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Meta-silencer with designable timbre
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作者 Nengyin Wang Chengcheng Zhou +8 位作者 Sheng Qiu Sibo Huang Bin Jia Shanshan Liu Junmei Cao Zhiling Zhou Hua Ding Jie Zhu Yong Li 《International Journal of Extreme Manufacturing》 SCIE EI CAS CSCD 2023年第2期230-242,共13页
Timbre,as one of the essential elements of sound,plays an important role in determining sound properties,whereas its manipulation has been remaining challenging for passive mechanical systems due to the intrinsic disp... Timbre,as one of the essential elements of sound,plays an important role in determining sound properties,whereas its manipulation has been remaining challenging for passive mechanical systems due to the intrinsic dispersion nature of resonances.Here,we present a meta-silencer supporting intensive mode density as well as highly tunable intrinsic loss and offering a fresh pathway for designable timbre in broadband.Strong global coupling is induced by intensive mode density and delicately modulated with the guidance of the theoretical model,which efficiently suppresses the resonance dispersion and provides desirable frequency-selective wave-manipulation capacity for timbre tuning.As proof-of-concept demonstrations for our design concepts,we propose three meta-silencers with the designing targets of high-efficiency broadband sound attenuation,efficiency-controlled sound attenuation and designable timbre,respectively.The proposed meta-silencers all operate in a broadband frequency range from 500 to 3200 Hz and feature deep-subwavelength sizes around 50 mm.Our work opens up a fundamental avenue to manipulate the timbre with passive resonances-controlled acoustic metamaterials and may inspire the development of novel multifunctional devices in noise-control engineering,impedance engineering,and architectural acoustics. 展开更多
关键词 designable timbre acoustic metamaterial multi-functional sound silencer resonance modulation
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Dynamic Event-Triggered Consensus Control for Input Constrained Multi-Agent Systems With a Designable Minimum Inter-Event Time
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作者 Meilin Li Yue Long +2 位作者 Tieshan Li Hongjing Liang C.L.Philip Chen 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2024年第3期649-660,共12页
This paper investigates the consensus control of multi-agent systems(MASs) with constrained input using the dynamic event-triggered mechanism(ETM).Consider the MASs with small-scale networks where a centralized dynami... This paper investigates the consensus control of multi-agent systems(MASs) with constrained input using the dynamic event-triggered mechanism(ETM).Consider the MASs with small-scale networks where a centralized dynamic ETM with global information of the MASs is first designed.Then,a distributed dynamic ETM which only uses local information is developed for the MASs with large-scale networks.It is shown that the semi-global consensus of the MASs can be achieved by the designed bounded control protocol where the Zeno phenomenon is eliminated by a designable minimum inter-event time.In addition,it is easier to find a trade-off between the convergence rate and the minimum inter-event time by an adjustable parameter.Furthermore,the results are extended to regional consensus of the MASs with the bounded control protocol.Numerical simulations show the effectiveness of the proposed approach. 展开更多
关键词 Constrained input designable minimum inter-event time directed communication topology dynamic event-triggered mechanism MASs consensus control
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Investigation of Highly Designable Dented Structures in HP Model with Hydrogen Bond Energy
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作者 ZHANG Wei HUANG Shengyou YU Tao ZOU Xianwu 《Wuhan University Journal of Natural Sciences》 CAS 2007年第6期1034-1038,共5页
Some highly designable protein structures have dented on the surface of their native structures, and are not full compactly folded. According to hydrophobic-polar (HP) model the most designable structures are full c... Some highly designable protein structures have dented on the surface of their native structures, and are not full compactly folded. According to hydrophobic-polar (HP) model the most designable structures are full compactly folded. To investigate the designability of the dented structures, we introduce the hydrogen bond energy in the secondary structures by using the secondary-structure-favored HP model proposed by Ou-yang etc. The result shows that the average designability increases with the strength of the hydrogen bond. The designabilities of the structures with same dented shape increase exponentially with the number of secondary structure sites. The dented structures can have the highest designabilities for a certain value of hydrogen bond energy density. 展开更多
关键词 protein folding DESIGNABILITY dented structure hydrogen bond energy HP model
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Progress in MOF-based catalyst design and reaction mechanisms for CO_(2)hydrogenation to methanol
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作者 YU Zhifu JIANG Lei WU Mingbo 《燃料化学学报(中英文)》 北大核心 2026年第1期146-162,共17页
Against the backdrop of escalating global climate change and energy crises,the resource utilization of carbon dioxide(CO_(2)),a major greenhouse gas,has become a crucial pathway for achieving carbon peaking and carbon... Against the backdrop of escalating global climate change and energy crises,the resource utilization of carbon dioxide(CO_(2)),a major greenhouse gas,has become a crucial pathway for achieving carbon peaking and carbon neutrality goals.The hydrogenation of CO_(2)to methanol not only enables carbon sequestration and recycling,but also provides a route to produce high value-added fuels and basic chemical feedstocks,holding significant environmental and economic potential.However,this conversion process is thermodynamically and kinetically limited,and traditional catalyst systems(e.g.,Cu/ZnO/Al_(2)O_(3))exhibit inadequate activity,selectivity,and stability under mild conditions.Therefore,the development of novel high-performance catalysts with precisely tunable structures and functionalities is imperative.Metal-organic frameworks(MOFs),as crystalline porous materials with high surface area,tunable pore structures,and diverse metal-ligand compositions,have the great potential in CO_(2)hydrogenation catalysis.Their structural design flexibility allows for the construction of well-dispersed active sites,tailored electronic environments,and enhanced metal-support interactions.This review systematically summarizes the recent advances in MOF-based and MOF-derived catalysts for CO_(2)hydrogenation to methanol,focusing on four design strategies:(1)spatial confinement and in situ construction,(2)defect engineering and ion-exchange,(3)bimetallic synergy and hybrid structure design,and(4)MOF-derived nanomaterial synthesis.These approaches significantly improve CO_(2)conversion and methanol selectivity by optimizing metal dispersion,interfacial structures,and reaction pathways.The reaction mechanism is further explored by focusing on the three main reaction pathways:the formate pathway(HCOO*),the RWGS(Reverse Water Gas Shift reaction)+CO*hydrogenation pathway,and the trans-COOH pathway.In situ spectroscopic studies and density functional theory(DFT)calculations elucidate the formation and transformation of key intermediates,as well as the roles of active sites,metal-support interfaces,oxygen vacancies,and promoters.Additionally,representative catalytic performance data for MOFbased systems are compiled and compared,demonstrating their advantages over traditional catalysts in terms of CO_(2)conversion,methanol selectivity,and space-time yield.Future perspectives for MOF-based CO_(2)hydrogenation catalysts will prioritize two main directions:structural design and mechanistic understanding.The precise construction of active sites through multi-metallic synergy,defect engineering,and interfacial electronic modulation should be made to enhance catalyst selectivity and stability.In addition,advanced in situ characterization techniques combined with theoretical modeling are essential to unravel the detailed reaction mechanisms and intermediate behaviors,thereby guiding rational catalyst design.Moreover,to enable industrial application,challenges related to thermal/hydrothermal stability,catalyst recyclability,and cost-effective large-scale synthesis must be addressed.The development of green,scalable preparation methods and the integration of MOF catalysts into practical reaction systems(e.g.,flow reactors)will be crucial for bridging the gap between laboratory research and commercial deployment.Ultimately,multi-scale structure-performance optimization and catalytic system integration will be vital for accelerating the industrialization of MOF-based CO_(2)-to-methanol technologies. 展开更多
关键词 CO_(2)hydrogenation metal-organic frameworks(MOFs) catalyst design reaction mechanism METHANOL
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Synergistic Ferroptosis-Immunotherapy Nanoplatforms:Multidimensional Engineering for Tumor Microenvironment Remodeling and Therapeutic Optimization
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作者 Xiao Wei Yanqiu Jiang +6 位作者 Feiyang Chenwu Zhi Li Jie Wan Zhengxi Li Lele Zhang Jing Wang Mingzhu Song 《Nano-Micro Letters》 2026年第2期471-538,共68页
Emerging ferroptosis-immunotherapy strategies,integrating functionalized nanoplatforms with ferroptosis-inducing agents and immunomodulatory therapeutics,demonstrate significant potential in managing primary,recurrent... Emerging ferroptosis-immunotherapy strategies,integrating functionalized nanoplatforms with ferroptosis-inducing agents and immunomodulatory therapeutics,demonstrate significant potential in managing primary,recurrent,and metastatic malignancies.Mechanistically,ferroptosis induction not only directly eliminates tumor cells but also promotes immunogenic cell death(ICD),eliciting damage-associated molecular patterns(DAMPs)release to activate partial antitumor immunity.However,standalone ferroptosis therapy fails to initiate robust systemic antitumor immune responses due to inherent limitations:low tumor immunogenicity,immunosuppressive microenvironment constraints,and tumor microenvironment(TME)-associated physiological barriers(e.g.,hypoxia,dense extracellular matrix).To address these challenges,synergistic approaches have been developed to enhance immune cell infiltration and reestablish immunosurveillance,encompassing(1)direct amplification of antitumor immunity,(2)disruption of immunosuppressive tumor niches,and(3)biophysical hallmark remodeling in TME.Rational nanocarrier design has emerged as a critical enabler for overcoming biological delivery barriers and optimizing therapeutic efficacy.Unlike prior studies solely addressing ferroptosis or nanotechnology in tumor therapy,this work first systematically outlines the synergistic potential of nanoparticles in combined ferroptosis-immunotherapy strategies.It advances multidimensional nanoplatform design principles for material selection,structural configuration,physicochemical modulation,multifunctional integration,and artificial intelligence-enabled design,providing a scientific basis for efficacy optimization.Moreover,it examines translational challenges of ferroptosis-immunotherapy nanoplatforms across preclinical and clinical stages,proposing actionable solutions while envisioning future onco-immunotherapy directions.Collectively,it provides systematic insights into advanced nanomaterial design principles and therapeutic optimization strategies,offering a roadmap for accelerating clinical translation in onco-immunotherapy research. 展开更多
关键词 Ferroptosis-immunotherapy Nanoplatforms Tumor microenvironment Synergistic strategies Nanocarrier design
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Recent advances and perspectives in interface engineering of high-performance alloys
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作者 Yuan Zhu Tongbo Jiang +7 位作者 Honghui Wu Faguo Hou Xiaoye Zhou Feiyang Wang Shuize Wang Junheng Gao Haitao Zhao Chaolei Zhang 《International Journal of Minerals,Metallurgy and Materials》 2026年第1期53-67,共15页
High-performance alloys are indispensable in modern engineering because of their exceptional strength,ductility,corrosion resistance,fatigue resistance,and thermal stability,which are all significantly influenced by t... High-performance alloys are indispensable in modern engineering because of their exceptional strength,ductility,corrosion resistance,fatigue resistance,and thermal stability,which are all significantly influenced by the alloy interface structures.Despite substantial efforts,a comprehensive overview of interface engineering of high-performance alloys has not been presented so far.In this study,the interfaces in high-performance alloys,particularly grain and phase boundaries,were systematically examined,with emphasis on their crystallographic characteristics and chemical element segregations.The effects of the interfaces on the electrical conductivity,mechanical strength,toughness,hydrogen embrittlement resistance,and thermal stability of the alloys were elucidated.Moreover,correlations among various types of interfaces and advanced experimental and computational techniques were examined using big data analytics,enabling robust design strategies.Challenges currently faced in the field of interface engineering and emerging opportunities in the field are also discussed.The study results would guide the development of next-generation high-performance alloys. 展开更多
关键词 interface engineering crystallographic boundary chemical boundary alloy design
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Tackling Challenges and Exploring Opportunities in Cathode Binder Innovation
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作者 Tingrun Lai Li Wang +3 位作者 Zhibei Liu Adnan Murad Bhayo Yude Wang Xiangming He 《Nano-Micro Letters》 2026年第1期198-228,共31页
Long-life energy storage batteries are integral to energy storage systems and electric vehicles,with lithium-ion batteries(LIBs)currently being the preferred option for extended usage-life energy storage.To further ex... Long-life energy storage batteries are integral to energy storage systems and electric vehicles,with lithium-ion batteries(LIBs)currently being the preferred option for extended usage-life energy storage.To further extend the life span of LIBs,it is essential to intensify investments in battery design,manufacturing processes,and the advancement of ancillary materials.The pursuit of long durability introduces new challenges for battery energy density.The advent of electrode material offers effective support in enhancing the battery’s long-duration performance.Often underestimated as part of the cathode composition,the binder plays a pivotal role in the longevity and electrochemical performance of the electrode.Maintaining the mechanical integrity of the electrode through judicious binder design is a fundamental requirement for achieving consistent long-life cycles and high energy density.This paper primarily concentrates on the commonly employed cathode systems in lithium-ion batteries,elucidates the significance of binders for both,discusses the application status,strengths,and weaknesses of novel binders,and ultimately puts forth corresponding optimization strategies.It underscores the critical function of binders in enhancing battery performance and advancing the sustainable development of lithium-ion batteries,aiming to offer fresh insights and perspectives for the design of high-performance LIBs. 展开更多
关键词 Cathode Binder Lithium-Ion Battery Performance Optimization Sustainable Development Innovative Design
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Skin-Inspired Ultra-Linear Flexible Iontronic Pressure Sensors for Wearable Musculoskeletal Monitoring
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作者 Pei Li Shipan Lang +6 位作者 Lei Xie Yong Zhang Xin Gou Chao Zhang Chenhui Dong Chunbao Li Jun Yang 《Nano-Micro Letters》 2026年第2期454-470,共17页
The growing prevalence of exercise-induced tibial stress fractures demands wearable sensors capable of monitoring dynamic musculoskeletal loads with medical-grade precision.While flexible pressure-sensing insoles show... The growing prevalence of exercise-induced tibial stress fractures demands wearable sensors capable of monitoring dynamic musculoskeletal loads with medical-grade precision.While flexible pressure-sensing insoles show clinical potential,their development has been hindered by the intrinsic trade-off between high sensitivity and full-range linearity(R^(2)>0.99 up to 1 MPa)in conventional designs.Inspired by the tactile sensing mechanism of human skin,where dermal stratification enables wide-range pressure adaptation and ion-channelregulated signaling maintains linear electrical responses,we developed a dual-mechanism flexible iontronic pressure sensor(FIPS).This innovative design synergistically combines two bioinspired components:interdigitated fabric microstructures enabling pressure-proportional contact area expansion(αP1/3)and iontronic film facilitating self-adaptive ion concentration modulation(αP^(2/3)),which together generate a linear capacitance-pressure response(CαP).The FIPS achieves breakthrough performance:242 kPa^(-1)sensitivity with 0.997linearity across 0-1 MPa,yielding a record linear sensing factor(LSF=242,000).The design is validated across various substrates and ionic materials,demonstrating its versatility.Finally,the FIPS-driven design enables a smart insole demonstrating 1.8%error in tibial load assessment during gait analysis,outperforming nonlinear counterparts(6.5%error)in early fracture-risk prediction.The biomimetic design framework establishes a universal approach for developing high-performance linear sensors,establishing generalized principles for medical-grade wearable devices. 展开更多
关键词 Iontronic sensor Skin-inspired design Linear range Linear sensing factor Biomechanical monitoring
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Advanced Design for High-Performance and AI Chips
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作者 Ying Cao Yuejiao Chen +2 位作者 Xi Fan Hong Fu Bingang Xu 《Nano-Micro Letters》 2026年第1期306-336,共31页
Recent years have witnessed transformative changes brought about by artificial intelligence(AI)techniques with billions of parameters for the realization of high accuracy,proposing high demand for the advanced and AI ... Recent years have witnessed transformative changes brought about by artificial intelligence(AI)techniques with billions of parameters for the realization of high accuracy,proposing high demand for the advanced and AI chip to solve these AI tasks efficiently and powerfully.Rapid progress has been made in the field of advanced chips recently,such as the development of photonic computing,the advancement of the quantum processors,the boost of the biomimetic chips,and so on.Designs tactics of the advanced chips can be conducted with elaborated consideration of materials,algorithms,models,architectures,and so on.Though a few reviews present the development of the chips from their unique aspects,reviews in the view of the latest design for advanced and AI chips are few.Here,the newest development is systematically reviewed in the field of advanced chips.First,background and mechanisms are summarized,and subsequently most important considerations for co-design of the software and hardware are illustrated.Next,strategies are summed up to obtain advanced and AI chips with high excellent performance by taking the important information processing steps into consideration,after which the design thought for the advanced chips in the future is proposed.Finally,some perspectives are put forward. 展开更多
关键词 Artificial intelligence Advanced chips AI chips Design tactics Review and perspective
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Nature-Inspired Upward Hanging Evaporator with Photothermal 3D Spacer Fabric for Zero-Liquid-Discharge Desalination
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作者 Ye Peng Yang Shao +3 位作者 Longqing Zheng Haoxuan Li Meifang Zhu Zhigang Chen 《Nano-Micro Letters》 2026年第1期545-561,共17页
While desalination is a key solution for global freshwater scarcity,its implementation faces environmental challenges due to concentrated brine byproducts mainly disposed of via coastal discharge systems.Solar interfa... While desalination is a key solution for global freshwater scarcity,its implementation faces environmental challenges due to concentrated brine byproducts mainly disposed of via coastal discharge systems.Solar interfacial evaporation offers sustainable management potential,yet inevitable salt nucleation at evaporation interfaces degrades photothermal conversion and operational stability via light scattering and pathway blockage.Inspired by the mangrove leaf,we propose a photothermal 3D polydopamine and polypyrrole polymerized spacer fabric(PPSF)-based upward hanging model evaporation configuration with a reverse water feeding mechanism.This design enables zero-liquiddischarge(ZLD)desalination through phase-separation crystallization.The interconnected porous architecture and the rough surface of the PPSF enable superior water transport,achieving excellent solar-absorbing efficiency of 97.8%.By adjusting the tilt angle(θ),the evaporator separates the evaporation and salt crystallization zones via controlled capillary-driven brine transport,minimizing heat dissipation from brine discharge.At an optimal tilt angle of 52°,the evaporator reaches an evaporation rate of 2.81 kg m^(−2) h^(−1) with minimal heat loss(0.366 W)under 1-sun illumination while treating a 7 wt%waste brine solution.Furthermore,it sustains an evaporation rate of 2.71 kg m^(−2) h^(−1) over 72 h while ensuring efficient salt recovery.These results highlight a scalable,energy-efficient approach for sustainable ZLD desalination. 展开更多
关键词 DESALINATION Solar interfacial evaporation Biomimetic design Zero liquid discharge Thermal management
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Low-Temperature Electrolytes for Lithium-Ion Batteries:Current Challenges,Development,and Perspectives
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作者 Yang Zhao Limin Geng +1 位作者 Weijia Meng Jiaye Ye 《Nano-Micro Letters》 2026年第2期692-741,共50页
Lithium-ion batteries(LIBs),while dominant in energy storage due to high energy density and cycling stability,suffer from severe capacity decay,rate capability degradation,and lithium dendrite formation under low-temp... Lithium-ion batteries(LIBs),while dominant in energy storage due to high energy density and cycling stability,suffer from severe capacity decay,rate capability degradation,and lithium dendrite formation under low-temperature(LT)operation.Therefore,a more comprehensive and systematic understanding of LIB behavior at LT is urgently required.This review article comprehensively reviews recent advancements in electrolyte engineering strategies aimed at improving the low-temperature operational capabilities of LIBs.The study methodically examines critical performance-limiting mechanisms through fundamental analysis of four primary challenges:insufficient ionic conductivity under cryogenic conditions,kinetically hindered charge transfer processes,Li+transport limitations across the solidelectrolyte interphase(SEI),and uncontrolled lithium dendrite growth.The work elaborates on innovative optimization approaches encompassing lithium salt molecular design with tailored dissociation characteristics,solvent matrix optimization through dielectric constant and viscosity regulation,interfacial engineering additives for constructing low-impedance SEI layers,and gel-polymer composite electrolyte systems.Notably,particular emphasis is placed on emerging machine learning-guided electrolyte formulation strategies that enable high-throughput virtual screening of constituent combinations and prediction of structure-property relationships.These artificial intelligence-assisted rational design frameworks demonstrate significant potential for accelerating the development of next-generation LT electrolytes by establishing quantitative composition-performance correlations through advanced data-driven methodologies. 展开更多
关键词 Lithium-ion batteries Low-temperature electrolyte Solid electrolyte interphase Solvation structure Artificial intelligence-assisted design
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Progress in Offshore Oilfield Development Planning
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作者 L.M.R.Silva C.Guedes Soares 《哈尔滨工程大学学报(英文版)》 2026年第1期136-161,共26页
This study examines the methods to plan the development of offshore oilfields over the years,which are used to support the decision-making on the development of offshore oilfields.About 100 papers are analysed and cat... This study examines the methods to plan the development of offshore oilfields over the years,which are used to support the decision-making on the development of offshore oilfields.About 100 papers are analysed and categorised into different groups of main early-stage decisions.The present study stands in contrast to the contributions of the operations research and system engineering review articles,on the one hand,and the petroleum engineering review articles,on the other.This is because it does not focus on one methodological approach,nor does it limit the literature analysis by offshore oilfield characteristics.Consequently,the present analysis may offer valuable insights,for instance,by identifying environmental planning decisions as a recent yet highly significant concern that is currently being imposed on decision-making process.Thus,it is evident that the incorporation of safety criteria within the technical-economic decision-making process for the design of production systems would be a crucial requirement at development phase. 展开更多
关键词 Offshore oilfield development Oilfield planning decisions Production system design Decision-making process
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关于PBX正向设计的初步思考
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作者 张朝阳 黄鑫 谢炜宇 《含能材料》 北大核心 2025年第10期1135-1137,共3页
1.正向设计的概念及其在材料研发中的应用正向设计(Forward Design)是一种系统化的设计方法论,其核心在于从用户需求和预期功能出发,通过综合考虑性能、成本、制造工艺等因素,自上而下地进行产品设计和材料选择。这种方法强调在设计初... 1.正向设计的概念及其在材料研发中的应用正向设计(Forward Design)是一种系统化的设计方法论,其核心在于从用户需求和预期功能出发,通过综合考虑性能、成本、制造工艺等因素,自上而下地进行产品设计和材料选择。这种方法强调在设计初期就对产品的整体性能和各个组成部分进行综合考虑,以确保最终产品能够满足预定的性能标准和市场需求。 展开更多
关键词 材料研发 Forward Design 正向设计 成本
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中学物理跨学科实践Design模型的建构与案例研究 被引量:1
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作者 张跃 崔琰 《中学物理》 2025年第10期14-17,共4页
基于中学物理跨学科实践视角,构建了跨学科实践设计模型(Design模型).该设计模型由发现问题(Discovery)、探究实践(Experiment)、问题解决(Solution)、迭代发展(Iteration)、目标导向(Goal)和作品生成(New)6个环节构成,聚焦学生的主体性... 基于中学物理跨学科实践视角,构建了跨学科实践设计模型(Design模型).该设计模型由发现问题(Discovery)、探究实践(Experiment)、问题解决(Solution)、迭代发展(Iteration)、目标导向(Goal)和作品生成(New)6个环节构成,聚焦学生的主体性,发展学生问题解决能力和创新能力.分析了模型的理论基础和内涵,并以跨学科实践案例展示了Design模型在促进学生主动学习、概念理解、问题解决和创新能力提升等方面的应用效果,为中学物理教师提供理论与实践相结合的教学策略参考. 展开更多
关键词 中学物理 Design模型 跨学科实践 教学策略
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基于React的高校信息化项目管理系统的前端设计与实现
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作者 张新海 蔡会霞 《信息技术与信息化》 2025年第7期53-56,共4页
针对MVVM开发模式,文章提出一种基于React环境的前端程序开发方法,在分析比较主流前端开发框架后,通过使用阿里的Ant Design框架,结合ahooks组件库,构建了完整的前端开发环境。以高校信息化项目管理系统的前端开发为例,使用TypeScript... 针对MVVM开发模式,文章提出一种基于React环境的前端程序开发方法,在分析比较主流前端开发框架后,通过使用阿里的Ant Design框架,结合ahooks组件库,构建了完整的前端开发环境。以高校信息化项目管理系统的前端开发为例,使用TypeScript作为开发语言,在实现过程中使用Ant Design的各类组件实现系统布局和操作界面,使用useRequest函数实现外部API接口数据管理,使用ahooks的useEff ect钩子函数实现数据状态监听和组件间的通信,通过实践验证了高校信息化项目管理系统的前端程序实现方法。 展开更多
关键词 项目管理系统 MVVM React Ant Design ahooks
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基于高品质住宅目标下寒冷地区不同阳台形式设计应用研究
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作者 薛一冰 丁军行 《设计》 2025年第5期146-150,共5页
长期以来,在寒冷地区,阳台设计的实用性与美观性都十分割裂,为了保证室内热环境的舒适,阳台型式往往被忽略。但随着国家提出发展高品质住宅的要求,阳台作为住宅不可或缺的一部分也重新得到重视。在确保住宅热环境舒适的前提下,通过研究... 长期以来,在寒冷地区,阳台设计的实用性与美观性都十分割裂,为了保证室内热环境的舒适,阳台型式往往被忽略。但随着国家提出发展高品质住宅的要求,阳台作为住宅不可或缺的一部分也重新得到重视。在确保住宅热环境舒适的前提下,通过研究确定寒冷地区住宅相匹配的阳台形式,提升住宅品质与价值十分关键。通过案例分析以及运用建筑能耗动态模拟软件Designbuilder对不同住宅阳台类型与户型搭配进行模拟。结果表明;阳台在住宅中所占的面积比随着住宅面积的增加而降低且对于所有阳台类型,随着住宅面积的增加,稳态热损失和设计容量均呈现出增加趋势。综上所述,住宅本身及其周围环境品质越高,阳台设计越适合选择高开放性的形式。当住宅密度较高,价格较低时,阳台设计更适宜私密度好的高封闭性形式。 展开更多
关键词 寒冷地区 阳台形式 室内光照 软件模拟 发展方向 Design Builder
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工艺美术语境下“图案(design)”观念的演变及影响
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作者 朱永明 《苏州科技大学学报(社会科学版)》 2025年第6期73-81,110,共10页
清末民初,在工程图画、实用工艺与美术教育的推进下,兼具应用性与观赏性的“图案(design)”观念被引入我国,并与中国设计传统深度融合,逐渐形成实用、装饰与形式审美的艺术设计定位,成为我国近现代工艺美术体系的核心价值。“图案(desi... 清末民初,在工程图画、实用工艺与美术教育的推进下,兼具应用性与观赏性的“图案(design)”观念被引入我国,并与中国设计传统深度融合,逐渐形成实用、装饰与形式审美的艺术设计定位,成为我国近现代工艺美术体系的核心价值。“图案(design)”观念不仅奠定了我国现代设计发展的基础,也形塑了近百年中国化设计实践的内在逻辑与路径。但由于自身发展中的局限,改革开放后又受到工业化市场、媒体传播发展的强劲冲击,未能适应信息化时代设计发展需求,“图案(design)”从曾经的“工艺(设计)之母”逐渐沉淀为具体专业领域的术语。其独特的发展历程、观念演变与时代际遇,对我国现代设计体系构建影响深远,也为我国当代设计的主体性建构和未来发展提供了宝贵经验与启示。 展开更多
关键词 “图案(design)” 工艺美术 图画 设计观念
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基于板片拆解与工艺参数化的清代虎头帽非遗数字化复原研究
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作者 王富伟 《计算机时代》 2025年第10期51-55,60,共6页
清代虎头帽(非遗布艺)的数字化保护对非遗活态传承具有重要意义。本文以清代虎头帽为研究对象,构建“三维建模—双维度测量—结构拆解—数字复原”的实践体系,通过现场测量获取基础尺寸,结合RealityCapture完成三维模型重建,再利用Marve... 清代虎头帽(非遗布艺)的数字化保护对非遗活态传承具有重要意义。本文以清代虎头帽为研究对象,构建“三维建模—双维度测量—结构拆解—数字复原”的实践体系,通过现场测量获取基础尺寸,结合RealityCapture完成三维模型重建,再利用Marvelous Designer测量功能实现数字化尺寸修正,基于模型与测量数据完成板片拆解,最终依托Marvelous Designer完成板片绘制和仿真缝制。实践结果显示,该方法可实现虎头帽结构与工艺的复原,为非遗布艺数字化保护提供可复用的技术路径。 展开更多
关键词 非遗布艺 清代虎头帽 数字复原 Marvelous Designer 板片拆解
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脂肪酶产生菌贝莱斯芽孢杆菌LT-2筛选及产酶条件优化
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作者 姚璐晔 陆嘉虞 +3 位作者 田雨森 王苏皖 陆星宇 吴凌天 《生物技术》 2025年第3期304-312,337,共10页
[目的]获得1株产脂肪酶的贝莱斯芽孢杆菌,考察确定其产酶的最优条件。[方法]采用鉴别培养基和对硝基苯酚法测脂肪酶活力获得一株脂肪酶酶活力高、生产周期短的菌株;通过单因子优化和多因子的交互试验考察培养基组分和发酵条件对菌株脂... [目的]获得1株产脂肪酶的贝莱斯芽孢杆菌,考察确定其产酶的最优条件。[方法]采用鉴别培养基和对硝基苯酚法测脂肪酶活力获得一株脂肪酶酶活力高、生产周期短的菌株;通过单因子优化和多因子的交互试验考察培养基组分和发酵条件对菌株脂肪酶活力的影响,进一步通过生长曲线考察了菌株在最优条件下的生长状态和脂肪酶活力变化。[结果]筛选获得一株高产脂肪酶的菌株Bacillus velezensis LT-2;菌株LT-2产脂肪酶的最优发酵条件为:蔗糖10 g/L,酵母浸出粉10 g/L,硫酸铵8.50 g/L,氯化钠1 g/L,橄榄油乳化液20 mL/L,初始pH值7.50,温度31.50℃,接种量7%,摇床转速160 r/min。在此条件下,菌株LT-2在摇瓶中培养16 h时,脂肪酶的酶活力达到(26.87±0.65)U/mL,是初始酶活力的2.03倍。[结论]试验菌株LT-2能够在培养16 h内产脂肪酶酶活为(26.87±0.65)U/mL,为脂肪酶工业化生产提供了较好的试验基础和应用依据。 展开更多
关键词 脂肪酶 贝莱斯芽孢杆菌 发酵 条件优化 Plackett-Burman试验 最陡爬坡试验 Box-Behnken design试验 生长曲线
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延胡索乙素纳米乳制备工艺优化及其性质研究 被引量:2
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作者 陈子龙 吕倩 +2 位作者 孙鑫 刘思美 赵鹏 《中国药业》 CAS 2025年第1期47-53,共7页
目的优选延胡索乙素纳米乳制备工艺,并考察其稳定性和理化性质。方法采用亲水亲油平衡(HLB)法制备延胡索乙素纳米乳,以粒径和聚合物分散性指数为评价指标,在单因素试验基础上,采用Box-BehnkenDesign响应面法筛选最优制备工艺,并考察优... 目的优选延胡索乙素纳米乳制备工艺,并考察其稳定性和理化性质。方法采用亲水亲油平衡(HLB)法制备延胡索乙素纳米乳,以粒径和聚合物分散性指数为评价指标,在单因素试验基础上,采用Box-BehnkenDesign响应面法筛选最优制备工艺,并考察优选工艺制得样品的稳定性和理化性质。结果最优工艺为聚氧乙烯蓖麻油-油酸乙酯质量比19.514∶1,无水乙醇用量1.2 g,去离子水用量6.48 g。以优选工艺制得延胡索乙素纳米乳为无色透明液体,外观均匀,易于涂布,呈球形或近球形,平均粒径为16.3 nm,聚合物分散性指数为0.306,在40℃条件下的物理稳定性良好,24 h累积透过量为1100.92μg/cm^(2),纳米乳中延胡索乙素的透皮吸收过程与质量浓度无关,且为扩散过程。结论制备的延胡索乙素纳米乳的稳定性、物理性质和透皮吸收性均较好,可为延胡索乙素新剂型的研发提供参考。 展开更多
关键词 延胡索乙素 纳米乳 Box-Behnken Design响应面法 工艺优选 体外性质研究
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