Additive manufacturing: scientific and technological challenges, market uptake and opportunities
Аддитивное производство: научно-технологические проблемы, освоение рынка и перспективы
2017-07-29
SCID: 54.1/46s4vqqm
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Additive manufacturingFunctionally graded materialsLayer-by-layer manufacturingMarket uptakeMetrology
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Abstract (AI)
Additive manufacturing (AM) is fundamentally different from traditional formative or subtractive manufacturing in that it is the closest to the ‘bottom up’ manufacturing where a structure can be built into its designed shape using a ‘layer-by-layer’ approach rather than casting or forming by technologies such as forging or machining. AM is versatile, flexible, highly customizable and, as such, can suite most sectors of industrial production. Materials to make these parts/objects can be of a widely varying type. These include metallic, ceramic and polymeric materials along with combinations in the form of composites, hybrid, or functionally graded materials (FGMs). The challenge remains, however, to transfer this ‘making’ shapes and structures into obtaining objects that are functional. A great deal of work is needed in AM in addressing the challenges related to its two key enabling technologies namely ‘materials’ and ‘metrology’ to achieve this functionality in a predictive and reproductive ways. The good news is that there is a significant interest in industry for taking up AM as one of the main production engineering route. Additive Manufacturing, in our opinion, is definitely at the cross-road from where this new, much-hyped but somewhat unproven manufacturing process must move towards a technology that can demonstrate the ability to produce real, innovative, complex and robust products.
Key Findings
1
AM offers broad versatility and customization across industrial sectors, using metals, ceramics, polymers, composites, hybrids, and functionally graded materials.
2
Additive manufacturing builds designed structures layer by layer, distinguishing it fundamentally from formative and subtractive manufacturing.
3
Advances in materials and metrology are identified as the two key enabling requirements for achieving reliable AM functionality.
4
Strong industrial interest exists, but AM must progress from a highly publicized, partly unproven process toward producing innovative, complex, and robust products.
5
The central challenge is converting geometric shape-making capability into functional products through predictive and reproducible performance.
Research Object
Additive manufacturing (AM) as a production technology for building parts and structures via layer-by-layer processes
Research Subject
Scientific and technological challenges, functionality, predictive and reproducible production, and industrial market uptake of additive manufacturing
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2017-07-29
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