Objectives The objective of this work was to develop a methodology for the prediction of fatigue life of the dentin-adhesive (d-a) interface. Methods At the micro-scale, the d-a interface is composed of dissimilar material components. Under global loading, these components experience different local stress amplitudes. The overall fatigue life of the d-a interface is, therefore, determined by the material component that has the shortest fatigue life under local stresses. Multiple 3d finite element (FE) models were developed to determine the stress distribution within the d-a interface by considering variations in micro-scale geometry, material composition and boundary conditions. The results from these models were analyzed to obtain...
Introduction. To evaluate the influence of storage time on the elastic modulus, micromorphology, nan...
The bond strength of composite resins (CRs) to dentin is influenced by the interfacial microstructur...
A unified model is proposed to predict the fatigue behaviour of adhesively bonded joints. The model ...
Objectives The objective of this work was to develop a methodology for the prediction of fatigue ...
Objectives: The aim of this study was to analyze the stress distribution on dentin/adhesive interfac...
Zielsetzung Mittelpunkt der vorliegenden Studie war die Untersuchung des Dentin-Komposit-Komplexes a...
Objective. To characterize whether the bonding performance and fatigue strength of resin-dentin inte...
The purpose of this study was to evaluate stress distribution in the hybrid layer produced by two ad...
The mechanical performance of the dentin-adhesive interface controls the overall failure of the dent...
The objective of the current study is to characterize the viscoelastic and fatigue properties of mod...
Objective: To determine whether smear layer management, via conservative etching pro-tocols, and the...
OBJECTIVES: Differences in mechanical properties between adherents and adhesive result in stress sin...
Introduction: Adhesion has become an important concept in modern restorative dentistry. It offers th...
Background: Adhesive systems are constantly subjected to mechanical and chemical stresses that negat...
To investigate the presence of non-infiltrated, partially demineralized dentin (PDD) beneath the hyb...
Introduction. To evaluate the influence of storage time on the elastic modulus, micromorphology, nan...
The bond strength of composite resins (CRs) to dentin is influenced by the interfacial microstructur...
A unified model is proposed to predict the fatigue behaviour of adhesively bonded joints. The model ...
Objectives The objective of this work was to develop a methodology for the prediction of fatigue ...
Objectives: The aim of this study was to analyze the stress distribution on dentin/adhesive interfac...
Zielsetzung Mittelpunkt der vorliegenden Studie war die Untersuchung des Dentin-Komposit-Komplexes a...
Objective. To characterize whether the bonding performance and fatigue strength of resin-dentin inte...
The purpose of this study was to evaluate stress distribution in the hybrid layer produced by two ad...
The mechanical performance of the dentin-adhesive interface controls the overall failure of the dent...
The objective of the current study is to characterize the viscoelastic and fatigue properties of mod...
Objective: To determine whether smear layer management, via conservative etching pro-tocols, and the...
OBJECTIVES: Differences in mechanical properties between adherents and adhesive result in stress sin...
Introduction: Adhesion has become an important concept in modern restorative dentistry. It offers th...
Background: Adhesive systems are constantly subjected to mechanical and chemical stresses that negat...
To investigate the presence of non-infiltrated, partially demineralized dentin (PDD) beneath the hyb...
Introduction. To evaluate the influence of storage time on the elastic modulus, micromorphology, nan...
The bond strength of composite resins (CRs) to dentin is influenced by the interfacial microstructur...
A unified model is proposed to predict the fatigue behaviour of adhesively bonded joints. The model ...