultra-low carbon steel by RH-MFB
RH-MFB生产超低碳钢的工艺优化
补充资料:冷拔低碳钢丝
      经过拔制产生冷加工硬化的低碳钢丝。采用直径6.5或8毫米的普通碳素钢热轧盘条,在常温下通过拔丝模引拔而制成的直径3、4或 5毫米的圆钢丝。钢材的位错增殖,使晶格滑移受阻,强度提高,而反映塑性性能的指标伸长率则下降较多。建筑用冷拔低碳钢丝分为甲、乙两级。甲级钢丝主要用于小型预应力混凝土构件的预应力钢材;乙级钢丝一般用作焊接或绑扎骨架、网片或箍筋。用作预应力混凝土构件的钢丝,应优先选用甲级3号钢或 4号钢热轧盘条进行拔制。这种钢丝的强度主要取决于原材料(热轧盘条)的强度和引拔后的总变形量。伸长率也是评定其质量的重要指标,如伸长率太小,就可能导致用它配筋的预应力混凝土构件发生无显著变形预兆的脆性破坏,故拔制时应适当选择拔制道次,以保证钢丝的塑性。用作预应力混凝土构件的钢丝,应逐盘取样进行力学性能检验,按性能要求判定级别和组别,合理安排使用。冷拔低碳钢丝主要用于小型预应力混凝土构件,如梁、空心楼板、小型电杆,以及农村建筑中的檩条和门框、窗框等。
  

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