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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Chemical contribution to friction behavior of sintered hexagonal boron nitride in water
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Chemical contribution to friction behavior of sintered hexagonal boron nitride in water

机译:化学成分对六方氮化硼烧结体在水中摩擦行为的影响

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Sliding characteristic5 of sintered hexagonal boron nitride (hBN) are investigated in water. The friction coefficient of sintered hBN/hBN decreases to 0.06 in distilled water, whereas it is 0.23-0.25 in dry air. As the result of tribochemical reactions, ammonia was formed during sliding in water, and its amount was determined quantitatively for tribochemical reactions and the wear mechanism investigation. The percentage of NH3/total worn nitrogen was observed to be as high as 20% in regions of low wear rate, while it was around 2% in almost all of the tested regions of hBN. The percentage chemical wear was proposed as an index to distinguish the dominant wear process: chemical or mechanical wear process. On the slid surface, X-ray diffraction (XRD) analysis revealed that (002) crystal orientation of hBN was dominant, which corresponds to the sliding plane of the hBN film transferred onto the steel surface. The sintered hBN with CaO additive (hBN-CaO) had a higher frictional force and a lower specific wear rate than sintered pure hBN (p-hBN). Surface analysis of hBN-CaO revealed that Ca(OH){sub}2 condensed on the slid surface and a Ca(OH){sub}2 film covered hBN to reduce ammonia formation as well as the chemical wear ratio of hBN-CaO. The minor component CaO additive was proven to take an important role in the characteristics of hBN in water.
机译:研究了六方氮化硼(hBN)在水中的滑动特性。在蒸馏水中,烧结hBN / hBN的摩擦系数降至0.06,而在干燥空气中则为0.23-0.25。摩擦化学反应的结果是,在水中滑动时会生成氨,并定量确定其含量以用于摩擦化学反应和磨损机理研究。在磨损率低的区域中,NH3 /总磨损氮的百分比高达20%,而在几乎所有的hBN测试区域中,NH3 /总磨损氮的百分比约为2%。提出了化学磨损百分比作为区分主要磨损过程的指标:化学或机械磨损过程。在滑动表面上,X射线衍射(XRD)分析表明hBN的(002)晶体取向是主要的,这对应于hBN膜转移到钢表面上的滑动平面。含CaO添加剂的烧结hBN(hBN-CaO)比纯hBN烧结(p-hBN)具有更高的摩擦力和更低的比磨损率。 hBN-CaO的表面分析表明,Ca(OH){sub} 2凝结在滑动表面上,并且Ca(OH){sub} 2膜覆盖hBN,以减少氨的形成以及hBN-CaO的化学磨损率。事实证明,少量的CaO添加剂对水中hBN的特性起着重要的作用。

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