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首页> 外文期刊>Journal of Mechanical Engineering >The Influence of Machining Parameters on the Surface Porosity of a Closed-Cell Aluminium Foam
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The Influence of Machining Parameters on the Surface Porosity of a Closed-Cell Aluminium Foam

机译:加工参数对闭孔铝泡沫表面孔隙率的影响

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Aluminium foam elements foamed into moulds, have a porous core, surrounded by a thin layer of non-porous outer surface. This layer affects the homogeneity and mechanical properties of the element significantly. To produce functional elements, the foams can be machined to a desired end shape. Machining deforms the surface structure, which results in a reduction of strength properties. This article describes an experimental approach to determine the effects of machining parameters on the surface porosity of closed-cell aluminium foam samples The samples were machined by incremental forming and friction rolling with precisely defined processing parameters (deformation depth, feed rate and spindle speed). High-resolution digital photos of the treated surfaces were taken and analysed using image segmentation with a multispectral threshold algorithm. The change of surface porosity was calculated for each sample, and the influence of the selected machining parameters was determined by the use of response surface methodology. The optimal machining parameters are presented.
机译:铝泡沫元素发泡成模具,具有多孔芯,被薄层的无孔外表面包围。该层显着影响元件的均匀性和机械性能。为了生产功能元件,可以将泡沫加工成所需的末端形状。加工变形表面结构,导致强度性能的降低。本文介绍了确定加工参数对闭孔铝泡沫样品的表面孔隙率的实验方法,采用增量成形和摩擦轧制,具有精确定义的处理参数(变形深度,进料速率和主轴速度)加工样品。使用具有多光谱阈值算法的图像分割进行处理和分析处理过的表面的高分辨率数码照片。计算每个样品的表面孔隙率的变化,并且通过使用响应面方法确定所选择的加工参数的影响。提出了最佳加工参数。

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