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首页> 外文期刊>Tribologia >STEEL WEAR RESISTANCE 100CrMnSi6-4 AFTER ABLATION LASER TEXTURE
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STEEL WEAR RESISTANCE 100CrMnSi6-4 AFTER ABLATION LASER TEXTURE

机译:钢磨损电阻100crmnsi6-4激光纹理后

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摘要

We analysed the results of tribological laboratory model tests, including measurements of temperature, friction force, and wear, in the model friction for samples made of 100CrMnSi6-4 steel. Measurements were made using a linear method on selected samples after conventional quenching and after laser texturing. Samples in the form of discs cooperated in combination with the cooperating element in the form of spheres made of bearing steel conventionally hardened. Top layers of samples in the form of discs were subjected to a conventional heat treatment (hardening), in order to produce micro-reservoirs in the form of spherical sphere was subjected to ablative laser micro-treatment and then conventional mechanical processing. Ablative laser micromachining was performed using Nd:YAG laser. The "ball-on-disc" method was used based on a Tribometer T-11. To lubricate of combination, we applied LT-43 lithium bearing grease. It was found that the best results, in terms of increasing the resistance to wear by friction, was obtained in a model combination in which samples after ablative laser texturing (degree of surface coverage micro-reservoirs approx. 5%) cooperated with conventionally hardened steel spheres.
机译:我们分析了摩擦学实验室模型试验的结果,包括温度,摩擦力和磨损的测量,在模型摩擦中,用于由100crmnsi6-4钢制成的样品。在常规淬火之后和激光纹理之后,在选定样品上使用线性方法进行测量。以常规硬化的轴承钢制成的球体形式以盘式配合的样品。对盘形式的样品的顶层进行常规热处理(硬化),以便在球形球体的形式产生微储存,经受烧蚀激光微处理,然后常规机械加工。使用ND:YAG激光进行烧蚀激光微机械。基于摩擦计T-11使用“球形盘”方法。为了润滑组合,我们施加了LT-43锂轴承润滑脂。结果发现,在增加摩擦磨损的耐磨性方面,在模型组合中获得了最佳结果,其中在烧蚀激光纹理(表面覆盖率的程度覆盖微容器的程度约为5%)的模型组合中获得了与常规硬化钢合作的样品球形。

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