首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Suppression of Secondary Ferrite Formation by Boron Addition in High Carbon Steel Wires
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Suppression of Secondary Ferrite Formation by Boron Addition in High Carbon Steel Wires

机译:高碳钢丝中硼加成抑制二级铁氧体形成

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摘要

Heavily cold drawn pearlitic steel filaments containing small amount of micro alloying elements were investigated to stop delamination in torsional deformation. In Nb treated high carbon steel wire, the volume of secondary ferrite increased remarkably, and delamination occurred in the steel filament that was drawn up to 3.8 in drawing strain. But in Ti and boron treated high carbon steel filament, the secondary ferrite drastically decreased. And delamination did not occurr in this steel filament which was heavily drawn up to 4.2 in true strain. From microstructural and chemical analysis, free boron seemed to suppress to generate secondary ferrite at boundary between pro-eutectoid cementite and austenite during patenting. Patenting process has very short reheating condition and very fast cooling and transformation time. The authors understood that such a very short heat treatment process is quite favorable to utilize boron to control secondary ferrite generation in high carbon pearlitic steel.
机译:研究了含有少量微合金化元素的少量冷绘的珠光体钢丝,以止扰扭转变形。在NB处理的高碳钢线中,二级铁氧体的体积显着增加,并且在拉伸应变中的钢丝灯中汲取的分层发生在钢丝中。但在Ti和硼处理的高碳钢长丝中,二级铁氧体大大降低。除了这种钢丝中的分层并未发生在真正的应变中大约4.2的钢丝。从微观结构和化学分析中,自由硼似乎抑制在专利期间对胚凝胶渗碳和奥氏体之间的边界产生二级铁氧体。专利过程具有非常短的再加热条件和非常快速的冷却和转化时间。作者理解,这种非常短的热处理过程是有利的,利用硼控制高碳珠菌钢中的二级铁氧体产生。

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