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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Surface Modification of Additively Manufactured 18% Nickel Maraging Steel by Ultrasonic Vibration-Assisted Ball Burnishing
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Surface Modification of Additively Manufactured 18% Nickel Maraging Steel by Ultrasonic Vibration-Assisted Ball Burnishing

机译:通过超声波振动辅助球抛光表面改性18%的18%镍越镍钢

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摘要

The scope of this research is to characterize and optimize the vibration-assisted ball burnishing of additively manufactured 18% Nickel Maraging steel for tooling applications. We evaluate the suitability of vibration-assisted ball burnishing as an alternative method to post-process additively manufactured tool steel. To do so, we assessed a single pass post-processing technique to enhance surface roughness, surface micro-hardness, and residual stress state. Results show that ultrasonic burnishing after age hardening functionalizes additively manufactured surfaces for tooling applications creating a beneficial compressive residual stress state on the surface. The surface micro-hardness (HV1) varied between 503 and 630 HV1, and the average surface roughness (Ra) varied between 1.31 and 0.14 mu m, depending on process parameters with a maximum productivity rate of 41.66 cm(2)/min making it an alternative approach to functionalize additively manufactured tool components.
机译:本研究的范围是表征和优化振动辅助球抛光的橡皮辅助球抛光,用于加工应用。 我们评估振动辅助球抛光作为替代方法的振动辅助球抛光,以替代制造工具钢。 为此,我们评估了单通式后处理技术,以增强表面粗糙度,表面微硬度和残余应力状态。 结果表明,超声波抛光后硬化官能化了用于工具应用的加工应用,在表面上产生有益压缩残余应力状态。 表面微硬度(HV1)在503和630 HV1之间变化,平均表面粗糙度(RA)在1.31和0.14μm之间变化,取决于最大生产率为41.66cm(2)/ min的工艺参数 一种替代方法,用于塑造加质制造工具部件。

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