耐腐蚀管道冷轧辊轧制工具的强化

Stolbovoy V. O., Srеbryansky G. O., Krivchik L. S., Khokhlova T.S., Pinchuk V. L.
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引用次数: 0

摘要

这项工作致力于一个热门的技术问题——提高耐腐蚀管道冷轧管工具的耐磨性,因为其成本高昂,工作条件困难。建议改进轧制工具的热处理技术,以便用4?5МФ1С和60С2?ФА钢生产耐腐蚀管道(心轴、辊、支撑带)。在等离子体技术实验室的改进装置“Bulat-6”中,两级真空电弧放电取代了通常的技术——回火回火、回火回火和随后的等离子体离子氮化。在扫描电子显微镜(SEM)上研究了这些钢的特殊样品在不同放大倍数下的微观结构。使用显微硬度计PMT-3测定它们的显微硬度。将传统处理后的试样显微硬度与所提出的显微硬度进行了比较。在工厂的工业试验中,直接研究了用于特殊薄壁耐腐蚀管道冷轧的实际工具(60С2ФA钢芯轴)的耐磨性。对离子等离子体氮化后氮化层REM微观结构的研究表明,氮化层中存在一个精细分散的非常强的ε相。由于其存在于表面层中,氮化部件的表面硬度由于在加热碳化物、氮化物、碳氮化物的过程中形成稳定而增加。钢材表面硬度高、耐磨性强、耐久性强、耐腐蚀性强。在工厂对心轴进行了额外的离子氮化测试,结果表明它们的稳定性提高了25-30%。还降低了管道制造的加工成本,提高了管道内表面的质量(耐腐蚀管道没有薄膜、切口和其他缺陷)。用二次硬化钢4Ф5MФ1С代替60С2ФФA钢制造轧辊和支撑杆,除了提高管道内表面的质量外,还将工具的稳定性提高了2.7-3倍。关键词:轧辊,支撑板条,芯棒,冷轧,热处理,离子氮化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strengthening of the tool for cold roller rolling of corrosion-resistant pipes
The work is devoted to a topical technical problem - to increase the wear resistance of pipe tools for cold roller rolling of corrosion-resistant pipes, due to its significant cost and difficult working conditions. It is proposed to improve the technology of heat treatment of rolled tools for the production of corrosion-resistant pipes (mandrels, rollers, support strips) from steels 4Х5МФ1С and 60С2ХФА. Instead of the usual technology - tempering with tempering, tempering with tempering and subsequent ionic nitriding in plasma of two-stage vacuum-arc discharge in a modified installation "Bulat-6" in the laboratory of plasma technology. The microstructure of special samples of these steels on a scanning electron microscope (SEM) at different magnifications was studied. Their microhardness was determined using a microhardness tester PMT-3. A comparison of the microhardness of the samples after traditional treatment and the proposed. The wear resistance of the actual tool (mandrels made of 60С2ХФA steel) for cold roller rolling of particularly thin-walled corrosion-resistant pipes was studied directly during industrial tests in the factory. Studies of the microstructure on the REM of the nitrided layer after ion-plasma nitriding revealed a finely dispersed very strong ε-phase. Due to its presence in the surface layer, the surface hardness of nitrided parts increases due to the formation of stable in the process of heating carbides, nitrides, carbonitrides. Steel acquires high hardness on the surface, high wear resistance, high endurance, corrosion resistance. Tests of mandrels in the factory, which were additionally subjected to ionic nitriding, showed an increase in their stability by 25-30%. Also reduced the cost of processing the manufacture of pipes and improved the quality of the inner surface of the pipes (absence of films, cuts and other defects of corrosion-resistant pipes). Replacement of steel 60С2ХФA with secondary hardening steel 4Х5MФ1С for the manufacture of rollers and support bars in addition to improving the quality of the inner surface of the pipes increased the stability of the tool by 2.7-3 times. Keywords: rollers, support laths, mandrels, cold rolling, heat treatment, ionic nitriding.
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