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Tribological behaviour of Si3N4-hBN ceramic materials against metal with different sliding speeds

机译:Si3N4-hBN陶瓷材料对不同滑动速度金属的摩擦学行为

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The tribological behaviours of Si3N4-hBN (the content of the hBN is 0%, 5%,10%,20% and 30%) composites sliding on metal under dry friction condition at different sliding speeds were investigated by using an MMW-1 type vertical universal friction and wear tester. Research shows that the friction coefficients of the sliding pairs represent a downward trend with the increase of the sliding speed. And the addition of hBN could effectively improve the tribological performance of the Si3N4-hBN/ASS tribocouple. Especially, for the SN10 (Si3N4-10%hBN)/ASS pair, the friction coefficient decreased from 0.69 at a sliding speed of 0.52 m/s to 0.51 at a sliding speed of 0.86 m/s, and continuously decreased to 0.12 at a speed of 1.73 m/s. However, the negative wear which closed to zero appeared on the SN10 pin mated with the ASS disc at a speed of 1.73 m/s. During the friction process, higher sliding speed provided a favourable condition for the chemical reaction between the worn surface of the friction pairs and the air. Meanwhile the surface analysis indicated that a surface film consisting of Fe2O3, SiO2 and B2O3 was formed on the worn surface of the SN10/ASS tribocouple also at a speed of 1.73 m/s. The surface film lubricated the worn surfaces and protected both of pin and disc from being further wore. Compared with Si3N4-hBN/ASS pairs, the tribological properties of Si3N4-hBN/45# pairs were poor under the same experimental conditions. (C) 2016 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:使用MMW-1型研究了在干摩擦条件下在金属上滑动的Si3N4-hBN(hBN的含量为0%,5%,10%,20%和30%)复合材料的摩擦学行为。立式万能摩擦磨损测试仪。研究表明,滑动副的摩擦系数随着滑动速度的增加呈下降趋势。加入hBN可以有效提高Si3N4-hBN / ASS摩擦副的摩擦学性能。尤其是,对于SN10(Si3N4-10%hBN)/ ASS对,摩擦系数从滑动速度为0.52 m / s时的0.69降低到滑动速度为0.86 m / s时的0.51,并在滑动速度为0.82 m / s时连续降低至0.12。速度为1.73 m / s。但是,与ASS盘配合的SN10销上以1.73 m / s的速度出现了接近零的负磨损。在摩擦过程中,较高的滑动速度为摩擦副的磨损表面与空气之间的化学反应提供了有利条件。同时,表面分析表明,在SN10 / ASS摩擦电偶的磨损表面上也以1.73 m / s的速度形成了由Fe2O3,SiO2和B2O3组成的表面膜。该表面膜润滑了磨损的表面并保护了销钉和圆盘免受进一步磨损。与Si3N4-hBN / ASS对相比,在相同的实验条件下,Si3N4-hBN / 45#对的摩擦学性能较差。 (C)2016 Elsevier Ltd和Techna Group S.r.l.版权所有。

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