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Mechanical and wear properties on in-situ directly nitrided sintered Al-AlN composite material

机译:原位直接氮化烧结Al-AlN复合材料的力学性能和磨损性能

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In-Situ directly nitrided and sintered Al-AlN composite material has been developed by utilizing a chemical reaction between aluminum and nitrogen gas at temperatures below 823K. It shows superior mechanical properties to those of conventionallypremixed and sintered Al-AlN composite. It is primarily due to good bonding of the in-situ formed AlN to the matrix. The advanced P/M aluminum alloy shows an extremely low friction coefficient, such as 0.004 to 0.008 under oil lubrication. It also hasexcellent wear resistance and anti-seizure property compared to I/M aluminum alloys with hard anodized plating. This is because micro oil grooves existing along in-situ formed AlN seems to work as oil pits and make it easy to keep hydraulic lubricationwith thin oil films on the sliding surface.
机译:通过利用低于823K的温度下的铝与氮气之间的化学反应,已经开发出了原位直接氮化和烧结的Al-AlN复合材料。它显示出优于常规预混合和烧结Al-AlN复合材料的机械性能。这主要归因于原位形成的AlN与基体的良好粘合。先进的P / M铝合金显示出极低的摩擦系数,例如在油润滑下为0.004至0.008。与具有硬质阳极电镀的I / M铝合金相比,它还具有出色的耐磨性和抗咬合性。这是因为沿原位形成的AlN存在的微油槽似乎起着油坑的作用,并且易于在滑动面上形成薄油膜的情况下保持液压润滑。

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