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Hard Surface Layers by Pack Boriding and Gaseous Thermo-Reactive Deposition and Diffusion Treatments

机译:通过包装硼化和气态热反应沉积和扩散处理的硬表面层

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摘要

Thermo-reactive deposition and diffusion (TRD) and boriding are thermochemical processes that result in very high surface hardness by conversion of the surface into carbides/nitrides and borides, respectively. These treatments offer significant advantages in terms of hardness, adhesion, tribo-oxidation, and high wear resistance compared to other conventional surface hardening treatments. In this work, 4 different materials, ARMCO, AISI 409, Uddeholm ARNE® (AISI O1 equivalent), and VANADIS® 6 PM steel representing different classes of alloys, i.e., pure iron, stainless steel, and tool steels, were subjected to TRD (chromizing and titanizing) and boriding treatments. For the steels with low carbon content, chromizing results in surface alloying with chromium, i.e., formation of a (soft) “stainless” surface zone. Steels containing higher levels of carbon form chromium carbide (viz. CrC6, CrC) layers with hardnesses up to 1800 HV. Titanizing of ARNE tool steel results in a surface layer consisting of TiC with a hardness of approximately 4000 HV. Duplex treatments, where boriding is combined with subsequent (TRD) titanizing, result in formation of hard TiB2 on top of a thick layer of Fe-based borides. The obtained surface layers were characterized with X-ray diffraction, scanning electron microscopy, reflected light microscopy, and micro-indentation.
机译:热反应沉积和扩散(TRD)和硼化是热化学过程,通过将表面分别转换为碳化物/氮化物和硼化物,可导致非常高的表面硬度。与其他传统的表面硬化处理相比,这些处理在硬度,附着力,摩擦氧化和高耐磨性方面具有明显的优势。在这项工作中,对代表不同合金类别的4种不同材料,分别是纯铁,不锈钢和工具钢,进行了ARMCO,AISI 409,UddeholmARNE®(相当于AISI O1)和VANADIS®6 PM钢的TRD处理。 (铬化和钛化)和硼化处理。对于碳含量低的钢,渗铬会导致表面与铬合金化,即形成(软)“不锈钢”表面区域。碳含量较高的钢会形成硬度高达1800 HV的碳化铬(CrC6,CrC)层。对ARNE工具钢进行钛化处理后会形成由TiC组成的表面层,其硬度约为4000 HV。在将硼化与后续(TRD)钛化结合的双重处理中,会在厚厚的铁基硼化物层上形成硬TiB2。通过X射线衍射,扫描电子显微镜,反射光显微镜和微压痕对获得的表面层进行表征。

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