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A study on graphite extrusion phenomenon under the sliding wear response of cast iron using microindentation and microscratch techniques

机译:利用微压痕和微划痕技术研究铸铁滑动磨损响应下的石墨挤压现象

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摘要

This study focuses on the graphite flakes extrusion mechanism during microindenting and microscratching of cast iron. Observations on the graphite response under abrasive conditions revealed that the matrix deformation which is occurred during a sliding wear condition could have a significant influence on its lubricating performance. Simple microindentation and microscratch tests were conducted to explore the lamellar graphite contribution to tribofilm formation under abrasive wear conditions. The results obtained showed that induced plastic deformation which developed adjacent to the graphite compressed the lamellas and in turn resulting in extrusion of the graphite from its natural position. Further investigations on both indentation and scratch tests indicated that, surprisingly, the graphite began to be fractured and extruded from the centre of graphite lamellas, irrespective of the lamella size. Additionally, a mechanism was proposed to explain the self-lubricating and the extrusion behaviour of the lamellar graphite as a result of indentation.
机译:这项研究的重点是在铸铁的微压痕和微划痕过程中石墨鳞片的挤压机理。在磨蚀条件下对石墨响应的观察表明,在滑动磨损条件下发生的基体变形可能对其润滑性能产生重大影响。进行了简单的微压痕和微划痕测试,以探索层状石墨在磨料磨损条件下对摩擦膜形成的贡献。得到的结果表明,在石墨附近产生的诱发塑性变形压缩了薄片,进而导致石墨从其自然位置挤出。对压痕和划痕测试的进一步研究表明,令人惊讶的是,石墨开始破裂并从石墨薄片的中心挤出,而与薄片的尺寸无关。另外,提出了一种机制来解释由于压痕导致的层状石墨的自润滑和挤出行为。

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