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Control of carbon content in WC-Co hardmetal by heat treatment in reducing atmospheres containing methane.

机译:通过在含有甲烷的还原性气氛中进行热处理来控制WC-Co硬质合金中的碳含量。

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摘要

Pressed WC-Co hardmetal compacts of two different compositions, 6 and 10 wt.% Co, were heat treated under flowing atmospheres of nitrogen, hydrogen and methane at temperatures from 500 to 900 °C prior to sintering under argon. Microstructural examination showed excessive carburisation up to 2.5 mm into the compacts with regions most exposed to heat treatment atmospheres showing greatest carburisation. η-phase was present in the 6 wt.% Co samples heat treated at low temperatures without methane but was not present with heat treatment temperatures of 700 °C or above with methane present. The hardness of both materials was significantly lower in highly carburised regions, highlighting the need for careful control of heat treatment parameters.
机译:在氮气,氢气和甲烷的流动气氛下,在500至900°C的温度下,对两种不同成分的压制WC-Co硬质合金压块(Co含量为6和10 wt%)进行热处理,然后在氩气下烧结。显微组织检查显示,压坯中的渗碳量高达2.5毫米,而暴露于热处理气氛的区域则表现出最大的渗碳。在6%(重量)的Co样品中,在没有甲烷的情况下进行低温热处理的过程中存在η相,但是在700°C或更高的热处理温度下(存在甲烷的情况下)不存在η相。在高度渗碳区域,两种材料的硬度均显着降低,这突出表明需要仔细控制热处理参数。

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