Development and Study on Brick Composites

Jump To References Section

Authors

  • Department of Electrical and Electronics Engineering, Swami Vivekananda Institute of Science and Technology, Kolkata - 700145, West Bengal ,IN
  • Department of Metallurgical and Material Engineering, Jadavpur University, Kolkata - 700032, West Bengal ,IN
  • Department of Electrical and Electronics Engineering, Swami Vivekananda Institute of Science and Technology, Kolkata - 700145, West Bengal ,IN
  • Department of Metallurgical and Material Engineering, Jadavpur University, Kolkata - 700032, West Bengal ,IN

DOI:

https://doi.org/10.18311/jmmf/2023/36039

Keywords:

Brick Composite, Ceramic Matrix, Density, Hardness, Porosity, Powder Metallurgy, Surface Morphology

Abstract

The role of various insulators is increasing day by day for applying High Voltage (HV) and/or allied fields. Authors are taken an attempt towards development of brick composites followed by powder metallurgy technique. Natural mud has been selected as raw material for finished products. Bricks having high hardness have been developed through sintering at various temperatures. Finished brick based composites are considered for surface morphology analysis. Various physical and mechanical properties are evaluated and reported. Finally, optimization has done based on evaluated physical and mechanical properties of brick composites.

Downloads

Download data is not yet available.

Metrics

Metrics Loading ...

Downloads

Published

2023-11-30

How to Cite

Debnath, S., Roy, S., Paul, S., & Pramanick, A. K. (2023). Development and Study on Brick Composites. Journal of Mines, Metals and Fuels, 71(11), 2185–2190. https://doi.org/10.18311/jmmf/2023/36039

 

References

Evans AG, Naslain R. High-Temperature Ceramic- Matrix Composites I: Design, Durability and Performance (Ceramic Transactions). Amer Ceramic Society. 1995; 57:505.

Evans AG, Naslain R. High-Temperature Ceramic- Matrix Composites II: Manufacturing and Materials Development (Ceramic Transactions). Amer Ceramic Society. 1995; 58.

Sourav D, Pramanick AK. Development and study on different properties of aluminium-crystalline silica ceramic matrix composites at different sintering temperatures. IJERGS. 2016; 4(3):415-423.

Sommers A, Wang Q, Han X, Joen CT, Park Y, Jacobi A. Ceramics and ceramic matrix composites for heat exchangers in advanced thermal systems: A review. Applied Thermal Engineering, Science Direct. 2010; pp. 1-15. https://doi.org/10.1016/j.appltherma- leng.2010.02.018

Torralba JM, Costa CE and Velasco F. P/M aluminum matrix composites: an overview. Journal of Materials Processing Technology. 2003; 133(1-2):203-206. https:// doi.org/10.1016/S0924-0136(02)00234-0

Dewidar MM, Yoon H-C, Lim JK. Mechanical properties of metals for biomedical applications using powder metallurgy process: A review. Metals and Materials International. 2006; 12(3):193-206. https://doi. org/10.1007/BF03027531

Sourav D, Pramanick AK. Development and Evaluation of Various Properties of Crystalline Silica- Aluminium Metal Based Composites. International Journal of Engineering Research and General Science. 2016; 4(2):236-245.

Sourav D, Sourav B, Pramanick AK. Development and Study on Various Properties of Titanium Oxide-Tri Calcium Phosphate Composites through Powder Metallurgy Technique. IOSR-JMCE, 2016; Special Issue:1-6.

Sourav D, Samanta SK, Pramanick AK. Preparation and Study on Nickel Coated Aluminium through Electroless Deposition Technique. IOSR-JMCE. 2016; 13(3):73-7. e-ISSN: 2278-1684, p-ISSN: 2320-334X.

Sourav D, Pramanick AK. Development of Iron- Crystalline Silica Ceramic Matrix Composites through Powder Metallurgy Technique. IOSR-JMCE. 2017; 14(1):1-4. e-ISSN:2278-1684,p-ISSN:2320-334X. https:// doi.org/10.9790/1684-140105XXXX.

MarshallDB,EvansAG.FailureMechanismsinCeramic- Fiber Ceramic-Matrix Composites. Journal of the American Ceramic Society. 1985; 68(5):225-231. ISSN- 1551-2916, https://doi.org/10.1111/j.1151-2916.1985. tb15313.x 12. Kumar S, Sharma MR. To analytical study of composite construction in brick masonry with posttensioning system. IJRAR. June 2019; 6(2):392-7.

Imran M, Sadik S. Study of hardness and tensile strength of Aluminium-7075 percentage varying reinforced with graphite and bagasse-ash composites. Resource-Efficient Technologies. ScienceDirect. 2016; 2(2):81-8. https:// doi.org/10.1016/j.reffit.2016.06.007

Das DK, Mishra PC, Singh SS, Thakur RK. Properties of ceramic-reinforced aluminium matrix composites - a review. International Journal of Mechanical and Materials Engineering. 2014; 1(12):1-16. https://doi. org/10.1186/s40712-014-0012-9