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17 results
- Data for: In-situ Shear Exfoliation and Thermal Conductivity of SBS/Graphite Nanoplatelet NanocompositesFTIR, Raman, XRD spectra and the size distribution of the filler. Therml conductive properties of the composites.
- Dataset
- Data for: Flexible La1.5Sr0.5NiO4/Poly(vinylidene fluoride) Composites with an Ultra High Dielectric Constant: A Comparative StudyExperimental data
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- Data for: Biochar as a filler in glassfiber reinforced composites: Experimental Study of Thermal and Mechanical PropertiesBET analysis of biochar and activated charcoal
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- Data for: Holographic polymer nanocomposites with ordered structures and improved electro-optical performance by doping POSSViscosity, Photopolymerization kinetics, photorheology, EDAX, diffraction efficiency, electro optical response and thernal properties test results in this paper
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- Data for: Multifunctional Piezoelectric Elastomer Composites for Smart Biomedical or Wearable ElectronicsOriginal data for the paper entitled Multifunctional Piezoelectric Elastomer Composites for Smart Biomedical or Wearable Electronics The .rar file contains the unmodified data sheets of the materials of PVDF-PDMS and PVDF-PDMS-CNT in various fractions of each components, under uniaxial compressive test and cyclic compressive test.
- Dataset
- Data for: Low-velocity Impact response of viscoelastic material filled FG honeycomb reinforced laminate plate in hygrothermal environmentsMain data for the figures of the research.
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- Data for: Contribution of externally bonded FRP shear reinforcements to the shear strength of a strengthened RC beamShear strength contributions, Crack patterns and Strains in transverse reinforcements
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- Data for: NURBS-Based Modeling of Laminated Composite Beams with Isogeometric Displacement-Only TheoryThe source data for IDBT developed model
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- Data for: Accelerated thermal ageing behavior of bagasse fibers reinforced Poly (Lactic Acid) based biocompositesX- ray diffraction data and Dynamic Mechanical analysis data for PLA and biocomposites
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- Data for: Reliability Assessment for Flexural FRP-Strengthened Reinforced Concrete Beams Based on Importance SamplingIn this paper, an experimental test database is presented for flexural FRP-strengthened RC beams including four possible failure modes: concrete crushing, FRP rupture, IC debonding and end debonding. The experimental RC beams are characterized with the following features: (1) the cross-section is rectangular; (2) FRP laminates are pasted in the tension side of RC beams; (3) two types of FRP composites are used, CFRP and GFRP; and (4) three-point and four-point loading are included for the simply-supported RC beams with static loads. This database is constructed based on 624 sets of test results collected from published references during a long time span from 1993 to 2018. Including 226 sets for flexural failure (concrete crushing and FRP rupture), 240 sets for IC debonding and 158 set for end debonding. The number of test data with anchorages for flexural failure, IC debonding and end debonding is 116, 63, and 3, respectively. The database include the following basic parameters: (1) geometry of RC beam (i.e., height, width, length); (2) concrete compression strength; (3) properties of steel (i.e., yielding strength, Yang’s modulus and cross-section area); (4) properties of FRP (i.e., ultimate strength, Yang’s modulus, thickness and cross-section area); (5)loading condition (i.e., three-points or four-points); (6) anchorage type; and (7) experimental results (i.e., ultimate load capacity, failure mode, and FRP contribution).
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