INTERNATIONAL MATERIALS REVIEWS

Scope & Guideline

Unveiling Innovations in Metals and Alloys

Introduction

Delve into the academic richness of INTERNATIONAL MATERIALS REVIEWS 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
ISSN0950-6608
PublisherSAGE PUBLICATIONS INC
Support Open AccessNo
CountryUnited Kingdom
TypeJournal
Convergefrom 1987 to 2024
AbbreviationINT MATER REV / Int. Mater. Rev.
Frequency8 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
Address2455 TELLER RD, THOUSAND OAKS, CA 91320

Aims and Scopes

The journal 'INTERNATIONAL MATERIALS REVIEWS' aims to provide a comprehensive overview of advancements in materials science, focusing on both fundamental and applied research. It serves as a platform for disseminating extensive reviews on various materials, their properties, processing techniques, and applications across multiple fields.
  1. Materials Characterization and Properties:
    The journal emphasizes understanding the structural and mechanical properties of materials through various characterization techniques, including microstructural analysis and mechanical testing.
  2. Sustainable and Green Materials:
    There is a strong focus on environmentally friendly materials, including biodegradable polymers and natural fiber composites, reflecting the growing demand for sustainable solutions in materials science.
  3. Advanced Manufacturing Techniques:
    The journal covers innovative manufacturing methods such as additive manufacturing and laser processing, exploring how these techniques can enhance material properties and performance.
  4. Interdisciplinary Applications:
    Research published often intersects with fields like biomedical engineering, energy storage, and environmental science, showcasing the versatility of materials in addressing real-world challenges.
  5. Computational Modelling and Theoretical Studies:
    A significant portion of the research includes computational modeling to predict material behavior and performance, highlighting the integration of theory with practical applications.
The journal's publications reflect a dynamic evolution in materials research, with several themes gaining prominence. This section outlines the trending and emerging topics within the journal.
  1. Biomaterials and Medical Applications:
    There is an increasing focus on biomaterials, particularly for applications in tissue engineering and medical devices, emphasizing the need for materials that can interact safely and effectively with biological systems.
  2. Energy-Related Materials:
    Research on materials for energy applications, including thermoelectric materials and batteries, is trending, driven by the global need for sustainable energy solutions and efficient energy storage.
  3. Additive Manufacturing Innovations:
    The rise of additive manufacturing techniques has led to a surge in research exploring new materials and processes, particularly in the context of producing functionally graded and complex geometries.
  4. Smart Materials and AI Integration:
    There is a growing interest in smart materials that respond to environmental changes and the integration of artificial intelligence in materials design and testing, reflecting advancements in technology and materials science.
  5. Environmental and Recycling Technologies:
    Emerging themes include the development of materials that facilitate recycling and reduce environmental impact, aligning with global sustainability goals.

Declining or Waning

While the journal continues to cover a broad range of materials science topics, certain areas have seen a decline in publication frequency or relevance. This section highlights these waning themes.
  1. Traditional Alloy Studies:
    Research focusing purely on conventional alloys, such as basic steel or aluminum studies, has decreased, possibly due to the shift towards more innovative materials with advanced properties.
  2. Basic Polymer Studies:
    There is a noticeable decline in papers solely addressing basic polymer properties without application, as the focus has shifted towards applications in biomedicine and sustainable materials.
  3. Static Materials Analysis:
    The journal has seen fewer studies that do not incorporate dynamic or real-world testing of materials, indicating a move towards research that emphasizes practical applications and performance under various conditions.

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