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Design and integration of WAAM technology and in situ monitoring system in a gantry machine

机译:龙门机床WAAM技术与现场监控系统的设计与集成

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Wire arc additive manufacturing, WAAM, is a popular wire-feed additive manufacturing technology that creates components through the deposition of material layer-by-layer. WAAM has become a promising alternative to conventional machining due to its high deposition rate, environmental friendliness and cost-competitiveness. In this research work, an adaptation of a gantry machine with in-situ monitoring and a control system has been carried out, in order to expose the ability of the WAAM technology to fabricate complex-shaped parts. The retrofitting of the machine has been done in several layers called respectively hardware, control and software layers. For the validation of the implemented system, a stainless steel 316L demonstrator has been manufactured, and the required stages have been employed, including part design (CAD), process parameters selection, tool-path definition (CAM) and part manufacturing. This study has shown the feasibility of the adapted machine for additive manufacturing as a controlled process.
机译:电弧增材制造WAAM是一种流行的送丝增材制造技术,它通过逐层沉积材料来创建组件。 WAAM具有高沉积速率,环境友好性和成本竞争力,因此已成为传统加工的有前途的替代方法。在这项研究工作中,已经对具有现场监测和控制系统的龙门机床进行了改造,以展示WAAM技术制造复杂形状零件的能力。机器的改装已分为几层,分别称为硬件,控制和软件层。为了验证所实施的系统,制造了不锈钢316L演示器,并采用了所需的阶段,包括零件设计(CAD),工艺参数选择,刀具路径定义(CAM)和零件制造。这项研究表明,适用于增材制造的改进机器作为受控过程的可行性。

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