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首页> 外文期刊>Bulletin of the Polish Academy of Sciences. Technical Sciences >The effect of sampling interval on the predictions of an asperity contact model of two-process surfaces
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The effect of sampling interval on the predictions of an asperity contact model of two-process surfaces

机译:采样间隔对双处理表面的粗糙接触模型预测的影响

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摘要

Contact of random machined two-process steel textures with a smooth, flat steel surface is discussed in this paper. Two-process surfaces were machined by vapour blasting followed by lapping. An elastic-plastic contact model was applied, assuming distributed radius of asperities. Calculation procedures allowed the mean surface separation, contact pressure, and area fraction to be computed as functions of sampling intervals. Parameters characterizing the summits important in contact mechanics were calculated for different sampling intervals. Plasticity index of two-process textures was calculated using the modified procedure. It was found that the influence of sampling interval on normal contact depended on the rough surface ability to plastic deformation. The use of a traditional method of calculation overestimated the plasticity index. Peaks from plateau surface region governed contact characteristics of two-process surfaces.
机译:本文讨论了随机加工的双工艺钢纹理与平滑,扁平钢表面的接触。 通过蒸汽喷射加工两种过程表面,然后研磨。 假设分布式粗糙的粗糙半径施加弹性塑料接触型号。 计算过程允许计算平均表面分离,接触压力和面积分数作为采样间隔的功能。 为不同的采样间隔计算表征在接触机械中重要的峰值的参数。 使用修改的程序计算了两种过程纹理的可塑性指数。 结果发现采样间隔对正常接触的影响依赖于塑性变形的粗糙表面能力。 使用传统的计算方法高估可塑性指数。 高原表面区域的峰值治理双工艺表面的接触特性。

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