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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Investigations on friction and wear mechanisms of the PVD-TiAlN coated carbide in dry sliding against steels and cast iron
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Investigations on friction and wear mechanisms of the PVD-TiAlN coated carbide in dry sliding against steels and cast iron

机译:PVD-TiAlN涂层硬质合金在与钢和铸铁干式滑动中的摩擦磨损机理研究

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摘要

The tribological behaviour of the monolayer PVD-titanium aluminium nitride (TiAlN) coated carbide inserts in unidirectional dry sliding against steel and cast iron counterparts was investigated using the pin-on-disc standard test with varying sliding speeds and normal loads. Three different materials of various machinability rates were used as the counterparts, namely the normalised medium carbon steel C45 equivalent to AISI1045, austenitic stainless steel 1H18N9T equivalent to AISI 304 and gray cast iron EN-GJL-300 with flake-shaped graphite. A pin-on-disc device with round tool inserts was used to conduct friction and wear tests in which both the friction coefficient and the linear wear of the tribo-pairs were continuously recorded versus sliding distance. For the quantitative comparison of the wear resistance of the tribo-pairs tested the volumetric wear rate was selected. Light microscopy (LM), scanning electron microscopy (SEM) and X-ray microanalyses by EDAX were applied for observations of wear scars and wear products, and the identification of the predominant wear mechanisms which occurred. Some specific frictional behaviours and relevant wear mechanisms observed for both steels and cast iron sliding over thin TiAlN layer are highlighted and quantified. Moreover, the contact conditions, under which the TiAlN film can protect the carbide substrate are specified. It is concluded that for sliding materials with dominating severe adhesive wear, as for example for the couple TiAlN/stainless steel, the protective function of the TiAlN coating is not sufficient.
机译:使用针盘标准测试,研究了在滑动速度和法向载荷变化的情况下,单层PVD氮化钛铝(TiAlN)涂层硬质合金刀片在与钢和铸铁对应物进行单向干式滑动时的摩擦学行为。使用了三种具有不同切削率的不同材料,分别是相当于AISI1045的正火中碳C45,相当于AISI 304的奥氏体不锈钢1H18N9T和带有鳞片状石墨的灰口铸铁EN-GJL-300。使用带有圆形工具刀片的销盘式设备进行摩擦和磨损测试,其中摩擦系数和摩擦副的线性磨损相对于滑动距离的变化连续记录下来。为了定量比较摩擦副的耐磨性,选择了体积磨损率。 EDAX的光学显微镜(LM),扫描电子显微镜(SEM)和X射线显微分析用于观察磨损痕迹和磨损产物,并确定发生的主要磨损机理。突出并量化了在薄TiAlN层上滑动的钢和铸铁都观察到的一些特定的摩擦行为和相关的磨损机理。此外,规定了TiAlN膜可以保护碳化物基板的接触条件。结论是,对于具有严重的粘着磨损的滑动材料,例如对于TiAlN /不锈钢材料,TiAlN涂层的保护功能不足。

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