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基于Altair Inspire的汽车轮毂轻量化设计研究 被引量:1
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作者 张大鹏 王楚楚 《农业装备与车辆工程》 2025年第1期58-62,共5页
为提高汽车轮毂的刚度、强度、可靠性等,降低汽车轮毂的成本和质量,采用Altair Inspire软件对汽车轮毂进行初始强度分析和拓扑优化。首先,根据汽车轮毂初始的几何形状、载荷条件、约束条件和材料属性建立有限元模型,进行线性静力学分析... 为提高汽车轮毂的刚度、强度、可靠性等,降低汽车轮毂的成本和质量,采用Altair Inspire软件对汽车轮毂进行初始强度分析和拓扑优化。首先,根据汽车轮毂初始的几何形状、载荷条件、约束条件和材料属性建立有限元模型,进行线性静力学分析,获得汽车轮毂的米赛斯应力、最大位移和最小安全系数分布云图。然后,利用Altair Inspire的拓扑优化功能对汽车轮毂进行结构拓扑优化,获取轮毂的轻量化概念实体模型。对比分析优化前后汽车轮毂模型的结构性能指标,结果表明,Altair Inspire的拓扑优化方法可以有效改善轮毂的结构性能指标,最佳方案优化模型实现了28.9%的减重,最大米赛斯应力降低了2 MPa,最大位移降低了1.39μm,最小安全系数提升了0.1。 展开更多
关键词 Altair inspire 轮毂 拓扑优化
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基于Inspire的三臂挖掘机二级臂拓扑优化设计与仿真分析
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作者 赵铮宇 朱颜 +3 位作者 程兴群 相国 刘畅 韩文超 《机械设计》 北大核心 2025年第10期133-139,共7页
以多功能三臂挖掘机二级臂为研究对象,以二级臂的质量最小为设计目标,以设计空间的单元相对密度为设计变量,以模型强度和刚度为约束条件,利用Altair Inspire对原模型结构进行拓扑优化,去除了原模型多余材料,并利用Inspire对模型进行了... 以多功能三臂挖掘机二级臂为研究对象,以二级臂的质量最小为设计目标,以设计空间的单元相对密度为设计变量,以模型强度和刚度为约束条件,利用Altair Inspire对原模型结构进行拓扑优化,去除了原模型多余材料,并利用Inspire对模型进行了不同工况的受力分析,进而得出最优的优化重构模型,最终二级臂质量减小约33.6%。对比优化前后有限元静强度分析结果发现,该模型优化后的米塞斯应力虽然有所增大,但是仍远小于材料屈服强度,为挖掘机的设计生产提供设计依据,为零部件结构设计提供一种新的轻量化设计思路。最后,3D打印出10%比例的模型进行仿真试验,结果表明:结构优化后的模型可有效降低能耗,提高工作效率,验证了优化的有效性。 展开更多
关键词 二级臂 拓扑优化 inspire 变密度法 轻量化设计 3D打印 仿真分析
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Honeycomb-spiderweb-inspired self-similar hybrid cellular structures for impact applications
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作者 K.Tewari M.K.Pandit +1 位作者 M.M.Mahapatra P.R.Budarapu 《Defence Technology(防务技术)》 2025年第1期182-200,共19页
Inspired by nature's self-similar designs,novel honeycomb-spiderweb based self-similar hybrid cellular structures are proposed here for efficient energy absorption in impact applications.The energy absorption is e... Inspired by nature's self-similar designs,novel honeycomb-spiderweb based self-similar hybrid cellular structures are proposed here for efficient energy absorption in impact applications.The energy absorption is enhanced by optimizing the geometry and topology for a given mass.The proposed hybrid cellular structure is arrived after a thorough analysis of topologically enhanced self-similar structures.The optimized cell designs are rigorously tested considering dynamic loads involving crush and high-velocity bullet impact.Furthermore,the influence of thickness,radial connectivity,and order of patterning at the unit cell level are also investigated.The maximum crushing efficiency attained is found to be more than 95%,which is significantly higher than most existing traditional designs.Later on,the first and second-order hierarchical self-similar unit cell designs developed during crush analysis are used to prepare the cores for sandwich structures.Impact tests are performed on the developed sandwich structures using the standard 9-mm parabellum.The influence of multistaging on impact resistance is also investigated by maintaining a constant total thickness and mass of the sandwich structure.Moreover,in order to avoid layer-wise weak zones and hence,attain a uniform out-of-plane impact strength,off-setting the designs in each stage is proposed.The sandwich structures with first and second-order self-similar hybrid cores are observed to withstand impact velocities as high as 170 m/s and 270 m/s,respectively. 展开更多
关键词 Sandwich structures Honeycomb-spider web inspired Self-similar hierarchy Crush analysis High-velocity impact Strong and weak zones Multistaging
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Muscle‑Inspired Anisotropic Aramid Nanofibers Aerogel Exhibiting High‑Efficiency Thermoelectric Conversion and Precise Temperature Monitoring for Firefighting Clothing
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作者 Zhicai Yu Yuhang Wan +8 位作者 Mi Zhou Md Hasib Mia Siqi Huo Lele Huang Jie Xu Qing Jiang Zhenrong Zheng Xiaodong Hu Hualing He 《Nano-Micro Letters》 2025年第9期213-236,共24页
Enhancing the firefighting protective clothing with exceptional thermal barrier and temperature sensing functions to ensure high fire safety for firefighters has long been anticipated,but it remains a major challenge.... Enhancing the firefighting protective clothing with exceptional thermal barrier and temperature sensing functions to ensure high fire safety for firefighters has long been anticipated,but it remains a major challenge.Herein,inspired by the human muscle,an anisotropic fire safety aerogel(ACMCA)with precise self-actuated temperature monitoring performance is developed by combining aramid nanofibers with eicosane/MXene to form an anisotropically oriented conductive network.By combining the two synergies of the negative temperaturedependent thermal conductive eicosane,which induces a high-temperature differential,and directionally ordered MXene that establishes a conductive network along the directional freezing direction.The resultant ACMCA exhibited remarkable thermoelectric properties,with S values reaching 46.78μV K^(−1)andκvalues as low as 0.048 W m^(−1)K^(−1)at room temperature.Moreover,the prepared anisotropic aerogel ACMCA exhibited electrical responsiveness to temperature variations,facilitating its application in intelligent temperature monitoring systems.The designed anisotropic aerogel ACMCA could be incorporated into the firefighting clothing as a thermal barrier layer,demonstrating a wide temperature sensing range(50-400℃)and a rapid response time for early high-temperature alerts(~1.43 s).This work provides novel insights into the design and application of temperature-sensitive anisotropic aramid nanofibers aerogel in firefighting clothing. 展开更多
关键词 Human muscle inspired Anisotropic thermoelectric aerogel Temperature sensing High-temperature warning Firefighting clothing
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Is brain-inspired intelligence a new dawn for infrared imaging missile anti-interference strategies?
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作者 Shuangxi LIU Wei HUANG Xiaoqian CHEN 《Chinese Journal of Aeronautics》 2025年第5期1-4,共4页
1.Introduction Infrared Imaging Missiles(IRIMs)are advanced weapons utilizing infrared technology for target detection and tracking.Their sensors capture thermal signatures and convert them into electronic images,enab... 1.Introduction Infrared Imaging Missiles(IRIMs)are advanced weapons utilizing infrared technology for target detection and tracking.Their sensors capture thermal signatures and convert them into electronic images,enabling precise target identification and tracking.To a certain extent,the all-weather adaptability of IRIMs enables their effective operation across diverse environmental conditions,providing high targeting accuracy and cost efficiency. 展开更多
关键词 target detection infrared technology thermal signatures brain inspired intelligence infrared imaging missiles irims electronic imagesenabling precise target identification advanced weapons
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Seaweed-Inspired NH_(4)V_(4)O_(10)-Ti_(3)C_(2)T_(x) MXene/Carbon Nanofibers for High-Performance Aqueous Zinc-Ion Batteries
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作者 Seulgi Kim Seojin Woo +4 位作者 Segi Byun Hyunki Kim Han Seul Kim Sang Mun Jeong Dongju Lee 《Energy & Environmental Materials》 2025年第3期49-57,共9页
Aqueous zinc-ion batteries(AZIBs)have emerged as promising,practical energy storage devices based on their non-toxic nature,environmental friendliness,and high energy density.However,excellent rate characteristics and... Aqueous zinc-ion batteries(AZIBs)have emerged as promising,practical energy storage devices based on their non-toxic nature,environmental friendliness,and high energy density.However,excellent rate characteristics and stable long-term cycling performance are essential.These essential aspects create a need for superior cathode materials,which represents a substantial challenge.In this study,we used MXenes as a framework for NH_(4)V_(4)O_(10)(NVO)construction and developed electrodes that combined the high capacity of NVO with the excellent conductivity of MXene/carbon nanofibers(MCNFs).We explored the electrochemical characteristics of electrodes with varying NVO contents.Considering the distinctive layered structure of NVO,the outstanding conductivity of MCNFs,and the strong synergies between the two components.NVO-MCNFs exhibited better charge transfer compared with earlier materials,as well as more ion storage sites,excellent conductivity,and short ion diffusion pathways.A composite electrode with optimized NVO content exhibited an excellent specific capacitance of 360.6mAh g^(-1) at 0.5 A g^(-1) and an outstanding rate performance.In particular,even at a high current density of 10 A g^(-1),the 32NVO-MCNF exhibited impressive cycling stability:88.6%over 2500 cycles.The mechanism involved was discovered via comprehensive characterization.We expect that the fabricated nanofibers will be useful in energy storage and conversion systems. 展开更多
关键词 Aqueous Zinc Ion Batteries seaweed inspired Ti C Tx MXene superior cathode materialswhich Electrochemical Characteristics energy storage devices Rate Performance Carbon Nanofibers
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Travel inspires us
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作者 徐建 《疯狂英语(新读写)》 2025年第3期18-23,74,75,共8页
Travel is not just about seeing new places;it's about seeing the world through new eyes.It's an opportunity to learn,to grow and to be inspired.This enlightening journey begins the moment we step out of our co... Travel is not just about seeing new places;it's about seeing the world through new eyes.It's an opportunity to learn,to grow and to be inspired.This enlightening journey begins the moment we step out of our comfort zones. 展开更多
关键词 comfort zones LEARNING GROWTH INSPIRATION TRAVEL
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基于Altair Inspire的四旋翼无人机机身部件轻量化设计方法 被引量:3
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作者 陈子乐 左毅成 +2 位作者 马祺隽 张霖 安芬菊 《机械工程师》 2024年第1期71-76,共6页
无人机的续航能力是其性能优劣的一个重要指标,而影响续航的最主要因素是机身的质量,为了减轻无人机机身部件质量,利用Altair Inspire轻量化设计软件,对一种四旋翼无人机机身部件进行拓扑优化,几何重构、强度校核、并自动拟合重构得到... 无人机的续航能力是其性能优劣的一个重要指标,而影响续航的最主要因素是机身的质量,为了减轻无人机机身部件质量,利用Altair Inspire轻量化设计软件,对一种四旋翼无人机机身部件进行拓扑优化,几何重构、强度校核、并自动拟合重构得到优化模型,优化后的该模型仍存在一些缺陷,最后通过手动拟合重构得到进一步优化,达到在强度、最大位移和最小安全系数满足条件的情况下,尽可能减轻模型的质量,以达到轻量化的设计目的。结果表明,在满足强度、最大位移和最小安全系数要求的条件下,实现了71.8%的减重,有效减轻了质量,提高了无人机的续航能力,为无人机的轻量化设计提供了一种可行的方法。 展开更多
关键词 Altair inspire 无人机机身部件 轻量化设计
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基于Inspire软件的叉车门架支座盖拓扑优化设计 被引量:1
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作者 白德贵 胡春阳 《工程机械与维修》 2024年第11期9-11,共3页
针对3.5t叉车门架支座盖进行结构优化设计问题,建立了叉车多体动力学分析模型,求解后得到原门架支座位置受力曲线,根据受力曲线对原门架支座盖进行受力分析。采用ANSYS Workbench软件建立原门架支座盖有限元模型,进行静力学分析并得到... 针对3.5t叉车门架支座盖进行结构优化设计问题,建立了叉车多体动力学分析模型,求解后得到原门架支座位置受力曲线,根据受力曲线对原门架支座盖进行受力分析。采用ANSYS Workbench软件建立原门架支座盖有限元模型,进行静力学分析并得到应力结果。采用Altair Inspire软件对新门架支座盖进行拓扑优化设计,构建新门架支座盖的设计空间,对新门架支座盖进行约束加载,建立双向脱模优化约束模型,获得了新门架支座盖优化结果。 展开更多
关键词 inspire软件 叉车门架支座盖 多体动力学 拓扑优化设计 约束加载
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Design of a Bio-inspired,Two-winged,Flapping-wing Micro Air Vehicle with High-lift Performance 被引量:1
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作者 Kai Hu Huichao Deng +2 位作者 Shengjie Xiao Gongyu Yang Yuhong Sun 《Journal of Bionic Engineering》 SCIE EI CSCD 2024年第3期1191-1207,共17页
In this paper,we present the development of our latest flapping-wing micro air vehicle(FW-MAV),named Explobird,which features two wings with a wingspan of 195 mm and weighs a mere 25.2 g,enabling it to accomplish vert... In this paper,we present the development of our latest flapping-wing micro air vehicle(FW-MAV),named Explobird,which features two wings with a wingspan of 195 mm and weighs a mere 25.2 g,enabling it to accomplish vertical take-off and hover flight.We devised a novel gear-based mechanism for the flapping system to achieve high lift capability and reliability and conducted extensive testing and analysis on the wings to optimise power matching and lift performance.The Explobird can deliver a peak lift-to-weight ratio of 1.472 and an endurance time of 259 s during hover flight powered by a single-cell LiPo battery.Considering the inherent instability of the prototype,we discuss the derivatives of its longitudinal system,underscoring the importance of feedback control,position of the centre of gravity,and increased damping.To demonstrate the effect of damping enhancement on stability,we also designed a passive stable FW-MAV.Currently,the vehicle is actively stabilised in roll by adjusting the wing root bars and in pitch through high-authority tail control,whereas yaw is passively stabilised.Through a series of flight tests,we successfully demonstrate that our prototype can perform vertical take-off and hover flight under wireless conditions.These promising results position the Explobird as a robust vehicle with high lift capability,paving the way towards the use of FW-MAVs for carrying load equipment in multiple tasks. 展开更多
关键词 Flapping wing Biologically inspired robots Mechanical design Flight dynamics Damping enhancement
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基于Inspire的采摘机械臂结构优化设计 被引量:3
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作者 叶霜 唐萌 +1 位作者 陈斌 周志冰 《南方农机》 2024年第19期25-28,45,共5页
【目的】现有油茶采摘机的机械臂普遍存在设计冗杂且自重较大的问题,导致整体体积过大而无法在低矮的林区间隙穿行,亟需进一步推进采摘机械小型化、轻量化发展。【方法】以采摘机械臂的主臂为研究对象,从材料选型和结构优化两方面进行... 【目的】现有油茶采摘机的机械臂普遍存在设计冗杂且自重较大的问题,导致整体体积过大而无法在低矮的林区间隙穿行,亟需进一步推进采摘机械小型化、轻量化发展。【方法】以采摘机械臂的主臂为研究对象,从材料选型和结构优化两方面进行轻量化研究,以最大化刚度为设计目标,采用Altair Inspire软件的OptiStruct拓扑优化求解器,分析主臂零件的载荷工况和受力约束,对设计空间内的材料重新布局。【结果】1)铝合金材料的优化重构模型质量减轻了32%。2)优化后主臂的最大米塞斯应力为7.770 MPa,最大位移为0.07091 mm,虽然这两个参数有稍许提高,但仍远小于材料的屈服应力,且安全系数仍在较高水平。【结论】优化效果显著,有效地降低了零件的重量和成本,提高了零件的强度和耐用度,进一步提高了采摘机械臂的结构效益和经济效益。 展开更多
关键词 机械臂 inspire 拓扑优化 轻量化
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基于Inspire的新能源汽车轮毂轻量化设计 被引量:2
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作者 马靖 《内燃机与配件》 2024年第15期13-15,共3页
新能源汽车的轻量化设计旨在减少汽车的整体重量,提高新能源汽车的能源利用效率,增加行驶里程,是实现其长期发展的重要途径。本文利用Solidworks建立新能源汽车轮毂模型,在分析其实际受力情况的基础上,运用Altair Inspire软件以最大化... 新能源汽车的轻量化设计旨在减少汽车的整体重量,提高新能源汽车的能源利用效率,增加行驶里程,是实现其长期发展的重要途径。本文利用Solidworks建立新能源汽车轮毂模型,在分析其实际受力情况的基础上,运用Altair Inspire软件以最大化刚度为目标对其进行轻量化设计,得到三种不同设计方案的位移、安全系数和米塞斯等效应力值,对比分析优缺点后,选取最佳优化设计方案。优化分析结果显示,轮毂质量为7.409,较优化前减轻了10.2%,在满足轮毂强度要求和安全性的前提下,实现了轮毂的轻量化,为后续优化设计提供了参考。 展开更多
关键词 新能源汽车轮毂 拓扑优化 Altair inspire 轻量化
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基于Inspire软件的汽车减震器结构轻量化设计 被引量:5
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作者 籍镭钒 米月花 +3 位作者 吴梦骐 陈高杭 苏雨 苏国丽 《汽车实用技术》 2024年第13期43-48,共6页
在现代汽车工业中,悬挂系统的性能直接关联到行车的平稳性与舒适性,而减震器作为其核心组件,在减少震动、提升乘坐体验方面发挥着至关重要的作用。文章借助Inspire软件和拓扑优化技术,在优化步骤中引入了反馈机制以实现设计过程的动态调... 在现代汽车工业中,悬挂系统的性能直接关联到行车的平稳性与舒适性,而减震器作为其核心组件,在减少震动、提升乘坐体验方面发挥着至关重要的作用。文章借助Inspire软件和拓扑优化技术,在优化步骤中引入了反馈机制以实现设计过程的动态调整,同时设计一套三阶段方案的筛选流程,保证对减震器结构进行高效且有效的轻量化设计,从而提升减震器设计的性能与材料利用率。通过控制变量法探索不同方案下最优的轻量化设计为汽车减震器的创新及设计提供了可行方案。 展开更多
关键词 减震器 拓扑优化 轻量化设计 inspire软件
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基于Altair Inspire的飞机襟翼支架轻量化优化设计 被引量:1
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作者 芦维强 邓薪利 《机械工程师》 2024年第9期50-54,共5页
飞机襟翼支架是与其机翼连接的重要运动部件,为优化飞机襟翼支架结构,运用Altair Inspire软件对襟翼支架进行轻量化设计。在满足飞机机翼使用性能的条件下选用襟翼支架的材料为AL2014-AREO,依据10%、15%、30%体积约束目标下襟翼支架的... 飞机襟翼支架是与其机翼连接的重要运动部件,为优化飞机襟翼支架结构,运用Altair Inspire软件对襟翼支架进行轻量化设计。在满足飞机机翼使用性能的条件下选用襟翼支架的材料为AL2014-AREO,依据10%、15%、30%体积约束目标下襟翼支架的优化结果,通过Poly NURBS自动拟合和手动拟合对优化模型进行几何重构与强度校核,得到最优轻量化模型。优化后的飞机襟翼支架的质量为46.31 g,比优化前下降了77.59%,极大地减轻了飞机襟翼结构的整体质量,并且优化后飞机襟翼支架的位移量、安全系数、米塞斯等效应力均符合设计要求。该研究为飞机襟翼支架的设计与改进提供了一种新思路。 展开更多
关键词 飞机襟翼支架 Altair inspire 拓扑优化 几何重构 轻量化
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Adaptive Network Sustainability and Defense Based on Artificial Bees Colony Optimization Algorithm for Nature Inspired Cyber Security
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作者 Chirag Ganguli Shishir Kumar Shandilya +1 位作者 Michal Gregus Oleh Basystiuk 《Computer Systems Science & Engineering》 2024年第3期739-758,共20页
Cyber Defense is becoming a major issue for every organization to keep business continuity intact.The presented paper explores the effectiveness of a meta-heuristic optimization algorithm-Artificial Bees Colony Algori... Cyber Defense is becoming a major issue for every organization to keep business continuity intact.The presented paper explores the effectiveness of a meta-heuristic optimization algorithm-Artificial Bees Colony Algorithm(ABC)as an Nature Inspired Cyber Security mechanism to achieve adaptive defense.It experiments on the Denial-Of-Service attack scenarios which involves limiting the traffic flow for each node.Businesses today have adapted their service distribution models to include the use of the Internet,allowing them to effectively manage and interact with their customer data.This shift has created an increased reliance on online services to store vast amounts of confidential customer data,meaning any disruption or outage of these services could be disastrous for the business,leaving them without the knowledge to serve their customers.Adversaries can exploit such an event to gain unauthorized access to the confidential data of the customers.The proposed algorithm utilizes an Adaptive Defense approach to continuously select nodes that could present characteristics of a probable malicious entity.For any changes in network parameters,the cluster of nodes is selected in the prepared solution set as a probable malicious node and the traffic rate with the ratio of packet delivery is managed with respect to the properties of normal nodes to deliver a disaster recovery plan for potential businesses. 展开更多
关键词 Artificial bee colonization adaptive defense cyber attack nature inspired cyber security cyber security cyber physical infrastructure
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Recent advances in nature inspired triboelectric nanogenerators for self-powered systems
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作者 Baosen Zhang Yunchong Jiang +3 位作者 Tianci Ren Baojin Chen Renyun Zhang Yanchao Mao 《International Journal of Extreme Manufacturing》 CSCD 2024年第6期76-105,共30页
Triboelectric nanogenerators(TENGs)stand at the forefront of energy harvesting innovation,transforming mechanical energy into electrical power through triboelectrification and electrostatic induction.This groundbreaki... Triboelectric nanogenerators(TENGs)stand at the forefront of energy harvesting innovation,transforming mechanical energy into electrical power through triboelectrification and electrostatic induction.This groundbreaking technology addresses the urgent need for sustainable and renewable energy solutions,opening new avenues for self-powered systems.Despite their potential,TENGs face challenges such as material optimization for enhanced triboelectric effects,scalability,and improving conversion efficiency under varied conditions.Durability and environmental stability also pose significant hurdles,necessitating further research towards more resilient systems.Nature inspired TENG designs offer promising solutions by emulating biological processes and structures,such as the energy mechanisms of plants and the textured surfaces of animal skins.This biomimetic approach has led to notable improvements in material properties,structural designs,and overall TENG performance,including enhanced energy conversion efficiency and environmental robustness.The exploration into bio-inspired TENGs has unlocked new possibilities in energy harvesting,self-powered sensing,and wearable electronics,emphasizing reduced energy consumption and increased efficiency through innovative design.This review encapsulates the challenges and advancements in nature inspired TENGs,highlighting the integration of biomimetic principles to overcome current limitations.By focusing on augmented electrical properties,biodegradability,and self-healing capabilities,nature inspired TENGs pave the way for more sustainable and versatile energy solutions. 展开更多
关键词 triboelectric nanogenerator nature inspired self-powered sensor self-powered system
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Post-Surgical Chest and Neck Radiographs to Confirm the Successful Placement of the Inspire Implant for Obstructive Sleep Apnea: A Case Report
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作者 Alice Barrington Gabriel Rashba +3 位作者 Eshwar Karupakula Amirmasoud Negarestani Hongmin Xu Emad Allam 《Open Journal of Radiology》 2024年第4期167-172,共6页
Obstructive sleep apnea (OSA) is a prevalent condition marked by repetitive pharyngeal collapse during sleep, often treated with continuous positive airway pressure (CPAP). However, CPAP compliance remains suboptimal,... Obstructive sleep apnea (OSA) is a prevalent condition marked by repetitive pharyngeal collapse during sleep, often treated with continuous positive airway pressure (CPAP). However, CPAP compliance remains suboptimal, leading to alternative treatments like the Inspire implant, which stimulates the hypoglossal nerve to maintain airway patency. This case report discusses a 75-year-old male with OSA and CPAP intolerance, successfully treated with the Inspire implant. Postoperative imaging confirmed the proper placement of the device, and the patient reported significant improvements in symptoms. This case highlights the expected radiographic findings of the device. 展开更多
关键词 inspire Implant Obstructive Sleep Apnea OSA Continuous Positive Airway Pressure CPAP Radiography
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基于Altair Inspire的码垛机器人大臂轻量化设计研究
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作者 张大鹏 王雪桃 肖扬 《内燃机与配件》 2024年第24期89-91,共3页
为实现码垛机器人大臂的刚度、强度、可靠性等,降低机械臂成本和质量,以某负载搬运码垛机器人大臂结构为研究对象,利用Inspire软件对码垛机器人模型进行简化,将大臂作为设计空间,对其进行几何重构,生成概念模型,并进行手动拟合,生成大... 为实现码垛机器人大臂的刚度、强度、可靠性等,降低机械臂成本和质量,以某负载搬运码垛机器人大臂结构为研究对象,利用Inspire软件对码垛机器人模型进行简化,将大臂作为设计空间,对其进行几何重构,生成概念模型,并进行手动拟合,生成大臂实体模型。以最小安全系数、最大位移、最大米塞斯应力为优化目标,对码垛机器人大臂进行轻量化设计。结果表明,Inspire的拓扑优化方法可以有效改善码垛机器人大臂的结构性能指标,最佳方案优化模型实现了76.8%的减重,最大米赛斯等效应力为128.0 MPa,最大位移为0.3128 mm,最小安全系数为2.6。 展开更多
关键词 码垛机器人 大臂 inspire 拓扑优化
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欧盟空间信息基础设施建设(INSPIRE):兼议对中国地学信息化的启示 被引量:12
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作者 刘荣梅 缪谨励 赵林林 《地质通报》 CAS CSCD 北大核心 2015年第8期1562-1569,共8页
欧盟空间信息基础设施(INSPIRE)是欧洲空间信息基础设施建设法令。目的是建立欧盟统一的空间信息基础设施,实现有关环境空间信息在统一的框架下全欧盟范围内的共享,便于跨区域的政策决策及应用。通过近7年的实施,INSPIRE完成了欧盟层面... 欧盟空间信息基础设施(INSPIRE)是欧洲空间信息基础设施建设法令。目的是建立欧盟统一的空间信息基础设施,实现有关环境空间信息在统一的框架下全欧盟范围内的共享,便于跨区域的政策决策及应用。通过近7年的实施,INSPIRE完成了欧盟层面的立法和各参与国层面具有法律效力的执行规则,制定了一系列技术规范和技术指南,并在各参与国中执行实施。总结分析欧盟空间信息基础设施(INSPIRE)的目的与意义、组织管理体系、实施方案、空间信息的融合与互操作、统一架构与相关规范等方面的相关经验,提出了对中国地学信息化的几点启示。 展开更多
关键词 inspire 空间数据与服务融合互操作 地学信息共享与服务
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基于SolidThinking Inspire的水平钻机机架设计 被引量:8
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作者 李阳 高常青 +2 位作者 杨波 徐征和 张治晖 《现代制造技术与装备》 2018年第3期6-8,共3页
使用SolidThinking Inspire软件,建立水平钻机下部加强板的拓扑空间,然后定义实际工况载荷和加工工艺,采用单一目标的方法进行拓扑优化,在合理的加强板拓扑优化空间之内获得了最佳的材料分布情况。在保证刚度的同时,要合理且最大程度地... 使用SolidThinking Inspire软件,建立水平钻机下部加强板的拓扑空间,然后定义实际工况载荷和加工工艺,采用单一目标的方法进行拓扑优化,在合理的加强板拓扑优化空间之内获得了最佳的材料分布情况。在保证刚度的同时,要合理且最大程度地降低材料质量。根据优化结果和实际情况进行CAD模型重建,并进行合理的应力分析,根据分析结果判断设计的合理性。 展开更多
关键词 水平钻机机架 拓扑优化 SolidThinking inspire
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