Search results for "Elastic Modulu"

showing 10 items of 189 documents

In vitro evaluation of biomimetic chitosan-calcium phosphate scaffolds with potential application in bone tissue engineering.

2013

This work reports on the physicochemical properties and in vitro cytotoxicity assessment of chitosan–calcium phosphate (Cs–CP) scaffolds for bone tissue engineering, which were synthesized by a novel biomimetic co-precipitation method. X-ray diffraction (XRD) along with scanning electron microscopy (SEM) analysis confirmed the porous morphology of the scaffolds and the amorphous nature of the inorganic phase with different crystallite sizes and the formation of various forms of calcium phosphate. Compressive mechanical testing revealed that the Young’s modulus of the biomaterials is in the range of human trabecular bone. In vitro tests were performed on the biomaterials for up to 14 days to…

Calcium PhosphatesMaterials scienceCompressive StrengthCell SurvivalBiomedical EngineeringBioengineeringBone remodelingCell LineBiomaterialschemistry.chemical_compoundIn vivoBiomimetic MaterialsHardnessElastic ModulusMaterials TestingmedicineHumansViability assayCytotoxicityChitosanOsteoblastsOsteoblastIn vitroVascular endothelial growth factormedicine.anatomical_structurechemistryCell cultureBone SubstitutesBiophysicsBiomedical engineeringBiomedical materials (Bristol, England)
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Porous structure and mechanical strength of cement-lime pastes during setting

2015

Abstract The acceleration of a cement paste setting as a result of lime addition may be shown from isothermal calorimetry measurements. We investigated the underlying mechanisms through two techniques that provide information on porous structure (using Nuclear Magnetic Resonance) and mechanical properties (elastic modulus measured by rheometry). The correlation of the two sets of results on a cement paste clearly reveals the successive steps of setting, and particularly highlights the so-called induction period. We show that this induction period disappears in the presence of lime, leading to an acceleration of the setting. We also show that beyond some critical concentration of added lime …

CementCalcium hydroxideMaterials scienceRheometryInduction periodtechnology industry and agricultureBuilding and Constructionengineering.materialcomplex mixturesAccelerationchemistry.chemical_compoundchemistryengineeringGeneral Materials ScienceComposite materialPorosityElastic modulusLimeCement and Concrete Research
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Mechanical performance of experimental acrylic resins modified by nanoparticles after chemical and mechanical degradation.

2020

Background Different materials have been incorporated into the polymethylmethacrylate matrix to improve its performance. The aim of this study was to evaluate the degree of conversion (DC), the flexural strength (FS), the elasticity modulus (EM), and the effect of exposure to food-simulating liquids prior to brushing simulation on the gloss loss (GL) of experimental acrylic resins modified by nanoparticles. Material and methods Three different types of nanoparticles; silicon oxide (SiO2), cerium oxide (CeO2) and titanium oxide (TiO2) were added to a poly (methylmethacrylate) matrix, in proportions of 0.5wt%, 1wt% and 3wt% each, forming nine experimental groups. The acrylic resin was also te…

Cerium oxideMaterials scienceResearch030206 dentistry02 engineering and technology021001 nanoscience & nanotechnologyGloss (optics)Titanium oxide03 medical and health sciences0302 clinical medicineFlexural strengthvisual_artBiomaterials and Bioengineering in Dentistryvisual_art.visual_art_mediumComposite materialFourier transform infrared spectroscopy0210 nano-technologySilicon oxideGeneral DentistryElastic modulusAcrylic resinUNESCO:CIENCIAS MÉDICASJournal of clinical and experimental dentistry
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Combining Atomic Force Microscopy and Depth-Sensing Instruments for the Nanometer-Scale Mechanical Characterization of Soft Matter

2009

Complex materials exhibit a hierarchical structure where a gradient of features on nanometer scale is induced by the synthetic route eventually enhanced by the loading condition. The nanometer scale at which individual components arrange, determining their properties, is a current challenge of mechanical testing. In this work, a survey on nanoindentation is outlined based on the comparison of results obtained by Atomic Force Microscopy and Depth-Sensing Instruments and their combination. An Atomic Force Microscope equipped with a Force Transducer gives indeed the possibility to scan the sample surface in contact mode, thereby allowing one to choose a suitable position for the nanoindentatio…

Classical mechanicsMaterials scienceAcousticsWork (physics)Atomic force acoustic microscopyMechanical properties of carbon nanotubesNanoindentationPenetration depthElastic modulusViscoelasticityCharacterization (materials science)
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Comparison of Different Processing Methods to Prepare Poly(lactid acid)–Hydrotalcite Composites

2013

The effect of the compounding method on the morphology and on the properties of poly(lactic acid) (PLA)-hydrotalcite (HT) composites was studied. Moreover, the influence of two different kinds of HT - organically modified (OM-HT) and unmodified (U-HT) - and their concentration was evaluated. The composites were prepared using either a single screw extruder (SSE), a counter rotating twin-screw compounder (TSC) or a corotating twin-screw extruder (TSE). The prepared materials were characterized by scanning electron microscopy, gel permeation chromatography (GPC) analysis, mechanical and rheological measurements. The results indicated that the best morphology, i.e., particles dimension and dis…

Composite materialMaterials scienceMorphology (linguistics)Polymers and PlasticsHydrotalciteScanning electron microscopeGeneral ChemistryGel permeation chromatographyViscosityextrusionRheologyCompoundinghydrotalcitePoly(lactic acid)Materials ChemistryPLAcompositeComposite materialElastic modulus
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Are there any differences in various polyaxial locking systems? A mechanical study of different locking screws in multidirectional angular stable dis…

2012

Numerous angular stable plates for the distal radius exist, and technically based comparisons of the polyaxial locking interfaces are lacking. The aim of this mechanical study was to investigate three different locking interfaces of angular stable volar plates by cantilever bending: VA-LCP Two-Column Distal Radius Plates 2.4 mm (Synthes® GmbH, Oberdorf, Switzerland), IXOS® P4 (Martin, Tuttlingen, Germany) and VariAX™ (Stryker®, Duisburg, Germany). We assessed the strength of 0°, 5°, 10° and 15° screw locking angles and tested the bending strength from 10° to 5° angles by cyclic loading until breakage. The final setup repeated the above assessments by inclusion of four locking screws. The si…

Compressive StrengthFrictionbusiness.industryBone ScrewsBiomedical EngineeringRadiusStructural engineeringProsthesis DesignInternal FixatorsMechanism (engineering)Equipment Failure AnalysisCompressive strengthFlexural strengthBreakageElastic ModulusTensile StrengthBone plateUltimate tensile strengthBending momentHumansbusinessRadius FracturesBone PlatesBiomedizinische Technik. Biomedical engineering
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Molecular-dynamics study of copper with defects under strain

1998

Mechanical properties of copper with various types of defects have been studied with the molecular-dynamics method and the effective-medium theory potential both at room temperature and near zero temperature. The loading has been introduced as constant rate straining and the dynamics of the process region of fracture is purely Newtonian. With the model three types of defects were studied: point defects, grain boundary, and an initial void serving as a crack seed. Point defects were seen to decrease the system strength in terms of fracture stress, fracture strain, and elastic modulus. Due to random microstructure, highly disordered systems turned out to be isotropic, which on the other hand …

Condensed Matter::Materials ScienceMaterials scienceFracture toughnessSpeed of soundNewtonian fluidGrain boundaryFracture mechanicsComposite materialElastic modulusStress intensity factorStress concentrationPhysical Review B
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Influence of prefabricated post material on restored teeth: fracture strength and stress distribution.

2006

This work studied how prefabricated intraradicular post material affects the mechanical performance of restored teeth. The effect of using two different materials (glass fiber and stainless steel) with significantly different elastic moduli was studied.A combined theoretical and experimental method was used: first, an experimental fracture strength test was performed on 60 extracted human maxillary central incisors. The teeth were decoronated, treated endodontically and restored, 30 with glass fiber posts and 30 with stainless steel posts. The data were recorded and the results compared using an ANOVA test. Then, the finite element technique was used to develop a model of the restored tooth…

Dental Stress AnalysisMaterials scienceFinite Element AnalysisDentistryMaterials testingModels BiologicalStress (mechanics)Dental MaterialsTooth Fracturesstomatognathic systemFlexural strengthMaterials TestingDentinmedicineHumansComputer SimulationGeneral DentistryElastic modulusTooth Nonvitalbusiness.industryStress distributionElasticity (physics)Stainless SteelElasticityRoot Canal Therapymedicine.anatomical_structureDental Prosthesis DesignGlassStress MechanicalbusinessToothDental AlloysPost and Core TechniqueOperative dentistry
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Comment on “High-pressure x-ray diffraction study of YBO3/Eu3+, GdBO3, and EuBO3: Pressure-induced amorphization in GdBO3” [J. Appl. Phys. 115, 04350…

2014

High-pressure x-ray diffraction studies on vaterite-type borates were reported on the above paper and their room-temperature P-V equation of state (EOS) determined. YBO3/Eu3+ and GdBO3 were found to have bulk moduli around 320 GPa, 90% larger than the bulk modulus obtained for EuBO3. Consequently, it was stated that vaterite-type borates are as incompressible as cubic BN. Such a different compressional behavior of isomorphic borates contradicts the known systematic of related borates. Here, we show that the conclusions reported on the above article could be hindered by experimental errors and artifacts. Ab initio calculations support our criticism giving similar bulk moduli (130–141 GPa) in…

DiffractionBulk modulusEquation of stateAb initio quantum chemistry methodsComputational chemistryChemistryX-ray crystallographyCompressibilityGeneral Physics and AstronomyThermodynamicsElastic modulusModuliJournal of Applied Physics
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Structural and elastic properties of defect chalcopyrite HgGa2S4 under high pressure

2014

In this work, we focus on the study of the structural and elastic properties of mercury digallium sulfide (HgGa2S4) at high pressures. This compound belongs to the family of AB(2)X(4) ordered-vacancy compounds and exhibits a tetragonal defect chalcopyrite structure. X-ray diffraction measurements at room temperature have been performed under compression up to 15.1 GPa in a diamond anvil cell. Our measurements have been complemented and compared with ab initio total energy calculations. The axial compressibility and the equation of state of the low-pressure phase of HgGa2S4 have been experimentally and theoretically determined and compared to other related ordered-vacancy compounds. The pres…

DiffractionSulfideHigh-pressureAb initioThermodynamicsMechanical propertiesTetragonal crystal systemMaterials ChemistryElastic moduluschemistry.chemical_classificationEquation of stateChalcopyriteMechanical EngineeringMetals and AlloysElasticityX-ray diffractionCrystallographychemistrySemiconductorsMechanics of Materialsvisual_artFISICA APLICADAX-ray crystallographyCompressibilityvisual_art.visual_art_medium
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