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, 2026, Pages 253-416 

Keywords Cloud

  • optimization
  • computational fluid dynamics
  • heat transfer
  • genetic algorithm
  • Natural convection
  • Nanofluid
  • numerical simulation
  • Critical heat flux
  • Pressure drop
  • Porous medium
  • finite element method
  • Homotopy Perturbation Method
  • nonlinear vibration
  • Differential quadrature method
  • Vibration analysis
  • Lattice Boltzmann method
  • Low-velocity impact
  • free vibration
  • Finite element analysis
  • Functionally graded material
  • Multi-objective optimization
  • Image processing
  • Pool boiling
  • two-phase flow
  • heat transfer coefficient
  • magnetic field
  • Radiation
  • Simulation
  • EFFICIENCY
  • Wind turbine
  • Nanocomposite
  • Mechanical Properties
  • Buckling
  • Experimental study
  • Modeling
  • Residual stress
  • Alumina
  • Taguchi method
  • Surface roughness
  • Auxetic structure
  • wall shear stress
  • Hand Movements
  • Dynamic mesh
  • Trajectory tracking
  • Size effect
  • delamination
  • Jeffcott rotor
  • Phase change material
  • Theoretical model
  • Microfluidics
  • design of experiments
  • Flange
  • Bifurcation
  • Condition monitoring
  • Copper
  • Method of Multiple Scales
  • Cooling efficiency
  • Convective Heat Transfer
  • Conjugate Gradient Method
  • energy analysis
  • artificial neural network
  • forced convection
  • Buongiorno Model
  • Shroud
  • Perturbation method
  • Wind-Tunnel Testing
  • Large Eddy Simulation
  • Variational iteration method
  • magnetic nanofluid
  • Fixture design
  • Entropy generation
  • CFD
  • Numerical modeling
  • Low velocity impact
  • Feature Extraction
  • Proper Orthogonal Decomposition
  • fatigue life
  • experimental validation
  • Nusselt number
  • Heat transfer enhancement
  • Particle Swarm Optimization
  • Fire
  • Multiple scales method
  • deep reinforcement learning
  • Helicopter
  • finite element
  • Thermal efficiency
  • Exact Solution
  • Finite Element Method (FEM)
  • Blood flow
  • Additive Manufacturing
  • Vibration
  • Shape Memory Alloy
  • graphene
  • temperature distribution
  • Thermal Radiation
  • Artificial Intelligence
  • Experimental analysis
  • Solid oxide fuel cell
  • Ring-Core
  • Molecular Dynamics Simulation
  • Obstacle avoidance
  • Mechanism
  • Fault detection
  • magneto-electro-elastic
  • depth of penetration
  • Temperature
  • Position Tracking
  • Bimetallic materials
  • performance
  • active vibration control
  • Turbulent flow
  • Engine waste heat recovery
  • Nonlocal plate model
  • Bifurcations
  • piezoelectric layers
  • smart material
  • Population
  • Axial compressor
  • Sodium alginate
  • cable-traversing robot
  • Lyapunov theory
  • Direct numerical simulation
  • GRNN
  • Climatic conditions
  • Fault detection and diagnosis method
  • Transient Flow
  • two-roller mixer
  • Turbulent Flame
  • Ethanol
  • Milling
  • Fused deposition modeling
  • proportional-(proportional-derivative) control
  • Heat sink
  • Smoke Flow Visualization
  • Microstructure optimization
  • Erosion
  • non-Darcy porous channel, high mass transfer, Variation of parameters method
  • Rail
  • Intervertebral rotation
  • Axial load
  • Combined cycle power plant
  • Model-Based Control
  • Calibration coefficient
  • space manipulator
  • Wrist Rehabilitation
  • Virtual constraint
  • Numerical methods
  • thermal gradient
  • Twist angle
  • transferring operation
  • creep damage
  • Evaporation loss
  • Distance
  • CT-3RPRS
  • robust controller
  • Bipolar plate
  • Perforated Zone
  • Chebyshev spectral collocation method
  • Rotational obstacles
  • Phase field
  • Central bursts
  • High-order sliding mode
  • Cantilever arrays
  • Fluid pressure
  • Radiative transfer equations
  • Dislocations
  • Generalized differential quadrature
  • Locating error
  • Disease
  • Ankle trajectory
  • Thermo-electrical vibrations
  • ppen-Geiger
  • Liunberger
  • experimental–numerical methodology
  • nano-scaled plate
  • Deep Deterministic Policy Gradient
  • Wear of the liner
  • Shear deformation theory
  • Vertical double-tube heat exchanger
  • Aluminide
  • Trailing-edge flap
  • Simply Supported
  • Integrated vehicle control
  • Hemolysis
  • Three-dimensional deformation
  • Air-Blast
  • Modified Bond-Based
  • Quadrotor
  • Relative rib width
  • Defect formation
  • Bi-directional functionally graded materials
  • Operating Pressure
  • Bandgap
  • Pipe laminar flow
  • Regenerative organic
  • Pressure distribution
  • Precision Farming
  • Ant colony optimization
  • Mechanism Synthesis