Probabilistic finite element analysis of fatigue life of additively manufactured clasp
Author:
Affiliation:
1. Department of Oral and Maxillofacial Radiology, Tokyo Dental College
2. Department of Mechanical Engineering, Keio University
3. Mechanical Engineering Department, Nippon Institute of Technology
4. Department of Anatomy, Tokyo Dental College
Publisher
Japanese Society for Dental Materials and Devices
Subject
General Dentistry,Ceramics and Composites
Link
https://www.jstage.jst.go.jp/article/dmj/41/2/41_2021-174/_pdf
Reference40 articles.
1. 1) Suzuki Y, Shimizu S, Waki T, Shimpo H, Ohkubo C. Laboratory efficiency of additive manufacturing for removable denture frameworks: A literature-based review. Dent Mater J 2021; 40: 265-271.
2. 2) Tasaka A, Kato Y, Odaka K, Matsunaga S, Goto TK, Abe S, et al. Accuracy of clasps fabricated with three different CAD/CAM technologies: Casting, milling and selective laser sintering. Int J Prosthodont 2019; 32: 526-529.
3. 3) Chen RK, Jin Y, Wensman J, Shih A. Additive manufacturing of custom orthoses and prostheses —A review. Addit Manuf 2016; 12: 77-89.
4. 4) Yager S, Ma J, Ozcan H, Kilinc HJ, Elwany AH, Karaman I.Mechanical properties and microstructure of removable partial denture clasps manufactured using selective laser melting. Addit Manuf 2015; 8: 117-123.
5. 5) Culmone C, Smit G, Breedveld P. Additive manufacturing of medical instruments: A state-of-the-art review. Addit Manuf 2019; 27: 461-473.
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1. Correlation between Geometrical Accuracy and Building Angle of 3D Printed Flat Plate with Circular Hole of Aluminum Alloy and Polyamide;Journal of the Society of Materials Science, Japan;2023-05-15
2. Comparison of the fatigue life of pure titanium and titanium alloy clasps manufactured by laser powder bed fusion and its prediction before manufacturing;Journal of Prosthodontic Research;2023
3. Fatigue life prediction considering variability for additively manufactured pure titanium clasps;Journal of Prosthodontic Research;2023
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