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Surface Hardening of Titanium by Using a Simplified Carbon and Nitrogen Diffusion Technique with Steel and Carbon Powders

机译:钢和碳粉的简化碳氮扩散技术对钛的表面硬化

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摘要

Commercially pure titanium plates were embedded in mixtures of steel and activated carbon powders and then heated at 1273 K for 3.6 ks in a nitrogen flow. During this simplified treatment, a Ti(C, N) layer with a thickness of approximately 10 um formed on the titanium surface. The surface hardness of the titanium plates coated with the Ti(C, N) layer was more than HV = 1000 regardless of the steel powder ratio in the mixture. Although a Ti(C, N) layer formed upon heat treatment with the activated carbon powder alone, addition of the steel powder led to an increase in the surface hardness and layer thickness. From X-ray diffraction results, Ti(C, N) began to form on the titanium plate heat-treated at 1073 K and became a complete layer at higher heating temperatures. Instead of activated carbon, the use of graphite with added alumina as a reliable anti-sintering agent had no negative effects on the formation of the Ti(C, N) layer.
机译:将商用纯钛板嵌入钢粉和活性炭粉的混合物中,然后在氮气流中以1273 K加热3.6 ks。在此简化处理过程中,在钛表面上形成了厚度约为10 um的Ti(C,N)层。不管混合物中钢粉的比例如何,涂有Ti(C,N)层的钛板的表面硬度均大于HV = 1000。尽管仅用活性炭粉末进行热处理就形成了Ti(C,N)层,但添加钢粉却导致了表面硬度和层厚度的增加。根据X射线衍射结果,在经过1073 K热处理的钛板上开始形成Ti(C,N),并在较高的加热温度下变成完整的层。代替活性炭,使用添加了氧化铝的石墨作为可靠的抗烧结剂对Ti(C,N)层的形成没有负面影响。

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