---
_id: '7670'
abstract:
- lang: eng
  text: Additive manufacturing (AM) and rapid prototyping process (RPP) have revolutionized
    the production of 3D objects in the last few decades. RPP has considerably increased
    the rate of production and the possibility of manufacturing prototypes in the
    fields of electrical, optical, and mechanical engineering. The manufacturing of
    optical prototypes including spherical, aspheric, and special kinds of lenses
    and lens arrays has reformed the fabrication of optical components. In this paper,
    specifically designed lens array prototypes for application in visible light communication
    (VLC) are introduced. These lens array prototypes are manufactured using the stereolithography
    apparatus (SLA) process. These lens arrays are designed to achieve optimal transmission
    of the light beam for VLC systems. One of the prototypes from the lens arrays
    contains primarily four spherical lenses and one thicker convex lens and the other
    contains one fresnel lens as a substitute for thicker convex lens. These lens
    arrays are further post-processed to achieve the required transparency. These
    lens array prototypes are tested using laser and LEDs. The ON-OFF keying modulated
    light beam was transmitted through the lens array at the sender side and focused
    on the photo-receiver using another lens array at the receiver side which is 200
    cm apart. After evaluating these lens prototypes, it can be concluded that with
    appropriate post-processing and high-resolution stereolithography based manufacturing,
    a low data rate VLC link can be formed.
author:
- first_name: Abhijeet Narendra
  full_name: Shrotri, Abhijeet Narendra
  id: '74090'
  last_name: Shrotri
  orcid: 0000-0003-2116-156X
- first_name: Micha
  full_name: Beyer, Micha
  id: '71403'
  last_name: Beyer
- first_name: Daniel Johann
  full_name: Schneider, Daniel Johann
  id: '71057'
  last_name: Schneider
- first_name: Oliver
  full_name: Stübbe, Oliver
  id: '51864'
  last_name: Stübbe
  orcid: https://orcid.org/0000-0001-7293-6893
citation:
  ama: Shrotri AN, Beyer M, Schneider DJ, Stübbe O. <i>Manufacturing of Lens Array
    Prototypes Containing Spherical and Fresnel Lenses for Visible Light Communications
    Using Stereolithography Apparatus</i>. Vol 11677. (Helvajian H, Gu B, Chen H,
    eds.). Society of Photo-Optical Instrumentation Engineers; 2021. doi:<a href="https://doi.org/10.1117/12.2586907">10.1117/12.2586907</a>
  apa: Shrotri, A. N., Beyer, M., Schneider, D. J., &#38; Stübbe, O. (2021). Manufacturing
    of lens array prototypes containing spherical and fresnel lenses for visible light
    communications using stereolithography apparatus. In H. Helvajian, B. Gu, &#38;
    H. Chen (Eds.), <i>Laser 3D Manufacturing VIII</i> (Vol. 11677). Society of Photo-Optical
    Instrumentation Engineers. <a href="https://doi.org/10.1117/12.2586907">https://doi.org/10.1117/12.2586907</a>
  bjps: '<b>Shrotri AN <i>et al.</i></b> (2021) <i>Manufacturing of Lens Array Prototypes
    Containing Spherical and Fresnel Lenses for Visible Light Communications Using
    Stereolithography Apparatus</i>, Helvajian H, Gu B and Chen H (eds). San Francisco:
    Society of Photo-Optical Instrumentation Engineers.'
  chicago: 'Shrotri, Abhijeet Narendra, Micha Beyer, Daniel Johann Schneider, and
    Oliver Stübbe. <i>Manufacturing of Lens Array Prototypes Containing Spherical
    and Fresnel Lenses for Visible Light Communications Using Stereolithography Apparatus</i>.
    Edited by Henry Helvajian, Bo Gu, and Hongqiang Chen. <i>Laser 3D Manufacturing
    VIII</i>. Vol. 11677. Proceedings of SPIE. San Francisco: Society of Photo-Optical
    Instrumentation Engineers, 2021. <a href="https://doi.org/10.1117/12.2586907">https://doi.org/10.1117/12.2586907</a>.'
  chicago-de: 'Shrotri, Abhijeet Narendra, Micha Beyer, Daniel Johann Schneider und
    Oliver Stübbe. 2021. <i>Manufacturing of lens array prototypes containing spherical
    and fresnel lenses for visible light communications using stereolithography apparatus</i>.
    Hg. von Henry Helvajian, Bo Gu, und Hongqiang Chen. <i>Laser 3D Manufacturing
    VIII</i>. Bd. 11677. Proceedings of SPIE. San Francisco: Society of Photo-Optical
    Instrumentation Engineers. doi:<a href="https://doi.org/10.1117/12.2586907">10.1117/12.2586907</a>,
    .'
  din1505-2-1: '<span style="font-variant:small-caps;">Shrotri, Abhijeet Narendra</span>
    ; <span style="font-variant:small-caps;">Beyer, Micha</span> ; <span style="font-variant:small-caps;">Schneider,
    Daniel Johann</span> ; <span style="font-variant:small-caps;">Stübbe, Oliver</span>
    ; <span style="font-variant:small-caps;">Helvajian, H.</span> ; <span style="font-variant:small-caps;">Gu,
    B.</span> ; <span style="font-variant:small-caps;">Chen, H.</span> (Hrsg.): <i>Manufacturing
    of lens array prototypes containing spherical and fresnel lenses for visible light
    communications using stereolithography apparatus</i>, <i>Proceedings of SPIE</i>.
    Bd. 11677. San Francisco : Society of Photo-Optical Instrumentation Engineers,
    2021'
  havard: A.N. Shrotri, M. Beyer, D.J. Schneider, O. Stübbe, Manufacturing of lens
    array prototypes containing spherical and fresnel lenses for visible light communications
    using stereolithography apparatus, Society of Photo-Optical Instrumentation Engineers,
    San Francisco, 2021.
  ieee: 'A. N. Shrotri, M. Beyer, D. J. Schneider, and O. Stübbe, <i>Manufacturing
    of lens array prototypes containing spherical and fresnel lenses for visible light
    communications using stereolithography apparatus</i>, vol. 11677. San Francisco:
    Society of Photo-Optical Instrumentation Engineers, 2021. doi: <a href="https://doi.org/10.1117/12.2586907">10.1117/12.2586907</a>.'
  mla: Shrotri, Abhijeet Narendra, et al. “Manufacturing of Lens Array Prototypes
    Containing Spherical and Fresnel Lenses for Visible Light Communications Using
    Stereolithography Apparatus.” <i>Laser 3D Manufacturing VIII</i>, edited by Henry
    Helvajian et al., vol. 11677, Society of Photo-Optical Instrumentation Engineers,
    2021, <a href="https://doi.org/10.1117/12.2586907">https://doi.org/10.1117/12.2586907</a>.
  short: A.N. Shrotri, M. Beyer, D.J. Schneider, O. Stübbe, Manufacturing of Lens
    Array Prototypes Containing Spherical and Fresnel Lenses for Visible Light Communications
    Using Stereolithography Apparatus, Society of Photo-Optical Instrumentation Engineers,
    San Francisco, 2021.
  ufg: '<b>Shrotri, Abhijeet Narendra u. a.</b>: Manufacturing of lens array prototypes
    containing spherical and fresnel lenses for visible light communications using
    stereolithography apparatus, Bd. 11677, hg. von Helvajian, Henry/Gu, Bo/Chen,
    Hongqiang, San Francisco 2021 (Proceedings of SPIE).'
  van: 'Shrotri AN, Beyer M, Schneider DJ, Stübbe O. Manufacturing of lens array prototypes
    containing spherical and fresnel lenses for visible light communications using
    stereolithography apparatus. Helvajian H, Gu B, Chen H, editors. Laser 3D Manufacturing
    VIII. San Francisco: Society of Photo-Optical Instrumentation Engineers; 2021.
    (Proceedings of SPIE; vol. 11677).'
conference:
  end_date: 2021-02-02
  location: 'San Francisco '
  name: SPIE Photonics West LASE Proc. SPIE 11677, Laser 3D Manufacturing VIII, 1167717
  start_date: 2021-01-28
date_created: 2022-04-19T10:20:55Z
date_updated: 2024-04-19T11:54:33Z
department:
- _id: DEP5020
- _id: DEP6020
- _id: DEP5000
doi: 10.1117/12.2586907
editor:
- first_name: Henry
  full_name: Helvajian, Henry
  last_name: Helvajian
- first_name: Bo
  full_name: Gu, Bo
  last_name: Gu
- first_name: Hongqiang
  full_name: Chen, Hongqiang
  last_name: Chen
intvolume: '     11677'
keyword:
- Additive manufacturing
- 3D printing
- Stereolithography apparatus
- Spherical lenses
- Fresnel lenses
- Visible light communication
language:
- iso: eng
main_file_link:
- url: https://doi.org/10.1117/12.2586907
place: San Francisco
publication: Laser 3D Manufacturing VIII
publication_identifier:
  eisbn:
  - 978-1-5106-4190-7
  eissn:
  - 1996-756X
  isbn:
  - 978-1-5106-4189-1
  issn:
  - 0277-786X
publication_status: published
publisher: Society of Photo-Optical Instrumentation Engineers
series_title: Proceedings of SPIE
status: public
title: Manufacturing of lens array prototypes containing spherical and fresnel lenses
  for visible light communications using stereolithography apparatus
type: conference_editor_article
user_id: '51864'
volume: 11677
year: '2021'
...
---
_id: '7676'
author:
- first_name: Abhijeet Narendra
  full_name: Shrotri, Abhijeet Narendra
  id: '74090'
  last_name: Shrotri
  orcid: 0000-0003-2116-156X
- first_name: Micha
  full_name: Beyer, Micha
  id: '71403'
  last_name: Beyer
- first_name: Oliver
  full_name: Stübbe, Oliver
  id: '51864'
  last_name: Stübbe
  orcid: https://orcid.org/0000-0001-7293-6893
citation:
  ama: Shrotri AN, Beyer M, Stübbe O. <i>Manufacturing and Analyzing of Cost-Efficient
    Fresnel Lenses Using Stereolithography</i>. Vol 11349. (von Freymann G, Herkommer
    AM, Flury M, eds.). SPIE; 2020. doi:<a href="https://doi.org/10.1117/12.2555367">10.1117/12.2555367</a>
  apa: 'Shrotri, A. N., Beyer, M., &#38; Stübbe, O. (2020). Manufacturing and analyzing
    of cost-efficient fresnel lenses using stereolithography. In G. von Freymann,
    A. M. Herkommer, &#38; M. Flury (Eds.), <i>3D Printed Optics and Additive Photonic
    Manufacturing II : 6-10 April 2020, online only, France </i> (Vol. 11349). SPIE.
    <a href="https://doi.org/10.1117/12.2555367">https://doi.org/10.1117/12.2555367</a>'
  bjps: '<b>Shrotri AN, Beyer M and Stübbe O</b> (2020) <i>Manufacturing and Analyzing
    of Cost-Efficient Fresnel Lenses Using Stereolithography</i>, von Freymann G,
    Herkommer AM and Flury M (eds). Bellingham, Washington, USA: SPIE.'
  chicago: 'Shrotri, Abhijeet Narendra, Micha Beyer, and Oliver Stübbe. <i>Manufacturing
    and Analyzing of Cost-Efficient Fresnel Lenses Using Stereolithography</i>. Edited
    by Georg von Freymann, Alois M. Herkommer, and Manuel Flury. <i>3D Printed Optics
    and Additive Photonic Manufacturing II : 6-10 April 2020, Online Only, France
    </i>. Vol. 11349.  Proceedings of SPIE. Bellingham, Washington, USA: SPIE, 2020.
    <a href="https://doi.org/10.1117/12.2555367">https://doi.org/10.1117/12.2555367</a>.'
  chicago-de: 'Shrotri, Abhijeet Narendra, Micha Beyer und Oliver Stübbe. 2020. <i>Manufacturing
    and analyzing of cost-efficient fresnel lenses using stereolithography</i>. Hg.
    von Georg von Freymann, Alois M. Herkommer, und Manuel Flury. <i>3D Printed Optics
    and Additive Photonic Manufacturing II : 6-10 April 2020, online only, France
    </i>. Bd. 11349.  Proceedings of SPIE. Bellingham, Washington, USA: SPIE. doi:<a
    href="https://doi.org/10.1117/12.2555367">10.1117/12.2555367</a>, .'
  din1505-2-1: '<span style="font-variant:small-caps;">Shrotri, Abhijeet Narendra</span>
    ; <span style="font-variant:small-caps;">Beyer, Micha</span> ; <span style="font-variant:small-caps;">Stübbe,
    Oliver</span> ; <span style="font-variant:small-caps;">von Freymann, G.</span>
    ; <span style="font-variant:small-caps;">Herkommer, A. M.</span> ; <span style="font-variant:small-caps;">Flury,
    M.</span> (Hrsg.): <i>Manufacturing and analyzing of cost-efficient fresnel lenses
    using stereolithography</i>, <i> Proceedings of SPIE</i>. Bd. 11349. Bellingham,
    Washington, USA : SPIE, 2020'
  havard: A.N. Shrotri, M. Beyer, O. Stübbe, Manufacturing and analyzing of cost-efficient
    fresnel lenses using stereolithography, SPIE, Bellingham, Washington, USA, 2020.
  ieee: 'A. N. Shrotri, M. Beyer, and O. Stübbe, <i>Manufacturing and analyzing of
    cost-efficient fresnel lenses using stereolithography</i>, vol. 11349. Bellingham,
    Washington, USA: SPIE, 2020. doi: <a href="https://doi.org/10.1117/12.2555367">10.1117/12.2555367</a>.'
  mla: 'Shrotri, Abhijeet Narendra, et al. “Manufacturing and Analyzing of Cost-Efficient
    Fresnel Lenses Using Stereolithography.” <i>3D Printed Optics and Additive Photonic
    Manufacturing II : 6-10 April 2020, Online Only, France </i>, edited by Georg
    von Freymann et al., vol. 11349, SPIE, 2020, <a href="https://doi.org/10.1117/12.2555367">https://doi.org/10.1117/12.2555367</a>.'
  short: A.N. Shrotri, M. Beyer, O. Stübbe, Manufacturing and Analyzing of Cost-Efficient
    Fresnel Lenses Using Stereolithography, SPIE, Bellingham, Washington, USA, 2020.
  ufg: '<b>Shrotri, Abhijeet Narendra/Beyer, Micha/Stübbe, Oliver</b>: Manufacturing
    and analyzing of cost-efficient fresnel lenses using stereolithography, Bd. 11349,
    hg. von Freymann, Georg von/Herkommer, Alois M./Flury, Manuel, Bellingham, Washington,
    USA 2020 ( Proceedings of SPIE).'
  van: 'Shrotri AN, Beyer M, Stübbe O. Manufacturing and analyzing of cost-efficient
    fresnel lenses using stereolithography. von Freymann G, Herkommer AM, Flury M,
    editors. 3D Printed Optics and Additive Photonic Manufacturing II : 6-10 April
    2020, online only, France . Bellingham, Washington, USA: SPIE; 2020. ( Proceedings
    of SPIE; vol. 11349).'
conference:
  end_date: 2020-04-10
  location: Strasbourg (online)
  name: 3D Printed Optics and Additive Photonic Manufacturing ; SPIE Photonics Europe
    - Digital Forum
  start_date: 2020-04-06
date_created: 2022-04-19T10:46:32Z
date_updated: 2024-04-19T12:02:02Z
department:
- _id: DEP5020
- _id: DEP6020
- _id: DEP5000
doi: 10.1117/12.2555367
editor:
- first_name: Georg
  full_name: von Freymann, Georg
  last_name: von Freymann
- first_name: Alois M.
  full_name: Herkommer, Alois M.
  last_name: Herkommer
- first_name: Manuel
  full_name: Flury, Manuel
  last_name: Flury
intvolume: '     11349'
keyword:
- Fresnel lenses
- Stereolithography apparatus
- 3D printing
- Photo-polymerization
language:
- iso: eng
place: Bellingham, Washington, USA
publication: '3D Printed Optics and Additive Photonic Manufacturing II : 6-10 April
  2020, online only, France '
publication_identifier:
  eisbn:
  - ' 978-1-5106-3471-8 '
  eissn:
  - 1996-756X
  isbn:
  - 978-1-5106-3470-1
  issn:
  - 0277-786X
publication_status: published
publisher: SPIE
series_title: ' Proceedings of SPIE'
status: public
title: Manufacturing and analyzing of cost-efficient fresnel lenses using stereolithography
type: conference_editor_article
user_id: '51864'
volume: 11349
year: '2020'
...
---
_id: '7679'
author:
- first_name: Abhijeet Narendra
  full_name: Shrotri, Abhijeet Narendra
  id: '74090'
  last_name: Shrotri
  orcid: 0000-0003-2116-156X
- first_name: Micha
  full_name: Beyer, Micha
  id: '71403'
  last_name: Beyer
- first_name: Oliver
  full_name: Stübbe, Oliver
  id: '51864'
  last_name: Stübbe
  orcid: https://orcid.org/0000-0001-7293-6893
citation:
  ama: Shrotri AN, Beyer M, Stübbe O. <i>Evaluation of Stereolithograghy Processes
    for the Production of Lens Prototypes</i>. Vol 2019, 01. (Padoano E, Villmer FJ,
    eds.). Technische Hochschule Ostwestfalen-Lippe; 2019:227-240.
  apa: 'Shrotri, A. N., Beyer, M., &#38; Stübbe, O. (2019). Evaluation of stereolithograghy
    processes for the production of lens prototypes. In E. Padoano &#38; F.-J. Villmer
    (Eds.), <i>  Production engineering and management : proceedings 9th international
    conference, October 03 and 04, 2019, Trieste, Italy</i> (Vols. 2019, 01, pp. 227–240).
    Technische Hochschule Ostwestfalen-Lippe.'
  bjps: '<b>Shrotri AN, Beyer M and Stübbe O</b> (2019) <i>Evaluation of Stereolithograghy
    Processes for the Production of Lens Prototypes</i>, Padoano E and Villmer F-J
    (eds). Lemgo: Technische Hochschule Ostwestfalen-Lippe.'
  chicago: 'Shrotri, Abhijeet Narendra, Micha Beyer, and Oliver Stübbe. <i>Evaluation
    of Stereolithograghy Processes for the Production of Lens Prototypes</i>. Edited
    by Elio Padoano and Franz-Josef Villmer. <i>  Production Engineering and Management :
    Proceedings 9th International Conference, October 03 and 04, 2019, Trieste, Italy</i>.
    Vol. 2019, 01. Publication Series in Direct Digital Manufacturing . Lemgo: Technische
    Hochschule Ostwestfalen-Lippe, 2019.'
  chicago-de: 'Shrotri, Abhijeet Narendra, Micha Beyer und Oliver Stübbe. 2019. <i>Evaluation
    of stereolithograghy processes for the production of lens prototypes</i>. Hg.
    von Elio Padoano und Franz-Josef Villmer. <i>  Production engineering and management :
    proceedings 9th international conference, October 03 and 04, 2019, Trieste, Italy</i>.
    Bd. 2019, 01. Publication series in direct digital manufacturing . Lemgo: Technische
    Hochschule Ostwestfalen-Lippe.'
  din1505-2-1: '<span style="font-variant:small-caps;">Shrotri, Abhijeet Narendra</span>
    ; <span style="font-variant:small-caps;">Beyer, Micha</span> ; <span style="font-variant:small-caps;">Stübbe,
    Oliver</span> ; <span style="font-variant:small-caps;">Padoano, E.</span> ; <span
    style="font-variant:small-caps;">Villmer, F.-J.</span> (Hrsg.): <i>Evaluation
    of stereolithograghy processes for the production of lens prototypes</i>, <i>Publication
    series in direct digital manufacturing </i>. Bd. 2019, 01. Lemgo : Technische
    Hochschule Ostwestfalen-Lippe, 2019'
  havard: A.N. Shrotri, M. Beyer, O. Stübbe, Evaluation of stereolithograghy processes
    for the production of lens prototypes, Technische Hochschule Ostwestfalen-Lippe,
    Lemgo, 2019.
  ieee: 'A. N. Shrotri, M. Beyer, and O. Stübbe, <i>Evaluation of stereolithograghy
    processes for the production of lens prototypes</i>, vol. 2019, 01. Lemgo: Technische
    Hochschule Ostwestfalen-Lippe, 2019, pp. 227–240.'
  mla: 'Shrotri, Abhijeet Narendra, et al. “Evaluation of Stereolithograghy Processes
    for the Production of Lens Prototypes.” <i>  Production Engineering and Management :
    Proceedings 9th International Conference, October 03 and 04, 2019, Trieste, Italy</i>,
    edited by Elio Padoano and Franz-Josef Villmer, vol. 2019, 01, Technische Hochschule
    Ostwestfalen-Lippe, 2019, pp. 227–40.'
  short: A.N. Shrotri, M. Beyer, O. Stübbe, Evaluation of Stereolithograghy Processes
    for the Production of Lens Prototypes, Technische Hochschule Ostwestfalen-Lippe,
    Lemgo, 2019.
  ufg: '<b>Shrotri, Abhijeet Narendra/Beyer, Micha/Stübbe, Oliver</b>: Evaluation
    of stereolithograghy processes for the production of lens prototypes, Bd. 2019,
    01, hg. von Padoano, Elio/Villmer, Franz-Josef, Lemgo 2019 (Publication series
    in direct digital manufacturing ).'
  van: 'Shrotri AN, Beyer M, Stübbe O. Evaluation of stereolithograghy processes for
    the production of lens prototypes. Padoano E, Villmer FJ, editors.   Production
    engineering and management : proceedings 9th international conference, October
    03 and 04, 2019, Trieste, Italy. Lemgo: Technische Hochschule Ostwestfalen-Lippe;
    2019. (Publication series in direct digital manufacturing ; vols. 2019, 01).'
conference:
  end_date: 2019-10-04
  location: Trieste
  name: 9th International Conference on Production Engineering and Management (PEM)
  start_date: 2019-10-03
date_created: 2022-04-19T10:59:03Z
date_updated: 2024-04-19T12:54:20Z
department:
- _id: DEP5020
- _id: DEP6020
- _id: DEP5000
editor:
- first_name: Elio
  full_name: Padoano, Elio
  last_name: Padoano
- first_name: Franz-Josef
  full_name: Villmer, Franz-Josef
  id: '14290'
  last_name: Villmer
keyword:
- 3D printing
- stereolithography
- optical lens
- light forming structures
- convex lenses
- concave lenses
- refraction of light
- focal length
language:
- iso: eng
page: 227-240
place: Lemgo
publication: "\t Production engineering and management : proceedings 9th international
  conference, October 03 and 04, 2019, Trieste, Italy"
publication_identifier:
  isbn:
  - 978-3-946856-04-7
publication_status: published
publisher: Technische Hochschule Ostwestfalen-Lippe
series_title: 'Publication series in direct digital manufacturing '
status: public
title: Evaluation of stereolithograghy processes for the production of lens prototypes
type: conference_editor_article
user_id: '51864'
volume: 2019, 01
year: '2019'
...
---
_id: '585'
abstract:
- lang: eng
  text: "Many low-cost 3D printers have been brought to market over the last couple
    of years. Most of them apply a Fused Layer Manufacturing (FLM) process, and have
    made 3D printing a great success amongst hobbyists, the maker community and students.
    One drawback of such inexpensive equipment is a limited build envelope, which
    prevents this from becoming a significant contributor to industrial production.
    To overcome these limits, it is not sufficient to simply upscale dimensions, but
    the overall concept of such machines must be completely re-thought, as well as
    the concepts behind several building blocks, components and the process software
    system.\r\nProblems such as shrinkage of build material, support material and
    machine parts in combination with long printer head travels, temperature distribution
    and moisture effects all have to be solved. In addition, larger parts need longer
    process times. Therefore, reduction of process times and an increase in productivity
    are necessary in order to enable economic production.\r\nSome of these problems
    can be solved by using more than one printer head for production, by using new
    materials and inventing new nozzle systems as distinct solutions for big printers.
    Nevertheless, to solve all these problems, the development of special machines
    for large parts is necessary: not component-wise but as a whole system. Large
    parts could then be successfully produced in several industries, using large,
    inexpensive FLMmachines.\r\n"
author:
- first_name: Franz-Josef
  full_name: Villmer, Franz-Josef
  id: '14290'
  last_name: Villmer
- first_name: Lars
  full_name: Witte, Lars
  id: '45920'
  last_name: Witte
citation:
  ama: 'Villmer F-J, Witte L. Large Scale 3D-Printers: The Challenge of Outgrowing
    Do-It-Yourself. In: Padoano E, Villmer F-J, Department of Production Engineering
    and Management, eds. <i>Production Engineering and Management</i>. Lemgo; 2015:111-122.'
  apa: 'Villmer, F.-J., &#38; Witte, L. (2015). Large Scale 3D-Printers: The Challenge
    of Outgrowing Do-It-Yourself. In E. Padoano, F.-J. Villmer, &#38; Department of
    Production Engineering and Management (Eds.), <i>Production Engineering and Management</i>
    (pp. 111–122). Lemgo.'
  bjps: '<b>Villmer F-J and Witte L</b> (2015) Large Scale 3D-Printers: The Challenge
    of Outgrowing Do-It-Yourself. In Padoano E, Villmer F-J and Department of Production
    Engineering and Management (eds), <i>Production Engineering and Management</i>.
    Lemgo, pp. 111–122.'
  chicago: 'Villmer, Franz-Josef, and Lars Witte. “Large Scale 3D-Printers: The Challenge
    of Outgrowing Do-It-Yourself.” In <i>Production Engineering and Management</i>,
    edited by Elio Padoano, Franz-Josef Villmer, and Department of Production Engineering
    and Management, 111–22. Lemgo, 2015.'
  chicago-de: 'Villmer, Franz-Josef und Lars Witte. 2015. Large Scale 3D-Printers:
    The Challenge of Outgrowing Do-It-Yourself. In: <i>Production Engineering and
    Management</i>, hg. von Elio Padoano, Franz-Josef Villmer, und Department of Production
    Engineering and Management, 111–122. Lemgo.'
  din1505-2-1: '<span style="font-variant:small-caps;">Villmer, Franz-Josef</span>
    ; <span style="font-variant:small-caps;">Witte, Lars</span>: Large Scale 3D-Printers:
    The Challenge of Outgrowing Do-It-Yourself. In: <span style="font-variant:small-caps;">Padoano,
    E.</span> ; <span style="font-variant:small-caps;">Villmer, F.-J.</span> ; <span
    style="font-variant:small-caps;">Department of Production Engineering and Management</span>
    (Hrsg.): <i>Production Engineering and Management</i>. Lemgo, 2015, S. 111–122'
  havard: 'F.-J. Villmer, L. Witte, Large Scale 3D-Printers: The Challenge of Outgrowing
    Do-It-Yourself, in: E. Padoano, F.-J. Villmer, Department of Production Engineering
    and Management (Eds.), Production Engineering and Management, Lemgo, 2015: pp.
    111–122.'
  ieee: 'F.-J. Villmer and L. Witte, “Large Scale 3D-Printers: The Challenge of Outgrowing
    Do-It-Yourself,” in <i>Production Engineering and Management</i>, Trieste, Italy,
    2015, no. 1, pp. 111–122.'
  mla: 'Villmer, Franz-Josef, and Lars Witte. “Large Scale 3D-Printers: The Challenge
    of Outgrowing Do-It-Yourself.” <i>Production Engineering and Management</i>, edited
    by Elio Padoano et al., no. 1, 2015, pp. 111–22.'
  short: 'F.-J. Villmer, L. Witte, in: E. Padoano, F.-J. Villmer, Department of Production
    Engineering and Management (Eds.), Production Engineering and Management, Lemgo,
    2015, pp. 111–122.'
  ufg: '<b>Villmer, Franz-Josef/Witte, Lars (2015)</b>: Large Scale 3D-Printers: The
    Challenge of Outgrowing Do-It-Yourself, in: Elio Padoano et. al. (Hgg.): <i>Production
    Engineering and Management</i>, Lemgo, S. 111–122.'
  van: 'Villmer F-J, Witte L. Large Scale 3D-Printers: The Challenge of Outgrowing
    Do-It-Yourself. In: Padoano E, Villmer F-J, Department of Production Engineering
    and Management, editors. Production Engineering and Management. Lemgo; 2015. p.
    111–22.'
conference:
  end_date: 2015-10-02
  location: Trieste, Italy
  name: Proceedings5th International Conference
  start_date: 2015-10-01
corporate_editor:
- Department of Production Engineering and Management
- Hochschule Ostwestfalen-Lippe
date_created: 2019-02-18T14:42:21Z
date_updated: 2023-03-15T13:50:02Z
department:
- _id: DEP1306
editor:
- first_name: Elio
  full_name: Padoano, Elio
  last_name: Padoano
- first_name: Franz-Josef
  full_name: Villmer, Franz-Josef
  last_name: Villmer
issue: '1'
keyword:
- 3D printing
- FLM
- build envelope
- large-scale
- thermoplastic polymers
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://www.hs-owl.de/fileadmin/diman/Veroeffentlichungen/PEM_Tagung_zusammen2015.pdf
oa: '1'
page: 111-122
place: Lemgo
publication: Production Engineering and Management
publication_identifier:
  isbn:
  - 978-3-941645-11-0
publication_status: published
related_material:
  link:
  - relation: contains
    url: https://www.hs-owl.de/fileadmin/diman/Veroeffentlichungen/PEM_Tagung_zusammen2015.pdf
status: public
title: 'Large Scale 3D-Printers: The Challenge of Outgrowing Do-It-Yourself'
type: conference
user_id: '45673'
year: 2015
...
