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Numerical Modeling Design for the Hybrid Additive Manufacturing of Laser Directed Energy Deposition and Shot Peening Forming Fe–Cr–Ni–B–Si Alloy

机译:混合添加剂制造的数值模拟设计激光引导能量沉积和喷丸成丸形成Fe-Cr-Ni-B-Si合金

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摘要

Hybrid additive manufacturing is of great significance to make up for the deficiency of the metal forming process; it has been one of the main trends of additive manufacturing in recent years. The hybrid process of laser directed energy deposition (laser DED) and shot peening is a new technology combining the principles of surface strengthening and additive manufacturing, whose difficulty is to reduce the interaction between the two processes. In this paper, a new model with a discrete phase and fluid–solid interaction method is established, and the location of the shot peening point in the hybrid process is optimized. The distributions of the temperature field and powder trajectory were researched and experiments were carried out with the optimized parameters to verify simulation results. It was found that the temperature field and the powder trajectory partly change, and the optimized injection point is located in the stress relaxation zone of the material. The densities and surface residual stresses of samples were improved, and the density increased by 8.83%. The surface stress changed from tensile stress to compressive stress, and the introduced compressive stress by shot peening was 2.26 times the tensile stress produced by laser directed energy deposition.
机译:杂化添加剂制造具有重要意义,可以弥补金属成形过程的缺陷;它是近年来添加剂制造的主要趋势之一。激光定向能量沉积(激光DED)和射击喷丸的混合过程是一种新技术,结合了表面强化和添加剂制造的原理,其难度是减少两种过程之间的相互作用。本文建立了一种具有离散相和流体固体相互作用方法的新模型,优化了混合过程中的喷丸点的位置。研究了温度场和粉末轨迹的分布,并进行了优化参数进行实验,以验证仿真结果。发现温度场和粉末轨迹部分变化,并且优化的注射点位于材料的应力松弛区中。样品的密度和表面残余应力得到改善,密度增加了8.83%。表面应力从拉伸应力变为压缩应力,并且通过喷丸引入的压缩应力是通过激光定向能量沉积产生的拉伸应力的2.26倍。

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