Search results for " compressive strength"

showing 10 items of 10 documents

Analysis of optimal temperature, pressure and binder quantity for the production of biocarbon pellet to be used as a substitute for coke

2019

In order to contribute to the decarbonization of the economy, efficient alternatives to coal and coke should be found not only in the power sector but also in the industrial sectors (like steel, silicon and manganese production) in which coal and coke are used as a reductant and for steel production also as a fuel. To this aim many research works have been focused on the development of a coke substitute based on woody biomass and known as “biocarbon”. There are still barriers to overcome, among them: the biocarbon low density, poor mechanical strength and high reactivity. In this paper a new biocarbon production methodology is proposed, based on: pyrolysis at 600 °C, densification (using py…

020209 energyBiocarbon; Compressive strength; Durability; Pine wood chips; Pyrolysis; Pyrolysis oilBiomassCompressive strengthPine wood chips02 engineering and technologyManagement Monitoring Policy and LawDurabilitychemistry.chemical_compound020401 chemical engineeringPyrolysis oilPellet0202 electrical engineering electronic engineering information engineeringCoalResponse surface methodology0204 chemical engineeringbusiness.industryMechanical EngineeringBuilding and ConstructionCokePelletizingPulp and paper industryBiocarbonPyrolysis oilVDP::Teknologi: 500General EnergychemistryEnvironmental sciencebusinessPyrolysisPyrolysisApplied Energy
researchProduct

Suitability of Illite Based Clays of Latvia for Chemical and Thermal Activation

2014

Materials has been synthesized in the temperature range from 600-800 0C from illite based clays of Latvia under activation of KOH and NaOH solutions (4-6 M). Compressive strength and apparent porosity were measured. The effect of the concentration of KOH and NaOH solutions on the material mechanical properties was investigated by means of infrared spectroscopy (IR). Compressive strength data of the materials showed that via such activation building materials with good quality can be obtained.

Compressive strengthMaterials scienceIlliteThermalengineeringInfrared spectroscopyMineralogyillite based clays chemical activation thermal activation compressive strengthengineering.materialComposite materialAtmospheric temperature rangePorosityMaterial Science and Applied Chemistry
researchProduct

Compressive behaviour of concrete elliptical columns confined by single hoops

2007

The compressive behaviour of short concrete members having elliptical cross-sections and confined with single steel hoops is investigated. An analytical model is given for calculation of the stress-strain curves of compressed members also including the valuation of the ultimate stress corresponding to formation of a complete failure plane in the concrete core. The model is able to evaluate the confining pressure due to steel hoops referring to a fictitious reduced area of the confined core and to the effective stresses in the hoops, which are variable along the perimeter; moreover, it makes it possible to determine the maximum compressive strength and the corresponding strain of the confine…

Engineeringbusiness.industryHoopStress–strain curvesStress–strain curveMaximum compressive strengthStructural engineeringEllipseCompressive strengthUltimate streUltimate stressEllipseUltimate strainbusinessCivil and Structural EngineeringConfinement
researchProduct

Influence of Glass Additions on Illitic Clay Ceramics

2020

A mixture of an illitic clay and waste glass was prepared and studied during the sintering process. The illitic clay, from the Liepa deposit (Latvia), and green glass waste (GW) were disintegrated to obtain a homogeneous mixture. The addition of disintegrated GW (5&ndash

Materials science020209 energySintering02 engineering and technologyceramicsengineering.materiallcsh:TechnologyArticleBreakage0202 electrical engineering electronic engineering information engineeringGeneral Materials ScienceCeramiclcsh:MicroscopyPorositylcsh:QC120-168.85glasswaste glasslcsh:QH201-278.5lcsh:TclayAtmospheric temperature rangecompressive strength021001 nanoscience & nanotechnologyilliteCompressive strengthlcsh:TA1-2040visual_artIllitespecific strengthvisual_art.visual_art_mediumengineeringlcsh:Descriptive and experimental mechanicsillite; glass; waste glass; ceramics; specific strength; compressive strengthlcsh:Electrical engineering. Electronics. Nuclear engineeringlcsh:Engineering (General). Civil engineering (General)0210 nano-technologyClay mineralslcsh:TK1-9971Nuclear chemistryMaterials
researchProduct

The effect of wear on the tetragonal-to-monoclinic transformation and the residual stress distribution in zirconia-toughened alumina cutting tools

1998

Abstract Zirconia-toughened alumina cutting tools have been examined after machining an AISI 1040 steel. The Raman spectrum of zirconia and the fluorescence spectrum from alumina have been used to determine the extent of the tetragonal-to-monoclinic (t-m) transformation and the residual stresses in and around the worn-out crater, respectively. Although about 15% vol. m-zirconia is present even in a brand new cutting tool, it was shown that the crater region undergoes the t-m transformation up to 40% vol. In both cases, the transformed zone is concentrated near the surface. The residual stresses in alumina are slightly compressive in the new cutting tool and away from the crater region, but …

Materials scienceZirconia Toughened AluminaAluminaFluorescence spectrometryMineralogyCompressive strengthAlumina Compressive strength Mathematical models Metal cutting Raman spectroscopy Residual stresses Steel Strengthening (metal) Stress concentration Tensile strength Wear of materials ZirconiaTensile strengthResidual stressesMachiningImpact craterResidual stressMaterials ChemistryCubic zirconiaComposite materialStress concentrationMathematical modelsCutting toolSurfaces and InterfacesCondensed Matter PhysicsSurfaces Coatings and FilmsWear of materialsMetal cuttingSteelMechanics of MaterialsRaman spectroscopyStress concentrationZirconiaStrengthening (metal)Wear
researchProduct

Prediction of concrete materials compressive strength using surrogate models

2022

Using soft computing methods could be of great interest in predicting the compressive strength of Ultra-High-Performance Fibre Reinforced Concrete (UHPFRC). Therefore, this study developed four soft computing techniques. The models are the Linear- relationship (LR), pure quadratic, M5P-tree (M5P), and artificial neural network (ANN). The models were trained and developed using 306 datasets comprising 11 input parameters, including the curing temperature (T), the water-to-cement ratio (w/c), silica fume (SF), cement content (C), fiber content (Fb), water (W), sand content (S), superplasticizer (SP), fiber aspect ratio (AR) and curing time (t). Experimental results were used and compared to t…

Settore ICAR/09 - Tecnica Delle CostruzioniArchitectureArtificial neural networks Compressive strength Concrete materials Fiber aspect ratio Silica fume Soft computing UHPFRCBuilding and ConstructionSafety Risk Reliability and QualityCivil and Structural Engineering
researchProduct

Revealing the nature of metakaolin-based concrete materials using artificial intelligence techniques

2022

In this study, a model for the estimation of the compressive strength of concretes incorporating metakaolin is developed and parametrically evaluated, using soft computing techniques. Metakaolin is a component extensively employed in recent decades as a means to reduce the requirement for cement in concrete. For the proposed models, six parameters are accounted for as input data. These are the age at testing, the metakaolin percentage in relation to the total binder, the water-to-binder ratio, the percentage of superplasticizer, the binder to sand ratio and the coarse to fine aggregate ratio. For training and verification of the developed models a database of 867 experimental specimens has …

Settore ICAR/09 - Tecnica Delle CostruzioniGeneral Materials ScienceBuilding and ConstructionArtificial neural networks Compressive strength Concrete Machine learning Metakaolin Mix designCivil and Structural Engineering
researchProduct

Strength and strain enhancements of concrete columns confined with FRP sheets

2004

The compressive behavior up to failure of short concrete members reinforced with fiber reinforced plastic (FRP) is investigated. Rectangular cross-sections are analysed by means of a simplified elastic model, able also to explain stress-concentration. The model allows one to evaluate the equivalent uniform confining pressure in ultimate conditions referred to the effective confined cross-section and to the effective stresses in FRP along the sides of section; consequently, it makes it possible to determine ultimate strain and the related bearing capacity of the confined member corresponding to FRP failure. The effect of local reinforcements constitute by single strips applied at corners bef…

Stress-concentrationMaterials scienceStrain (chemistry)business.industryMechanical EngineeringMaximum compressive strengthRectangular cross-sectionBuilding and ConstructionSTRIPSStructural engineeringFibre-reinforced plasticOverburden pressurelaw.inventionSettore ICAR/09 - Tecnica Delle CostruzioniMechanics of MaterialslawBearing capacityUltimate strainComposite materialReinforcementbusinessConfinementFRPCivil and Structural EngineeringStress concentrationStructural Engineering and Mechanics
researchProduct

Earth Bricks with Halloysite Nanoclay: Research and Experimentation for the Sustainability of Materials

2021

The paper illustrates the experimentation activities on rammed earth and nanotechnologies conducted by the authors. The experimental research was carried out with the aim of improving the performance of rammed earth bricks with clay nanotubes, creating a ‘new material’ with reduced embodied energy and low CO2 emissions into the atmosphere. Specifically, the analysed performances are related to the compressive strength that expand their area of use as a building material.

rammed earth halloysite and clay nanotubes embodied energy compressive strengthSettore ICAR/12 - Tecnologia Dell'Architettura
researchProduct

Alteration-Induced Volcano Instability at La Soufrière de Guadeloupe (Eastern Caribbean)

2021

International audience; Volcanoes are unstable structures that deform laterally and frequently experience mass wasting events. Hydrothermal alteration is often invoked as a mechanism that contributes significantly to volcano instability. We present a study that combines laboratory experiments, geophysical data, and large-scale numerical modeling to better understand the influence of alteration on volcano stability, using La Soufrière de Guadeloupe (Eastern Caribbean) as a case study. Laboratory experiments on variably altered (advanced argillic alteration) blocks show that uniaxial compressive strength, Young's modulus, and cohesion decrease as a function of increasing alteration, but that …

upscalingVolcanic hazards010504 meteorology & atmospheric sciencesYoung's modulusMass wasting010502 geochemistry & geophysics01 natural sciencesInstabilityHydrothermal circulationGeochemistry and PetrologyFriction angleEarth and Planetary Sciences (miscellaneous)Cohesion (geology)[SDU.STU.VO]Sciences of the Universe [physics]/Earth Sciences/VolcanologyArgillic alterationPetrologyhydrothermal alterationuniaxial compressive strength0105 earth and related environmental sciencesflank collapsegeographygeography.geographical_feature_categoryGeophysicsVolcano13. Climate actionSpace and Planetary ScienceGeology
researchProduct