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A new technology in surface finishing: Fluidized bed machining (FBM) of aluminium alloys

机译:表面精加工的新技术:铝合金的流化床加工(FBM)

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This paper deals with the definition of a new finishing process named fluidized bed machining (FBM). Material is removed from the workpiece by an abrasive solid emulsion and air flowing through all the equipment, scratching the surface to be finished. This process is able to produce an accurate surface finishing both on areas inaccessible to traditional methods and complex passages. The application of FBM to sheets and complex shaped components, made from two aluminum alloys, AA 2024 O and AA 2024 T3, with a widespread diffusion in several industrial sectors has been investigated. Experimental tests were performed with the aim of studying mass removal, evolution of surface topography, and process efficiency in terms of improvements in average roughness. The results of experimental tests showed that the surface profile generated and material removal were functions of the processing time, mesh size, type of abrasive, flow speed applied. The results revealed that the efficiency of the process is strongly linked to the mechanical properties of the metal treated. Furthermore, from the surface texture examination, it followed that this technique guarantees good surface finishing without influencing closest geometrical tolerances and with a rate of surface generation for ductile materials being economically acceptable.
机译:本文讨论了一种称为流化床加工(FBM)的新精加工工艺的定义。通过研磨性固体乳液和空气流经所有设备将材料从工件上去除,从而刮伤了待加工表面。该工艺能够在传统方法难以到达的区域和复杂通道上产生准确的表面光洁度。已经研究了将FBM应用于由两种铝合金AA 2024 O和AA 2024 T3制成的板材和复杂形状的零件,并在多个工业领域中广泛使用。进行实验测试的目的是研究质量去除,表面形貌的演变以及就平均粗糙度的改善而言的工艺效率。实验测试结果表明,产生的表面轮廓和材料去除是加工时间,筛孔尺寸,磨料类型,所施加流速的函数。结果表明,该过程的效率与所处理金属的机械性能密切相关。此外,从表面纹理检查来看,该技术可确保良好的表面光洁度,而不会影响最接近的几何公差,并且延展性材料的表面生成速率在经济上是可以接受的。

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