Search results for " Lamin"

showing 10 items of 148 documents

Perlecan controls neurogenesis in the developing telencephalon.

2006

This article is available from: http://www.biomedcentral.com/1471-213X/7/29

MaleTelencephalonLaminaOrganogenesisApoptosisCell CountNeocortexPerlecanExencephalyBiologyBasement MembraneMiceFetal Organ MaturityInterneuronsPregnancymedicineAnimalsHedgehog Proteinslcsh:QH301-705.5Embryonic Stem CellsCell ProliferationBasement membraneNeuronsCerebrumNeurogenesisAnatomymedicine.diseaseImmunohistochemistryCell biologyNeuroepithelial cellmedicine.anatomical_structurelcsh:Biology (General)embryonic structuresbiology.proteinMicrocephalyBasal laminaFemaleFibroblast Growth Factor 2Heparan Sulfate ProteoglycansDevelopmental BiologyResearch ArticleBMC developmental biology
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Experimental design of the bearing performances of flax fiber reinforced epoxy composites by a failure map

2018

Abstract This paper represents the first effort aimed to the investigation of the pin/hole contact stress and failure mechanisms of epoxy composites reinforced with woven flax fabrics, underwent to tensile bearing tests. In particular, the maximum loads and failure modes are evaluated at varying the laminate geometrical configuration. In order to optimize the use of polymer composites reinforced with flax fibers in structural applications, an experimental failure map, identifying main failure modes of mechanically fastened joints, is obtained as function of hole diameter, distance of the hole from the free edge of the laminate and laminate width. Moreover, a theoretical approach based on th…

Materials science02 engineering and technologyMechanical jointFlax compositeIndustrial and Manufacturing Engineeringlaw.inventionFlax fiber0203 mechanical engineeringlawUltimate tensile strengthComposite materialBearing (mechanical)Mechanical EngineeringFailure modeEpoxyComposite laminates021001 nanoscience & nanotechnologyBearing; Failure modes; Flax composites; Mechanical joints; Natural fibers; Ceramics and Composites; Mechanics of Materials; Mechanical Engineering; Industrial and Manufacturing EngineeringSettore ING-IND/22 - Scienza E Tecnologia Dei Materiali020303 mechanical engineering & transportsContact mechanicsMechanics of Materialsvisual_artMechanical jointBearingCeramics and CompositesFracture (geology)visual_art.visual_art_mediumNatural fibers0210 nano-technologyComposites Part B: Engineering
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Effect of areal weight and chemical treatment on the mechanical properties of bidirectional flax fabrics reinforced composites

2010

Abstract In this paper several bidirectional flax fibers, usually used to made curtains, were employed as reinforcement of an epoxy matrix. Four different laminates were made by a vacuum bagging process, with varying both the areal weight and the treatment of the fabric. These structures were mechanically investigated carrying out both tensile and three point flexural tests. In order to evaluate the effect of the identified variables on the mechanical parameters (i.e. Young modulus and maximum stress) a statistical analysis was performed. Finally, by comparing the flax composite with a glass one, the convenience of the replacement of glass fiber was investigated in term of cost, weight and …

Materials scienceA. Natural materialsDelaminationComposite numberGlass fiberYoung's modulusB. LaminatesNatural materialMechanicalA. Natural materials; B. Laminates; E. MechanicalStress (mechanics)symbols.namesakeSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiFlexural strengthE. MechanicalUltimate tensile strengthsymbolsComposite materialReinforcementLaminate
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Moisture Absorption Effects on the Resistance to Interlaminar Fracture of Woven Glass/Epoxy Composite Laminates

2012

The influence of moisture absorption on the interlaminar fracture behaviour of 8/8 harness satin weave glass/epoxy composite was investigated. Two series of specimens with 0°/0° and 90°/90° predominant interfaces immersed in water for different duration were tested under double cantilever beam (DCB mode I), single leg bending (SLB mode I + II) and end notched flexural (ENF mode II) loadings. In general, the apparent flexural modulus: E, and the fracture toughness: G C, decrease with increasing moisture content. This effect is more remarkable if mode II participation is bigger. The value of G C measured on 90°/90° specimens reveals higher than that on 0°/0° ones, but the variation in G C is …

Materials scienceAbsorption of waterFracture toughnessFlexural strengthFlexural modulusvisual_artComposite numbervisual_art.visual_art_mediumEpoxyBendingComposite materialComposite laminates
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Bearing strength and failure behavior of pinned hybrid glass-flax composite laminates

2018

Abstract The aim of the present work is to evaluate the influence of external layers of glass woven fabric on the pin-hole strength of flax/epoxy laminates. Single lap bearing tests were carried out to evaluate the fastened joint performances depending on laminate stacking sequence. In order to better identify the mechanical behavior of the hybrid laminate, full glass and flax laminates were also compared. In particular, bearing stress and failure mechanisms were investigated at varying joint geometry. Furthermore, an experimental failure map, clustering main failure modes of pinned hybrid composite laminate, was used to better clarify the relationship between mechanical failure and geometr…

Materials scienceBearing; Failure modes; Flax; Glass; Hybrid laminate; Mechanical joints; Organic Chemistry; Polymers and PlasticsPolymers and PlasticsComposite number02 engineering and technologyMechanical jointlaw.inventionStress (mechanics)Hybrid laminate0203 mechanical engineeringlawWoven fabricFlaxBearing capacityComposite materialBearing (mechanical)Organic ChemistryFailure modeEpoxyComposite laminates021001 nanoscience & nanotechnology020303 mechanical engineering & transportsSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiMechanical jointvisual_artBearingvisual_art.visual_art_mediumGla0210 nano-technology
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Flexural behaviour of glulam timber beams reinforced with FRP cords

2015

Abstract Glued laminated timber (glulam) is widely used as a construction material to make up lightweight and large span structures. The basic principle of this material consists in bonding together a number of layers of dimensioned timber with structural adhesives, in order to increase strength and stiffness of the member, and allowing to make up sustainable structures with great visual impact. Recent applications showed the effectiveness of fibre-reinforced polymer (FRP) composites in enhancing the structural performances of glulam beams, with particular reference on their flexural and shear strength. In fact FRP reinforcements could be used to strengthen existing structures or to reduce …

Materials scienceBendingFlexural strengthFRP strengtheningGlued laminated timbermedicineShear strengthGeneral Materials ScienceComposite materialCivil and Structural EngineeringFlexural behaviourbusiness.industryStiffnessEpoxyStructural engineeringBuilding and ConstructionFibre-reinforced plasticSettore ICAR/09 - Tecnica Delle CostruzioniFRP cordvisual_artvisual_art.visual_art_mediumGlulamAdhesiveMaterials Science (all)medicine.symptombusiness
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Mechanical characterization of rose bengal and green light crosslinked collagen scaffolds for regenerative medicine

2021

Abstract Collagen is one of the most important biomaterials for tissue engineering approaches. Despite its excellent biocompatibility, it shows the non-negligible disadvantage of poor mechanical stability. Photochemical crosslinking with rose bengal and green light (RGX) is an appropriate method to improve this property. The development of collagen laminates is helpful for further adjustment of the mechanical properties as well as the controlled release of incorporated substances. In this study, we investigate the impact of crosslinking and layering of two different collagen scaffolds on the swelling behavior and mechanical behavior in micro tensile tests to obtain information on its wearin…

Materials scienceBiocompatibilitythickness analysiscollagen type Imicro tensile testingModulusControlled releaseBiomaterialscollagen laminatescell–collagen interactionsTissue engineeringrose bengal and green light crosslinkingUltimate tensile strengthmedicineAcademicSubjects/SCI01410Swellingmedicine.symptomElongationComposite materialDuctilityAcademicSubjects/MED00010Research ArticleRegenerative Biomaterials
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3D buckling analysis of multidelaminated composite specimens

2007

The behaviour of thin composite laminates (unidirectional, cross-ply and angle-ply) under compressive loads has been examined in cases where multiple delaminations are present. The problem is solved using the Finite Element Method (FEM) both with linear analyses, based on the eigenvalues research problem, and with nonlinear analyses, based on incremental-iterative procedures. In particular, the role of the delamination length, of the angle of the plies and of the stacking sequence on the critical load is investigated. Results are compared with those found in literature derived from experimental or numerical 2D analyses.

Materials scienceBucklingComposite numberTA401-492Materials ChemistryCeramics and CompositesFEM analysisbucklingComposite materialSettore ING-IND/15 - Disegno E Metodi Dell'Ingegneria IndustrialeMaterials of engineering and construction. Mechanics of materialsdelaminationcomposite laminate
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Evolution of the bearing failure map of pinned flax composite laminates aged in marine environment

2020

Abstract Aim of the present paper is to evaluate how the bearing behavior of pinned flax composites can be influenced by their exposition to critical environment such as marine one. To this scope, flax fibers/epoxy pinned laminate was exposed up to 60 days to salt-fog environment, according to ASTM B 117 standard. In particular, samples having different hole diameter (D), laminate width (W), and hole center to laminate free edge distance (E) have been tested under single lap bearing tests at varying the aging exposition time. Following this procedure, an experimental 2D failure map clustering main failure modes was created by placing the experimental results in the plane E/D versus W/D rati…

Materials scienceComposite number02 engineering and technologyMechanical joint010402 general chemistry01 natural sciencesIndustrial and Manufacturing Engineeringlaw.inventionlawFlaxUltimate tensile strengthComposite materialBearing (mechanical)Tension (physics)Mechanical EngineeringFailure modeEpoxyComposite laminates021001 nanoscience & nanotechnology0104 chemical sciencesShear (sheet metal)Salt fog agingMechanics of Materialsvisual_artBearingBearing; Failure modes; Flax; Mechanical joints; Salt fog agingCeramics and Compositesvisual_art.visual_art_mediumFracture (geology)0210 nano-technologyComposites Part B: Engineering
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Prediction of crack onset strain in composite laminates at mixed mode cracking

2009

Failure process of continuous fiber reinforced composite laminates in tension usually starts with appearance of intralaminar cracks. In composite laminates with complex lay-ups and/or under combined loading, intralaminar cracks may develop in plies with different reinforcement directions. A necessary part of mixed mode cracking models is the criterion of failure. For propagation-controlled fracture it is usually formulated in terms of energy release rates and their critical values of the particular composite material. Intralaminar fracture toughness of unidirectionally reinforced glass/epoxy composite was experimentally determined at several mode I and mode II ratios. It is found that the c…

Materials scienceFracture mechanicsFiber-reinforced compositeEpoxyKompositmaterial och -teknikComposite laminatesTechnology - Chemical engineeringTeknikvetenskap - KemiteknikCrackingFracture toughnessvisual_artUltimate tensile strengthFracture (geology)visual_art.visual_art_mediumComposite materialComposite Science and Engineering
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