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Critical Review of Comparative Study of Selective Laser Melting and Investment Casting for Thin-Walled Parts

Naol Dessalegn Dejene, Hirpa G. Lemu

2023Englishadditive manufacturingselective laser meltinginvestment castingthin-walled partsmicrostructureporosity

Abstract

Language:

Thin-walled structures are a significant and growing portion of engineering construction, with a wide range of applications, including storage vessels, industrial buildings, warehouses, aircraft, automobiles, bridges, ships, and oil rigs. Thin-walled components with minimum thickness without compromising strength and other quality characteristics are the desire of modern industry. Reducing wall thickness not only aids in lowering the cost of production but also improves the effectiveness of engineering systems, resulting in lower fuel consumption and lower emissions of hazardous gases to the environment. Nowadays, even though thin-walled parts are demanded, the constraints of the production process, quality, and reliability are the concerns of current research and development. The ability to produce parts with intricate geometries and tight dimensional tolerances are important criteria for advanced manufacturing processes. In the early days of society, investment casting was used to produce jewelry, weapons, and statues. In modern industry, investment casting is still used to produce thin-walled and intricate parts such as turbine blades.

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Cite This Work

@article{b7467a0f-b404-4ebb-8b01-574e564cd708,
  title={Critical Review of Comparative Study of Selective Laser Melting and Investment Casting for Thin-Walled Parts},
  author={Naol Dessalegn Dejene and Hirpa G. Lemu},
  year={2023},
  language={English}
}
TY  - JOUR
TI  - Critical Review of Comparative Study of Selective Laser Melting and Investment Casting for Thin-Walled Parts
AU  - Naol Dessalegn Dejene
AU  - Hirpa G. Lemu
PY  - 2023
LA  - English
ER  -

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