Phase Change Materials in Metal Casting Processes: A Critical Review and Future Possibilities

Author:

Chadha Utkarsh1ORCID,Selvaraj Senthil Kumaran1ORCID,Pant Harshita1ORCID,Arora Anisha1ORCID,Shukla Divyanshi1ORCID,Sancheti Ishika1ORCID,Chadha Arisha2ORCID,Srivastava Divyansh1ORCID,Khanna Mayank1ORCID,Ram Kishore S.1ORCID,Paramasivam Velmurugan3ORCID

Affiliation:

1. Department of Manufacturing Engineering, School of Mechanical Engineering (SMEC), Vellore Institute of Technology (VIT), Vellore 632014, Tamil Nadu, India

2. Prakash Higher Secondary School, Ahmedabad 380059, Gujarat, India

3. School of Mechanical and Automotive Engineering, College of Engineering and Technology, Dilla University, P.O. Box 419, Dilla, Ethiopia

Abstract

Phase change materials are the category of materials that release or absorb enough energy during phase change transformation to provide heating or cooling. Divided into two principal classes of organic and inorganic, these materials find a wide range of uses in commercial applications of casting where stable temperature and heat storage are a requirement. In this research work, application of inorganic phase change materials having significantly elevated temperature zone, especially within metal casting processes, has been discussed. Phase change material with high enthalpy of fusion and high melting point can be used for metal casting, but in a limited temperature range (between 200°C and 1300°C). In sand casting, inorganic PCM has the potential to be used as chills to provide directional solidification. Despite having advantages, inorganic PCM comes with major disadvantages, that is, toxicity, corrosivity, supercooling, and low thermal expansion. Few solutions to overcome these problems have been discussed in this research paper. Future research is required to reduce the disadvantage to a low level, so that PCM can be used in application where elevated temperature is achieved.

Publisher

Hindawi Limited

Subject

General Engineering,General Materials Science

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