Advanced Technologies and Materials

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Vol. 45 No. 2 (2020)
Original articles

WAAM and Other Unconventional Metal Additive Manufacturing Technologies

Damjan Klobcar
University of Ljubljana, Faculty of Mechanical Engineering, Slovenia
Sebastian Baloš
University of Novi Sad, Faculty of Technical Sciences, Novi Sad, Serbia
Matija Busic
University Centar Varaždin, Department of Mechanical Engineering, Croatia
Maja Lindic
University of Ljubljana, Faculty of Mechanical Engineering, Slovenia
Aljaz Scetinec
University of Ljubljana, Faculty of Mechanical Engineering, Slovenia

Published 2020-12-01

abstract views: 19 // Full text article (PDF): 9


Keywords

  • Wire arc additive manufacturing,
  • Ultrasonic additive manufacturing,
  • Friction additive manufacturing,
  • Thermal spray additive manufacturing,
  • Resistance additive manufacturing

How to Cite

Klobcar, D., Baloš, S., Busic, M., Lindic, M., & Scetinec, A. (2020). WAAM and Other Unconventional Metal Additive Manufacturing Technologies. Advanced Technologies and Materials, 45(2), 1–9. https://doi.org/10.24867/ATM-2020-2-001

Abstract

The paper presents an overview of metal additive manufacturing technologies. The emphasis is on unconventional emerging technologies with firm background on welding technologies such as Ultrasonic Additive Manufacturing, Friction Additive Manufacturing, Thermal Spray Additive Manufacturing, Resistance Additive Manufacturing and Wire and Arc Additive Manufacturing. The particular processes are explained in detail and their advantages and drawbacks are presented. Attention is made on materials used, possibilities to produce multi-material products and functionally graded materials, and typical applications of currently developed technologies. The state-of-the-art on the Wire and Arc Additive Manufacturing is presented in more detail due to high research interests, it’s potential and widespread. The main differences between different arc additive manufacturing technologies are shown. An influence of processing parameters is discussed with respect to process stability and process control. The challenges related to path planning are shown together with the importance of post-processing. The main advantage of presented technologies is their ability of making larger and multi-material parts, with high deposition rate, which is difficult to achieve using conventional additive technologies.

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