International Journal of Applied Mechanics

Scope & Guideline

Exploring New Horizons in Materials Science

Introduction

Delve into the academic richness of International Journal of Applied Mechanics with our guidelines, detailing its aims and scope. Our resource identifies emerging and trending topics paving the way for new academic progress. We also provide insights into declining or waning topics, helping you stay informed about changing research landscapes. Evaluate highly cited topics and recent publications within these guidelines to align your work with influential scholarly trends.
LanguageEnglish
ISSN1758-8251
PublisherWORLD SCIENTIFIC PUBL CO PTE LTD
Support Open AccessNo
CountrySingapore
TypeJournal
Convergefrom 2009 to 2024
AbbreviationINT J APPL MECH / Int. J. Appl. Mech.
Frequency4 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
Address5 TOH TUCK LINK, SINGAPORE 596224, SINGAPORE

Aims and Scopes

The International Journal of Applied Mechanics focuses on the development and application of mechanics principles across various domains, emphasizing innovative methodologies and computational techniques.
  1. Computational Mechanics:
    The journal extensively covers computational methods for solving complex mechanical problems, including finite element methods, meshless approaches, and hybrid modeling techniques.
  2. Material Behavior Analysis:
    Research on the mechanical properties of various materials, including polymers, composites, and metals, is a core focus, with studies examining elasticity, plasticity, and viscoelasticity.
  3. Dynamic and Structural Analysis:
    The journal addresses dynamic response issues related to structures and materials under various loading conditions, including static, dynamic, and thermal loads.
  4. Multiscale Modeling:
    A significant emphasis is placed on multiscale approaches that bridge the gap between micro- and macro-scale phenomena, facilitating a comprehensive understanding of material behaviors.
  5. Innovative Design and Optimization Techniques:
    The journal promotes research on optimization in mechanical design, including topology optimization and the use of advanced materials to enhance performance.
  6. Experimental Investigation and Validation:
    Many studies incorporate experimental validation of theoretical models, ensuring that computational predictions align with real-world behaviors.
The journal has recently seen the rise of several trends and themes, reflecting the evolving landscape of applied mechanics research.
  1. Machine Learning and AI in Mechanics:
    There is a growing trend towards integrating machine learning techniques with traditional mechanics, enhancing predictive modeling and data analysis capabilities.
  2. Soft and Adaptive Materials:
    Research on soft materials, including hydrogels and shape-memory polymers, has gained momentum, focusing on their unique mechanical properties and applications in soft robotics and biomedical devices.
  3. Nonlinear Dynamics and Stability:
    An increased focus on nonlinear dynamics, particularly in complex systems and structures, highlights the need to understand stability and response under varying conditions.
  4. Multiphysics Problems:
    The exploration of multiphysics problems, where mechanical, thermal, and electrical effects intersect, is becoming increasingly relevant, reflecting real-world engineering challenges.
  5. Sustainable Materials and Green Engineering:
    A rising interest in sustainable materials and their mechanical properties shows a commitment to environmentally friendly engineering practices and innovations.

Declining or Waning

While the journal maintains a strong focus on applied mechanics, certain themes have shown a declining trend in recent publications.
  1. Classical Mechanics Applications:
    There has been a noticeable decrease in papers focusing on traditional applications of classical mechanics, as the field shifts towards more interdisciplinary and computational approaches.
  2. Static Analysis of Simple Structures:
    Research centered on the static analysis of basic structures, such as beams and frames, has become less prevalent, overshadowed by more complex dynamic and nonlinear analyses.
  3. Basic Material Testing Techniques:
    Simple experimental studies focusing on basic material testing have diminished, as the journal increasingly favors advanced methodologies and innovative experimental designs.

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