Abstract
Laser based powder bed fusion (L-PBF) is used to manufacture parts layer by layer with the energy of laser beam. The use of L-PBF for building functional parts originates from the design freedom, flexibility, customizability, and energy efficiency of products applied in dynamic application fields such as aerospace and automotive. There are challenges and drawbacks that need to be defined and overcome before its adaptation next to rivaling traditional manufacturing methods. Factors such as high cost of L-PBF machines, metal powder, post-preprocessing, and low productivity may deter its acceptance as a mainstream manufacturing technique. Understanding the key cost drivers of L-PBF that influence productivity throughout the whole lifespan of products will facilitate the decision-making process. Functional and operational decisions can yield profitability and increase competitiveness among advanced manufacturing sectors. Identifying the relationships between the phases of the life cycle of products influences cost-effectiveness. The aim of the study is to investigate the life cycle cost (LCC) and the impact of design to it in additive manufacturing (AM) with L-PBF. The article provides a review of simulation driven design for additive manufacturing (simulation driven DfAM) and LCC for metallic L-PBF processes and examines the state of the art to outline the merits, demerits, design rules, and life cycle models of L-PBF. Practical case studies of L-PBF are discussed and analysis of the interrelating factors of the different life phases are presented. This study shows that simulation driven DfAM in the design phase increases the productivity throughout the whole production and life span of L-PBF parts. The LCC model covers the whole holistic lifecycle engineering of products and offers guidelines for decision making.
Subject
General Materials Science,Metals and Alloys
Reference80 articles.
1. ASTM52900: 5015-Additive Manufacturing-General Principles-Terminology,2015
2. Influence of scan strategy and process parameters on microstructure and its optimization in additively manufactured nickel alloy 625 via laser powder bed fusion
3. Bugatti—World Premiere: Brake Caliper from 3-D Printerhttps://www.bugatti.com/media/news/2018/world-premiere-brake-caliper-from-3-d-printer/
4. SmarTech Markets Publishing. Metal Additive ManufacturingTrendshttps://www.smartechanalysis.com/wp-content/uploads/2017/11/dunham_rapid_2015_metal_additive_manufacturing_trends.pdf
5. https://www.3dhubs.com/blog/3d-printing-trends-q1-2019/#:~:text=The%20new%203D%20Hubs%203D,%2Dlaunch%20and%20re%2Ddesign.&text=The%203D%20printing%20market%20is,comes%20to%20online%203D%20printing
Cited by
4 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献