Abstract

Wire Arc Additive Manufacturing (WAAM) is a relatively new manufacturing method. It is a novel technique to build net-shaped or near-net-shaped metal components in a layer-by-layer manner via applying metal wire and selection of a heat source such as laser beam, electron beam, or electric arc. WAAM process is preferable as an alternative to traditional manufacturing methods especially for complex featured and large scale solid parts manufacturing and it is particularly used for aerospace structural components, manufacturing and repairing of dies/molds. TIG welding-based WAAM method is implemented by depositing continuous wire melted via heat. In this study, the overhang (self-supporting) angle in TIG welding-based wire arc additive manufacturing process is investigated. The overhang angles are the angles at which a 3D printer can build tapered (overhang) surfaces without the need to supporting material below the printing layer. The material, bead height, TIG weld parameters and the environment temperature (cooling rate of printed layer) are the parameters which affect the overhang angle. The results show that the maximum overhang angle is also dependent on the temperature of the previous layer. For the selected set of process parameters, the maximum overhang angle is found as 28o, if the temperature of the previous layer is cooled to 150oC before the subsequent layer is deposited.

Highlights

  • IntroductionThe method presents a flexible, fast and cost-effective alternative to the traditional manufacturing methods especially for complex featured and large scale solid parts

  • Wire arc additive manufacturing (WAAM) is a relatively new manufacturing method [1]

  • The temperature measurement was taken after the WAAM machine was shut off due to overcome the high emissivity of the arc

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Summary

Introduction

The method presents a flexible, fast and cost-effective alternative to the traditional manufacturing methods especially for complex featured and large scale solid parts. Due to these advantages the method is preferred for aerospace structural components, manufacturing and repairing of dies/molds [2,3,4,5]. Http://www.granthaalayah.com ©International Journal of Research - GRANTHAALAYAH [247]. The term refers to all the processes which use metal wire-feed as a deposition material associated with one of the main energy sources such as laser beam, electron beam, and electric arc beam [1]

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