首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effects of Alloying Elements on High-Temperature Oxidation and Sticking Occurring During Hot Rolling of Modified Ferritic STS430J1L Stainless Steels
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Effects of Alloying Elements on High-Temperature Oxidation and Sticking Occurring During Hot Rolling of Modified Ferritic STS430J1L Stainless Steels

机译:合金元素对改性铁素体STS430J1L不锈钢热轧过程中高温氧化和粘附的影响

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摘要

In the present study, mechanisms of sticking that occurs during hot rolling of modified STS430J1L ferritic stainless steels were investigated by using a pilot-plant-scale rolling machine, and the effects of alloying elements on sticking were analyzed by the high-temperature oxidation behavior. The hot-rolling test results indicated that the Cr oxide layer formed in a heating furnace was broken off and infiltrated the steel, thereby forming Cr oxides on the rolled steel surface. Because the surface region without oxides underwent a reduction in hardness rather than the surface region with oxides, the thickness of the surface oxide layer favorably affected the resistance to sticking. The addition of Zr, Cu, and Ni to the ferritic stainless steels worked in favor of the decreased sticking, but the Si addition negatively affected the resistance to sticking. In the Si-rich steel, Si oxides were continuously formed along the interfacial area between the Cr oxide layer and the base steel, and interrupted the formation and growth of the Cr oxide layer. Because the Si addition played a role in increasing sticking, the reduction in Si content was desirable for preventing sticking.
机译:在本研究中,使用中试规模的轧制机研究了改性STS430J1L铁素体不锈钢热轧过程中发生的粘结机理,并通过高温氧化行为分析了合金元素对粘结的影响。热轧试验结果表明,在加热炉中形成的Cr氧化物层被破坏并渗入钢中,从而在轧制的钢表面上形成Cr氧化物。因为没有氧化物的表面区域的硬度比带有氧化物的表面区域的硬度降低,所以表面氧化物层的厚度有利地影响了耐粘着性。在铁素体不锈钢中添加Zr,Cu和Ni有助于减少粘连,但是Si的添加对粘连性产生负面影响。在富Si钢中,沿着Cr氧化物层与基体钢之间的界面区域连续形成Si氧化物,并中断了Cr氧化物层的形成和生长。因为Si的添加在增加粘附方面起作用,所以减少Si含量对于防止粘附是理想的。

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