Journal of Science  and Technology of Composites

Journal of Science and Technology of Composites

Journal Statistics

Number of Submissions 957
Rejected Submissions 417
Rejection Rate 44
Accepted Submissions 479
Acceptance Rate 50
Time to Accept (Days) 201
Number of Indexing Databases 5
Number of Reviewers 587

Copyright

This is an open access journal distributed under the terms and conditions of the Creative Commons Attribution-NonCommercial 4.0 International (CC BY-NC 4.0) license. This license permits Share (copy and redistribute the material in any medium or format) and Adapt (remix, transform, and build upon the material) under the Attribution-NonCommercial terms.

 

         

Welcome


Journal of Science and Technology of Composites

The Journal of Science and Technology of Composites (JSTC), published by the Iran University of Science and Technology, is a peer-reviewed, open access journal dedicated to advancing research in composite materials. Due to the lack of specialized journals in the field of composites in the Persian language in Iran and the need to publish the findings of researchers, Iran University of Science and Technology, Iran Composites Scientific Association, and the Center of Excellence in Experimental Solid Mechanics in 2011 established the Journal of Science and Technology of Composites. The purpose of publishing this journal is to reflect the research findings of the academic and industrial experts in the field of composite materials and structures to university professors, researchers, students, and industrial experts.

The journal doesn't have any article processing charges (APCs) and submission charges.

Keywords Cloud

  • Mechanical properties
  • Composite
  • Delamination
  • Nanocomposite
  • sandwich panel
  • energy absorption
  • finite element analysis
  • composites
  • Low velocity impact
  • finite element method
  • Tensile strength
  • Carbon Nanotube
  • Basalt fibers
  • Microstructure
  • epoxy
  • Micromechanics
  • High velocity impact
  • Metal Matrix Composite
  • interface
  • Graphene
  • Nanocomposites
  • Fiber metal laminate
  • Creep
  • Buckling
  • Shape memory alloy
  • Wear
  • Free vibration
  • Flexural properties
  • Carbon nanotubes
  • Fracture toughness
  • nano composite
  • Polypropylene
  • Vibration
  • Corrosion
  • numerical simulation
  • progressive damage
  • Flexural Strength
  • Response surface methodology
  • Finite element modeling
  • centrifugal casting
  • Polyurethane foam
  • Nanoclay
  • Additive manufacturing
  • tensile properties
  • Hardness
  • Cohesive zone model
  • Matrix Cracking
  • Functionally graded material
  • Taguchi method
  • Self-healing
  • Surface modification
  • Cold spray
  • Laminated composite
  • Functionally graded materials
  • Composite plate
  • Epoxy resin
  • Acoustic emission
  • 3D printing
  • Finite element
  • Basalt
  • Composite plates
  • Guided waves
  • Hybrid composite
  • Nano silica
  • Representative volume element
  • Porosity
  • Polymer matrix composite
  • Polyamide 6
  • genetic algorithm
  • Composite beam
  • Impact
  • Bending behavior
  • Impact strength
  • Shear strength
  • Friction stir processing
  • Free Vibrations
  • experimental method
  • analytical solution
  • Hydroxyapatite
  • Viscoelastic behavior
  • Modeling
  • Surface treatment
  • modal analysis
  • Strain energy
  • Machining
  • Acrylonitrile Butadiene Rubber
  • Interphase
  • FEM
  • Galerkin method
  • Pultrusion
  • Dynamic response
  • Thermoplastic
  • Surface roughness
  • natural frequency
  • Adhesive joint
  • Foam
  • Sandwich conical shell
  • Lamb wave
  • Laminated composites
  • Sandwich beam
  • Optimization
  • Strain Rate
  • fatigue
  • Multi-walled carbon nanotubes
  • Low-velocity Impact
  • Strength
  • Continuum damage mechanics
  • smeared method
  • quasi-static loading
  • FML
  • copper
  • Hot press
  • High temperature resin
  • Intermetallic Compound
  • Fiber metal laminates
  • Self-healing phenomenon
  • Aluminum
  • Energy absorber
  • Stir casting
  • Three-point bending
  • Ballistic Limit Velocity
  • Experimental study
  • Damage
  • Natural fibers
  • Polynomial chaos expansion
  • First-order Shear Deformation Theory (FSDT)
  • Nano graphene
  • Vibration Control
  • Composite patch
  • Tool Wear
  • bending strength
  • failure mechanisms
  • multiscale method
  • Sintering
  • Temperature
  • Mechanical and physical properties
  • Morphology
  • Melt fluidity
  • Induced Delamination
  • Vibration correlation technique
  • Nano clay
  • experimental analysis
  • ferrite
  • Hybrid core
  • Charpy impact
  • Composite tube
  • Dynamic Loading
  • Vibration Analysis
  • GLARE
  • Finite element model
  • Rectangular plate
  • Tensile behavior
  • Wavelet transform
  • Sandwich shell
  • sandwich structure
  • Curvilinear fiber
  • Composite cylindrical shells
  • Nonlinear Forced Vibration
  • Post-buckling
  • Cohesive zone
  • Aluminium alloys
  • Bending
  • Strain energy release rate
  • Fuzzy Controller
  • Wear test
  • Sensitivity analysis
  • Nano-composite
  • Aluminum matrix composite
  • Microhardness
  • SiC
  • Carbon fiber
  • composite coating
  • dielectric constant
  • experiment
  • Mechanical joint
  • Drop impact test
  • Thermal environment
  • Thermal properties
  • Sol-gel
  • Piezoelectric
  • Sandwich Panels
  • Composite Shell
  • stress intensity factor
  • Layer-wise theory
  • Drilling
  • Shot peening
  • EPDM
  • Powder Metallurgy
  • axial load
  • Electrodeposition
  • Thermoplastic Composite
  • Compressive strength
  • double cantilever beam
  • Frequency analysis
  • Mechanical milling
  • LS-DYNA
  • Extended Finite Element Method
  • Nitinol
  • Hot Rolling
  • Perlite