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首页> 外文期刊>Journal of Thermal Spray Technology >Cold Spray Deposition of Freestanding Inconel Samples and Comparative Analysis with Selective Laser Melting
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Cold Spray Deposition of Freestanding Inconel Samples and Comparative Analysis with Selective Laser Melting

机译:独立式Inconel样品的冷喷雾沉积和选择性激光熔化的比较分析

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摘要

Cold spray offers the possibility of obtaining almost zero-porosity buildups with no theoretical limit to the thickness. Moreover, cold spray can eliminate particle melting, evaporation, crystallization, grain growth, unwanted oxidation, undesirable phases and thermally induced tensile residual stresses. Such characteristics can boost its potential to be used as an additive manufacturing technique. Indeed, deposition via cold spray is recently finding its path toward fabrication of freeform components since it can address the common challenges of powder-bed additive manufacturing techniques including major size constraints, deposition rate limitations and high process temperature. Herein, we prepared nickel-based superalloy Inconel 718 samples with cold spray technique and compared them with similar samples fabricated by selective laser melting method. The samples fabricated using both methods were characterized in terms of mechanical strength, microstructural and porosity characteristics, Vickers microhardness and residual stresses distribution. Different heat treatment cycles were applied to the coldsprayed samples in order to enhance their mechanical characteristics. The obtained data confirm that cold spray technique can be used as a complementary additive manufacturing method for fabrication of high-quality freestanding components where higher deposition rate, larger final size and lower fabrication temperatures are desired.
机译:冷喷雾提供几乎零孔隙度堆积的可能性,没有理论限制到厚度。此外,冷喷雾可消除颗粒熔化,蒸发,结晶,晶粒生长,不需要的氧化,不希望的阶段和热诱导的拉伸残余应力。这些特性可以提高其用作添加剂制造技术的电位。实际上,通过冷喷雾沉积最近发现其朝向自由形状成分的制造路径,因为它可以解决粉末床添加剂制造技术的共同挑战,包括主尺寸约束,沉积速率限制和高过程温度。在此,我们使用冷喷涂技术制备镍基超合金Inconel 718样品,并将其与通过选择性激光熔化方法制造的类似样品进行比较。使用两种方法制造的样品在机械强度,微观结构和孔隙率特征方面表征,VICKERS显微硬度和残余应力分布。将不同的热处理循环施加到冷水喷雾样品中以提高其机械特性。所获得的数据确认冷喷涂技术可用作制造高质量独立组分的互补添加剂制造方法,其中需要更高的沉积速率,更大的最终尺寸和更低的制造温度。

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