Experimental Investigations of the Dental Filling Materials: Establishing Elastic Moduli and Poisson’s Ratios
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MDPI, Materials
Abstract
The mechanical properties of the dental filling material (DFMs) strongly influence the
lifetime and durability of the tooth reparation performed. Among the most significant mechanical
characteristics, one has to mention the Poisson’s ratio and the elastic modulus (Young’s modulus).
They, during the cyclic mastication load, can prevent or aid in the prevention of secondary dental
decays by provoking micro-cracks, the de-bonding of the filling material from the natural dental
tissue, as well as fatigue at the level of their interface. The authors performed a scoping analysis of
the nowadays-involved experimental methods, together with a critical review, putting in evidence
of their advantages and limits. Based on the developments, they propose a new approach in this
sense by involving the electronic speckle pattern interferometry (ESPI)/shearography high-accuracy
optical method. They illustrate the advantages of this method in establishment of the elastic modulus,
but they also propose a high-accuracy methodology in the estimation of Poisson’s ratio. Based on the
briefly-illustrated experimental results, one can conclude that ESPI/shearography can become a very
useful tool for research, even though it is not a common (nowadays widely applied) method, such as
three-point bending or strain gauge methods.
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Száva, D.T.; Száva, I.; Vlase, S.; Száva, A. Experimental Investigations of the Dental Filling Materials: Establishing Elastic Moduli and Poisson’s Ratios. Materials 2023, 16, 3456. https:// doi.org/10.3390/ma16093456
