Manufacturing technology in terms of digital fabrication of contemporary biomimetic structures

Author(s):  
Saurav Dixit ◽  
Anna Stefańska ◽  
Priyanka Singh
2019 ◽  
Vol 26 (7) ◽  
pp. 1505-1523
Author(s):  
Javier Monllor ◽  
Aracely Soto-Simeone

Purpose The purpose of this paper is to investigate the role exposure to digital fabrication technology plays in the development of students’ entrepreneurial self-efficacy (ESE) and intentions. Design/methodology/approach Data were collected from 131 students enrolled in a business administration undergraduate program at a large Midwestern university in the USA. Data were analyzed using confirmatory factor analysis and structural equation modeling. Findings Results provide evidence on how exposure to and hands-on experience with digital manufacturing technology in universities can have a positive impact on students’ ESE and intentions to become entrepreneurs. Practical implications Results support initiatives by business schools and entrepreneurship programs to invest in digital manufacturing technology as they help increase students’ confidence in their technological and entrepreneurial abilities. Originality/value This is the first study that directly looks at the role that exposure to digital technology in a business and entrepreneurship education program has on students’ ESE and intentions.


2021 ◽  
Vol 13 (16) ◽  
pp. 8923
Author(s):  
Stelladriana Volpe ◽  
Valentino Sangiorgio ◽  
Andrea Petrella ◽  
Armando Coppola ◽  
Michele Notarnicola ◽  
...  

The Fourth Industrial Revolution represents the beginning of a profound change for the building sector. In the last decade, the perspective of shapes, materials, and construction techniques is evolving fast due to the additive manufacturing technology. On the other hand, even if the technology is growing fast and several 3D printed buildings are being developed worldwide, the potential of concrete 3D printing in building prefabrication remains unexplored. Consequently, the application of new digital fabrication technologies in the construction industry requires a redesign of the construction process and its components. This paper proposes a novel conception, design, and prototyping of a precast building envelope to be prefabricated with extrusion-based 3D concrete printing (3DCP). The new design and conception aim to fully exploit the potential of 3D printing for prefabricated components, especially in terms of dry assembly, speed of implementation, reusability, recyclability, modularity, versatility, adaptability, and sustainability. Beyond the novel conceptual design of precast elements, the research investigated the 3D printable cementitious material based on a magnesium potassium phosphate cement (MKPC), which was devised and tested to ensure good performances of the proposed component. Finally, a prototype has been realised in scale with additive manufacturing technology in order to verify the printability and to optimize the extruder path. This study leads us to believe that the combined use of prefabricated systems, construction automation, and innovative materials can decisively improve the construction industry’s sustainability in the future.


2015 ◽  
Vol 135 (11) ◽  
pp. 655-665 ◽  
Author(s):  
Nobuhiro Ohe ◽  
Shinji Kitagami ◽  
Hironobu Yonemori ◽  
Masahiro Inoue ◽  
Tetsuo Shiotsuki ◽  
...  

Author(s):  
Muhammad Irfan Said ◽  
Muhammad Hatta ◽  
St. Rohani

Knowledge of animal feed and waste is an important component in building the livestock industry. The aspectof availability of feed and the production of livestock waste is one of the problems by cattle farmers in MattirowalieVillage, Libureng Sub-District, Bone Regency. Efforts to increase the capacity of farmers in solving these problems areneeded to increase the productivity of their livestock. This program aims to increase knowledge for farmers of beef cattlein processing agricultural and livestock waste into feed products and processing them into organic fertilizer. This activityis an implementation of the Program Pengabdian Kepada Masyarakat Unhas (PPMU) Program Kemitraan Masyarakat(PKM). This activity was carried out in Mattirowalie Village, Libureng Sub-District, Bone Regency. The partner groupsinvolved as targets were the "Kurusumange" and "Masempo Dalle" farmers group (FG). The number of trainingparticipants involved in this activity is approximately 25 peoples, overall were cattle farmers with 2-3 cattle/person. Theimplementation of technology introduction programs was carried out in the form of training programs and technologyassistance. Several technology packages that have been implemented were: 1) ammoniation technology, 2) complete feedsilage fermentation technology, 3) manufacturing of local microorganism (LM) technology and 4) Urea Molasses Block(UMB) manufacturing technology. The results of the implementation of activities to increase the capacity of partnermembers in processing agricultural waste and livestock into alternative animal feed and organic fertilizer


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