The role of additive technologies in the prototyping issues of design
暂无分享,去创建一个
Monica Carfagni | Lapo Governi | Lorenzo Fiorineschi | Rocco Furferi | Federico Rotini | F. Rotini | Lorenzo Fiorineschi | M. Carfagni | L. Governi | R. Furferi
[1] Stefan Junk,et al. DESIGN FOR ADDITIVE MANUFACTURING TECHNOLOGIES: NEW APPLICATIONS OF 3D-PRINTING FOR RAPID PROTOTYPING AND RAPID TOOLING , 2011 .
[2] Charlie C. L. Wang,et al. The status, challenges, and future of additive manufacturing in engineering , 2015, Comput. Aided Des..
[3] Andrea Gatto,et al. Multi-disciplinary approach in engineering education: learning with additive manufacturing and reverse engineering , 2015 .
[4] Claudia Eckert,et al. Integrating physical and virtual testing to improve confidence in product design , 2012 .
[5] Stefan Junk,et al. NEW APPROACHES TO TEACHING DESIGN FOR ADDITIVE MANUFACTURING , 2015 .
[6] Guido A.O. Adam,et al. On design for additive manufacturing: evaluating geometrical limitations , 2015 .
[7] Robert L. Nagel,et al. A Review of University Maker Spaces , 2015 .
[8] Carlos Henrique Pereira Mello,et al. Systematic proposal to calculate price of prototypes manufactured through rapid prototyping an FDM 3D printer in a university lab , 2010 .
[9] Guido A.O. Adam,et al. Design for Additive Manufacturing—Element transitions and aggregated structures , 2014 .
[10] Lawrence Sass,et al. Embodied prototyping: exploration of a design-fabrication framework for large-scale model manufacturing , 2016 .
[11] John S. Gero,et al. Design and other types of fixation , 1996 .
[12] Eujin Pei,et al. Development of a design feature database to support design for additive manufacturing , 2012 .
[13] Kevin Otto,et al. A Systematic Method for Design Prototyping , 2015 .
[14] D. Rosen. Design for Additive Manufacturing: A Method to Explore Unexplored Regions of the Design Space , 2007 .
[15] Elizabeth M. Gerber,et al. Prototyping: Facing Uncertainty through Small Wins , 2009 .
[16] Scott Greenhalgh,et al. The effects of 3D printing in design thinking and design education , 2016 .
[17] Yaoyao Fiona Zhao,et al. A survey of the design methods for additive manufacturing to improve functional performance , 2016 .
[18] Julie S. Linsey,et al. Physical Models in Idea Generation: Hindrance or Help? , 2010 .
[19] Thierry Rayna,et al. From rapid prototyping to home fabrication: How 3D printing is changing business model innovation , 2016 .
[20] Margot Brereton,et al. An observational study of how objects support engineering design thinking and communication: implications for the design of tangible media , 2000, CHI.
[21] Maria C. Yang,et al. Representation in Early Stage Design: An Analysis of the Influence of Sketching and Prototyping in Design Projects , 2012 .
[22] Konstantinos Salonitis,et al. Design for additive manufacturing based on the axiomatic design method , 2016, The International Journal of Advanced Manufacturing Technology.
[23] Joshua D. Summers,et al. A Proposed Taxonomy for Physical Prototypes: Structure and Validation , 2008, DAC 2008.
[24] Richard J.M. Hague,et al. The cost of additive manufacturing: machine productivity, economies of scale and technology-push , 2016 .
[25] Yaoyao Fiona Zhao,et al. Additive manufacturing-enabled design theory and methodology: a critical review , 2015 .
[26] Jukka Tuomi,et al. Part 5: Global Reports, Europe, Finland. Wohlers Report, 3D Printing and Additive Manufacturing: State of the Industry, Annual Worldwide Progress Report , 2014 .
[27] Charles Hill,et al. What do Prototypes Prototype , 1997 .
[28] Maria C. Yang,et al. THE INFLUENCE OF TIMING IN EXPLORATORY PROTOTYPING AND OTHER ACTIVITIES IN DESIGN PROJECTS , 2013 .
[29] Khadija Tahera,et al. Integrating virtual and physical testing to accelerate the engineering product development process , 2014, Int. J. Inf. Technol. Manag..
[30] Kristin L. Wood,et al. Application of similitude techniques to functional testing of rapid prototypes , 2003 .
[31] Larry Leifer,et al. Prototyping to Learn: Characterizing Engineering Students’ Prototyping Activities and Prototypes , 2009 .
[32] Cristiano P. Coutinho,et al. Reduced scale models based on similitude theory: A review up to 2015 , 2016 .
[33] Michail N. Giannakos,et al. Make2Learn: Fostering Engagement and Creativity in Learning through Making , 2015, Make2Learn@ICEC.
[34] V.K. Viswanathan,et al. Enhancing student innovation: Physical models in the idea generation process , 2009, 2009 39th IEEE Frontiers in Education Conference.
[35] Lin Li,et al. 自動車の部品製造のためのAC-170PXアルミ合金のフィレットエッジとフランジコーチレーザ溶接における多孔性生成に及ぼす熱入力とシートギャップの影響の把握 | 文献情報 | J-GLOBAL 科学技術総合リンクセンター , 2015 .
[36] Barry Berman,et al. 3D printing: the new industrial revolution , 2012, IEEE Engineering Management Review.
[37] H. S. Byun,et al. A decision support system for the selection of a rapid prototyping process using the modified TOPSIS method , 2005 .
[38] G. Gary Wang,et al. Definition and Review of Virtual Prototyping , 2002, J. Comput. Inf. Sci. Eng..
[39] Gabriele Lobaccaro,et al. DIGITAL AND PHYSICAL MODELS FOR THE VALIDATION OF SUSTAINABLE DESIGN STRATEGIES , 2014 .
[40] David McKenzie. GENERATIVE PROTOTYPE ITERATION IN THEFRONT END OF THE DESIGN PROCESS , 2015 .
[41] Christian D. Schunn,et al. Physical Design Tools Support and Hinder Innovative Engineering Design , 2011 .
[42] Stefanie Müller,et al. WirePrint: 3D printed previews for fast prototyping , 2014, UIST.
[43] Eujin Pei,et al. 4D printing - Revolution or fad? , 2014 .
[44] Ian Campbell,et al. Additive manufacturing: rapid prototyping comes of age , 2012 .
[45] Richard J.M. Hague,et al. Exploiting the design freedom of RM , 2006 .
[46] Anders Berglund,et al. The Importance of Prototyping for Education in Product Innovation Engineering , 2011 .
[47] Timothy A. Hess. Investigation of Prototype Roles in Conceptual Design using Case Study and Protocol Study Methods , 2012 .
[48] D. Kolb. Experiential Learning: Experience as the Source of Learning and Development , 1983 .
[49] U. Lindemann,et al. Cost-Efficient Design , 2007 .
[50] Stefan Junk,et al. New Approach to Introduction of 3D Digital Technologies in Design Education , 2015 .
[51] William E. Frazier,et al. Metal Additive Manufacturing: A Review , 2014, Journal of Materials Engineering and Performance.
[52] Andre Liem,et al. CLASSIFYING PHYSICAL MODELS AND PROTOTYPES IN THE DESIGN PROCESS: A STUDY ON THE ECONOMICAL AND USABILITY IMPACT OF ADOPTING MODELS AND PROTOTYPES IN THE DESIGN PROCESS , 2014 .
[53] Steven M. Smith. The constraining effects of initial ideas. , 2003 .
[54] S. Junk. NEW APPROACH FOR DESIGN EDUCATION IN DESIGN FOR ADDITIVE MANUFACTURING , 2014 .
[55] David Radcliffe,et al. Impact of CAD tools on creative problem solving in engineering design , 2009, Comput. Aided Des..
[56] R. Venkata Rao,et al. Rapid prototyping process selection using graph theory and matrix approach , 2007 .
[57] Katja Hölttä-Otto,et al. The Effect of Prototyping and Critical Feedback on Fixation in Engineering Design , 2011, CogSci.
[58] D. Dirksen,et al. 3D printed simulation models based on real patient situations for hands‐on practice , 2017, European journal of dental education : official journal of the Association for Dental Education in Europe.
[59] Imre Horváth,et al. USING PHYSICAL MODELS in DESIGN , 2001 .
[60] T. K. Kundra,et al. Additive Manufacturing Technologies , 2018 .
[61] Julien Gardan,et al. Additive manufacturing technologies: state of the art and trends , 2016 .
[62] Maria C. Yang,et al. Building Fast to Think Faster: Exploiting Rapid Prototyping to Accelerate Ideation During Early Stage Design , 2013 .
[63] Robert J. Youmans,et al. The effects of physical prototyping and group work on the reduction of design fixation , 2011 .
[64] Kristin L. Wood,et al. AC 2012-3698: PROTOTYPING STRATEGIES: LITERATURE REVIEW AND IDENTIFICATION OF CRITICAL VARIABLES , 2012 .
[65] Reinhard Budde,et al. Prototyping: An Approach to Evolutionary System Development , 1992, Springer Berlin Heidelberg.
[66] M A. Donmez,et al. Additive Manufacturing: Current State, Future Potential, Gaps & Needs, and Recommendations | NIST , 2015 .
[67] John Powell,et al. RP OR NOT RP: THAT IS THE CO-CREATION QUESTION , 2015 .
[68] Anderson Vicente Borille,et al. Applying decision methods to select rapid prototyping technologies , 2010 .
[69] Tumkor Serdar. Educational Challenges in Design for Additive Manufacturing , 2016 .
[70] Carolyn Conner Seepersad,et al. Design for additive manufacturing curriculum: A problem- and project-based approach , 2012 .
[71] Salomé Galjaard,et al. Topology Optimisation for Steel Structural Design with Additive Manufacturing , 2015 .
[72] Christopher B. Williams,et al. A Functional Classification Framework for the Conceptual Design of Additive Manufacturing Technologies , 2011 .
[73] A Case Study of Rapid Prototype as Design in Educational Engineering Projects , .
[74] Anders Berglund,et al. Why we Prototype! An International Comparison of the Linkage between Embedded Knowledge and Objective Learning , 2013 .
[75] Peter B. Ford,et al. Additive manufacturing in product design education: out with the old and in with the new? , 2013 .
[76] Stefan Junk,et al. NEW DEVELOPMENTS IN DESIGN EDUCATION FOR ADDITIVE MANUFACTURING , 2016 .
[77] Christoph Klahn,et al. Design Strategies for the Process of Additive Manufacturing , 2015 .
[78] Michael Schrage. Cultures of prototyping , 1996 .
[79] Andre L. Nel,et al. The advantages of 3D printing in undergraduate mechanical engineering research , 2016, 2016 IEEE Global Engineering Education Conference (EDUCON).
[80] Asko Ellman,et al. Virtual prototypes reveal more development ideas: comparison between customers' evaluation of virtual and physical prototypes , 2014 .
[81] Eujin Pei,et al. Entry‐level RP machines: how well can they cope with geometric complexity? , 2011 .
[82] Jin Yan,et al. The impact of 3D CAD interfaces on user ideation: A comparative analysis using SketchUp and Silhouette Modeler , 2016 .
[83] Weihong Zhang,et al. Challenges of additive manufacturing technologies from an optimisation perspective , 2015 .
[84] Margot Brereton,et al. Distributed Cognition in Engineering Design: Negotiating between abstract and material representations , 2004 .
[85] Matthijs Langelaar,et al. Topology optimization of 3D self-supporting structures for additive manufacturing , 2016 .
[86] Glaucio H. Paulino,et al. Bridging topology optimization and additive manufacturing , 2015, Structural and Multidisciplinary Optimization.
[87] Martin Steinert,et al. The Value of Prototypes in the Early Design and Development Process , 2015 .
[88] Hermann Seitz,et al. A review on 3D micro-additive manufacturing technologies , 2012, The International Journal of Advanced Manufacturing Technology.
[89] David W. Rosen,et al. Research supporting principles for design for additive manufacturing , 2014 .
[90] Paul Wilgeroth,et al. Developments in Teaching Approaches: "The Unexpected Benifits of An Integrated CAD/CAM Based Modelmaking Strategy" , 2006 .
[91] C. K. Chua,et al. Rapid prototyping versus virtual prototyping in product design and manufacturing , 1999 .
[92] Steven W Pryor,et al. Implementing a 3D Printing Service in an Academic Library , 2014 .
[93] Vimal Viswanathan,et al. A study on the role of physical models in the mitigation of design fixation , 2014 .
[94] Niels Henrik Mortensen,et al. Prototypes in engineering design: Definitions and strategies , 2016 .
[95] F. Martina,et al. Design for Additive Manufacturing , 2019 .
[96] J. Bagley,et al. Three‐dimensional printing of human skeletal muscle cells: An interdisciplinary approach for studying biological systems , 2015, Biochemistry and molecular biology education : a bimonthly publication of the International Union of Biochemistry and Molecular Biology.
[97] Ashwin Michaelraj,et al. Taxonomy of physical prototypes: structure and validation , 2009 .
[98] Xavier Velay,et al. Possibilities and Pitfalls with Rapid Prototyping and Rapid Manufacturing: "The Role of These Emerging Technologies in Design Education" , 2008 .
[99] Maria C. Yang,et al. An Examination of Prototyping and Design Outcome , 2004 .
[100] James Moultrie,et al. A STRUCTURED LOOK AT NEW DESIGN POSSIBILITIES FOR ADDITIVE MANUFACTURING MACHINES , 2016 .
[101] Kinda Khalaf,et al. Freshman engineering design: A new model content and pedagogy , 2012, Proceedings of the 2012 IEEE Global Engineering Education Conference (EDUCON).
[102] E. Gerber,et al. The psychological experience of prototyping , 2012 .
[103] Guy Pyrzak,et al. Breaking the fidelity barrier: an examination of our current characterization of prototypes and an example of a mixed-fidelity success , 2006, CHI.
[104] Torgeir Welo,et al. On the use of directional and incremental prototyping in the development of high novelty products , 2015 .
[105] Peter J. Coughlan,et al. Prototypes as (Design) Tools for Behavioral and Organizational Change , 2007 .
[106] David W. Rosen,et al. Design for Additive Manufacturing: Past, Present, and Future Directions , 2014 .
[107] Sandeep W. Dahake,et al. Additive layered manufacturing: State-of-the-art applications in product innovation , 2016, Concurr. Eng. Res. Appl..
[108] Liang Hou,et al. Additive manufacturing and its societal impact: a literature review , 2013 .
[109] David W. Rosen,et al. Additive Manufacturing Technologies: Rapid Prototyping to Direct Digital Manufacturing , 2009 .
[110] Andrea Gatto,et al. Impact of additive manufacturing on engineering education – evidence from Italy , 2015 .
[111] Amy Orange,et al. An Evaluation of HigherEd 2.0 Technologies in Undergraduate Mechanical Engineering Courses. , 2012 .
[112] P. Bártolo,et al. Additive manufacturing of tissues and organs , 2012 .
[113] Kristin L. Wood,et al. CROWDSOURCED DESIGN PRINCIPLES FOR LEVERAGING THE CAPABILITIES OF ADDITIVE MANUFACTURING , 2015 .
[114] Erik Stolterman,et al. The anatomy of prototypes: Prototypes as filters, prototypes as manifestations of design ideas , 2008, TCHI.
[115] Halime Demirkan,et al. An insight on designers’ sketching activities in traditional versus digital media , 2003 .
[116] Ingrid Mulder,et al. Fablabs in design education , 2013 .
[117] Claudia Eckert,et al. The role of testing in the engineering product development process , 2012 .
[118] S. Vinodh,et al. Rapid prototyping process selection using multi criteria decision making considering environmental criteria and its decision support system , 2016 .
[119] Ian Gibson,et al. Additive manufacturing technologies : 3D printing, rapid prototyping, and direct digital manufacturing , 2015 .
[120] Kerry L. Meyers,et al. An assessment of implementation of entry-level 3D printers from the perspective of small businesses , 2015 .
[121] Justin W. Adams,et al. Use of 3D printed models in medical education: A randomized control trial comparing 3D prints versus cadaveric materials for learning external cardiac anatomy , 2016, Anatomical sciences education.
[122] Julie S. Linsey,et al. METHODS FOR PROTOTYPING STRATEGIES IN CONCEPTUAL PHASES OF DESIGN: FRAMEWORK AND EXPERIMENTAL ASSESSMENT , 2013 .
[123] Nathaniel Crilly,et al. Fixation and creativity in concept development: the attitudes and practices of expert designers , 2015 .
[124] Sven Reese,et al. Fabrication and assessment of 3D printed anatomical models of the lower limb for anatomical teaching and femoral vessel access training in medicine , 2016, Anatomical sciences education.
[125] Alain Bernard,et al. A new decision support method for the selection of RP process: knowledge value measuring , 2014, Int. J. Comput. Integr. Manuf..
[126] Martin Skitmore,et al. The use of virtual prototyping for hazard identification in the early design stage , 2012 .
[127] Jouke Verlinden,et al. Optimal Design for Additive Manufacturing: Opportunities and Challenges , 2011 .
[128] Yong Liu,et al. 3D printing of smart materials: A review on recent progresses in 4D printing , 2015 .
[129] Yong Huang,et al. Additive Manufacturing: Current State, Future Potential, Gaps and Needs, and Recommendations , 2015 .
[130] Andre Liem,et al. A COMPARATIVE STUDY ON THE ROLE OF MODELS AND PROTOTYPES IN HUMAN-CENTERED DESIGN VERSUS DESIGN-DRIVEN INNOVATION APPROACHES , 2015 .
[131] Imre Horváth,et al. Analyzing opportunities for using interactive augmented prototyping in design practice , 2009, Artificial Intelligence for Engineering Design, Analysis and Manufacturing.
[132] Maria C. Yang,et al. A study of prototypes, design activity, and design outcome , 2005 .
[133] Behzad Esmaeilian,et al. The evolution and future of manufacturing: A review , 2016 .
[134] I. Ashcroft,et al. Topology Optimization for Additive Manufacturing , 2011 .
[135] A. John Hart,et al. A framework for teaching the fundamentals of additive manufacturing and enabling rapid innovation , 2015, 1510.09070.
[136] Paulo Blikstein,et al. Digital Fabrication and Making' in Education: The Democratization of Invention , 2013 .
[137] Neil Gershenfeld,et al. How to Make Almost Anything , 2012 .
[138] Monica Bordegoni,et al. A LENS ON FUTURE PRODUCTS: AN EXPANDED NOTION OF PROTOTYPING PRACTICE , 2016 .
[139] Gareth J. Bennett,et al. Tools for assessing student learning in mechanical design courses , 2013 .