AUT Journal of Mechanical Engineering

AUT Journal of Mechanical Engineering

AUT Journal of Mechanical Engineering is a double-blind peer-reviewed quarterly journal, owned, managed, and published by Amirkabir University of Technology since 2017 and indexed in Scopus now. The journal publishes original full-length articles, reviews, and letters relevant to all fields of all mechanical engineering fields. The journal scope includes: Fluid Mechanics, Thermodynamics and Heat Transfer, Energy and Environment, Solid Mechanics, Dynamics, Vibration and Control, Production, Biomechanics, Micro and Nanomechanics, Automotive and Transportation, Design and Reliability of Mechanical Systems.


Journal Title

AUT Journal of Mechanical Engineering

P-ISSN

2588-2937

E-ISSN

2588-2945

Frequency

Quarterly

Editor-in-Chief

Majid Saffar-Avval, Ph.D.

Language 

English Fulltexts and Abstracts

Plagiarism Checker

iThenticate

Peer Review Policy

Double-blind

Article Processing Charges

Free (No APC)

Average Review Time

4 Months

Acceptance Rate

23%

Owner & Publisher

Amirkabir University of Technology, Iran.

The sixth newsletter (2025) of the AUT Journal of Mechanical Engineering has been published.


 

Current Issue: Volume 10, Issue 3, Summer 2026, Pages 253-416 

Keywords Cloud

  • optimization
  • computational fluid dynamics
  • heat transfer
  • genetic algorithm
  • numerical simulation
  • Natural convection
  • Nanofluid
  • Critical heat flux
  • Porous medium
  • finite element method
  • Pressure drop
  • Simulation
  • EFFICIENCY
  • magnetic field
  • Modeling
  • Image processing
  • heat transfer coefficient
  • Homotopy Perturbation Method
  • Radiation
  • Functionally graded material
  • Differential quadrature method
  • Mechanical Properties
  • Wind turbine
  • nonlinear vibration
  • two-phase flow
  • Pool boiling
  • Low-velocity impact
  • Buckling
  • Nanocomposite
  • Lattice Boltzmann method
  • Multi-objective optimization
  • Experimental study
  • Taguchi method
  • Experimental analysis
  • Finite element analysis
  • magneto-electro-elastic
  • CFD
  • Numerical modeling
  • magnetic nanofluid
  • Trajectory tracking
  • fatigue life
  • Solid oxide fuel cell
  • Bifurcation
  • Perturbation method
  • Conjugate Gradient Method
  • artificial neural network
  • Convective Heat Transfer
  • Cooling efficiency
  • Particle Swarm Optimization
  • Jeffcott rotor
  • Molecular Dynamics Simulation
  • Auxetic structure
  • finite element
  • Method of Multiple Scales
  • deep reinforcement learning
  • Fire
  • Buongiorno Model
  • energy analysis
  • Vibration analysis
  • forced convection
  • Microfluidics
  • Proper Orthogonal Decomposition
  • Large Eddy Simulation
  • Fault detection
  • design of experiments
  • Low velocity impact
  • Feature Extraction
  • Thermal efficiency
  • Flange
  • Exact Solution
  • Blood flow
  • Dynamic mesh
  • Fixture design
  • Residual stress
  • Theoretical model
  • Ring-Core
  • Wind-Tunnel Testing
  • Variational iteration method
  • temperature distribution
  • wall shear stress
  • Phase change material
  • Shape Memory Alloy
  • Helicopter
  • Copper
  • Shroud
  • Condition monitoring
  • Hand Movements
  • Surface roughness
  • Vibration
  • Mechanism
  • Obstacle avoidance
  • graphene
  • Multiple scales method
  • free vibration
  • Artificial Intelligence
  • Entropy generation
  • Heat transfer enhancement
  • Nusselt number
  • Size effect
  • Polymer Fuel Cell
  • Strongly nonlinear vibration
  • Phase-change materials
  • Chemical etching
  • Bionanorobot
  • accuracy
  • Molecular dynamic
  • subset radius
  • Stability zone
  • Position Tracking
  • Direct numerical simulation
  • Lyapunov theory
  • depth of penetration
  • Sodium alginate
  • Axial compressor
  • Temperature
  • Fault detection and diagnosis method
  • Kelvin-Helmholtz instability
  • Graphene Nanoparticle
  • active vibration control
  • Counter-rotating double shaft
  • cutting force
  • Sandwich panels
  • Thermal Radiation
  • solid-state synthesis
  • Entropy Production
  • Oldroyd-B Model
  • Turbulent flow
  • proportional-(proportional-derivative) control
  • Engine waste heat recovery
  • Bimetallic materials
  • Bifurcations
  • performance
  • smart material
  • Population
  • GRNN
  • Nonlocal plate model
  • two-roller mixer
  • Turbulent Flame
  • piezoelectric layers
  • Milling
  • Fused deposition modeling
  • Heat sink
  • Microstructure optimization
  • Transient Flow
  • Rail
  • Ethanol
  • non-Darcy porous channel, high mass transfer, Variation of parameters method
  • Intervertebral rotation
  • Swinging motion
  • Combined cycle power plant
  • Model-Based Control
  • Virtual constraint
  • Erosion
  • space manipulator
  • Wrist Rehabilitation
  • Central bursts
  • High-order sliding mode
  • Numerical methods
  • Twist angle
  • Axial load
  • transferring operation
  • Distance
  • Calibration coefficient
  • Rotational obstacles
  • CT-3RPRS
  • Bipolar plate
  • thermal gradient
  • Perforated Zone
  • Cantilever arrays
  • creep damage
  • Disease
  • Phase field
  • Three-dimensional deformation
  • Hemolysis
  • Air-Blast
  • Fluid pressure
  • Quadrotor
  • Relative rib width
  • Bi-directional functionally graded materials
  • Operating Pressure
  • Bandgap
  • Pipe laminar flow
  • Regenerative organic
  • Pressure distribution
  • Precision Farming
  • Integrated vehicle control
  • Generalized differential quadrature
  • Diffusion burner
  • blood viscosity
  • Mathematical model
  • Jacobian
  • Manipulability
  • Time-dependent creep
  • Realization of Microstructure
  • Dislocations
  • generalized regression
  • sliding mode control
  • Circular workpiece
  • Supply Fan
  • robust controller