INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES

Scope & Guideline

Exploring New Dimensions in Applied Mathematics

Introduction

Delve into the academic richness of INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES 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.
LanguageMulti-Language
ISSN0020-7683
PublisherPERGAMON-ELSEVIER SCIENCE LTD
Support Open AccessNo
CountryUnited Kingdom
TypeJournal
Convergefrom 1965 to 2024
AbbreviationINT J SOLIDS STRUCT / Int. J. Solids Struct.
Frequency26 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
AddressTHE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND

Aims and Scopes

The INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES focuses on the theoretical and computational aspects of solid mechanics, particularly under complex loading conditions. The journal aims to foster advancements in the understanding of material behavior, structural stability, and the innovative applications of solid mechanics in engineering and materials science.
  1. Theoretical and Computational Mechanics:
    The journal emphasizes the development of new theories and computational techniques in solid mechanics, including finite element methods, phase-field modeling, and multiscale approaches.
  2. Material Behavior and Characterization:
    Research on the mechanical behavior of various materials, including metals, polymers, composites, and bio-materials, is a core focus, addressing issues like plasticity, fracture, and fatigue.
  3. Innovative Structural Design:
    The journal covers innovative structural designs and applications, including metamaterials, tensegrity structures, and smart materials, emphasizing their mechanical properties and performance under different conditions.
  4. Multiscale and Coupled Phenomena:
    Research exploring multiscale modeling and coupled phenomena, such as thermomechanical interactions and electro-mechanical effects, is a significant aspect of the journal's scope.
  5. Experimental and Numerical Validation:
    The journal encourages the integration of experimental studies with numerical simulations to validate theoretical models and enhance the understanding of complex mechanical behaviors.
Recent publications in the INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES reveal several trending and emerging themes, indicating a shift towards more complex and interdisciplinary approaches to solid mechanics.
  1. Machine Learning Applications:
    The integration of machine learning techniques in predicting material behavior and optimizing structures is gaining traction, reflecting the industry's move towards data-driven approaches.
  2. Nonlinear and Dynamic Analysis:
    An increasing number of studies are focusing on nonlinear dynamics, including buckling and post-buckling analyses, as well as dynamic responses of structures under various loading conditions.
  3. Metamaterials and Architected Materials:
    Research on metamaterials and architected materials, emphasizing their unique mechanical properties and potential applications in engineering, is emerging as a significant area of study.
  4. Electro-Mechanical Coupling:
    There is a growing interest in the coupling of mechanical and electrical phenomena, particularly in smart materials and devices, indicating a trend towards multifunctional materials.
  5. Sustainability and Green Materials:
    Research focusing on sustainable materials and the mechanical behavior of biodegradable and eco-friendly composites is increasingly prominent, aligning with global sustainability goals.

Declining or Waning

While the journal maintains its strength in solid mechanics, certain themes have shown a decline in frequency, reflecting shifts in research focus and emerging areas of interest.
  1. Traditional Material Testing Methods:
    There has been a noticeable decrease in publications focused solely on traditional material testing methods, as more researchers are now leaning towards computational and innovative modeling techniques.
  2. Static Analysis of Simple Structures:
    The emphasis on static analysis of simple structural systems appears to be waning, with a growing preference for dynamic, nonlinear, and complex structural analyses.
  3. Basic Elasticity Theory:
    Publications centered exclusively on classical elasticity theory are becoming less frequent as the field evolves to incorporate advanced topics like gradient elasticity and nonlocal theories.

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