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An Optimization Approach for Stiffener Layout of Composite Stiffened Panels Based on Moving Morphable Components(MMCs) 被引量:7
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作者 Zhi Sun Ronghua Cui +3 位作者 Tianchen Cui Chang Liu Shanshan Shi Xu Guo 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2020年第5期650-662,共13页
An explicit topology optimization method for the stiffener layout of composite stiffened panels is proposed based on moving morphable components(MMCs).The skin and stiffeners are considered as panels with different be... An explicit topology optimization method for the stiffener layout of composite stiffened panels is proposed based on moving morphable components(MMCs).The skin and stiffeners are considered as panels with different bending stiffnesses,with the use of equivalent stiffness method.Then the location and geometric properties of composite stiffeners are determined by several MMCs to perform topology optimization,which can greatly simplify the finite element model.With the objective of maximizing structural stiffness,several typical cases with various loading and boundary conditions are selected as numerical examples to demonstrate the proposed method.The numerical examples illustrate that the proposed method can provide clear stiffener layout and explicit geometry information,which is not limited within the framework of parameter and size optimization.The mechanical properties of composite stiffened panels can be fully enhanced. 展开更多
关键词 Topology optimization Composite stiffened panels Stiffener layout moving morphable components(mmcs)
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Structural Optimization of Fiber-Reinforced Material Based on Moving Morphable Components (MMCs) 被引量:1
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作者 Zhi Sun Ziwen Song +1 位作者 Junfu Song Haiyan Li 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2022年第4期632-646,共15页
Fiber-reinforced composite materials have excellent specific stiffness,specific strength,and other properties,and have been increasingly widely used in the field of advanced structures.However,the design space dimensi... Fiber-reinforced composite materials have excellent specific stiffness,specific strength,and other properties,and have been increasingly widely used in the field of advanced structures.However,the design space dimensions of fiber-reinforced composite materials will expand explosively,bringing challenges to the efficient analysis and optimal design of structures.In this paper,the authors propose an explicit topology optimization method based on the moving morphable components for designing the fiber-reinforced material.We constrain the intersection area between components to guarantee the independence of each component and avoid the situation that one component is cut by other components.Adding the fiber orientation angle as a design variable,the method can optimize the structural layout and the fiber orientation angle concurrently under the given number of fiber layers and layer thickness.We use two classical examples to verify the feasibility and accuracy of the proposed method.The optimized results are in good agreement with the designs obtained by the 99-line code.The authors also popularize the proposed method to engineering structure.The results manifest that the proposed method has great value in engineering application. 展开更多
关键词 Fiber-reinforced composite materials moving morphable components(mmcs) Topology optimization Fiber orientation angle
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Self-consistent Clustering Analysis-Based Moving Morphable Component(SMMC)Method for Multiscale Topology Optimization
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作者 Yangfan Li Jiachen Guo +1 位作者 Hengyang Li Huihan Chen 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2023年第6期884-898,共15页
Current multiscale topology optimization restricts the solution space by enforcing the use of a few repetitive microstructures that are predetermined,and thus lack the ability for structural concerns like buckling str... Current multiscale topology optimization restricts the solution space by enforcing the use of a few repetitive microstructures that are predetermined,and thus lack the ability for structural concerns like buckling strength,robustness,and multi-functionality.Therefore,in this paper,a new multiscale concurrent topology optimization design,referred to as the self-consistent analysis-based moving morphable component(SMMC)method,is proposed.Compared with the conventional moving morphable component method,the proposed method seeks to optimize both material and structure simultaneously by explicitly designing both macrostructure and representative volume element(RVE)-level microstructures.Numerical examples with transducer design requirements are provided to demonstrate the superiority of the SMMC method in comparison to traditional methods.The proposed method has broad impact in areas of integrated industrial manufacturing design:to solve for the optimized macro and microstructures under the objective function and constraints,to calculate the structural response efficiently using a reduced-order model:self-consistent analysis,and to link the SMMC method to manufacturing(industrial manufacturing or additive manufacturing)based on the design requirements and application areas. 展开更多
关键词 Topology optimization moving morphable component method Multiscale concurrent design Reduced-order model
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Explicit Topology Optimization Design of Stiffened Plate Structures Based on the Moving Morphable Component(MMC)Method
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作者 Xudong Jiang Chang Liu +5 位作者 Shaohui Zhang Weisheng Zhang ZongliangDu Xiaoyu Zhang Huizhong Zeng Xu Guo 《Computer Modeling in Engineering & Sciences》 SCIE EI 2023年第5期809-838,共30页
This paper proposes an explicit method for topology optimization of stiffened plate structures.The present work is devoted to simultaneously optimizing stiffeners’shape,size and layout by seeking the optimal geometry... This paper proposes an explicit method for topology optimization of stiffened plate structures.The present work is devoted to simultaneously optimizing stiffeners’shape,size and layout by seeking the optimal geometry parameters of a series of moving morphable components(MMC).The stiffeners with straight skeletons and the stiffeners with curved skeletons are considered to enhance the modeling and optimization capability of the current approach.All the stiffeners are represented under the Lagrangian-description framework in a fully explicit way,and the adaptive ground structure method,as well as dynamically updated plate/shell elements,is used to obtain optimized designs with more accurate analysis results.Compared with existing works,the proposed approach provides an explicit description of the structure.Thus,a stiffened plate structure with clear stiffener distribution and smooth geometric boundary can be obtained.Several numerical examples provided,including straight and curved stiffeners,hierarchical stiffeners,and a stiffened plate with a cutout,validate the effectiveness and applicability of the proposed approach. 展开更多
关键词 Topology optimization stiffened plate structures moving morphable component(mmc) straight/curved skeletons
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Topology optimization of plate structures using plate element-based moving morphable component(MMC)approach 被引量:4
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作者 Tianchen Cui Zhi Sun +3 位作者 Chang Liu Linyuan Li Ronghua Cui Xu Guo 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2020年第2期412-421,共10页
A topology optimization approach for designing the layout of plate structures is proposed in this article.In this approach,structural mechanical behavior is analyzed under the framework of Kirchhoff plate theory,and s... A topology optimization approach for designing the layout of plate structures is proposed in this article.In this approach,structural mechanical behavior is analyzed under the framework of Kirchhoff plate theory,and structural topology is described explicitly by a set of moving morphable components.Compared to the existing treatments where structural topology is generally described in an implicit manner,the adopted explicit geometry/layout description has demonstrated its advantages on several aspects.Firstly,the number of design variables is reduced substantially.Secondly,the obtained optimized designs are pure black-and-white and contain no gray regions.Besides,numerical experiments show that the use of Kirchhoff plate element helps save 95-99%computational time,compared with traditional treatments where solid elements are used for finite element analysis.Moreover the accuracy of the proposed method is also validated through a comparison with the corresponding theoretical solutions.Several numerical examples are also provided to demonstrate the effectiveness of the proposed approach. 展开更多
关键词 Plate structure Topology optimization moving morphable component(mmc) Kirchhoff plate theory
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Explicit Topology Optimization with Moving Morphable Component(MMC)Introduction Mechanism 被引量:3
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作者 Tianchen Cni Zongliang Du +2 位作者 Chang Liu Zhi Sun Xu Guo 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2022年第3期384-408,共25页
In this article,an explicit topology optimization approach with components-growing ability is proposed under the moving morphable component(MMC)framework.In this approach,the shape and topology layout of structures ar... In this article,an explicit topology optimization approach with components-growing ability is proposed under the moving morphable component(MMC)framework.In this approach,the shape and topology layout of structures are explicitly optimized by growth evolution of moving morphable components.To this end,a competition criterion is developed to optimize the structural layout from two options:adding several new components or changing the current layout.In addition,some numerical technqiues are also developed to preserve the stability of the iterative process.The present topology optimization approach allows rational generation of new components and does not require a specific distribution of components in the initial design,which is compulsory for the conventional MMC method.Three numerical examples are provided to illustrate the effectiveness of the proposed method.The optimization results indicate that the proposed method does have the potential to improve the existing MMC-based explicit topology optimization framework by eliminating the initial design dependency of optimal solutions. 展开更多
关键词 Topology optimization moving morphable component(mmc) Component introduction mechanism
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Topology Optimization Considering Steady-State Structural Dynamic Responses via Moving Morphable Component(MMC)Approach 被引量:1
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作者 Jialin Li Youwei Zhang +3 位作者 Zongliang Du Weisheng Zhang Xinglin Guo Xu Guo 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2022年第6期949-960,共12页
This work presents a moving morphable component(MMC)-based framework for solving topology optimization problems considering both single-frequency and band-frequency steady-state structural dynamic responses.In this wo... This work presents a moving morphable component(MMC)-based framework for solving topology optimization problems considering both single-frequency and band-frequency steady-state structural dynamic responses.In this work,a set of morphable components are introduced as the basic building blocks for topology optimization,and the optimized structural layout can be found by optimizing the parameters characterizing the locations and geometries of the components explicitly.The degree of freedom(DOF)elimination technique is also employed to delete unnecessary DOFs at each iteration.Since the proposed approach solves the corresponding optimization problems in an explicit way,some challenging issues(e.g.,the large computational burden related to finite element analysis and sensitivity analysis,the localized eigenmodes in low material density regions,and the impact of excitation frequency on the optimization process)associated with the traditional approaches can be circumvented naturally.Numerical results show that the proposed approach is effective for solving topology optimization problems involving structural dynamic behaviors,especially when high-frequency responses are considered. 展开更多
关键词 Topology optimization moving morphable component(mmc) Structural dynamic response Dynamic compliance
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A meshless moving morphable component-based method for structural topology optimization without weak material
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作者 Linyuan Li Chang Liu +2 位作者 Zongliang Du Weisheng Zhang Xu Guo 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2022年第5期72-87,I0002,共17页
Traditional topology optimization methods often introduce weak artificial material to mimic voids to avoid the singularity of the global stiffness matrix and carry out topology optimization with a fixed finite element... Traditional topology optimization methods often introduce weak artificial material to mimic voids to avoid the singularity of the global stiffness matrix and carry out topology optimization with a fixed finite element(FE)mesh.This treatment,however,may not only increase the computational cost for structural analysis but also lead to unfavorable numerical instabilities,especially when large deformations and dynamic/buckling behaviors are involved.In the present work,a new meshless moving morphable component-based method(ML-MMC),which structural analysis is carried out only on the solid region occupied by components,is proposed.In this approach,the coupling of discrete components is achieved through the adaptively constructed influence domain of the meshless shape function.Therefore,the singularity problem of the stiffness matrix can be naturally avoided without introducing weak artificial material.Compared with traditional methods,the number of degrees of freedoms(DOFs)can be reduced substantially under this treatment.The effectiveness of the proposed approach is also illustrated by some representative examples. 展开更多
关键词 Topology optimization moving morphable components(mmcs) Meshless method Influence domain Numerical integration
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基于移动可变形组件法的格栅平板隔振结构自振频率拓扑优化
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作者 周锦航 商超 +2 位作者 王强勇 代成名 李刚 《振动与冲击》 北大核心 2025年第11期149-156,171,共9页
隔振结构在工程结构中主要用于设备与主体结构的连接,其动力学特性对隔振效果有着显著影响。通过移动可变形组件方法,针对典型的格栅平板隔振结构,解决其基频拓扑优化问题。首先,使用梁单元对格栅平板隔振结构进行模型简化;其次,基于简... 隔振结构在工程结构中主要用于设备与主体结构的连接,其动力学特性对隔振效果有着显著影响。通过移动可变形组件方法,针对典型的格栅平板隔振结构,解决其基频拓扑优化问题。首先,使用梁单元对格栅平板隔振结构进行模型简化;其次,基于简化后的优化对象的梁单元结构进行移动可变形组件框架的改进,加入基于改进框架的冗余梁单元自适应修剪,提升计算效率;最后,计算不同工况下设备布局以及以单频和多频作为优化目标的拓扑优化结果并进行比对。该方法对隔振结构设计中如何提升结构基频并兼顾结构轻量化,避免在工作频率范围上共振现象的产生有实际意义。 展开更多
关键词 格栅平板隔振结构 梁单元 移动可变形组件法 基频特性
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基于SIMP-MMC结构尺寸精确控制拓扑优化方法 被引量:7
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作者 张军峰 廖靖宇 刘恩海 《机械强度》 CAS CSCD 北大核心 2022年第1期102-110,共9页
随着结构拓扑优化方法的发展,为提高其优化结果的工程可制造性,部分学者提出了整合现有拓扑优化方法的策略。具体地,探讨了基于变密度法与可移动变形组件法相融合的拓扑优化方法。该方法首先利用变密度法中的幂函数特性,以快速获得结构... 随着结构拓扑优化方法的发展,为提高其优化结果的工程可制造性,部分学者提出了整合现有拓扑优化方法的策略。具体地,探讨了基于变密度法与可移动变形组件法相融合的拓扑优化方法。该方法首先利用变密度法中的幂函数特性,以快速获得结构主传力路径;其次针对变密度法中的灰度单元,提出采用Otsu阈值处理算法以最大化反映二值拓扑结构信息;在此基础上,利用形态学思想构建了以结构骨架拐点为分界的组件,并过渡到可移动变形组件法完成优化,最终获得精确结构尺寸。分别通过对二维与三维数值算例的最小柔度拓扑优化问题计算,得到结构边界光滑且精确尺寸的优化结果,验证了该方法的有效性。 展开更多
关键词 Otsu阈值处理方法 形态学思想 变密度法 可移动变形组件法 最小柔度
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数据驱动下的声学器件音质优化 被引量:1
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作者 许磊 张维声 +1 位作者 朱宝 郭旭 《应用数学和力学》 CSCD 北大核心 2024年第3期253-260,共8页
音质是声学器件声音表现的重要衡量标准.但音质的优化过程需要对大量频点的响应进行协同优化,造成优化问题的可求解性较差.该文提出了一种数据驱动下的声学通道拓扑优化设计方法,可实现声-结构系统中的声频响快速预测,进而借助显式拓扑... 音质是声学器件声音表现的重要衡量标准.但音质的优化过程需要对大量频点的响应进行协同优化,造成优化问题的可求解性较差.该文提出了一种数据驱动下的声学通道拓扑优化设计方法,可实现声-结构系统中的声频响快速预测,进而借助显式拓扑优化技术实现声学器件的音质优化.通过人工神经网络对结构几何参数、激励频率与声频响之间的非线性关系进行建模,以可移动变形组件(moving morphable components,MMC)法中的结构几何参数、激励频率为输入变量,以声压频响作为输出变量,通过训练多层前馈网络建立了声频响的人工神经网络模型.所得结果可以有效地将目标频带内的声压级范围差从44.89 dB缩小至6.49 dB,相较于传统优化方法,求解速度约为之前的16.3倍,表明了当前方法对音质优化问题的快速求解具有明显效果. 展开更多
关键词 拓扑优化 声-结构系统 人工神经网络 可移动变形组件法 音质
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基于压电驱动的多材料主动结构显式拓扑优化设计
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作者 延晓晔 赖旗 +1 位作者 孟尧 张维声 《应用数学和力学》 CSCD 北大核心 2024年第11期1372-1380,共9页
结构的轻量化设计在工业领域中一直受到高度重视.与仅通过材料本身的刚度抵抗外界载荷作用的被动结构不同,主动结构通过主动改变结构的内力驱动变形从而实现结构轻量化.该文提出了一种基于可移动变形组件(moving morphable components,M... 结构的轻量化设计在工业领域中一直受到高度重视.与仅通过材料本身的刚度抵抗外界载荷作用的被动结构不同,主动结构通过主动改变结构的内力驱动变形从而实现结构轻量化.该文提出了一种基于可移动变形组件(moving morphable components,MMC)法的压电多材料主动结构的显式拓扑优化方法.该方法在满足位移约束的前提下,通过同时优化结构拓扑以及压电驱动器的分布实现了主动结构的总质量最小化.为了优化极化特征以实现复杂载荷环境下的自适应压电驱动作用,引入3组独立的MMC组件分别描述弹性材料和压电材料的分布及其相应的极化特征,以得到具有显式几何描述的复合材料主动结构.数值算例表明相比于被动结构,基于压电驱动作用的多材料主动结构能更有效地实现结构轻量化设计. 展开更多
关键词 移动可变形组件法 拓扑优化 多材料 压电效应 主动结构
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蒙皮点阵一体化支撑结构的移动可变形组件优化设计及空间站应用 被引量:11
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作者 张啸雨 刘畅 +4 位作者 施丽铭 蒋旭东 曾惠忠 周浩 郭旭 《固体力学学报》 CAS CSCD 北大核心 2022年第5期551-563,共13页
中国空间站是我国研制的系统最为复杂的载人航天器,其中有效载荷支撑结构的高效轻量化设计是工程研制过程中遇到的技术难题.论文介绍了受晶体对称性启发的增材制造自支撑三维点阵结构设计方法,发展了基于蒙皮点阵一体化结构形式的移动... 中国空间站是我国研制的系统最为复杂的载人航天器,其中有效载荷支撑结构的高效轻量化设计是工程研制过程中遇到的技术难题.论文介绍了受晶体对称性启发的增材制造自支撑三维点阵结构设计方法,发展了基于蒙皮点阵一体化结构形式的移动可变形组件(MMC)拓扑优化方法,完成了面向增材制造的中国空间站某相机支撑结构的优化设计,该结构采用激光选区熔化成形(SLM)工艺制造,通过了力学试验考核,实现结构减重50%,基频提高35%,完成了基于MMC方法的蒙皮点阵一体化结构在我国载人航天领域的首次型号应用与在轨验证. 展开更多
关键词 蒙皮点阵一体化结构 自支撑三维点阵 移动可变形组件方法 拓扑优化 增材制造 中国空间站
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基于数据驱动的舵面结构优化设计 被引量:6
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作者 时光辉 贾宜播 +4 位作者 郝文宇 武文华 李强 林晔 杜宗亮 《力学学报》 EI CAS CSCD 北大核心 2023年第11期2577-2587,共11页
在航空航天领域,基于结构拓扑优化理论的轻量化设计需求逐步增加;而一些高端装备的空气舵通常服役于严酷的热力耦合环境中,对其进行高效地轻量化设计兼具挑战和重要意义.对于给定的载荷,薄壁结构的刚度特性可以通过增加肋或加强筋而得... 在航空航天领域,基于结构拓扑优化理论的轻量化设计需求逐步增加;而一些高端装备的空气舵通常服役于严酷的热力耦合环境中,对其进行高效地轻量化设计兼具挑战和重要意义.对于给定的载荷,薄壁结构的刚度特性可以通过增加肋或加强筋而得到显著增强,这与空气舵结构的设计需求高度一致.然而,传统隐式拓扑优化框架下的加筋设计存在设计变量数目多、计算效率较低、不易保证筋条几何特征以及不便直接将优化设计结果导入CAD系统等问题.本研究采用了全新的显式拓扑优化方法-移动可变形组件法(MMC),并结合数据驱动对具有异形封闭几何特征的空气舵进行高效加筋设计.该方法直接对筋条骨架的几何信息进行优化,具有设计变量少、计算效率高、优化结果可与CAD软件无缝衔接等优势,从而解决了采用隐式拓扑优化方法及后续模型重构、参数优化等冗余步骤所面临的优化周期长、对设计人员经验依赖性强等问题.进一步,建立了加筋布局与关键力学性质映射的人工神经网络模型;将其作为代理模型进行优化可极为高效地得到高质量的初始设计,从而显著提升了舵面结构优化设计的效率.文章设计框架融合了结构拓扑优化算法与人工神经网络技术,可以推广应用于其他高端装备的智能设计. 展开更多
关键词 拓扑优化 移动可变形组件法 数据驱动 舵面结构 优化设计
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考虑平稳随机响应的显式结构拓扑优化 被引量:3
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作者 李佳霖 张有为 +2 位作者 张维声 郭杏林 郭旭 《计算力学学报》 CAS CSCD 北大核心 2023年第4期505-513,共9页
随机载荷是工程结构在服役中经常承受的一种复杂的载荷形式,通常采用统计学特性对其进行描述。对随机载荷作用下的结构进行拓扑优化设计是一项极具挑战性的工作,其主要难点在于,(1)传统隐式拓扑优化方法的设计变量数巨大,且用于结构动... 随机载荷是工程结构在服役中经常承受的一种复杂的载荷形式,通常采用统计学特性对其进行描述。对随机载荷作用下的结构进行拓扑优化设计是一项极具挑战性的工作,其主要难点在于,(1)传统隐式拓扑优化方法的设计变量数巨大,且用于结构动态性能拓扑优化问题时存在虚假模态等数值不稳定问题;(2)对结构的随机动力响应统计量及其灵敏度进行计算需要极大的计算量;(3)隐式拓扑优化框架下的分析模型与优化模型强耦合,导致结构有限元模型具有极高的自由度,进一步加剧了上述困难。本文基于移动可变形组件框架和虚拟激励法理论,提出了一种平稳随机载荷作用下结构的显式拓扑优化设计方法。通过将一系列可移动和可变形的结构组件作为优化的基础单元,实现了使用少量设计变量描述结构拓扑构型的目的。采用虚拟激励法、自由度删除技术和模态位移法有效降低了对结构进行随机振动分析和灵敏度分析的计算量。在此基础上,以结构柔顺度的标准差为目标函数、以设计域内实体材料的体积为约束条件,实现了限带白噪声作用下结构的拓扑优化设计,并通过数值算例验证了本文方法的有效性。 展开更多
关键词 拓扑优化 移动可变形组件法(mmc) 自由度删除技术 虚拟激励法 平稳随机响应
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Hybrid algorithms for handling the numerical noise in topology optimization 被引量:2
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作者 Pooya Rostami Javad Marzbanrad 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2020年第2期536-554,共19页
This paper presents new hybrid methods for the identification of optimal topologies by combining the teaching-learning based optimization(TLBO)and the method of moving asymptotes(MMA).The topology optimization problem... This paper presents new hybrid methods for the identification of optimal topologies by combining the teaching-learning based optimization(TLBO)and the method of moving asymptotes(MMA).The topology optimization problem is parameterizing with a low dimensional explicit method called moving morphable components(MMC),to make the use of evolutionary algorithms more efficient.Gradient-based solvers have good performance in solving large-scale topology optimization problems.However,in unconventional cases same as crashworthiness design in which there is numerical noise in the gradient information,the uses of these algorithms are unsuitable.The standard evolutionary algorithms can solve such problems since they don’t need gradient information.However,they have a high computational cost.This paper is based upon the idea of combining metaheuristics with mathematical programming to handle the probable noises and have faster convergence speed.Due to the ease of computations,the compliance minimization problem is considered as the case study and the artificial noise is added in gradient information. 展开更多
关键词 Topology optimization Teaching-learning based optimization method of moving asymptotes moving morphable components
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面向不锈钢地铁整车结构的显式拓扑优化设计 被引量:4
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作者 林鹏 于洋洋 +2 位作者 田洪雷 户迎灿 陈书杰 《固体力学学报》 CAS CSCD 北大核心 2022年第1期111-120,共10页
随着轨道车辆轻量化设计需求日益突出,拓扑优化技术正加速应用于车辆关键局部结构高性能轻量化设计并取得较显著减重成果,但受限于制造要求和较大的计算规模,整车级车体结构拓扑优化已为轨道车辆设计阶段的难点之一.论文针对某不锈钢地... 随着轨道车辆轻量化设计需求日益突出,拓扑优化技术正加速应用于车辆关键局部结构高性能轻量化设计并取得较显著减重成果,但受限于制造要求和较大的计算规模,整车级车体结构拓扑优化已为轨道车辆设计阶段的难点之一.论文针对某不锈钢地铁车体结构设计需求,基于移动可变形组件法(Moving Morphable Component, MMC),开展显式拓扑优化框架下的整车级车体结构优化设计.依据EN 12663标准工况及车体设计空间,建立了地铁车体结构MMC拓扑优化数学模型,给出了相应的拓扑优化设计流程,搭建了地铁车体结构显示拓扑优化算法平台.按照设计流程,基于灵敏度的驱动,以车体结构的整体刚度作为设计目标,同时设置质量约束,通过调控组件移动、旋转和变形,实现对整车级车体结构的拓扑优化研究,确定了车体拓扑构型.基于MMC方法,可有效降低优化过程中的计算量,直接获取较为清晰的不锈钢地铁车体结构整车级传力路径,论文数值算例验证了该算法的优势. 展开更多
关键词 移动可变形组件法(mmc) 显式拓扑优化 整车轻量化设计 不锈钢地铁
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可移动变形组件法中组件数对拓扑结构优化的影响 被引量:3
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作者 李鹏 杜艺博 +1 位作者 彭嘉潮 刘根柱 《制造技术与机床》 北大核心 2020年第8期84-88,共5页
可移动变形组件法因具有设计变量少、可显式表达结构几何参数等优点,现已广泛被应用于工程结构的拓扑优化设计中。针对可移动变形组件法中组件数目对拓扑结构优化的影响,基于可移动变形组件框架,利用有限元分析和灵敏度分析求解设计域... 可移动变形组件法因具有设计变量少、可显式表达结构几何参数等优点,现已广泛被应用于工程结构的拓扑优化设计中。针对可移动变形组件法中组件数目对拓扑结构优化的影响,基于可移动变形组件框架,利用有限元分析和灵敏度分析求解设计域的结构场,以移动渐近线法更新设计变量,以体积为约束函数,以结构柔度最小为目标函数,研究了不同组件数目对特定受力条件下短板算例的拓扑结构优化的影响。结果表明随着组件数目从6个增加至20个时,目标函数值相应减小,拓扑结构轮廓更为光滑、细节更加突出;然而其拓扑优化结构的复杂程度相应增加、优化耗时增加。研究结果为实际拓扑优化中合理选择组件数目提供了有益的借鉴。 展开更多
关键词 可移动变形组件法 有限元分析 灵敏度分析 拓扑优化
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基于接头连接的核级管道结构优化研究
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作者 缪雨菡 张宇 +1 位作者 高李霞 赖姜 《科学技术创新》 2023年第6期215-220,共6页
在核电系统中,核级管道数量众多且布置复杂,特别是大型管道不仅价格昂贵、不易制造,且当某一部分出现问题时需整根更换,维护成本极高。为同时满足管道系统力学性能和降低更换成本、提高结构可制造性,首先在显式描述的可移动变形组件法(M... 在核电系统中,核级管道数量众多且布置复杂,特别是大型管道不仅价格昂贵、不易制造,且当某一部分出现问题时需整根更换,维护成本极高。为同时满足管道系统力学性能和降低更换成本、提高结构可制造性,首先在显式描述的可移动变形组件法(MMC)基础上,提出了基于接头连接的核级管道结构拓扑优化方法。在该方法中,管道结构拓扑通过一组具有显式几何信息的组件表示,使用少量设计变量即可完整描述管道布局。以刚度最大化为目标,以体积分数为约束,建立了基于MMC显式拓扑优化方法的问题列式。最后以短板算例验证了该方法的有效性。所提核级管道结构轻量化设计方法不仅可以有效降低制造成本、增强结构稳定性,还能提高可制造性和可更换性。 展开更多
关键词 核级管道 拓扑优化 可移动组件法 可制造性
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Topology Optimization of Acoustic-Mechanical Structures for Enhancing Sound Quality
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作者 Lei Xu Weisheng Zhang +1 位作者 Zhenyu Liu Xu Guo 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2023年第5期612-623,共12页
Sound quality is one of the essential criteria for measuring the acoustic performance of acoustic devices.In contrast to the optimization of sound characteristics,both the quantitative description of sound quality and... Sound quality is one of the essential criteria for measuring the acoustic performance of acoustic devices.In contrast to the optimization of sound characteristics,both the quantitative description of sound quality and the numerical instability that may occur during optimization need to be investigated.In the present work,an explicit topology optimization approach is proposed to enhance the sound quality of acoustic-mechanical structures,where the sound quality is described,resorting to frequency response within a specified frequency band.To this end,the moving morphable component(MMC)-based approach is adopted to achieve the explicit topology design,and the mixed finite element method is introduced to evaluate the sound quality.With the use of the explicit description of MMC,the acoustic-structure boundary can be captured accurately,which is important for acoustic response analysis.Moreover,a regularization topology optimization formulation is also developed to avoid the numerical issues produced in some special frequency bands.Numerical examples demonstrate the effectiveness of the proposed approach in improving sound quality performance. 展开更多
关键词 Acoustic-structure Topology optimization moving morphable component(mmc) Sound performance
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