Thermal Analysis of Honeycomb Sandwich Panel
Abstract
Heat-transfer analysis has been performed on sandwich warm security framework (TPS) for future vehicles. The structures are manufactured from slim walled metal sheets. These manufactured structures are important for the air outline external cover give warm assurance to the inside parts mounted inside the vehicle. The temp assurance framework materials utilized for sandwich structures ought to have high strength even at raised temperatures. It is simpler to recreate the 1500 C temperature on the Aluminum sandwich structures and discover the temperature inclination over the sandwich profundity. Examination was done on hexagonal structure honeycomb cell, the ANSYS investigations have been accomplished for both square cell board and hexagonal honeycomb board for correlation. Trials we led on Aluminum combination honeycomb sandwich boards and the approvals of test work utilizing ANSYS investigation have been performed. The ANSYS demonstrating accomplished for both, the square and hexagonal honeycomb sandwich boards of the Aluminum compound. This paper center the warmth move investigation and in investigating the approaches to decrease the warmth move impact with the techniques referenced above, which would be successfully utilized for flight vehicle applications.
How to cite this article:
Sonawane KR, Sangale UV. Thermal Analysis of Honeycomb Sandwich Panel. J Adv Res Glass Leath Plast Tech 2020; 3(1): 18-26
References
2. K.Kantha Rao, K. Jayathirtha Rao, (August 2014 ) Heat Insulation Analysis of an Aluminum Honeycomb Sandwich Structure, International Journal of Mechanical Engineering ISSN 2321-6441 Volume 2, Issue 8.
3. K.Kantha Rao, K. Jayathirtha Rao, Thermo structural Analysis Of Honeycomb Sandwich Panels, International Journal Of Engineering Science & Advanced Technology Volume-2, Issue-5, 1402 – 1409ISSN: 2250–3676
4. Pratap Reddy, Heat Insulation Analysis of an Aluminium Honeycomb Sandwich Structure”, International Journal of Engineering Research and Applications ISSN: 2248-9622
5. Ch. Naresh, A. Gopi Chand, K. Sunil Ratna Kumar, P.S.B.Chowdary, (December 2013 ) Numerical Investigation into Effect of Cell Shape on the Behavior of Honeycomb Sandwich Panel, International Journal of Innovative Research in Science, Engineering and Technology Vol. 2, Issue 12, ISSN: 2319-8753
6. Douglas T. Queheillalt, Gerardo Carbajal, G.P. Peterson, Haydn N.G. Wadley, (2008) A multifunctional heat pipe sandwich panel structure, Elsevier, International Journal of Heat and Mass Transfer 51 312–326
7. Dr. Fereshteh Sanaei, Modeling The Heat Transfer Characteristics Of Architectural Honeycomb Composite Panels, American International Journal of Research in Science, Technology, Engineering & Mathematics, ISSN (Print): 2328-3491
8. J. Zhao, Z.H. Xie, L. Li, W. Li, J. Tian, On Effective Thermal Conductivity Of Super Alloy Honeycomb Core In Sandwich Structures, International Conference On Composite Materials.
9. Felippa, Carlos A. 2004. Introduction to the Finite Element Method. University of Colorado, Colorado http://www.colorado.edu/ (accessed February 15, 2008).
10. Lavinia GAVRILĂ*, Paul ROŞU**, (Oct 2008) Tensile Properties Analysis of Honeycomb Structures