Search results for " hysteresis"

showing 8 items of 98 documents

Sorption of n-hexane in amorphous polystyrene

2014

Sorption properties of pure n-hexane vapor in amorphous polystyrene (PS) were studied at 298 K by thermogravimetry under controlled vapor pressure. Two sorption-desorption cycles were performed by varying the relative pressure between 0 and 0.91. Mixing of PS with n-hexane resulted in a strong plasticization, which was evidenced by quite significant depression in the glass transition temperature of the polymer as shown by differential scanning calorimetry. Maximum quantity of n-hexane sorbed in the PS at 298 K and at a pressure close to saturation was about 12.4 wt %. The thermogravimetry yielded an isotherm with a strong hysteresis loop, explanation of which was hypothesized with the help …

chemistry.chemical_classificationMaterials sciencePolymers and Plastics[ SDV ] Life Sciences [q-bio]Vapor pressureamorphous[SDV]Life Sciences [q-bio]Analytical chemistrySorptionPolymerCondensed Matter PhysicsAmorphous solidThermogravimetrychemistry.chemical_compoundswellingDifferential scanning calorimetryGlassy PolystyrenechemistryPolymer chemistryMaterials Chemistrysorption hysteresisPolystyrenestructurePhysical and Theoretical ChemistryGlass transition
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Spin-crossover iron(ii) complex showing thermal hysteresis around room temperature with symmetry breaking and an unusually high T(LIESST) of 120 K.

2019

We report a Fe(II) complex based on 4′,4′′ carboxylic acid disubstituted dipyrazolylpyridine that shows a spin-crossover close to room temperature associated to a crystallographic phase transition and the LIESST effect with a high T(LIESST) of 120 K.

chemistry.chemical_classificationPhase transitionThermal hysteresisMaterials science010405 organic chemistryCarboxylic acidMetals and AlloysQuímicaGeneral Chemistry010402 general chemistry01 natural sciencesCatalysisLIESST3. Good health0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsCrystallographychemistrySpin crossoverMaterials ChemistryCeramics and CompositesCompostos de coordinacióSymmetry breakingChemical communications (Cambridge, England)
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Size-Dependent Spin Switching in Robust Fe-triazole@SiO2 Spin-Crossover Nanoparticles with Ultrathin Shell

2019

<p>A familly of chemically robust hybrid [Fe(Htrz)2(trz)](BF4)@SiO2nanoparticles (NPs) presenting different sizes (from ca. 90 to 28 nm) and an ultrathin silica shell (< 3 nm) have been prepared. All NPs present a characteristic abrupt spin transition with a subsequent decrease in the width of the thermal hysteresis upon reducing the NP size.<br></p>

chemistry.chemical_compoundThermal hysteresisMaterials scienceCondensed matter physicschemistrySpin crossoverSize dependentSpin transitionTriazoleShell (structure)NanoparticleSpin-½
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An Efficient Damping Technique for the Unstable Hysteretic Rotor Whirl by Proper Suspension Systems

2009

This paper shows as the destabilising influence of the shaft hysteresis on the supercritical rotor whirl can be efficiently counterbalanced by external dissipative sources. After calculating the steady whirling paths of the rotor and the bearing due to unbalance, the stability is checked by the Routh-Hurwitz procedure, investigating the influence of the stiffness anisotropy of the supports. A fairly interesting result is that the instability phenomena can be conveniently prevented by different suspension stiffness in the horizontal and vertical planes.

conical whirl hysteresis rotating machinerySettore ING-IND/13 - Meccanica Applicata Alle Macchine
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Modificación de la histéresis corneal y su influencia en la cirugía de glaucoma y en la biomecánica del nervio óptico

2013

El principal factor de riesgo para el desarrollo de la neuropatía óptica glaucomatosa y el único en el que podemos actuar hoy en día es la elevación de la presión intraocular, por lo que cobra extrema importancia la exquisitez en la determinación del parámetro en el que va a girar nuestra actitud. Sin embargo, existen múltiples situaciones donde los pacientes, a pesar de tener la PIO en límites normales, continúan progresando. Se han apuntado múltiples causas para este fenómeno como la fluctuación de la PIO o el aumento nocturno de la PIO por el decúbito supino; pero la aparición del concepto de histéresis ocular planteó nuevos interrogantes desde 2 puntos de vista principalmente. El primer…

histéresis corneal:CIENCIAS MÉDICAS::Cirugía::Cirugía ocular [UNESCO]lámina cribosaglaucoma surgeryUNESCO::CIENCIAS MÉDICAScorneal hysteresislámina cribrosa:CIENCIAS MÉDICAS [UNESCO]UNESCO::CIENCIAS MÉDICAS::Cirugía::Cirugía ocular
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Softening of Silica Filled Styrene-Butadiene Rubber under Uniaxial Cyclic Loading

2016

Stress-strain behaviour of silica filled styrene-butadiene rubber showed strong hysteresis and cyclic softening, while these effects were almost negligible for the neat rubber. Significant Mullins effect occurs between the first and second loading cycles, whereupon samples reach their steady state after four repeated cycles. The degree of softening increases with volume content of silica characterizing the softening effect as a breakdown of the filler-formed microstructure defined by both, specific interactions in the filler associations and between the filler and rubber matrix. Contribution of different damage mechanisms to the total energy losses on different stages of extension was estim…

lcsh:TN1-997Materials scienceStyrene-butadiene02 engineering and technologystress softeningcomplex mixturesStress (mechanics)chemistry.chemical_compound0203 mechanical engineeringNatural rubberGeneral Materials ScienceComposite materialSofteninglcsh:Mining engineering. Metallurgyhysteresis losses.Mullins effecttechnology industry and agricultureMullins effect021001 nanoscience & nanotechnologyMicrostructurefilled rubberbody regionsHysteresis020303 mechanical engineering & transportschemistryvisual_artvisual_art.visual_art_mediumfilled rubber Mullins effect stress softening hysteresis lossesDeformation (engineering)0210 nano-technologyMedžiagotyra
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Rare‐earth cyclobutadienyl sandwich complexes: Synthesis, structure and dynamic magnetic properties

2018

The potassium cyclobutadienyl [K2{η4‐C4(SiMe3)4}] (1) reacts with MCl3(THF)3.5 (M=Y, Dy) to give the first rare‐earth cyclobutadienyl complexes, that is, the complex anions [M{η4‐C4(SiMe3)4}{η4‐C4(SiMe3)3‐κ‐(CH2SiMe2}]2−, (2M), as their dipotassium salts. The tuck‐in alkyl ligand in 2M is thought to form through deprotonation of the “squarocene” complexes [M{η4‐C4(SiMe3)4}2]− by 1. Complex 2Dy is a single‐molecule magnet, but with prominent quantum tunneling. An anisotropy barrier of 323(22) cm−1 was determined for 2Dy in an applied field of 1 kOe, and magnetic hysteresis loops were observed up to 7 K. nonPeerReviewed

magneettiset ominaisuudetcyclobutadienyl ligandsmagneetitchemistry.chemical_element010402 general chemistry01 natural sciencesCatalysisDeprotonationAnisotropyta116magnetsAlkylQuantum tunnellingchemistry.chemical_classificationkemiallinen synteesiorganometallics dysprosium010405 organic chemistryLigandOrganic ChemistrykompleksiyhdisteetGeneral Chemistryharvinaiset maametallitMagnetic hysteresis0104 chemical sciencesCrystallographychemistryMagnetDysprosiumsingle-moleculerare-earth elements
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Asymmetric hysteresis for probing Dzyalohsinskii-Moriya interaction

2016

The interfacial Dzyaloshinskii-Moriya interaction (DMI) is intimately related to the prospect of superior domain-wall dynamics and the formation of magnetic skyrmions. Although some experimental efforts have been recently proposed to quantify these interactions and the underlying physics, it is still far from trivial to address the interfacial DMI. Inspired by the reported tilt of the magnetization of the side edge of a thin film structure, we here present a quasi-static, straightforward measurement tool. By using laterally asymmetric triangular-shaped microstructures, it is demonstrated that interfacial DMI combined with an in-plane magnetic field yields a unique and significant shift in m…

perpendicular magnetic anisotropyNucleationFOS: Physical sciencesBioengineering02 engineering and technology01 natural sciencesMagnetization0103 physical sciencesMesoscale and Nanoscale Physics (cond-mat.mes-hall)General Materials Sciencechiral magnetThin film010306 general physicsPhysicsDzyaloshinskii-Moriya interactionspintronicsCondensed Matter - Materials ScienceCondensed Matter - Mesoscale and Nanoscale PhysicsSpintronicsCondensed matter physicsMechanical EngineeringSkyrmionMaterials Science (cond-mat.mtrl-sci)General Chemistry021001 nanoscience & nanotechnologyCondensed Matter PhysicsMagnetic hysteresisMagnetic fieldHysteresisnanomagnetism0210 nano-technologyasymmetric hysteresis loopNano Letters
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