周期b样条截面面积和二次矩的符号参数表示

IF 12.2 1区 工程技术 Q1 MECHANICS
M. Denk, Michael Jäger, S. Wartzack
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引用次数: 0

摘要

面积矩的计算是工程力学中计算梁的性能或确定不同几何形状的不变量的最基本方面之一。虽然各种形状,如圆形、矩形、椭圆或它们的组合,都可以用符号来描述,但这种符号表达对于自由形状的横截面来说是缺失的。特别是,周期b样条截面适用于替代梁截面,例如,用于拓扑优化结果的表示。因此,在这项工作中,计算了这种b样条的各种参数表示的面积矩的符号描述。然后将找到的表达式与其他计算方法进行比较,并检查其有效性。所得到的方程提供了一种简单的方法,可用于快速计算周期b样条曲线的面积矩。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Symbolic Parametric Representation of the Area and the Second Moments of Area of Periodic B-Spline Cross-Sections
The calculation of moments of area is one of the most fundamental aspects of engineering mechanics for calculating the properties of beams or for the determination of invariants in different kind of geometries. While a variety of shapes, such as circles, rectangles, ellipses, or their combinations, can be described symbolically, such symbolic expressions are missing for freeform cross-sections. In particular, periodic B-spline cross-sections are suitable for an alternative beam cross-section, e.g., for the representation of topology optimization results. In this work, therefore, a symbolic description of the moments of area of various parametric representations of such B-splines is computed. The expressions found are then compared with alternative computational methods and checked for validity. The resulting equations show a simple method that can be used for the fast conceptual computation of such moments of area of periodic B-splines.
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来源期刊
CiteScore
28.20
自引率
0.70%
发文量
13
审稿时长
>12 weeks
期刊介绍: Applied Mechanics Reviews (AMR) is an international review journal that serves as a premier venue for dissemination of material across all subdisciplines of applied mechanics and engineering science, including fluid and solid mechanics, heat transfer, dynamics and vibration, and applications.AMR provides an archival repository for state-of-the-art and retrospective survey articles and reviews of research areas and curricular developments. The journal invites commentary on research and education policy in different countries. The journal also invites original tutorial and educational material in applied mechanics targeting non-specialist audiences, including undergraduate and K-12 students.
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