Search results for " fibre"

showing 10 items of 285 documents

Effects of combined endurance and strength training on muscle strength, power and hypertrophy in 40-67-year-old men

2009

Both strength and endurance training have several positive effects on aging muscle and physical performance of middle-aged and older adults, but their combination may compromise optimal adaptation. This study examined the possible interference of combined strength and endurance training on neuromuscular performance and skeletal muscle hypertrophy in previously untrained 40-67-year-old men. Maximal strength and muscle activation in the upper and lower extremities, maximal concentric power, aerobic capacity and muscle fiber size and distribution in the vastus lateralis muscle were measured before and after a 21-week training period. Ninety-six men [mean age 56 (SD 7) years] completed high-int…

medicine.medical_specialtyStrength trainingbusiness.industryVastus lateralis musclePhysical Therapy Sports Therapy and RehabilitationMuscle hypertrophyEndurance trainingInternal medicineOne-repetition maximumMuscle strengthmedicinePhysical therapyCardiologyOrthopedics and Sports MedicineMuscle fibrebusinessAerobic capacityScandinavian Journal of Medicine & Science in Sports
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Reply: Sensory profile in primary restless legs syndrome and restless legs syndrome associated with small fibre neuropathy

2010

Sir, We wish to thank the editor for giving us the opportunity to respond to this letter. We appreciated reading that Drs Gemignani and Vitetta think our study (Bachmann et al. , 2010) provides support for the differential diagnosis of primary and secondary restless legs syndrome (RLS) associated with small fibre neuropathy, when comparing the sensory profiles of these groups of patients for the first time. Dr Gemignani recently wrote ‘A general consensus on the proposed criteria for the diagnosis of small fibre neuropathy has not been established’ (Gemignani, 2010 b ). This already applies for small fibre neuropathy without complicating RLS; however, for the constellation of RLS with small…

medicine.medical_specialtybusiness.industryShooting painSensory profilemedicine.diseaseComorbidity03 medical and health sciences0302 clinical medicinePhysical medicine and rehabilitationmental disordersSmall Fibre NeuropathymedicinePhysical therapyTingling030212 general & internal medicineNeurology (clinical)Restless legs syndromeDifferential diagnosisSecondary restless legs syndromebusiness030217 neurology & neurosurgeryBrain
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Predicting stiffness and strength of birch pulp:Polylactic acid composites

2016

This paper studies failure of birch pulp–polylactic acid composites. Stiffness and strength are calculated using the theory of short fibre composites and the results are compared to experimental data. The results differed from the experimental values by 0–6%. With less aligned fibres the short fibre theory is not feasible. The performance of the 40 wt% birch pulp – polylactic acid composite is predicted with X-ray microtomography based finite element modelling, and the results are compared with experiments. Stiffness results differed from experiments by 1–17% . By adding into the models a third material phase representing the interface between the fibres and the matrix, the stress–strain c…

microtomographyMaterials scienceComposite number02 engineering and technologyengineering.materialshort fibre composites strengthchemistry.chemical_compoundfibres0203 mechanical engineeringPolylactic acidimage analysisMaterials Chemistrymedicinepolymer matrix compositesComposite materialta216finite element modellingProperTunekuidutta214modelta114Mechanical EngineeringPulp (paper)Wood-plastic compositeStiffness021001 nanoscience & nanotechnologyMicrostructureFinite element method020303 mechanical engineering & transportschemistryshort fibre compositesMechanics of Materialskuva-analyysiCeramics and Compositesengineeringmedicine.symptomelastic properties0210 nano-technologystrengthelastiv properties
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Influence Des Conditions De Fabrication Sur Les Propriétés Mécaniques Et Physico-Chimiques D'un Composite Lin/Époxy Unidirectionnel

2017

This study focused on the development of a manufacturing process of laminated composites made from DGEBA epoxy matrix and flax fibers. The aim is to produce a material with good and low dispersed mechanical properties. Thermocompression is the chosen manufacturing method because it enables the production of composite with high fiber content. We used separated matrix and reinforcement, and not a prepreg, to fully control each component of our composites. Several curing cycle parameters have been tested in order to optimize mechanical properties and processing time. A multi-scale analyze has been carried on the produced composites in order to quantify the range of properties’ modifications. T…

mise en œuvre[SPI] Engineering Sciences [physics]époxymanufacturing processcompositeFlax fibresFibres de linepoxy
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: Effects of process conditions on mechanical and physicochemical properties of unidirectional flax/epoxy composite

2017

National audience; This study focused on the development of a manufacturing process of laminated composites made from DGEBA epoxy matrix and flax fibers. The aim is to produce a material with good and low dispersed mechanical properties. Thermocompression is the chosen manufacturing method because it enables the production of composite with high fiber content. We used separated matrix and reinforcement, and not a prepreg, to fully control each component of our composites. Several curing cycle parameters have been tested in order to optimize mechanical properties and processing time. A multi-scale analyze has been carried on the produced composites in order to quantify the range of propertie…

mise en œuvre[SPI]Engineering Sciences [physics][ SPI.MAT ] Engineering Sciences [physics]/Materialsépoxymanufacturing processFibres de lincompositeFlax fibres[SPI.MAT] Engineering Sciences [physics]/MaterialsComputingMilieux_MISCELLANEOUSepoxy[SPI.MAT]Engineering Sciences [physics]/Materials
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In vivo muscle mechanics during normal locomotion is dependent on movement amplitude and contraction intensity

2001

The effects of movement amplitude and contraction intensity on triceps surae and quadriceps femoris muscle function were studied during repetitive hopping. In vivo forces from Achilles and patellar tendons were recorded with the optic fibre technique from eight volunteers. The performances were filmed (200 Hz) to determine changes in muscle-tendon unit length and velocity. When hopping with a small amplitude (23° knee flexion during the ground contact phase), the Achilles tendon was primarily loaded whereas patellar tendon forces were greater in large-amplitude hopping (56° knee flexion). In spite of the different magnitudes of stretch in the quadriceps femoris muscle, the stretching veloci…

musculoskeletal diseaseshoppingmuscle activiryeconomyoptic fibretendon forcemusculoskeletal system
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Phase-delayed laser diode array allows ultrasonic guided wave mode selection and tuning

2013

Selecting and tuning modes are useful in ultrasonic guided wave non-destructive testing (NDT) since certain modes at various center frequencies are sensitive to specific types of defects. Ideally one should be able to select both the mode and the center frequency of the launched waves. We demonstrated that an affordable laser diode array can selectively launch either the S0 or A0 ultrasonic wave mode at a chosen center frequency into a polymer plate. A fiber-coupled diode array (4 elements) illuminated a 2 mm thick acrylic plate. A predetermined time delay matching the selected mode and frequency was employed between the output of the elements. The generated ultrasound was detected by a 215…

nondestructive testingplates (structures)delayssemiconductor laser arraysacoustic receiversoptical fibre couplersacoustic waveguidesultrasonic wavespolymeeritlaser modeslaser tuning
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In vivo triceps surae and quadriceps femoris muscle function in a squat jump and counter movement jump

2000

An optic fibre method was used to measure in humans in vivo Achilles (ATF) and patellar tendon forces (PTF) during submaximal squat jumps (SJ) and counter movement jumps (CMJ). Normal two-legged jumps on a force plate and one-legged jumps on a sledge apparatus were made by four volunteers. Kinetics, kinematics, and muscle activity from seven muscles were recorded. The loading patterns of the tendomuscular system differed among the jumping conditions, but were similar when the jumping height was varied. Peak PTF were greater than ATF in each condition. In contrast to earlier simulation studies it was observed that tendomuscular force could continue to increase during the shortening of muscle…

poweroptic fibretendon forcemuscle-tendon interactionmuscle mechanics
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Proof testing and lifetime reliability of carbon fibre reinforced composite pressure vessels

2013

International audience

reliability[ SPI.MAT ] Engineering Sciences [physics]/Materialsfailure processescarbon fibre pressure vessels[SPI.MAT] Engineering Sciences [physics]/Materials[SPI.MECA]Engineering Sciences [physics]/Mechanics [physics.med-ph][SPI.MECA] Engineering Sciences [physics]/Mechanics [physics.med-ph]ComputingMilieux_MISCELLANEOUS[SPI.MAT]Engineering Sciences [physics]/Materials
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A methodology for the control of the residual lifetimes of carbon fibre reinforced composite pressure vessels

2005

International audience; Pressure vessels must be periodically proof tested. Traditional techniques for metal vessels are inapplicable for composite vessels as the latter do not break by crack propagation so that the reasoning behind the traditional testing procedures is not appropriate. Damage accumulation leading to the degradation of a composite vessel is by fibre failure. Fibres show a wide distribution in strengths and loading a composite inevitably breaks some. The method which has been developed is supported by an analysis of delayed fibre failure due to the relaxation of the resin around fibre breaks. This provokes overloading of intact fibres neighbouring breaks. The time until a cr…

resin relaxationlife time predictionpressure vesselsproof testingdelayed fibre failurecarbon fibre composites[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]resin relaxation.[ PHYS.COND.CM-MS ] Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]acoustic emission[PHYS.COND.CM-MS] Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]
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