Enablers, Barriers, and Critical Success Factors for Effective Adoption of Color-Jet 3D Printing Technology
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[1] Simon Richir,et al. Support optimization for additive manufacturing: application to FDM , 2017 .
[2] Zhenghe Feng,et al. Analysis and design of tapered slot antenna for ultra-wideband applications , 2009 .
[3] Willy Sher,et al. Estimating in geometric 3D CAD , 2015 .
[4] Manoj Kumar Tiwari,et al. Modeling the metrics of lean, agile and leagile supply chain: An ANP-based approach , 2006, Eur. J. Oper. Res..
[5] Brian N. Turner,et al. A review of melt extrusion additive manufacturing processes: II. Materials, dimensional accuracy, and surface roughness , 2015 .
[6] Ajay Joneja,et al. A study on revolute joints in 3D-printed non-assembly mechanisms , 2016 .
[7] David L. Bourell,et al. Post‐processing of selective laser sintered metal parts , 1995 .
[8] A. Haleem,et al. A structural modelling for e-governance service delivery in rural India , 2009 .
[9] Hoejin Kim,et al. A review on quality control in additive manufacturing , 2018 .
[10] Diego Galar,et al. Effects of condition-based maintenance on costs caused by unscheduled maintenance of aircraft , 2016 .
[11] Eujin Pei,et al. Effect of post-processing on the dimensional accuracy of small plastic additive manufactured parts , 2019, Rapid Prototyping Journal.
[12] S. Singhal,et al. Investigation of machining characteristics in rotary ultrasonic machining of alumina ceramic , 2017 .
[13] Jatinder Kumar,et al. An experimental study on ultrasonic machining of Tungsten carbide-cobalt composite materials , 2016 .
[14] Zhaohui Yu,et al. Large-size color models visualization under 3D paper-based printing , 2017 .
[15] Joshua M. Pearce,et al. Distributed recycling of waste polymer into RepRap feedstock , 2013 .
[16] Desenvolvimento de pó à base de gesso e binder para prototipagem rápida , 2013 .
[17] Dichen Li,et al. 3D printing for continuous fiber reinforced thermoplastic composites: mechanism and performance , 2017 .
[18] Lida Xu,et al. Big data for cyber physical systems in industry 4.0: a survey , 2019, Enterp. Inf. Syst..
[19] Harm-Jan Steenhuis,et al. Consumer additive manufacturing or 3D printing adoption: an exploratory study , 2016 .
[20] Kerry L. Meyers,et al. An assessment of implementation of entry-level 3D printers from the perspective of small businesses , 2015 .
[21] Rakesh K. Jain,et al. On the adoption of additive manufacturing in healthcare: a literature review , 2019, Journal of Manufacturing Technology Management.
[22] Marzio Grasso,et al. Effect of temperature on the mechanical properties of 3D-printed PLA tensile specimens , 2018, Rapid Prototyping Journal.
[23] M. Javaid,et al. Role of CT and MRI in the design and development of orthopaedic model using additive manufacturing. , 2018, Journal of clinical orthopaedics and trauma.
[24] Long Lin,et al. Challenges of UV curable ink‐jet printing inks – a formulator's perspective , 2004 .
[25] Camille Bosqué,et al. What are you printing? Ambivalent emancipation by 3D printing , 2015 .
[26] Matthew C. Frank,et al. Advanced process planning for subtractive rapid prototyping , 2010 .
[27] Ian Gibson,et al. A review of 3D concrete printing systems and materials properties: current status and future research prospects , 2018 .
[28] Mohd Javaid,et al. Current status and challenges of Additive manufacturing in orthopaedics: An overview. , 2019, Journal of clinical orthopaedics and trauma.
[29] Ian Gibson,et al. The changing face of additive manufacturing , 2017 .
[30] Igor Drstvenšek,et al. Speed and accuracy evaluation of additive manufacturing machines , 2011 .
[31] Jakob Branger,et al. From automated home to sustainable, healthy and manufacturing home: a new story enabled by the Internet-of-Things and Industry 4.0 , 2015 .
[32] Alain Bernard,et al. Feature based building orientation optimization for additive manufacturing , 2016 .
[33] Christopher B. Williams,et al. Exploring variability of orientation and aging effects in material properties of multi-material jetting parts , 2016 .
[34] Philip Dickens,et al. Rapid Product Development in the USA, Europe and Japan , 1994 .
[35] Mohd Javaid,et al. Current status and applications of additive manufacturing in dentistry: A literature-based review. , 2019, Journal of oral biology and craniofacial research.
[36] R. Shankar,et al. ANALYSIS OF INTERACTIONS AMONG THE BARRIERS OF REVERSE LOGISTICS , 2005 .
[37] Ramy Harik,et al. A statistical method for build orientation determination in additive manufacturing , 2019, Rapid Prototyping Journal.
[38] Tim C. Lueth,et al. A new method for printer calibration and contour accuracy manufacturing with 3D‐print technology , 2008 .
[39] John Kechagias,et al. An experimental investigation of the surface roughness of parts produced by LOM process , 2007 .
[40] A. Haleem,et al. Towards successful adoption of Halal logistics and its implications for the stakeholders , 2017 .
[41] Laiquan Li,et al. Development of hybrid magnetorheological elastomers by 3D printing , 2018, Polymer.
[42] Rupinder Singh,et al. Thermal and surface characterization of ABS replicas made by FDM for rapid tooling applications , 2017 .
[43] Julien Gardan,et al. Method for characterization and enhancement of 3D printing by binder jetting applied to the textures quality , 2017 .
[44] R. Gorkin,et al. The adoption process and impact of additive manufacturing on manufacturing systems , 2016 .
[45] Ricky D. Wildman,et al. Development, printability and post-curing studies of formulations of materials resistant to microbial attachment for use in inkjet based 3D printing , 2016 .
[46] Sushil. Interpreting the Interpretive Structural Model , 2012, Global Journal of Flexible Systems Management.
[47] Richard J.M. Hague,et al. Efficient three dimensional modelling of additive manufactured textiles , 2013 .
[48] Paulo A. Cauchick Miguel,et al. Additive manufacturing process selection based on parts’ selection criteria , 2015, The International Journal of Advanced Manufacturing Technology.
[49] Fei Tao,et al. Advanced manufacturing systems: supply–demand matching of manufacturing resource based on complex networks and Internet of Things , 2018, Enterp. Inf. Syst..
[50] Bahram Asiabanpour,et al. Close to CAD model curved-form adaptive slicing , 2014 .
[51] Lida Xu,et al. Polychromatic sets and its application in simulating complex objects and systems , 2003, Comput. Oper. Res..
[52] Lida Xu,et al. The Internet of Things (IoT): Informatics methods for IoT-enabled health care , 2018, J. Biomed. Informatics.
[53] Thomas D Brown,et al. A Method to Represent Heterogeneous Materials for Rapid Prototyping: The Matryoshka Approach. , 2014, Rapid prototyping journal.
[54] Grzegorz Budzik,et al. Manufacturing of aircraft engine transmission gear with SLS (DMLS) method , 2016 .
[55] Ravi Shankar,et al. Selection of logistics service provider: An analytic network process (ANP) approach , 2007 .
[56] Manuel F. C. Pereira,et al. The role of shell/core saturation level on the accuracy and mechanical characteristics of porous calcium phosphate models produced by 3Dprinting , 2015 .
[57] Mohd Javaid,et al. Industry 4.0 applications in medical field: A brief review , 2019, Current Medicine Research and Practice.
[58] B. Agnew,et al. Thermo-mechanical performance of concrete with alternative binder material. , 2013 .
[59] Yaoyao Fiona Zhao,et al. Process parameters optimization for improving surface quality and manufacturing accuracy of binder jetting additive manufacturing process , 2016 .
[61] Harish Kumar Banga,et al. Fabrication and stress analysis of ankle foot orthosis with additive manufacturing , 2018 .
[62] Sanjay B. Joshi,et al. Slice data representation and format for multi-material objects for additive manufacturing processes , 2017 .
[63] L. Pretorius,et al. The additive manufacturing innovation: a range of implications , 2017 .
[64] Anderson Vicente Borille,et al. Applying decision methods to select rapid prototyping technologies , 2010 .
[65] Paul Schönsleben,et al. Additive manufacturing cost estimation for buy scenarios , 2016 .
[66] Steve Simon,et al. Options for additive rapid prototyping methods (3D printing) in MEMS technology , 2014 .
[67] Nicolas Perry,et al. Rapid prototyping: energy and environment in the spotlight , 2006 .
[68] Ivo Kothman,et al. How 3D printing technology changes the rules of the game: Insights from the construction sector , 2016 .
[69] Diana Gregor Svetec,et al. Colorimetric Properties and Stability of 3D Prints , 2012 .
[70] Ron Jamieson,et al. Direct slicing of CAD models for rapid prototyping , 1995 .
[71] Rafael Vidal Aroca,et al. Sequential additive manufacturing: automatic manipulation of 3D printed parts , 2017 .
[72] Li D. Xu,et al. The contribution of systems science to information systems research , 2000 .
[73] Mark A. Ganter,et al. Low-cost closed-loop control of a 3D printer gantry , 2015 .
[74] Mohd Javaid,et al. Current status and applications of 3D scanning in dentistry , 2018, Clinical Epidemiology and Global Health.
[75] Nathan B. Crane,et al. Stress-limiting test structures for rapid low-cost strength and stiffness assessment , 2015 .
[76] Michael F. Zaeh,et al. Powder-bed-based 3D-printing of function integrated parts , 2015 .
[77] Feng Lin,et al. Rapid prototyping and manufacturing technology: Principle, representative technics, applications, and development trends , 2009 .
[78] T.H.C. Childs,et al. Shelling strategies to save time in a rapid tooling process , 2003 .
[79] Shancang Li,et al. 5G Internet of Things: A survey , 2018, J. Ind. Inf. Integr..