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Improving Accuracy of Powder Sintering-based SFF Processes by Metal Deposition from Nanoparticle Dispersion

机译:从纳米粒子分散体中沉积提高粉末烧结基SFF工艺的精度

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Solid Freeform Fabrication processes such as three-dimensional printing (3DP) and selective laser sintering (SLS) produce porous parts that must be densified. New steel infiltration methods can produce parts of standard alloy compositions with properties comparable to wrought materials. However, the infiltration process introduces dimensional errors due to both shrinkage and creep—particularly at the high temperatures required for steel infiltration. A post-processing method has been developed to reduce creep and shrinkage of porous metal skeletons. Tests have achieved over 90% reduction in creep and 50% reduction in shrinkage. In this method, metal is deposited into the porous part from a suspension of metallic nanoparticles. These particles density at low temperatures to reinforce the bonds and reduce stress concentrations that amplify creep deformation in untreated parts. After treatment, the reinforced parts can be densified by infiltration.
机译:固体自由形状制造工艺如三维印刷(3DP)和选择性激光烧结(SLS)产生必须致密化的多孔部件。新的钢制渗透方法可以生产具有与锻造材料相当的性能的标准合金组合物的部分。然而,渗透过程引起由于收缩和蠕变引起的尺寸误差 - 特别是在钢渗透所需的高温下。已经开发了一种后处理方法来减少多孔金属骨架的蠕变和收缩。测试已经实现了90%的蠕变减少和50%的收缩减少。在该方法中,将金属从金属纳米颗粒的悬浮液中沉积到多孔部分中。这些颗粒密度在低温下加强键合并减少扩增未处理部件中蠕变变形的应力浓度。处理后,可以通过渗透致密化加强部件。

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