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Numerical Simulation of Metallic Wire Arc Additive Manufacturing (WAAM)

机译:金属丝弧添加剂制造的数值模拟(WAAM)

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Additive-manufacturing technologies have been gaining tremendously in popularity for some years in the production of single-part series with complex, close-to-final-contour geometries and the processing of special or hybrid materials. In principle, the processes can be subdivided into wire-based and powder-based processes in accordance with the Association of German Engineers (VDI) Guideline 3405. A further subdivision is made with respect to the smelting technology. In all of the processes, the base material is applied in layers at the points where it is needed in accordance with the final contour. The process that was investigated was wire-based, multi-pass welding by means of gas-metal arc welding. This was accomplished in the present study by determining the material parameters (thermo-mechanical and thermo-physical characteristics) of the welding filler G3Si1 (material number: 1.5125) that were necessary for the numerical simulation and implementing them in a commercial FE program (MSC Marc Mentat). The focus of this paper was on simulation and validation with respect to geometry and microstructural development in the welding passes. The resulting minimal deviation between reality and simulation was a result of the measurement inertia of the thermocouples. In general, however, the FE model can be used to make a very good predetermination of the cooling behaviour, which affects the micro structural development and thus the mechanical properties of the joining zone, as well as the geometric design of the component (distortion, etc.).
机译:添加剂制造技术在生产单件系列中具有复杂,近端轮廓几何形状和特殊或混合材料的加工时,普遍性地普及。原则上,根据德国工程师(VDI)指南3405的协会,可以将过程细分为基于线的基于粉末的过程。关于冶炼技术进行进一步的细分。在所有过程中,基材以根据最终轮廓所需的点处的层施加。通过气金属电弧焊接,研究的方法是基于电线的多通焊接。这通过确定数值模拟和在商业FE程序中实施的焊接填充物G3SI1(材料编号:1.5125)的材料参数(热机械和热物理特性)来完成本研究。在商业FE计划中实现它们(MSC Marc Mentat)。本文的重点是在焊接通行证的几何和微观结构上进行仿真和验证。现实和模拟之间产生的最小偏差是热电偶测量惯性的结果。然而,通常,Fe模型可用于产生非常好的冷却行为的预先确定,这影响了微结构发展,从而影响了连接区的机械性能,以及部件的几何设计(失真,等等。)。

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