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Boundary Element Analysis of Thin Structural Problems in 2D Elastostatics

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並列摘要


Thin structures, such as thin films and coatings, have been widely designed and utilized in many industries recently. However, the widespread experimental research in thin structural problems underlies a general lack of modeling efforts which can accurately and efficiently predict their performance. In this paper, the boundary element method (BEM) based on elasticity theory is developed for two-dimensional (2D) thin structures with the thickness to length ratio in the micro (10^(-6)) or nano (10^(-9)) scales. The BEM-based approach proposed in this paper is constructed using a combination of the regularized indirect boundary integral equations (BIEs) and a general nonlinear transformation which can eliminate the nearly singular properties of the integral kernels. For the test problems studied, very promising results are obtained when the thickness to length ratio is in the orders between 10^(-6) and 10^(-9), which is sufficient for modeling most thin structures in the micro- or nano-scales.

被引用紀錄


徐栢榮(2009)。利用雙極脈衝電源微弧氧化法探討占空比和頻率對7075-T6鋁合金表面氧化膜層之影響〔碩士論文,大同大學〕。華藝線上圖書館。https://www.airitilibrary.com/Article/Detail?DocID=U0081-3001201315104486
林妤珈(2010)。MoS2粉末於電解液中的添加對7075-T6鋁合金微弧氧化膜層之影響〔碩士論文,大同大學〕。華藝線上圖書館。https://www.airitilibrary.com/Article/Detail?DocID=U0081-3001201315105896
吳明峰(2010)。以微弧氧化於純鈦金屬上披覆磷灰石陶瓷結構的製程參數研究〔碩士論文,大同大學〕。華藝線上圖書館。https://www.airitilibrary.com/Article/Detail?DocID=U0081-3001201315105805

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