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Grinding of riblets with “beaver tooth” multi-layer tools

机译:用“海狸齿”多层工具研磨Riblets

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To reduce friction in turbo machinery components, riblets are induced on compressor blades or pump impellers. Here, the grinding process enables a higher productivity in machining of riblet structures compared to knurling, laser or milling operations. Usually, profiled grinding tools are used to create such structures inspired by sharkskin. Unfortunately, conventional grinding tools have to be dressed continuously to keep the desired profile in the circumferential surface. To avoid the time-consuming dressing process and to enable a self-sharpening effect, an innovative multi-layer tool concept is developed. The tool consists of two types of thin polyimide layers. The first type contains abrasives and the second is a support layer without abrasives. These layers are piled alternately in a special manufacturing process and act like a monolithic tool in grinding process.The aim of the investigations presented in this paper is to find an optimal parameter setting to produce riblet structures productively by using the self-sharpening effect. The optimal setting allows a grinding process without any dressing process by using a large part of the grinding tool volume. At first, the manufacturing process is focused to create clearly divided support and abrasive layers of the grinding tool. Furthermore, the investigation shows the relationship between grinding parameters and the setback of the supporting layer in the middle of the tool. This setback is important for the creation of riblet structures in the surface of AISI 420 workpieces.
机译:为了减少涡轮机械部件的摩擦,Riblets在压缩机叶片或泵叶轮上诱导。这里,与滚花,激光或铣削操作相比,研磨过程能够更高的Riblet结构的生产率。通常,轮廓化的研磨工具用于创建由鲨鱼天的激发的这种结构。遗憾的是,传统的研磨工具必须连续敷在圆周表面中保持所需的轮廓。为避免耗时的梳妆过程并实现自锐化效果,开发了一种创新的多层工具概念。该工具由两种类型的薄聚酰亚胺层组成。第一类型含有磨料,第二种是没有磨料的支撑层。这些层交替地在特殊的制造过程中堆叠,并类似于磨削过程中的单片工具。本文提出的调查的目的是找到最佳参数设置,以便通过使用自锐化效果生产Riblet结构。最佳设置允许使用大部分研磨工具体积而没有任何梳妆过程的研磨过程。首先,制造工艺集中于产生清晰的磨削工具的支撑和磨料层。此外,研究表明了研磨参数与工具中间支撑层的挫折之间的关系。该挫折对于在AISI 420工件的表面中创建Riblet结构非常重要。

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