Multiscale.Sim Journal Articles Introduction
Correlation Studies of Different Decoupled Two-Scale Simulations for Lattice Structures
- Published: August 2023
- Journal Name: Aerospace - an Open Access Journal by MDPI
Abstract
By deliberately designing microscopic internal mechanisms, architected materials can achieve a variety of material properties without changing constituent materials. Integration of the architected materials into a structure as substructures has a good potential to enhance structural performance and realize wide design freedom. This paper explores the capabilities of multiscale approaches for lattice structures, which is a major mechanism in architected materials. The objectives of this paper are (1) to demonstrate the capabilities of the framework to evaluate stiffness characteristics of lattice structures with two different two-scale analysis approaches and (2) to assess the accuracies and validity ranges of both approaches for appropriate evaluations of lattice structures. The two-scale analysis framework consists of the computational homogenizations for the generalized stiffness (ABD) and 3D stiffness (C) matrices. Equivalent stiffness characteristics of the unit cell are obtained by computational homogenizations to effectively capture the macroscopic responses of lattice structures. This study provides a comprehensive correlation study between the prediction accuracies of the two-scale analysis approaches in terms of tensile, bending, and torsional stiffness characteristics for practical modeling and development of lattice structures. The study will contribute a guideline for effective designs of high-performance structures with architected materials.
Figure 1. A concept of computational homogenization for the lattice structure. Effective characteristics of a lattice structure constructed with periodic unit cells are evaluated based on computational homogenizations with the representative unit cell. The obtained effective properties are used to predict macroscopic responses of the structure with a homogenized structural model.Read the full article: https://www.mdpi.com/2226-4310/10/8/723
関連情報
関連する解析事例
MORE関連する資料ダウンロード
MORE-
熱流体システム全体を高速解析ーFlownex Simulation Environmentー
-
金型設計から量産までをIoT生産データでつなぐ一気通貫のものづくり
-
実形状ベースのCAEソリューション
~CTデータを活用した高精度シミュレーション~
-
患者CTデータを治療シミュレーションへ
~個別化医療を支える解析活用ソリューション~
-
繊維系複合材料の異方性線膨張係数の予測
~マルチスケール解析によりプリント配線基板の解析精度を改善~
-
短時間で設計パラメータを評価。上流設計の最適化を「圧倒的な高速化」へ
設計上流における形状検討をより幅広い設計空間で実施
-
解析専任者だけでなく誰でも解析ができる!設計者のための超高速リアルタイム解析
流体解析を専門作業から設計の武器へ
-
物理状態と統計データの可視化で意思決定の高速化を実現
設計者こそ「データ分析」が必要な理由

