Challenges and recent progress on the application of rapid sand casting for part production: a review

Author:

Oguntuyi Samson DareORCID,Nyembwe Kasongo,Shongwe Mxolisi Brendon,Mojisola Tajudeen

Abstract

Abstract Conventional means of producing material via metal casting have long been used for centuries. In spite of its advantages in producing durable parts with lower cost implications and the accommodation of large part production, this conventional approach is still characterized by the challenges of high lead time in patterns production, poor surface finish, and the need for secondary manufacturing operations, which always leads to material loss. Hence, the introduction of additive manufacturing (AM) to metal casting process has been immensely recognized because of its huge advantages in negating some of the challenges encountered in the conventional route. However, the inconsistency in the material properties (such as density, strength, elastic modulus, dimensional accuracies, surface finish), produced by one of the AM techniques (rapid sand casting), has not been yielding optimum results to be applied in high-tech application like aerospace and automotive industries. Furthermore, this technique lacks efficient qualification and certification, which contributes to their disadvantages. This review focuses on the challenges and recent progress in producing parts from rapid sand moulds and cores via binder jetting (BJ), as well as the need to incorporate efficient qualification and certification in the future production of parts from rapid sand casting.

Funder

CPAM Project

University of Johannesburg

Publisher

Springer Science and Business Media LLC

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Software,Control and Systems Engineering

Reference114 articles.

1. Ngo TD, Kashani A, Imbalzano G, Nguyen KTQ, Hui D (2018) Additive manufacturing (3D printing): a review of materials, methods, applications and challenges. Compos B Eng 143:172–196

2. Singh S, Ramakrishna S, Singh R (2017) Material issues in additive manufacturing: a review. J Manuf Process 25:185–200

3. Dizon JRC, Espera AH Jr, Chen Q, Advincula RC (2018) Mechanical characterization of 3D-printed polymers. Addit Manuf 20:44–67

4. Jiménez M, Romero L, Domínguez IA (2019) Espinosa MdM, Domínguez M (2019) Additive manufacturing technologies: an overview about 3D printing methods and future prospects. Complexity 2019(9656938):30. https://doi.org/10.1155/2019/9656938

5. Oguntuyi SD, Malatji N, Shongwe MB, Johnson OT, Khoathane C, Tshabalala L (2022) The influence of Si3N4 on the microstructure, mechanical properties and the wear performance of TiB2–SiC synthesized via spark plasma sintering. Int J Light Mater Manuf 5(3):326–338

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