Literature DB >> 29503807

Measuring UV Curing Parameters of Commercial Photopolymers used in Additive Manufacturing.

Joe Bennett1.   

Abstract

A testing methodology was developed to expose photopolymer resins and measure the cured material to determine two key parameters related to the photopolymerization process: Ec (critical energy to initiate polymerization) and Dp (penetration depth of curing light). Five commercially available resins were evaluated under exposure from 365 nm and 405 nm light at varying power densities and energies. Three different methods for determining the thickness of the cured resin were evaluated. Caliper measurements, stylus profilometry, and confocal laser scanning microscopy showed similar results for hard materials while caliper measurement of a soft, elastomeric material proved inaccurate. Working curves for the five photopolymers showed unique behavior both within and among the resins as a function of curing light wavelength. Ec and Dp for the five resins showed variations as large as 10×. Variations of this magnitude, if unknown to the user and not controlled for, will clearly affect printed part quality. This points to the need for a standardized approach for determining and disseminating these, and perhaps, other key parameters.

Entities:  

Keywords:  UV curing; confocal microscopy; photopolymers; profilometry; stereo lithography; working curves

Year:  2017        PMID: 29503807      PMCID: PMC5828039          DOI: 10.1016/j.addma.2017.10.009

Source DB:  PubMed          Journal:  Addit Manuf        ISSN: 2214-7810


  3 in total

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2.  Stereolithography of three-dimensional bioactive poly(ethylene glycol) constructs with encapsulated cells.

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3.  Three-dimensional photopatterning of hydrogels using stereolithography for long-term cell encapsulation.

Authors:  Vincent Chan; Pinar Zorlutuna; Jae Hyun Jeong; Hyunjoon Kong; Rashid Bashir
Journal:  Lab Chip       Date:  2010-07-05       Impact factor: 6.799

  3 in total
  8 in total

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7.  Lignin as a High-Value Bioaditive in 3D-DLP Printable Acrylic Resins and Polyaniline Conductive Composite.

Authors:  Goretti Arias-Ferreiro; Aurora Lasagabáster-Latorre; Ana Ares-Pernas; Pablo Ligero; Sandra María García-Garabal; María Sonia Dopico-García; María-José Abad
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8.  Printability Study of a Conductive Polyaniline/Acrylic Formulation for 3D Printing.

Authors:  Goretti Arias-Ferreiro; Ana Ares-Pernas; Aurora Lasagabáster-Latorre; Nora Aranburu; Gonzalo Guerrica-Echevarria; M Sonia Dopico-García; María-José Abad
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  8 in total

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