A Testing Investigation of Wear Behaviour for a Rail Steel
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摘要: 在實驗室條件下用圓盤試樣模擬了鋼軌的接觸條件。研究了滑差和接觸應力對珠光體軌鋼磨損行為的影響。通過滾磨表面下掃描電鏡觀察及測試,分析了磨損過程中的磨損形式及其相互作用機理。結果表明,磨損速率隨滑差而增大,滑差增至4%時,達到極限摩擦系數。磨損量與滑動摩擦功呈線性關系,與滑動距離成正比。干磨條件下,表層組織發生強烈的塑性形變,使組織沿平行于表面層狀分布。粘附磨損和疲勞磨損是軌鋼的主要磨損形式。Abstract: The contact condition of rail was simulated with twin-disk in laboratory. Effects of creepages and contact stresses on wear behaviours in pearlitic rail steel have been studied, based on the appearance observations and surveying below surface by SEM, the wear forms and their mutual effects in wear process have been approached. It is concluded that wear rates increase with both creepage level and contact pressure. The friction coefficients increase with creepages and when creepages rise to 4%, the limiting friction coefficient is reached. Mass loss is linear with sliding friction works and in proportion to sliding distances. Microstructures below surface show intense plastic deformation in dry wear and lamellarly distribute aling the direction of paralleled with surface. Adhesive wear and surface-fatigue wear are the two major wear forms in rail steel.
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Key words:
- rail steel /
- wear /
- fatigue wear /
- adhesive wear /
- sticking-wears /
- wears-rates
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