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Load bearing capacity of bronze, iron and iron-nickel powder composites containing fullerene-like WS{sub}2 nanoparticles

机译:含富勒烯状WS {sub} 2纳米粒子的青铜,铁和铁镍粉末复合材料的承载能力

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In the past few years, inorganic fullerene-like (e.g. IF) supramolecules of metal dichalcogenide MX{sub}2 (M=Mo, W, etc.; X=S, Se), materials with structures closely related to (nested) carbon fullerenes and nanotubes have been synthesized. Recent experiments showed that IF possess lubricating properties superior to those of commercially available layered solid lubricant (2H-WS{sub}2 polytype) in a wide range of operating conditions. It was shown before that the impregnation of a small amount of such nanoparticles into porous bronze matrix largely improve the tribological properties of bronze-steel contact pairs. In the present work, the effect of the PV (pressure-velocity) parameter on the transition to seizure for powdered bronze-graphite, iron-graphite and iron-nickel-graphite composites impregnated 2H and IF lubricant has been studied. The tribological tests were performed using a ring-block tester at loads of 150-1200 N and sliding speeds from 0.5 to 1.7 m/s. It was found that impregnation of IF into the pores improves the tribological properties of the powdered composites in comparison to 2H-WS{sub}2 solid lubricant. Furthermore, it was established that the impregnation of oil together with the IF nanoparticles allows to provide very high load bearing capacity of the powdered materials. It is suggested that the transition to seizure occurs when the wear debrises accumulate in the pores on the surface. This process practically blocks the surface pores and limits the supply of the solid lubricant particles to the contact surface. The main advantage of the IF nanoparticles is attributed to: (a) slow release and supply of nanoparticles from the open pores to the surface; (b) sliding/rolling of the IF between the rubbing surfaces; and (c) prevention of the accumulation of the agglomerated wear particles in the pores. The model of third body was used in order to explain the effect of the wear particles, oil and solid lubricant particles on the friction and wear behavior of powdered composites.
机译:在过去的几年中,金属二卤化金属MX {sub} 2(M = Mo,W等; X = S,Se)等无机富勒烯状(如IF)超分子,其结构与(嵌套)碳密切相关已经合成了富勒烯和纳米管。最近的实验表明,IF在各种工作条件下的润滑性能均优于市售的层状固体润滑剂(2H-WS {sub} 2多型)。之前已经表明,将少量此类纳米粒子浸渍到多孔青铜基体中,可以大大改善青铜-钢接触对的摩擦学性能。在目前的工作中,研究了PV(压力-速度)参数对浸渍了2H和IF润滑剂的粉状青铜-石墨,铁-石墨和铁-镍-石墨复合材料的转变为咬合的影响。摩擦测试是使用环形测试仪在150-1200 N的载荷下以及从0.5到1.7 m / s的滑动速度下进行的。已经发现,与2H-WS {sub} 2固体润滑剂相比,将IF浸渍到孔中可以改善粉末状复合材料的摩擦学性能。此外,已经确定,油与IF纳米颗粒的浸渍允许提供粉末材料的非常高的承载能力。建议当磨损碎屑堆积在表面的孔中时,发生向咬合的过渡。该过程实际上堵塞了表面孔并限制了固体润滑剂颗粒向接触表面的供应。 IF纳米颗粒的主要优点归因于:(a)纳米颗粒从开放的孔中缓慢释放和供应到表面; (b)摩擦面之间的中频滑动/滚动; (c)防止聚集的磨粒在孔中积聚。为了说明粉状复合材料的磨损颗粒,油和固体润滑剂颗粒对摩擦和磨损行为的影响,使用了第三体模型。

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