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Optimization of the fine structure and flow behavior of anisotropic porous filters, synthesized by SLS method

机译:SLS法合成的各向异性多孔滤池的细微结构和流动特性的优化

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The main goal of the work was optimization of the phase and porous fine structures of filter elements and subsequent laser synthesis by the method layer-by-layer Selective Laser Sintering (SLS) of functional devices, exploration of their properties and requirements of synthesis. Common methodical approaches are developed by the searching optimal requirements of layer-by-layer synthesis usable to different powder compositions and concrete guidelines (conditions of sintering, powder composition, etc.) for SLS of filter elements (including anisotropic) from metal-polymer powder mixture - brass + polycarbonate {PC} = 6:1. As a result of numerical simulations it designed an original graph -numerical procedure and represented a computer program for definition of flow filter performances, as homogeneous (isotropic) as heterogeneous (anisotropic), having the cylindrical shape. Calculation of flow behavior for anisotropic filter elements allows predicting their future applications and managing its.
机译:这项工作的主要目的是通过功能器件的逐层选择性激光烧结(SLS)方法优化过滤器元件的相和多孔微结构,并随后进行激光合成,探索其性质和合成要求。通过寻找适用于不同粉末成分的逐层合成的最佳要求以及金属聚合物粉末中过滤元件(包括各向异性)的SLS的具体准则(烧结条件,粉末成分等),开发出了通用的方法学方法。混合物-黄铜+聚碳酸酯{PC} = 6:1。作为数值模拟的结果,它设计了一个原始的图形-数值程序,并代表了一个计算机程序,用于定义圆柱形状的均质(各向同性)为异质(各向异性)的流量过滤器性能。各向异性过滤器元件的流动行为的计算允许预测其未来的应用并对其进行管理。

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