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Book part
Publication date: 12 January 2021

Abstract

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Entrepreneurial Orientation: Epistemological, Theoretical, and Empirical Perspectives
Type: Book
ISBN: 978-1-83867-572-1

Open Access
Article
Publication date: 15 August 2016

Belen Begines, Andrew L. Hook, Morgan R. Alexander, Christopher J. Tuck and Ricky D. Wildman

This paper aims to print 3D structures from polymers that resist bacterial attachment by reactive jetting of acrylate monomers.

2437

Abstract

Purpose

This paper aims to print 3D structures from polymers that resist bacterial attachment by reactive jetting of acrylate monomers.

Design/methodology/approach

The first step towards printing was ink development. Inks were characterised to carry out an estimation of their potential printability using the Z parameter to predict stable jetting conditions. Printability conditions were optimised for each ink using a Dimatix DMP-2800, which enabled 3D structures to be fabricated.

Findings

UV photo-initiated polymers, which resist bacterial attachment, were found to be printable using piezo-based inkjet printers. The waveform required for each ink depends on the value of the Z parameter. Once the waveform and the printability parameters were optimised, 3D objects were fabricated.

Research limitations/implications

This methodology has been confirmed as an effective method to 3D print materials that have been demonstrated to be bacteria resistant. However, ink curing depends on modification of some parameters (such as photoinitiator concentration or UV exposure time) which would result in an improvement of the curing process post jetting.

Social implications

The combination of inkjet based 3D printing with new materials resistant to bacterial attachment means the possibility of building customised medical devices with a high level of complexity and bespoke features can be fully realised. The scope and variability of the devices produced will exceed what can be achieved using standard fabrication methodologies and can be applied to reduce the incidence of device associated infections and to address increased morbidity, mortality and health care costs associated with nosocomial infections.

Originality/value

In this paper, the novel use of materials that resist bacterial attachment has been described to build 3D structures using material jetting. Its value lies on the potential impact this methodology could produce in the biomedical device and research fields.

Details

Rapid Prototyping Journal, vol. 22 no. 5
Type: Research Article
ISSN: 1355-2546

Keywords

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Article
Publication date: 1 June 2003

28

Abstract

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Kybernetes, vol. 32 no. 4
Type: Research Article
ISSN: 0368-492X

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Book part
Publication date: 27 December 2018

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Reflections and Extensions on Key Papers of the First Twenty-Five Years of Advances
Type: Book
ISBN: 978-1-78756-435-0

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Book part
Publication date: 20 April 2023

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The Age of Entrepreneurship Education Research: Evolution and Future
Type: Book
ISBN: 978-1-83753-057-1

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Book part
Publication date: 19 June 2019

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Seminal Ideas for the Next Twenty-Five Years of Advances
Type: Book
ISBN: 978-1-78973-262-7

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Book part
Publication date: 14 November 2017

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Hybrid Ventures
Type: Book
ISBN: 978-1-78743-078-5

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Book part
Publication date: 18 September 2017

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Advances in Taxation
Type: Book
ISBN: 978-1-78714-524-5

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Article
Publication date: 10 August 2010

John Benson and Laura Ugolini

389

Abstract

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Journal of Historical Research in Marketing, vol. 2 no. 3
Type: Research Article
ISSN: 1755-750X

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Article
Publication date: 1 May 2007

Levent Altinay and Angela Roper

587

Abstract

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International Journal of Service Industry Management, vol. 18 no. 2
Type: Research Article
ISSN: 0956-4233

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