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Hot Ductility of Sulfur-containing Low Manganese Mild Steels at High Strain Rate

机译:高应变率含硫低锰低碳钢的热延展性

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摘要

The hot ductility of low manganese mild steels was investigated at a high strain rate of 22 s~(-1) to simulate a roughing mill in the hot rolling process for various contents of manganese and sulfur. With all steels, ductility loss occurred in a low temperature range in the austenite region after reheating at 1 573 K. A decrease in the manganese content and an increase in the sulfur content deteriorated hot ductility. A low reheating temperature and a long holding time before tensile deformation improved hot ductility. Tensile strength decreased at reduction-in-area below 40% at a constant temperature, and had no relationship with chemical composition. The brittle fracture surfaces were intergranular fractured ones and were observed at reduction-in-area below 40%. (Fe,Mn)S precipitates existed in small dimples on the brittle fracture surfaces. The quantities of the precipitated sulfides were calculated by Thermo-Calc, and increased with increasing manganese and sulfur contents. An increase in the manganese content promoted coarse (Fe,Mn)S at the same temperature. The sizes of the sulfides were also correlated with thermal diffusion at various temperatures and holding times. Hot ductility was understood by the quantity and size of the precipitated sulfides at high reheating temperatures. Embrittlement was accelerated by an increase in the quantity of precipitated sulfides and a decrease in the precipitate size. At low reheating temperatures, improvement of hot ductility was recognized as a result of a decrease in solved sulfur in the reheating process.
机译:研究了低锰低碳钢在22 s〜(-1)的高应变速率下的热延性,以模拟粗轧机在热轧过程中锰和硫的各种含量。对于所有钢,在1 573 K再加热后,奥氏体区域的低温范围内都发生了延展性损失。锰含量的降低和硫含量的增加使热延展性恶化。较低的加热温度和较长的拉伸变形之前的保持时间可改善热延展性。在恒定温度下,在面积减少率低于40%时,拉伸强度降低,并且与化学组成无关。脆性断裂面为晶间断裂面,在40%以下的面积减少中观察到。 (Fe,Mn)S析出物存在于脆性断裂面上的小凹坑中。沉淀的硫化物含量通过Thermo-Calc计算得出,并随着锰和硫含量的增加而增加。在相同温度下,锰含量的增加促进了粗(Fe,Mn)S的产生。硫化物的大小还与在各种温度和保持时间下的热扩散相关。通过在高再加热温度下沉淀的硫化物的数量和大小可以理解热延展性。硫化物沉淀量的增加和沉淀物尺寸的减小促进了脆化。在较低的再加热温度下,由于再加热过程中溶解的硫减少,因此确认了热延展性的提高。

著录项

  • 来源
    《ISIJ international》 |2009年第9期|1424-1431|共8页
  • 作者

    Taro KIZU; Toshiaki URABE;

  • 作者单位

    Steel Research Laboratory, JFE Steel Corporation, 1 Kawasaki-cho, Chuo-ku, Chiba 260-0835 Japan;

    Sheet Business Planning Department, JFE Steel Corporation, 2-2-3 Uchisaiwaicho, Chiyoda-ku, Tokyo 100-0011 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    hot ductility; mild steel; low manganese; sulfide; precipitation; intergranular fracture;

    机译:热延展性软钢;低锰硫化物沉淀;晶间骨折;
  • 入库时间 2022-08-18 00:04:02

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