Affiliation:
1. School of Engineering, London South Bank University, London SE1 0AA, UK
2. Department of Materials, The University of Manchester, Manchester M13 9PL, UK
3. Department of Engineering, Universidad Loyola Andalucia, Avenida de las Universidades s/n, 41704 Dos Hermanas, Spain
4. Department of Mechanical Engineering, University of Petroleum and Energy Studies, Dehradun 248007, India
Abstract
Currently, most thermal spray coating service providers expect original equipment manufacturers (OEMs) to suggest the coating recipe, comprising of the right coating equipment, starting process parameters, type of inert gases, and robot program. The microstructure and mechanical properties may not comply in the first few runs. Feedback from a competent material testing service provider forms the initial step to adjust the parameters in the development journey, toward identifying the processing parameters required to obtain an acceptable coating. With the surge of interest in sustainable manufacturing, the time spent on trials in the future will shrink, and a more rigorous process needs to be applied to achieve the “right-first-time manufacturing” approach in thermal spraying. However, a framework for the systematic development of thermal spray parameter optimisation is lacking. This article provides a framework, based on a logical acumen, in selecting the right process parameters, using available data and prior knowledge about the thermal spraying process. To that end, the article summarises the extant developmental journey of thermal spray process parameters, by covering the aspects of equipment choice, robot and spray parameters, and how to minimise iterations, using diagnostic tools to get to the end solution most efficiently. This article, in its current form, will serve as a good guide for early career engineers and scientists or workers, to minimise the time processing window, by avoiding endless iterations to deposit a certain type of coating using thermal spraying. Besides, this work is also aimed at transforming academic research innovations to a robust and repeatable industrial manufacturing process.
Funder
UKRI
UKRI National Interdisciplinary Circular Economy Hub
Transforming the Foundation Industries: a Network+
Royal Society
Spanish Ministry of Science
Subject
Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces
Cited by
6 articles.
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