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Paper Details
Paper Title
Design and Analysis of Honey Comb Structures with Different Cases
Authors
  Shaik.Nazeer,  Shaik Allabakshu
Abstract
Honeycomb structures are natural or man-made structures that have the geometry of a honeycomb
to allow the minimization of the amount of used material to reach minimal weight and minimal material cost.
Types of honeycomb structures are depend upon the geometrical shape. There are different types of
honeycomb core structures like square, hexagonal, pentagonal, tetrahedral, pyramidal etc. In this project we
are comparing the structural analysis for square and hexagonal honeycomb structures and thermal analysis
of square and hexagonal honeycomb structures. Structural analysis is the determination of the effects of loads
on physical structure.
To perform an accurate analysis an engineer must determine such information as structural loads, geometry,
support conditions, and materials properties. The results of such an analysis typically include deformation,
stresses and displacements. This information is then compared to criteria that indicate the conditions of
failure.
Thermal analysis calculates the temperature distribution and related thermal quantities in the system or
component. Typical thermal quantities of interest are:
The temperature distributions
(a) The time to reach steady state
(b) The steady state temperature distribution (using a transient analysis)
(c) The temperature distribution after 50 seconds
The amount of heat lost or gained
Thermal gradients
Thermal fluxes
Keywords- CATIA modelling of the product, static analysis, Structural Analysis, Thermal analysis, strength
Publication Details
Unique Identification Number - IJEDR1504023Page Number(s) - 144-156Pubished in - Volume 3 | Issue 4 | October 2015DOI (Digital Object Identifier) -    Publisher - IJEDR (ISSN - 2321-9939)
Cite this Article
  Shaik.Nazeer,  Shaik Allabakshu,   "Design and Analysis of Honey Comb Structures with Different Cases", International Journal of Engineering Development and Research (IJEDR), ISSN:2321-9939, Volume.3, Issue 4, pp.144-156, October 2015, Available at :http://www.ijedr.org/papers/IJEDR1504023.pdf
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