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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Formation Mechanisms of Cracks Formed During Hot Rolling of Free-Machining Steel Billets
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Formation Mechanisms of Cracks Formed During Hot Rolling of Free-Machining Steel Billets

机译:自由加工钢坯热轧过程中形成裂纹的形成机理

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摘要

In this study, cracks formed in the edge side of Bi-S-based free-machining steel billets during hot rolling were analyzed in detail, and their formation mechanisms were clarified in relation with microstructure. Particular emphasis was placed on roles of band s of pearlites or C- and Mn-rich regions and complex iron oxides present in the edge side. Pearlite band s in the cracked region were considerably bent to the surface, while those in the noncracked region were parallel to the surface. This was because the alignment direction of pearlite band s was irregularly deviated up to 45 deg from the normal direction parallel to the surface, while the billet was rolled and rotated at 90 deg in the same direction between rolling passes. On the edge side, where pearlite band s were bent, iron oxides intruded deeply into the interior along pearlite band s, which worked as stress concentration sites during hot rolling and , consequently, main causes of the crack initiation in the rolled billet. On the surface of the wire rod rolled from the cracked billet, a few scabs were found when some protrusions were folded during hot rolling. In order to prevent the cracking in billets and scab formation in wire rods, (1) the increase of rolling passes and the decrease of reduction ratio for homogeneous rolling of billets and (2) the reduction in sulfur content for minimizing the formation and intrusion of complex iron oxides were suggested.
机译:在这项研究中,详细分析了Bi-S基自由加工钢坯在热轧过程中在边缘产生的裂纹,并阐明了其形成机理与微观组织的关系。特别强调的是珠光体或富C和Mn区域的边带和边缘侧存在的复杂氧化铁的作用。裂纹区域中的珠光体带s弯曲至表面,而非裂纹区域中的珠光体带平行于表面。这是因为,当坯料被轧制并在轧制道次之间沿相同方向旋转90度时,珠光体带s的排列方向从与表面平行的法线方向不规则地偏离了45度。在珠光体带s弯曲的边缘侧,氧化铁沿着珠光体带s深深地侵入内部,这在热轧过程中充当应力集中点,因此,是导致轧制方坯产生裂纹的主要原因。在从破裂的坯料轧制而成的线材表面上,在热轧过程中折叠了一些突起后,发现了一些结ab。为了防止线材中的钢坯开裂和结formation,(1)钢坯均质轧制时的轧制道次增加和压下率的降低,以及(2)为了使钢的形成和侵入最小化而降低硫含量。建议使用复杂的氧化铁。

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