引入钛,完善热轧辊堆焊用铁-碳-硅-Мn -Сr-W-V体系药芯焊丝成分

N. Kozyrev, A. A. Usol’tsev, A. Mikhno, N. Kibko, D. E. Belov
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引用次数: 0

摘要

热轧机的轧辊是根据GOST 26101-84标准,用药芯焊丝ПП-Нп-35В9Х3СФ堆焊而硬化的。堆积层具有较高的耐磨损性,但其耐热性相对较低,因此这种钢丝表面的轧辊经常因形成火裂纹网和剥落而失效。结果表明,在药芯焊丝中加入钛可以降低镀层的组织不均匀性。研究了在Fe-C-Si -Мn -Сr-W-V系药芯焊丝中引入钛对镀层性能的影响。结果表明:在原奥氏体晶粒边界内形成马氏体,少量残余奥氏体以分离区域和薄层δ-铁素体的形式存在;样品的微观结构包含碳化物网络。随着沉积层中钛含量的增加,马氏体针状体的尺寸减小,前奥氏体晶粒的尺寸减小。试样的显微组织包括中针状和细针状马氏体。马氏体针的大小从2微米到9微米不等。结果表明,在药芯焊丝的成分中添加0.02 ~ 0.13%的钛可以提高镀层的硬度,减少样品的磨损。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Perfection of Fe–C–Si–Мn–Сr–W–V system flux-cored wire composition for surfacing of hot rolling mill rollers by introducing titanium in it
Rollers for hot rolling mills are hardened by surfacing operation by flux-cored wire ПП-Нп-35В9Х3СФ due to GOST 26101–84. The deposited layer has a high resistivity against abrasion, but its thermal endurance is comparatively low, therefore rollers surfaced by this type of wire often failed because of formation of fire crack network and spalling. It was established that the structure nonuniformity of the deposited metal can be decreased by introducing of titanium into the flux-cored wire. The effect of introducing titanium into flux-cored wire of the Fe–C–Si–Мn–Сr–W–V system on the properties of the deposited layer has been studied. It was shown that metal structure with the addition of titanium represents martensite formed within the boundaries of the former austenite grain, a small amount of residual austenite in the form of separate areas and thin layers of δ-ferrite. The microstructure of the samples contains a carbide network. An increase in the titanium content in the deposited layer contributes to a decrease in the size of the martensite needles, as well as the size of the former austenite grain. The microstructure of the samples contains medium-acicular and fine-acicular martensite. The size of the martensite needles varies from 2 to 9 microns. It was established that introduction of titanium in the composition of the flux-cored wire in an amount of 0.02–0.13% increases the hardness of the deposited layer and reduces the abrasion of the samples.
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