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Additive Manufacturing of Metal Parts by Welding

机译:焊接金属零件的增材制造

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摘要

New technologies can be justified with the advent of the additive manufacturing, excels by its flexibility in manufacturing parts of various geometries, good accuracy and material waste reduction savings. This circumstance requires the application of techniques to determine the reliability of the results in the deposition of layers in order to have a good accuracy. This work aims to present a new technology applied to additive manufacturing, focusing on accuracy in the deposition of layers, lower cost and user friendliness man-machine. New method was proposed in order to obtain advantages regarding the use of Plasma welding process. An apparatus for generating plasma was used to obtain the arc. Devices to control speed and position were used to determine essential variables in the deposition of layers’ process. Correlated magnitudes helped in determining Efficient Model of Deposition for use in offsetting the geometric and thermal errors. Computer simulations were applied to the new concept of deposition and the efficiency of the presented system was performed, but no experimental results are provided herein.
机译:随着增材制造的出现,新技术可以被证明是合理的,因为它在制造各种几何形状的零件时具有灵活性、良好的精度和减少材料浪费的节省。这种情况需要应用技术来确定层沉积结果的可靠性,以便具有良好的准确性。这项工作旨在介绍一种应用于增材制造的新技术,重点是层沉积的准确性、更低的成本和用户友好性的人机。为了获得等离子焊接工艺的使用优势,提出了新的方法。使用产生等离子体的装置来获得电弧。控制速度和位置的装置用于确定层沉积过程中的基本变量。相关量级有助于确定用于抵消几何和热误差的有效沉积模型。将计算机模拟应用于新的沉积概念,并对所提出的系统进行了效率测试,但本文未提供实验结果。

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