Performance of Milled versus Pressed Polyetheretherketone (PEEK) Frameworks for Removable Partial Dentures
DOI::
https://doi.org/10.5195/d3000.2026.1583کلمات کلیدی:
Tooth Loss, Prosthodontics, Prosthesisچکیده
Polyetheretherketone (PEEK) has gained increasing popularity as a metal-free framework material for removable partial dentures (RPDs). It can be processed through two principal routes — subtractive CAD/CAM milling from industrially pre-polymerized blanks, or analogue heat-pressing from granular raw material — yet the extent to which these fabrication techniques differentially affect framework performance remains a subject of ongoing investigation. To synthesize the available evidence comparing the mechanical, physical, biological, and clinical performance of milled versus pressed PEEK RPD frameworks, and to identify the fabrication route that best satisfies the demands of contemporary prosthodontic practice. A comprehensive narrative review was conducted across PubMed/MEDLINE, Scopus, Web of Science, and the Cochrane Library using Boolean search strings combining MeSH terms for polyetheretherketone, removable partial dentures, and fabrication techniques. Studies published in English between 2012 and 2026 were considered. Milled PEEK frameworks consistently demonstrated superior flexural strength (~158.7 MPa), tensile strength (~118 MPa), higher fracture resistance, lower surface roughness, and greater dimensional accuracy compared to pressed frameworks. Pressed PEEK can achieve clinically adequate retention when proper undercut depths (0.5–0.75 mm) and clasp dimensions are employed. Both routes produce biocompatible, non-cytotoxic frameworks; however, pressed frameworks show marginally higher microbial adhesion owing to surface irregularities and potential internal voids. CAD/CAM milling is currently the gold standard for fabricating PEEK RPD frameworks. Pressed PEEK represents a viable alternative for laboratories lacking milling infrastructure, provided stringent operator protocols are followed. Long-term randomized clinical trials are needed to confirm survival rates and standardize manufacturing criteria for both techniques.
##submission.downloads##
چاپ شده
شماره
نوع مقاله
مجوز
حق نشر 2026 Khalid Mohammed Abdulhasan Al-Kanani

این پروژه تحت مجوز بین المللی Creative Commons Attribution 4.0 می باشد.
Authors who publish with this journal agree to the following terms:
- The Author retains copyright in the Work, where the term “Work” shall include all digital objects that may result in subsequent electronic publication or distribution.
- Upon acceptance of the Work, the author shall grant to the Publisher the right of first publication of the Work.
- The Author shall grant to the Publisher and its agents the nonexclusive perpetual right and license to publish, archive, and make accessible the Work in whole or in part in all forms of media now or hereafter known under a Creative Commons Attribution 4.0 International License or its equivalent, which, for the avoidance of doubt, allows others to copy, distribute, and transmit the Work under the following conditions:
- Attribution—other users must attribute the Work in the manner specified by the author as indicated on the journal Web site;
- The Author is able to enter into separate, additional contractual arrangements for the nonexclusive distribution of the journal's published version of the Work (e.g., post it to an institutional repository or publish it in a book), as long as there is provided in the document an acknowledgement of its initial publication in this journal.
- Authors are permitted and encouraged to post online a prepublication manuscript (but not the Publisher’s final formatted PDF version of the Work) in institutional repositories or on their Websites prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work. Any such posting made before acceptance and publication of the Work shall be updated upon publication to include a reference to the Publisher-assigned DOI (Digital Object Identifier) and a link to the online abstract for the final published Work in the Journal.
- Upon Publisher’s request, the Author agrees to furnish promptly to Publisher, at the Author’s own expense, written evidence of the permissions, licenses, and consents for use of third-party material included within the Work, except as determined by Publisher to be covered by the principles of Fair Use.
- The Author represents and warrants that:
- the Work is the Author’s original work;
- the Author has not transferred, and will not transfer, exclusive rights in the Work to any third party;
- the Work is not pending review or under consideration by another publisher;
- the Work has not previously been published;
- the Work contains no misrepresentation or infringement of the Work or property of other authors or third parties; and
- the Work contains no libel, invasion of privacy, or other unlawful matter.
- The Author agrees to indemnify and hold Publisher harmless from Author’s breach of the representations and warranties contained in Paragraph 6 above, as well as any claim or proceeding relating to Publisher’s use and publication of any content contained in the Work, including third-party content.
Revised 7/16/2018. Revision Description: Removed outdated link.
