Development of flux-cored wire of Fe – C – Si – Mn – Cr – W – V system with additives of carbon-fluorine-containing material and titanium

A. A. Usol’tsev, N. A. Kozyrev, L. P. Bashchenko, R. E. Kryukov, A. V. Zhukov
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Abstract

The paper considers research of quality of the electric arc coating obtained using flux-cored wire of the Fe – C – Si – Mn – Cr – W – V system with additives of carbon-fluorine-containing material and titanium. The formation of an electric arc coating was carried out using an automatic arc welding machine ASAW-1250 with a new chromium-containing flux-cored wire on plates made of St3 steel. To exclude mixing of the deposited metal with the substrate steel, multilayer surfacing was conducted. The surfacing mode was calculated and refined experimentally. The authors studied the composition and properties of the surface of the electric arc coating after surfacing. As a substitute for amorphous carbon they used a carbon-fluorine-containing material (dust of gas purification of aluminum production). Surfacing was carried out under a flux made from slag produced by silicomanganese with a high content of sulfur. A regression analysis of influence of the deposited layer’s chemical composition on its hardness and wear rate was carried out and mathematical models of the investigated performance characteristics of the electric arc coating were obtained. With an increase in the content of chromium, tungsten, carbon and silicon, hardness of the deposited metal and its resistance to abrasive wear increase. The results of the conducted research make it possible to develop measures ensuring the required level of performance characteristics of the electric arc coating and can be used to make a forecast of hardness of the deposited layer and its wear resistance when the chemical composition of the metal changes, to predict the operational resistance of rolling rolls deposited with wires of the PP-Np-35V9Kh3SF type. Mathematical models of hardness of the deposited layer and its wear resistance help to clarify the mechanism of hardening and formation of protective properties of the surface layers of rolling rolls by means of electric arc coatings deposited with flux-cored wires.
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含碳氟材料和钛添加剂Fe - C - Si - Mn - Cr - W - V体系药芯焊丝的研制
本文对含碳氟材料和钛的Fe - C - Si - Mn - Cr - W - V系药芯焊丝电弧涂层的质量进行了研究。用新型含铬药芯焊丝在St3钢板上用ASAW-1250自动弧焊机形成电弧镀层。为了防止沉积金属与基体钢混合,进行了多层堆焊。通过实验对堆焊方式进行了计算和细化。研究了堆焊后电弧涂层表面的成分和性能。作为无定形碳的替代品,他们使用了一种含碳氟的材料(铝生产的气体净化粉尘)。堆焊采用含硫高的硅锰渣为熔剂进行。对镀层化学成分对镀层硬度和磨损率的影响进行了回归分析,建立了电弧镀层性能特征的数学模型。随着铬、钨、碳、硅含量的增加,沉积金属的硬度和耐磨性增加。所进行的研究结果使制定确保电弧镀层性能特征所需水平的措施成为可能,并可用于预测金属化学成分变化时沉积层的硬度及其耐磨性,预测PP-Np-35V9Kh3SF型焊丝沉积轧辊的操作阻力。建立了沉积层硬度及其耐磨性的数学模型,有助于阐明药芯焊丝电弧镀层在轧辊表面硬化和防护性能形成的机理。
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来源期刊
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya Materials Science-Materials Science (miscellaneous)
CiteScore
0.90
自引率
0.00%
发文量
81
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