会议论文详细信息
International Research and Innovation Summit 2017
Advances in High Temperature Materials for Additive Manufacturing
Nordin, Nurul Amira Binti^1 ; Johar, Muhammad Akmal Bin^1 ; Ibrahim, Mohd Halim Irwan Bin^1 ; Marwah, Omar Mohd Faizan Bin^1
Department of Manufacturing and Industrial Engineering, Faculty of Mechanical and Manufacturing Engineering, Universiti Tun Hussein Onn Malaysia (UTHM), Parit Raja, Johor, Batu Pahat
86400, Malaysia^1
关键词: Additive manufacturing technology;    Fused deposition modelling;    High temperature materials;    High-quality products;    Manufacturing applications;    Manufacturing industries;    Manufacturing process;    Selective laser sintering;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/226/1/012176/pdf
DOI  :  10.1088/1757-899X/226/1/012176
来源: IOP
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【 摘 要 】

In today's technology, additive manufacturing has evolved over the year that commonly known as 3D printing. Currently, additive manufacturing have been applied for many industries such as for automotive, aerospace, medical and other commercial product. The technologies are supported by materials for the manufacturing process to produce high quality product. Plus, additive manufacturing technologies has been growth from the lowest to moderate and high technology to fulfil manufacturing industries obligation. Initially from simple 3D printing such as fused deposition modelling (FDM), poly-jet, inkjet printing, to selective laser sintering (SLS), and electron beam melting (EBM). However, the high technology of additive manufacturing nowadays really needs high investment to carry out the process for fine products. There are three foremost type of material which is polymer, metal and ceramic used for additive manufacturing application, and mostly they were in the form of wire feedstock or powder. In circumstance, it is crucial to recognize the characteristics of each type of materials used in order to understand the behaviours of the materials on high temperature application via additive manufacturing. Therefore, this review aims to provide excessive inquiry and gather the necessary information for further research on additive material materials for high temperature application. This paper also proposed a new material based on powder glass, which comes from recycled tempered glass from automotive industry, having a huge potential to be applied for high temperature application. The technique proposed for additive manufacturing will minimize some cost of modelling with same quality of products compare to the others advanced technology used for high temperature application.

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