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Novel Filter Designs that Deliver Filtration Benefits Produced by Metal Additive Manufacturing

机译:新型过滤器设计可提供金属增材制造所带来的过滤优势

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Optimisation of fluid flow through a filter and minimising turbulence and pressure drop can lead to a more efficient filtration system. Traditionally, metal filters have been manufactured using perforated plate, mesh and wedge wire. Additive Manufacturing (AM) technology can be used to produce filters whose geometries cannot be manufactured using more conventional manufacturing technologies. Three novel filter geometries were designed for fabrication using AM to reflect three traditional filter types. A filter design, with holes in-line to the direction of fluid flow, which can be directly compared to perforated plate, was produced using AM technology with 316L Stainless Steel (SS316L) as the build material. When compared to conventional filters of similar aperture size, the pressure drop across the AM filter with increasing flow rates was significantly less compared to the conventionally manufactured filter. Thus, less pumping energy is required for the in-line hole AM filter. The AM filter designed to be representative of a mesh-based filter, was created as a single part with an integrated support and filter section. This filter has a significantly increased open area and increased flow rate compared to its comparable mesh filter. The AM filter representing that fabricated from wedge wire, overcomes conventional fabrication issues and is an advance towards leaner manufacturing. AM technology has enabled the production of innovative, geometrically complex, 3D filter designs that have significant increases in filtration efficiency. Industrial application of these filters will have a positive impact in reducing the carbon footprint of end users.
机译:优化通过过滤器的流体流量并最大程度减少湍流和压降,可以提高过滤系统的效率。传统上,金属过滤器是使用穿孔的板,网和楔形金属丝制造的。增材制造(AM)技术可用于生产无法使用更常规的制造技术制造其几何形状的过滤器。设计了三种新颖的过滤器几何形状,以使用AM进行制造,以反映三种传统的过滤器类型。使用AM技术以316L不锈钢(SS316L)作为建筑材料,生产出一种过滤器设计,该设计具有与流体流动方向成一直线的孔,可以将其直接与多孔板进行比较。当与具有类似孔径的传统过滤器相比时,与传统制造的过滤器相比,随着流速的增加,整个AM过滤器的压降显着减小。因此,在线孔AM过滤器所需的泵送能量更少。被设计为代表基于网格的过滤器的AM过滤器是作为具有集成的支撑和过滤器部分的单个零件而创建的。与同类过滤器相比,该过滤器的开口面积显着增加,流速增加。代表由楔形金属丝制成的AM滤波器克服了传统的制造问题,是朝着更精简制造的方向发展。 AM技术使得能够生产几何形状复杂的创新3D滤波器设计,从而显着提高了过滤效率。这些过滤器的工业应用将对减少最终用户的碳足迹产生积极影响。

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