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Research on Fractal Feature of Wear Surface Topography Based on Gray Images of Rubber Surfaces

机译:基于橡胶表面灰色图像的磨损表面形貌分形特征研究

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摘要

Abrasion performance is an important index for evaluating the performance of rubber products. The surface morphologies of rubber composites under different temperatures and loads were characterized based on fractal theory. The abrasion performance and characteristics of the surface morphology of rubber were investigated. Images of surface morphology of rubber samples were collected by a 3D measuring laser microscope and converted to black-and-white binary images. Based on the multifractal model, the relationship between the experimental conditions and the characteristic parameters of the abrasion surfaces, such as the width of multifractal spectrum Δα , the change in the multifractal spectrum Δf ( α ), wave length, wave height and the root mean square deviation of the outline were quantitatively analyzed. The results show that abrasion volume increased as the temperature increased. Similarly, abrasion volume increased as load increased. As the temperature or the load increases, the abrasion of the rubber surface increases in intensity and volume, the abrasion surface becomes more uneven, and the abrasive grain becomes more complex. The characteristic parameters, such as the wave length and wave height of the abrasive grain, the arithmetic mean deviation of the outline, the root mean square deviation of the outline and the 3D arithmetic mean deviation, increase in certain regularity.
机译:磨损性能是评估橡胶产品性能的重要指标。基于分形理论,表征了不同温度和载荷下的橡胶复合材料的表面形态。研究了橡胶表面形态的磨损性能和特征。通过3D测量激光显微镜收集橡胶样品的表面形态的图像,并转换为黑白二进制图像。基于多法模式,实验条件与磨损表面的特征参数之间的关系,如多重谱Δα的宽度,多重分裂ΔF(α)的变化,波长,波高和根部平均值大纲的平方偏差被定量分析。结果表明,随着温度的增加,磨损量增加。类似地,随着负荷增加增加,磨损量增加。随着温度或负载的增加,橡胶表面的磨损强度和体积增加,磨损表面变得更加不均匀,并且研磨颗粒变得更加复杂。特征参数,例如研磨晶的波长和波长,算术平均偏差的轮廓,均线的均线偏差和3D算术平均偏差,增加了一定规则性。

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