多边形网格
球栅阵列
四边形的
网格生成
有限元法
电子包装
网格
计算机科学
机械工程
球(数学)
计算科学
圆角(机械)
联轴节(管道)
工程制图
数值分析
结构工程
电子元件
MATLAB语言
可靠性(半导体)
热机械分析
灵活性(工程)
要素(刑法)
拓扑(电路)
热传导
空隙(复合材料)
结构单元
渲染(计算机图形)
复杂几何
作者
Yanpeng Gong,Sishuai Li,Fei Qin,Bing‐Bing Xu
标识
DOI:10.1007/s00366-025-02219-8
摘要
Abstract This paper presents two approaches: the virtual element method (VEM) and the stabilization-free virtual element method (SFVEM) for analyzing thermomechanical behavior in electronic packaging structures with geometric multi-scale features. Since the virtual element method allows the use of arbitrary polygonal elements, the inherent mesh flexibility of VEM allows localized mesh modifications without affecting global mesh structure, making it particularly effective for the analysis of electronic packaging reliability involving complex geometries and multiple geometric scales. The approach implements a novel non-matching mesh generation strategy that strategically combines polygonal meshes for complex small-scale regions with regular quadrilateral meshes for larger domains. The VEM formulation addresses both heat conduction and thermomechanical coupling problems, with comprehensive verification through analytical benchmarks and practical electronic packaging case studies, including Through-Silicon Via (TSV), Ball Grid Array (BGA), and Plastic Ball Grid Array (PBGA) structures. Results demonstrate that the method accurately captures stress concentrations at material interfaces and provides reliable thermal and mechanical response predictions. Some MATLAB codes for the numerical examples are provided at https://github.com/yanpeng-gong/VEM-electronic-packaging and on the VEMhub website ( www.vemhub.com ).
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