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High-Temperature Mechanical Behavior and Fracture Analysis of a Low-Carbon Steel Related to Cracking

机译:低碳钢的高温力学行为与断裂相关的断裂分析

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摘要

Cracking in continuously cast steel slabs has been one of the main problems in casting for decades. In recent years, the use of computational models has led to a significant improvement in caster performance and product quality. However, these models require accurate thermomechanical properties as input data, which are either unreliable or nonexistent for many alloys of commercial interest. A major reason for this lack of reliable data is that high-temperature mechanical properties are difficult to measure. Several methods have been developed to assess the material strength during solidification, especially for light alloys. The tensile strength during solidification of a low carbon aluminum-killed (LCAK; obtained from Tata Steel Mainland Europe cast at the DSP plant in IJmuiden, the Netherlands) has been studied by a technique for high-temperature tensile testing, which was developed at Sumitomo Metal Industries in Japan. The experimental technique enables a sample to melt and solidify without a crucible, making possible the accurate measurement of load over a small solidification temperature range. In the current study, the tensile test results are analyzed and the characteristic zero-ductility and zero-strength temperatures are determined for this particular LCAK steel grade. The fracture surfaces are investigated following tensile testing, which provides an invaluable insight into the fracture mechanism and a better understanding with respect to the behavior of the steel during solidification. The role of minor alloying elements, like sulfur, in hot cracking susceptibility is also discussed.
机译:几十年来,连铸钢坯的开裂一直是铸造的主要问题之一。近年来,计算模型的使用已极大地改善了脚轮性能和产品质量。但是,这些模型需要准确的热机械特性作为输入数据,对于许多商业性合金而言,这些模型要么不可靠,要么不存在。缺乏可靠数据的主要原因是高温机械性能难以测量。已经开发了几种方法来评估凝固过程中的材料强度,特别是对于轻合金而言。通过住友商事开发的高温拉伸试验技术,研究了低碳铝镇静剂(LCAK;从塔塔钢铁欧洲公司在荷兰艾默伊登的DSP工厂浇铸而成)的拉伸强度。日本的金属工业。实验技术使样品能够在没有坩埚的情况下熔融和固化,从而可以在较小的固化温度范围内准确测量载荷。在当前的研究中,分析了拉伸测试结果,并确定了该特定LCAK钢种的零延性和零强度特征温度。拉伸试验后对断裂表面进行了研究,这为断裂机理提供了宝贵的见解,并且对钢在凝固过程中的行为有更好的了解。还讨论了次要合金元素(如硫)在热裂敏感性中的作用。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2012年第13期|p.5048-5057|共10页
  • 作者单位

    Tata Steel Europe Research Development &amp Technology, P.O. Box 10000, 1970CA, IJmuiden, The Netherlands;

    Department of Materials Science and Engineering, Delft University of Technology, Mekelweg 2, 2628CD, Delft, The Netherlands;

    Brunel Centre for Advanced Solidification Technology, Brunel University, Kingston Lane, Uxbridge, UB8 3PH, U.K.;

    Corporate Research &amp Development Laboratories, Sumitomo Metal Industries, LTD, 16-1 Sunayama, Kamisu, Ibaraki, 314-0255, Japan;

    Corporate Research &amp Development Laboratories, Sumitomo Metal Industries, LTD, 16-1 Sunayama, Kamisu, Ibaraki, 314-0255, Japan;

    Sumitomo Metal Industries, LTD, Triton Square Office Tower Y 8-11, Harumi 1-Chome, Chuo-Ku, Tokyo, 104-6111, Japan;

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