LEADER 01936nam 2200589Ia 450 001 9910783336103321 005 20230617011547.0 010 $a0-309-18190-9 010 $a1-280-17360-2 010 $a9786610173600 010 $a0-309-54835-7 035 $a(CKB)1000000000030451 035 $a(OCoLC)62391791 035 $a(CaPaEBR)ebrary10078089 035 $a(SSID)ssj0000280658 035 $a(PQKBManifestationID)11240793 035 $a(PQKBTitleCode)TC0000280658 035 $a(PQKBWorkID)10290855 035 $a(PQKB)11605427 035 $a(MiAaPQ)EBC3377897 035 $a(Au-PeEL)EBL3377897 035 $a(CaPaEBR)ebr10078089 035 $a(CaONFJC)MIL17360 035 $a(OCoLC)923274035 035 $a(EXLCZ)991000000000030451 100 $a20040817d2005 uy 0 101 0 $aeng 135 $aurcn||||||||| 181 $ctxt 182 $cc 183 $acr 200 00$aImplications of nanotechnology for environmental health research$b[electronic resource] /$fLynn Goldman and Christine Coussens, Editors 210 $aWashington, D.C. $cNational Academies Press$d2005 215 $a1 online resource (70 p.) 300 $aBibliographic Level Mode of Issuance: Monograph 311 $a0-309-09577-8 320 $aIncludes bibliographical references. 606 $aNanotechnology$xEnvironmental aspects 606 $aNanotechnology$vCongresses 615 0$aNanotechnology$xEnvironmental aspects. 615 0$aNanotechnology 676 $a610.28 701 $aGoldman$b Lynn$01488956 701 $aCoussens$b Christine$01465248 712 02$aInstitute of Medicine (U.S.).$bRoundtable on Environmental Health Sciences, Research, and Medicine. 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910783336103321 996 $aImplications of nanotechnology for environmental health research$93709413 997 $aUNINA LEADER 12809nam 22008055 450 001 9910866579203321 005 20250807150318.0 010 $a9789819709229$b(electronic bk.) 010 $z9789819709212 024 7 $a10.1007/978-981-97-0922-9 035 $a(MiAaPQ)EBC31497584 035 $a(Au-PeEL)EBL31497584 035 $a(CKB)32320334800041 035 $a(DE-He213)978-981-97-0922-9 035 $a(OCoLC)1443085946 035 $a(EXLCZ)9932320334800041 100 $a20240619d2024 u| 0 101 0 $aeng 135 $aurcnu|||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aAdvances in Mechanical Design $eThe Proceedings of the 2023 International Conference on Mechanical Design (ICMD 2023) /$fedited by Jianrong Tan, Yu Liu, Hong-Zhong Huang, Jingjun Yu, Zequn Wang 205 $a1st ed. 2024. 210 1$aSingapore :$cSpringer Nature Singapore :$cImprint: Springer,$d2024. 215 $a1 online resource (2698 pages) 225 1 $aMechanisms and Machine Science,$x2211-0992 ;$v155 311 08$aPrint version: Tan, Jianrong Advances in Mechanical Design Singapore : Springer Singapore Pte. Limited,c2024 9789819709212 327 $aIntro -- Organization and Committees -- Preface -- Contents -- Product Innovation Design -- Research on Multi-feature Fusion 3D CAD Retrieval Technology Based on Model Segmentation -- 1 Introduction -- 2 Construction of Network Models -- 2.1 Model Segmentation -- 2.2 Determination of Nodes and Edges -- 3 Network Information Endowing -- 3.1 Data Model Establishment -- 3.2 Node Information Assignment -- 3.3 Edge Information Assignment -- 3.4 Weight Determination -- 4 Similarity Calculation -- 4.1 Structural Similarity Calculation -- 4.2 Data Information Similarity -- 5 Example -- 6 Conclusion -- References -- Design and Analysis of Automatic Tightening Device for Non-standard Screw Connection -- 1 Introduction -- 2 Overall Structural Design of the Tightening Device -- 3 Design of the Main Modules of the Device -- 3.1 Design of the Three-Axis Sliding Structure -- 3.2 Tighten the Structural Design of the Spindle -- 3.3 Design of Workpiece Positioning and Clamp Structure -- 3.4 Design of the Adapter -- 4 Finite Element Analysis of Important Structures -- 4.1 Finite Element Analysis of the Gantry Beam of the Tightening Device -- 4.2 Finite Element Analysis of Z-Axis Slide Plate -- 4.3 Finite Element Analysis of the Tightening Head -- 5 Conclusion -- References -- Study of Influence Factors for Disruptive Innovation in Equipment Manufacturing Enterprises -- 1 Introduction -- 2 Methods -- 2.1 Determination of Influencing Factors -- 2.2 Hierarchical Modeling -- 2.3 Weight Calculation for the Influencing Factors -- 3 Results and Discussion -- 4 Conclusion -- References -- Inverse Seeking Method to Find the Force of the Variable Span Outrigger of Truck Crane Based on Analytic Method and Its Algorithm Realization -- 1 Introduction -- 2 Calculation Model and Load -- 2.1 Calculation of Reaction Force of Four Legs. 327 $a2.2 Calculation of Three Point Support Reaction -- 3 Programming Design -- 4 Case Analysis -- 5 Conclusions -- References -- Approach of Adaptive Change for Open Architecture Product Based on Axiomatic Design -- 1 Introduction -- 2 Customer Personalized Demand Analysis -- 2.1 Acquisition of Customer Demands -- 2.2 Customer Requirement Identification -- 3 Adaptive Change Analysis for Open Architecture Products -- 4 Open Architecture Can Adapt to Design -- 5 Case Study -- 6 Conclusion -- References -- Research on the Innovative Design of TRIZ Patent Circumvention Based on Basic-Elements -- 1 Introductory -- 1.1 The Application of Extenics and TRIZ to Circumvention Design -- 2 Basic-Element Models and TRIZ Patent Circumvention Design Methods -- 2.1 System Analysis Process -- 2.2 Circumventing the Design Process -- 2.3 Feasibility Determination Process -- 3 Circumvention Design of Annular Flow Generation Device -- 3.1 System Analysis Process -- 3.2 Circumventing the Design Process -- 3.3 Feasibility Determination Process -- 4 Conclusion -- References -- Design and Load Capacity Research of a Novel Roller-Plate CVT -- 1 Transmission Principle -- 2 Mathematical Model for Power and Strain -- 2.1 Torque Transmission Analysis -- 2.2 Establishment of Stress and Strain Model -- 3 Establishment of the CVT Model -- 4 Finite Element Simulation Analysis -- 5 Conclusion -- References -- Design Knowledge Graph and User Profiling-Driven Product Innovation Design Problem Solving -- 1 Introduction -- 2 Top-Down Hierarchical Construction of Product Conceptual Design KG -- 2.1 The Expression of Top-Down Hierarchical Structure -- 2.2 Extraction of Multimodal Product Conceptual Design Knowledge -- 3 Design Knowledge Graph and User Profiling-Based Personalized Recommendation Model -- 3.1 User Profile Generation and Knowledge Graph Clustering. 327 $a3.2 Fusion Strategy of Knowledge Graph and User Profile -- 4 Case Study -- 5 Conclusion -- References -- A Knowledge Graph-Driven Approach for Architecture Design Space Generation and Reduction -- 1 Introduction -- 2 Method -- 2.1 Decision Knowledge Representation -- 2.2 Knowledge Graph-Based Architecture Design Space Generation -- 2.3 Reduction of Architecture Design Space -- 3 Case Study -- 3.1 DKG Construction -- 3.2 Architecture Design Space Generating and Reduction -- 4 Discussion -- 5 Conclusion -- References -- Research on the Innovation Process Modeling for the Integration of DCC and Function Trimming -- 1 Introduction -- 2 Theoretical Fundamentals -- 2.1 Design-Centric Complexity (DCC) -- 2.2 Function Trimming -- 3 Innovation Process Modeling for the Integration of Design-Centric Complexity and Function Trimming -- 4 Engineering Case Analysis and Verification -- 5 Discussion and Conclusion -- References -- An Analysis Method to Identify the Importance of Technical Parameters for Complex Products -- 1 Introduction -- 2 Research Methodology -- 2.1 Requirement-Performance-Parameter Correlation Model -- 2.2 The Hesitant Fuzzy Linguistic Preference Relation -- 2.3 The Importance Conversion Model -- 2.4 Analysis Method to Identify the Importance of Technical Parameters for Complex Products -- 3 Case Study -- 3.1 Determination of Product Requirements -- 3.2 Establishment of Mapping Relationship -- 3.3 Determining the Importance of Performances -- 3.4 Determination of the Importance of Technical Parameters -- 4 Discussion -- 4.1 Getting Design Knowledge Through RPPCM -- 4.2 Ranking Importance by Expert Hesitant Fuzzy Linguistic Preference Relations -- 5 Conclusions -- References -- Inter-generational Aging Design of Community Fitness Space and Equipment -- 1 Introduction -- 2 Current Status of Community Fitness Spaces and Equipment. 327 $a3 Analysis of Intergenerational Aging Needs in Community Fitness Products -- 3.1 Differences -- 3.2 Commonalities -- 4 Design Discussion -- 4.1 Community Fitness Spaces -- 4.2 Equipment Design -- 5 Design Implementation -- 5.1 Equipment Design -- 5.2 Community Fitness Space Planning -- 5.3 Color Scheme -- 6 Conclusion -- References -- Optimization Method for the Propagation Path of Complex Product Design Change Based on Reinforcement Learning -- 1 Introduction -- 2 Method -- 2.1 Building a Markov Decision Process Model -- 2.2 Optimization the Path of Design Change Propagation Based on Reinforcement Learning -- 3 Case Study -- 4 Conclusions -- References -- Intelligent Cognitive Artistic Style Recognition Model for Mechanical Design -- 1 Introduction -- 2 Human Cognitive Mechanism and Algorithm -- 3 Methodology -- 3.1 Image Feature Extraction -- 3.2 ARNN Visualization -- 3.3 ARNN Structure Optimization -- 4 Experiments and Results -- 5 Conclusion -- References -- Design Principle and Application for Automotive Wiring Corrugated Pipe Cutting Machine -- 1 Introduction -- 2 Design of Automatic Cutting Location Information Fusion Algorithm for Automotive Wire Harness Corrugated Pipes -- 2.1 Design of Kalman Filter Algorithm -- 2.2 Improved Kalman Location Algorithm -- 3 Development of Car Corrugated Pipe for the Automatic Cutting Machine -- 3.1 Technical Index -- 3.2 The Mechanical Structural Design of Corrugated Pipe Automatic Cutting Machine -- 3.3 The Corrugated Pipe Scanning Image Processing -- 3.4 Dynamic Detection System of Cutting the Corrugated Pipe -- 3.5 Machine Control System of Cutting the Corrugated Pipe -- 4 Conclusions -- References -- Design of Multi-task Scene Image Acquisition System in a Spacecraft Based on TRIZ -- 1 Introduction -- 2 TRIZ -- 2.1 Theoretical Basis -- 2.2 Conflict Solving Principle. 327 $a3 Application Example-Innovative Design of Multi-task Scene Image Acquisition System -- 3.1 Demand and Problem Analysis -- 3.2 Determination of the Inventive Principles to Solve the Problem -- 3.3 Innovative Design of Multi-task Scene Image Acquisition System Based on Inventive Principles -- 4 Conclusion -- References -- Design and Data Analysis of Muskmelon Sugar Content Detection System -- 1 Introduction -- 2 Materials and Methods -- 2.1 Device and Tools -- 2.2 Test Materials -- 2.3 Acoustic Signal Acquisition Method -- 2.4 Acoustic Testing Principle -- 2.5 Model Establishment -- 2.6 Evaluating Indicator -- 3 Results and Discussions -- 3.1 Acoustic Signal Analysis -- 3.2 Principal Component Analysis Results -- 3.3 All Variable Modeling Results -- 3.4 Characteristic Variable Modeling Results -- 3.5 Discussion -- 4 Conclusions -- References -- A Human Digital Twin Based Framework for Human-Robot Hand-Over Task Intention Recognition -- 1 Introduction -- 2 Proposed Method -- 2.1 Construction of Human Digital Twin with Multimodal Data -- 2.2 Multiscale Feature Extraction Based on MSCNN-BiLSTM -- 2.3 Human-Robot Hand-Over Intention Classification -- 3 Experiment and Results -- 4 Conclusion -- References -- Design and Application of Data-Driven Visualization Platform for Dual Robotic Arms Assembly Process -- 1 Introduction -- 2 High-Fidelity Model Building for Assembly Process -- 2.1 Geometric Static Modeling -- 2.2 Logical Dynamic Modeling -- 2.3 Lightweight Treatment -- 3 Data-Driven Assembly Process Visualization -- 3.1 Real-Time Data Acquisition Method Based on Socket -- 3.2 Data Processing Method Based on Cubic Spline Interpolation -- 3.3 Real-Time Data Display Based on MQTT -- 3.4 WebGL Technology -- 3.5 Three.js Engine -- 3.6 LOD-Based Display Optimization -- 4 Platform Application -- References. 327 $aAn Innovative Design Method with Good Operability and Practicality. 330 $aThis book gathers selected papers from 2023 International Conference on Mechanical Design (2023 ICMD), held in Chengdu, China. The main objectives are to bring the community of researchers in the fields of mechanical design together, to exchange and discuss the most recent investigations, challenging problems and new trends, and to encourage the wider implementation of the advanced design technologies and tools in the world, particularly throughout China. The theme of 2023 ICMD is ?Innovative Design Drives High-Quality Development?, and the event devotes to providing an excellent forum for the scholars all around the world to share their innovative ideas, cutting-edge research results. 410 0$aMechanisms and Machine Science,$x2211-0992 ;$v155 606 $aEngineering design 606 $aAutomatic control 606 $aRobotics 606 $aAutomation 606 $aIndustrial engineering 606 $aProduction engineering 606 $aTechnological innovations 606 $aEngineering Design 606 $aControl, Robotics, Automation 606 $aIndustrial and Production Engineering 606 $aInnovation and Technology Management 615 0$aEngineering design. 615 0$aAutomatic control. 615 0$aRobotics. 615 0$aAutomation. 615 0$aIndustrial engineering. 615 0$aProduction engineering. 615 0$aTechnological innovations. 615 14$aEngineering Design. 615 24$aControl, Robotics, Automation. 615 24$aIndustrial and Production Engineering. 615 24$aInnovation and Technology Management. 676 $a620.0042 700 $aTan$b Jianrong$01799854 701 $aLiu$b Yu$0673868 701 $aHuang$b Hong-Zhong$01741904 701 $aYu$b Julian$01887015 701 $aWang$b Zequn$01799856 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 912 $a9910866579203321 996 $aAdvances in Mechanical Design$94522797 997 $aUNINA