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Effects of Alloying Elements on Sticking Behavior Occurring during Hot Rolling of Modified Ferritic STS430J1L Stainless Steels

机译:合金元素对改性铁素体STS430J1L不锈钢热轧过程中发生粘结行为的影响

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摘要

In this study, effects of alloying elements on the sticking behavior occurring during hot rolling of five kinds of modified ferritic STS430J1L stainless steels were investigated by analyzing high-temperature hardness and oxidation behavior. Hot-rolling simulation tests were conducted by a high-temperature wear tester that could simulate actual hot rolling. The simulation test results revealed that the sticking process proceeded with three stages, i.e., nucleation, growth, and saturation. Since the hardness continuously decreased as the test temperature increased while the formation of Fe-Cr oxides in the rolled steel surface region increased, the sticking of five steels was evaluated by considering both high-temperature hardness and oxidation. The addition of Zr, Cu, or Si had a beneficial effect on the sticking resistance, while the Ni addition did not make much difference to the sticking. Particularly, in the Si-rich steel, Si oxides formed first in the initial stage of the high-temperature oxidation, worked as initiation sites for Fe-Cr oxides, accelerated the formation of Fe-Cr oxides, and thus, decreased the sticking by over 10 times in comparison with the other steels.
机译:通过分析高温硬度和氧化行为,研究了合金元素对5种改性铁素体STS430J1L不锈钢热轧过程中发生的粘结行为的影响。热轧模拟测试由可以模拟实际热轧的高温磨损测试仪进行。模拟测试结果表明,粘附过程以三个阶段进行,即成核,生长和饱和。由于硬度随测试温度的升高而持续降低,而在轧制钢表面区域中形成的Fe-Cr氧化物增加,因此,通过考虑高温硬度和氧化来评估五种钢的粘着性。 Zr,Cu或Si的添加对耐粘着性具有有益效果,而Ni的添加对粘着性没有太大影响。特别是,在富Si钢中,在高温氧化初期首先形成的Si氧化物成为Fe-Cr氧化物的引发部位,促进了Fe-Cr氧化物的形成,因此减少了附着。是其他钢材的10倍以上

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  • 来源
    《Metallurgical and Materials Transactions A》 |2009年第5期|1080-1089|共10页
  • 作者单位

    Center for Advanced Aerospace Materials Pohang University of Science and Technology Pohang 790-784 Korea;

    Center for Advanced Aerospace Materials Pohang University of Science and Technology Pohang 790-784 Korea;

    Stainless Steel Research Group Technical Research Lab POSCO Pohang 790-785 Korea;

    Stainless Steel Research Group Technical Research Lab POSCO Pohang 790-785 Korea;

    Center for Advanced Aerospace Materials Pohang University of Science and Technology Pohang 790-784 Korea;

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