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计算机三维建模技术在平面图像设计中的应用

Application of Computer 3D Modeling Technology in Graphic Image Design.

作者信息

Liu Jin

机构信息

Department of Animation and Art, Zibo Vocational Institute, Zibo 255000, Shandong, China.

出版信息

Comput Intell Neurosci. 2022 Jul 16;2022:6451339. doi: 10.1155/2022/6451339. eCollection 2022.

Abstract

In order to solve the problem that the manual input data work efficiency is low and the optimization cannot be achieved in the section modulus calculation, the author proposes a computer-aided 3D graphic design method for ship hull structure. First, complete the modeling of the ship hull, complete the statistical calculation of the size in the CAD platform, solve the static moment, and complete the three-dimensional modeling; Calculate the inertial load and wave load of the ship during work, and calculate the wave bending moment, and substitute it into the three-dimensional model for verification. Finally, according to the computer-aided three-dimensional graphic design process, the specification verification of the ship's scale is completed, the graphic file is associated with the database, and the three-dimensional graphic design is completed. Experimental results show that the maximum stress of the original three-dimensional integrated graphic design of the ship is 202 MPa, and the maximum deformation is 87.352 mm. Based on the computer-aided three-dimensional integrated graphic design of the ship, the maximum stress is 226 MPa, and the maximum deformation is 76.234 mm. : the hull obtained by the computer-aided three-dimensional graphic design of the ship can effectively reduce the total area and materials of the midsection structure of the ship, reduce the weight of the hull, and realize the optimal configuration of the midsection material of the ship.

摘要

为了解决人工输入数据工作效率低以及在剖面模数计算中无法实现优化的问题,作者提出了一种船体结构的计算机辅助三维图形设计方法。首先,完成船体建模,在CAD平台上完成尺寸统计计算,求解静矩,并完成三维建模;计算船舶工作时的惯性载荷和波浪载荷,计算波浪弯矩,并将其代入三维模型进行验证。最后,按照计算机辅助三维图形设计流程,完成船舶尺度的规范验证,将图形文件与数据库关联,完成三维图形设计。实验结果表明,船舶原始三维整体图形设计的最大应力为202MPa,最大变形为87.352mm。基于船舶计算机辅助三维整体图形设计,最大应力为226MPa,最大变形为76.234mm:通过船舶计算机辅助三维图形设计得到的船体能够有效减小船舶中剖面结构的总面积和材料用量,减轻船体重量,实现船舶中剖面材料的优化配置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39b9/9308523/3374d67a1900/CIN2022-6451339.001.jpg

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