Open-source 3-D printing technologies for education: Bringing additive manufacturing to the classroom

3-D printing technologies have the potential to improve both Science, Technology, Engineering, and Mathematics (STEM) education and Career and Technical Education (CTE), as well as integrating these two educational emphases and providing opportunities for cross-curriculum engagement. The objective o...

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Published inJournal of visual languages and computing Vol. 28; pp. 226 - 237
Main Authors Schelly, Chelsea, Anzalone, Gerald, Wijnen, Bas, Pearce, Joshua M.
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.06.2015
Elsevier
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Online AccessGet full text
ISSN1045-926X
1095-8533
1095-8533
DOI10.1016/j.jvlc.2015.01.004

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Abstract 3-D printing technologies have the potential to improve both Science, Technology, Engineering, and Mathematics (STEM) education and Career and Technical Education (CTE), as well as integrating these two educational emphases and providing opportunities for cross-curriculum engagement. The objective of this study is to investigate the potential of open-source (OS) technologies in an educational setting, given the combination of economic constraints affecting all educational environments and the ability of OS design to profoundly decrease the cost of technological tools and technological innovation. This paper reports on a 3-day workshop augmented with online instructional and visual tools designed for middle school and high school level educators from a wide array of disciplines (including traditional science, math, and engineering as well as computer, shop, and art). Teachers (n=22) submitted applications to participate in the workshop, the workshop was observed for both evaluation and research, teachers participated in focus groups (n=2) during the workshop in order to discuss their interest in OS 3-D printing technology and its potential role in their classrooms, and teachers completed a voluntary post-workshop survey and responded to follow-up after printers were in the classroom for one year. During the workshop teachers built 3-D printers using OS technologies that they were then able to take back to their schools and into their classrooms. Through workshops augmented with online instructional and visual tools designed to provide facilitated yet self-directed engagement with a new, relatively unknown, and relatively complex technology, paired teacher teams were able to successfully build and use RepRap 3-D printers based on OS design in just three days. Here, we discuss both what the teachers learned and what we learned from the teachers regarding the potential for educators to construct OS 3-D printing technologies as a tool of empowering and transformative education. Open-source 3-D printing technologies have the potential to improve education through a sense of empowerment resulting from active participation, as well as through cross-curriculum engagement. [Display omitted] •Open-source 3D printing provides a cost efficient means of STEM education.•These technologies can also empower student-driven engaged learning.•Report on workshop for science educators to build 3D printers for their classes.•Teacher workshop augmented with online instructional and visual tools.•Results indicate transformative potential of these technologies in the classroom.
AbstractList 3-D printing technologies have the potential to improve both Science, Technology, Engineering, and Mathematics (STEM) education and Career and Technical Education (CTE), as well as integrating these two educational emphases and providing opportunities for cross-curriculum engagement. The objective of this study is to investigate the potential of open-source (OS) technologies in an educational setting, given the combination of economic constraints affecting all educational environments and the ability of OS design to profoundly decrease the cost of technological tools and technological innovation. This paper reports on a 3-day workshop augmented with online instructional and visual tools designed for middle school and high school level educators from a wide array of disciplines (including traditional science, math, and engineering as well as computer, shop, and art). Teachers (n=22) submitted applications to participate in the workshop, the workshop was observed for both evaluation and research, teachers participated in focus groups (n=2) during the workshop in order to discuss their interest in OS 3-D printing technology and its potential role in their classrooms, and teachers completed a voluntary post-workshop survey and responded to follow-up after printers were in the classroom for one year. During the workshop teachers built 3-D printers using OS technologies that they were then able to take back to their schools and into their classrooms. Through workshops augmented with online instructional and visual tools designed to provide facilitated yet self-directed engagement with a new, relatively unknown, and relatively complex technology, paired teacher teams were able to successfully build and use RepRap 3-D printers based on OS design in just three days. Here, we discuss both what the teachers learned and what we learned from the teachers regarding the potential for educators to construct OS 3-D printing technologies as a tool of empowering and transformative education. Open-source 3-D printing technologies have the potential to improve education through a sense of empowerment resulting from active participation, as well as through cross-curriculum engagement. [Display omitted] •Open-source 3D printing provides a cost efficient means of STEM education.•These technologies can also empower student-driven engaged learning.•Report on workshop for science educators to build 3D printers for their classes.•Teacher workshop augmented with online instructional and visual tools.•Results indicate transformative potential of these technologies in the classroom.
Objective 3-D printing technologies have the potential to improve both Science, Technology, Engineering, and Mathematics (STEM) education and Career and Technical Education (CTE), as well as integrating these two educational emphases and providing opportunities for cross-curriculum engagement. The objective of this study is to investigate the potential of open-source (OS) technologies in an educational setting, given the combination of economic constraints affecting all educational environments and the ability of OS design to profoundly decrease the cost of technological tools and technological innovation. Methods This paper reports on a 3-day workshop augmented with online instructional and visual tools designed for middle school and high school level educators from a wide array of disciplines (including traditional science, math, and engineering as well as computer, shop, and art). Teachers (n=22) submitted applications to participate in the workshop, the workshop was observed for both evaluation and research, teachers participated in focus groups (n=2) during the workshop in order to discuss their interest in OS 3-D printing technology and its potential role in their classrooms, and teachers completed a voluntary post-workshop survey and responded to follow-up after printers were in the classroom for one year. Results During the workshop teachers built 3-D printers using OS technologies that they were then able to take back to their schools and into their classrooms. Conclusion Through workshops augmented with online instructional and visual tools designed to provide facilitated yet self-directed engagement with a new, relatively unknown, and relatively complex technology, paired teacher teams were able to successfully build and use RepRap 3-D printers based on OS design in just three days. Practice Here, we discuss both what the teachers learned and what we learned from the teachers regarding the potential for educators to construct OS 3-D printing technologies as a tool of empowering and transformative education.
Author Schelly, Chelsea
Pearce, Joshua M.
Wijnen, Bas
Anzalone, Gerald
Author_xml – sequence: 1
  givenname: Chelsea
  surname: Schelly
  fullname: Schelly, Chelsea
  organization: Department of Social Sciences, Michigan Technological University, United States
– sequence: 2
  givenname: Gerald
  surname: Anzalone
  fullname: Anzalone, Gerald
  organization: Department of Materials Science and Engineering, Michigan Technological University, United States
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  givenname: Bas
  surname: Wijnen
  fullname: Wijnen, Bas
  organization: Department of Materials Science and Engineering, Michigan Technological University, United States
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  givenname: Joshua M.
  surname: Pearce
  fullname: Pearce, Joshua M.
  email: pearce@mtu.edu
  organization: Department of Materials Science and Engineering, Michigan Technological University, United States
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Keywords 3-D printing
Teacher workshop
Teacher education
STEM education
Transformative education
Open-source hardware
teacher education
open-source hardware
teacher workshop
transformative education
Language English
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Snippet 3-D printing technologies have the potential to improve both Science, Technology, Engineering, and Mathematics (STEM) education and Career and Technical...
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SubjectTerms 3-D printing
Computer Science
Education
Engineering Sciences
Humanities and Social Sciences
Open-source hardware
STEM education
Teacher education
Teacher workshop
Technology for Human Learning
Transformative education
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