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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Contact fatigue failure evaluation of post-treated WC-NiCrBSi functionally graded thermal spray coatings
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Contact fatigue failure evaluation of post-treated WC-NiCrBSi functionally graded thermal spray coatings

机译:后处理的WC-NiCrBSi功能梯度热喷涂涂层的接触疲劳失效评估

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摘要

Functionally graded thermal spray coatings applied to industrial components, which are subjected to contact fatigue or repeated impact loading, can reduce components weight and internal stresses whilst improving the adhesive strength to combat surface and sub-surface crack propagation. However, defects within the coating microstructure, which cannot be removed by the functionally graded approach, can compromise components reliability in high stress tribological applications. Post-treatments such as vacuum heating and Hot Isostatic Pressing (HIPing) have been shown in scientific studies to improve the coating microstructure, however, the influence of post-treatment on thermal spray coatings in rolling/sliding contacts have been seldom reported. This paper reports the rolling contact fatigue (RCF) analysis of functionally graded WC-NiCrBSi coatings deposited by a JP5000 system and subjected to post-treatment. HIPing was carried out at two different furnace temperatures of 850 and 1200℃, whilst vacuum heating was performed at the elevated temperature of 1200℃. The rate of heating and cooling was kept constant at 4℃/min. RCF tests were conducted using a modified four-ball machine under various tribological conditions of contact stress and configuration, in both full film and mixed elasto-hydrodynamic lubrication (EHL). Test results reveal that the performance of coatings was highly dependent on the changes within the coating microstructure. Coatings HIPed at 1200℃ displayed relatively improved RCF performance over the as-sprayed coatings at stress levels of 2 and 2.7 GPa in full film lubrication. Improvement in RCF performance was attributed to the densification and homogeneity within the coating microstructure.
机译:应用于工业组件的功能分级的热喷涂涂料会遭受接触疲劳或反复的冲击载荷,可以减轻组件的重量和内部应力,同时提高粘合强度,以抵抗表面和亚表面裂纹的蔓延。但是,涂层微观结构中的缺陷(无法通过功能分级方法消除)会损害高应力摩擦学应用中的组件可靠性。科学研究中已经显示了诸如真空加热和热等静压(HIPing)的后处理可以改善涂层的微观结构,但是,很少有报道后处理对滚动/滑动接触中的热喷涂涂层的影响。本文报告了由JP5000系统沉积并经过后处理的功能梯度WC-NiCrBSi涂层的滚动接触疲劳(RCF)分析。在两个不同的炉温850和1200℃下进行HIPing,而在1200℃的高温下进行真空加热。加热和冷却速率保持恒定在4℃/ min。 RCF测试是使用改良的四球机在各种摩擦条件下的接触应力和构造的全膜和混合弹性流体动力润滑(EHL)中进行的。测试结果表明,涂​​层的性能高度依赖于涂层微观结构的变化。在全膜润滑条件下,在2和2.7 GPa的应力水平下,在1200℃时HIP涂层比R喷涂涂层具有更高的RCF性能。 RCF性能的提高归因于涂层微结构内的致密化和均匀性。

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