Title of article :
Optimal design of honeycomb material used to mitigate head impact
Author/Authors :
Vincent Caccese، نويسنده , , James R. Ferguson، نويسنده , , Michael A. Edgecomb، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Pages :
9
From page :
404
To page :
412
Abstract :
This paper presents a study of the impact resistance of honeycomb structure with the purpose to mitigate impact forces. The objective is to aid in the choice of optimal parameters to minimize the thickness of the honeycomb structure while providing adequate protection to prevent injury due to head impact. Studies are presented using explicit dynamic finite element analysis representing the case of an unprotected drop of a rigid impactor onto a simulated floor consisting of vinyl composition tile and concrete. Analysis of honeycomb material to reduce resulting accelerations is also presented where parameters such as honeycomb material modulus, wall thickness, cell geometry and structure depth are compared to the unprotected case. A simplified optimization analysis technique using a genetic algorithm is presented to demonstrate the use of this method to select a minimum honeycomb depth to achieve a desired acceleration level at a given level of input energy. It is important to select a minimum material depth in that smaller dimensions lead toward more aesthetic design that increase the likelihood that the device is used.
Keywords :
Honeycomb structure , Explicit finite element analysis , Optimization , Head impact
Journal title :
COMPOSITE STRUCTURES
Serial Year :
2013
Journal title :
COMPOSITE STRUCTURES
Record number :
1345580
Link To Document :
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