シンポジウム: スポーツ・アンド・ヒューマン・ダイナミクス講演論文集
Online ISSN : 2432-9509
セッションID: 111
会議情報
111 シューズミッドソール設計を目的とした発泡樹脂の微視的数値解析(マテリアルのモデリング)
小塚 祐也野々川 舞西脇 剛史
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会議録・要旨集 フリー

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抄録
Due to excellent properties, high damping, low density and unique stress-strain curve, resin foams have been widely used in various industrial fields. As a midsole the application of the resin foams is dominant, because the plastic foam has many designing parameters such as foaming ratio, matrix resin type, cell size and geometry. In the designing process of midsole material, the prediction of mechanical behavior is very important. In this study the simplified numerical simulation model for EVA(Ethylene-Vinyl Acetate) foam is proposed. This model is constructed by thin shell elements and void is represented by Kelvin's truncated octahedron. The cell wall thickness distribution is considered by the shell elements' thickness control. In order to check the validity of the proposed model, stress-strain relationship under the uni-axial compressive load is compared with experimental one. After the checking, friction effect between rigid plate and foam surface on the mechanical behavior is discussed. Moreover it was confirmed that the model could predict the foaming ratio dependency.
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© 2013 一般社団法人 日本機械学会
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