Assessment of Compressive Mechanical Behavior of Bis-GMA Polymer Using Hyperelastic Models

scientific article published on 27 September 2019

Assessment of Compressive Mechanical Behavior of Bis-GMA Polymer Using Hyperelastic Models is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.3390/POLYM11101571
P932PMC publication ID6836133
P698PubMed publication ID31569609

P50authorSeyed Saeid Rahimian KoloorQ89919916
Atefeh KarimzadehQ90383369
Mohd Nasir TaminQ90383373
P2093author name stringMajid Reza Ayatollahi
Mohd Yazid Yahya
Abd Razak Bushroa
P2860cites workSpherical indentation of soft matter beyond the Hertzian regime: numerical and experimental validation of hyperelastic modelsQ36737892
Degradation, fatigue, and failure of resin dental composite materialsQ36922784
Young's modulus and degree of conversion of different combination of light-cure dental resinsQ42066734
Effect of chemical structure on degree of conversion in light-cured dimethacrylate-based dental resinsQ43956941
Structure-property relationships in dimethacrylate networks based on Bis-GMA, UDMA and TEGDMA.Q46046663
A hybrid computational-experimental approach for automated crystal structure solutionQ46562364
Network structure of Bis-GMA- and UDMA-based resin systemsQ46867003
Effect of luting composite shrinkage and thermal loads on the stress distribution in porcelain laminate veneersQ48585141
Monomers used in resin composites: degree of conversion, mechanical properties and water sorption/solubility.Q50497067
Assessment of compressive failure process of cortical bone materials using damage-based model.Q51104891
Evaluation of load testing of postendodontic restorations in vitro: linear compressive loading, gradual cycling loading and chewing simulation.Q51415335
Poisson's ratio and modern materialsQ56673716
Ultra-fast light-curing resin composite with increased conversion and reduced monomer elutionQ57164168
Mechanical loading, an important factor in the evaluation of ion release from bone augmentation materialsQ58705944
Studies on the Curing Efficiency and Mechanical Properties of Bis-GMA and TEGDMA Nanocomposites Containing Silver NanoparticlesQ60909645
The effect of resin formulation on the degree of conversion and mechanical properties of dental restorative resinsQ70017590
A new bioactive bone cement consisting of BIS-GMA resin and bioactive glass powderQ74826004
P275copyright licenseCreative Commons Attribution 4.0 InternationalQ20007257
P6216copyright statuscopyrightedQ50423863
P433issue10
P577publication date2019-09-27
P1433published inPolymersQ57337397
P1476titleAssessment of Compressive Mechanical Behavior of Bis-GMA Polymer Using Hyperelastic Models
P478volume11

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