The Proceedings of the Dynamics & Design Conference
Online ISSN : 2424-2993
2021
Session ID : 405
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Development of a New Topology Optimization and Its Application to Origami Carrier Box
(Optimization Method for Eigenfrequency)
*Toshie SASAKIIchiro HAGIWARA
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Abstract

We have developed many types of transport boxes by origami-operation and space filling operation. But it has not been solved that the fruits and vegetables such as strawberries, cells, blood and a bottle of sake are damaged, broken during transportation. It is the greatest factor in the situation that there is a vibration frequency range where these are easy to scratch and these are prone to death. If there are eigenfrequencies within the frequency range, it is re-designed such that the eigenfrequencies within the frequency range are moved out of the range. But it is difficult to apply the existing topology optimization. The traditional method, it is difficult to select a great number of eigenfrequencies and set several each objective frequency depending. For example, if it is making any hole arbitrary point, some eigenfrequencies are high, and others are low. When it making any hole in each section, it is important to understanding that the eigenfrequency is higher or lower in advance. First, it clearly articulates the kinetic energy density or the strain energy density. And, the method to control the eigenfrequency by identifying the position of the hole from the energy density is proposed in this paper.

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© 2021 The Japan Society of Mechanical Engineers
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