Experimental Investigation of CAD/CAM-Fabricated Lithium Disilicate Fixed Dental Crowns: Influence of Design Parameters and Ageing on Adaptation and Surface Integrity
1 Malwa Institute of Technology, Indore, Madhya Pradesh, India.
2 Department of Mechanical Engineering, Malwa Institute of Technology, Indore, Madhya Pradesh, India.
Research Article
Open Access Research Journal of Science and Technology, 2026, 16(01), 021-030.
Article DOI: 10.53022/oarjst.2026.16.1.0006
Publication history:
Received on 20 December 2025; revised on 25 January 2026; accepted on 28 January 2026
Abstract:
Computer-aided design and computer-aided manufacturing (CAD/CAM) technologies have significantly transformed fixed dental prosthesis fabrication by improving precision, repeatability, and clinical efficiency. The present study experimentally investigates the influence of critical design parameters—finish line geometry, convergence angle, and cement layer thickness—on the marginal and internal adaptation of lithium disilicate glass-ceramic (LDGC) fixed dental crowns. A structured design of experiments based on the Taguchi method was employed to systematically evaluate the selected parameters while maintaining clinically relevant constraints. Monolithic LDGC crowns were fabricated using a standardized CAD/CAM workflow, ensuring uniformity across all specimens. Marginal discrepancy (MD), absolute marginal discrepancy (AMD), and internal discrepancy (ID) were quantified non-destructively using synchrotron radiation X-ray micro-computed tomography (SR-µ-CT). In addition, the long-term surface integrity of the crowns was assessed through surface roughness and micro-hardness measurements under simulated thermal-pH ageing cycles up to 40,000 cycles. The results revealed that geometric design parameters significantly affect crown adaptation, with finish line type and cement layer thickness playing dominant roles. Ageing cycles led to a progressive increase in surface roughness and a corresponding reduction in micro-hardness, attributed to thermochemical degradation of the glass-ceramic matrix. The study demonstrates that optimized CAD/CAM design control combined with appropriate parameter selection can enhance the clinical performance and longevity of LDGC fixed dental crowns.
Keywords:
CAD/CAM dentistry; Fixed dental crowns; Lithium disilicate glass-ceramic; Marginal adaptation; SR-µ-CT; Taguchi design; Ageing behavior; Surface roughness; Micro-hardness
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Copyright © 2026 Author(s) retain the copyright of this article. This article is published under the terms of the Creative Commons Attribution Liscense 4.0
