Tire Science and Technology

Scope & Guideline

Innovating Materials for Tomorrow's Tires

Introduction

Welcome to your portal for understanding Tire Science and Technology, featuring guidelines for its aims and scope. Our guidelines cover trending and emerging topics, identifying the forefront of research. Additionally, we track declining topics, offering insights into areas experiencing reduced scholarly attention. Key highlights include highly cited topics and recently published papers, curated within these guidelines to assist you in navigating influential academic dialogues.
LanguageEnglish
ISSN0090-8657
PublisherTIRE SOC INC
Support Open AccessNo
CountryUnited States
TypeJournal
Convergefrom 1973 to 1980, 1985, from 1987 to 2022
AbbreviationTIRE SCI TECHNOL / Tire Sci. Technol.
Frequency4 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
Address2851 S PARKER RD, STE 560, AURORA, CO 80014

Aims and Scopes

The journal 'Tire Science and Technology' focuses on advancing the understanding and technology of tires through rigorous research and innovative methodologies. It encompasses a wide range of topics related to tire performance, materials, and applications, aiming to bridge the gap between theoretical models and practical implementations in tire engineering.
  1. Tire Performance and Dynamics:
    Research addressing the dynamic behavior of tires under various conditions, including cornering, rolling resistance, and traction, focusing on how these factors influence vehicle performance.
  2. Material Science and Engineering:
    Investigations into the materials used in tire manufacturing, including the study of rubber compounds, fillers, and their impact on the mechanical properties and longevity of tires.
  3. Modeling and Simulation Techniques:
    Development and application of computational models and simulations to predict tire behavior, including finite element analysis and numerical modeling to understand tire mechanics.
  4. Intelligent Tire Technologies:
    Exploration of smart tire technologies that integrate sensors and data analytics for enhanced vehicle performance and safety, including applications in driving assistance systems.
  5. Environmental Impact and Sustainability:
    Research on tire wear and its environmental implications, including studies on emissions from tire wear particles and the development of eco-friendly tire materials.
The journal reflects emerging trends in tire science and technology, showcasing a shift toward more integrated, data-driven approaches to tire performance and sustainability. Recent publications highlight innovative methodologies and applications that are gaining traction in the field.
  1. Emission Prediction and Environmental Impact:
    Recent studies are increasingly focused on predicting tire wear particle emissions and understanding their environmental impact, highlighting a growing concern for sustainability in tire technology.
  2. Advanced Computational Modeling:
    There is a noticeable trend towards the use of sophisticated computational models, including finite element analysis and numerical simulations, to predict tire performance and behavior under various conditions.
  3. Integration of Intelligent Technologies:
    The rise of intelligent tire technologies is a significant theme, with research focusing on the integration of sensors and data analytics to enhance tire performance, safety, and vehicle dynamics.
  4. Sustainability and Eco-friendly Materials:
    Research into sustainable tire materials and the reduction of environmental impacts is on the rise, reflecting a broader industry trend towards environmentally responsible practices.
  5. Dynamic Interaction Studies:
    Emerging research is delving deeper into the dynamic interactions between tires and various surfaces, including the effects of different road conditions on tire performance and behavior.

Declining or Waning

As the journal evolves, certain themes that were once prominent are becoming less frequent in recent publications. This shift may reflect changing priorities in research focus or advancements in technology that render previous topics less relevant.
  1. Traditional Tire Testing Methods:
    Research centered on conventional methods of tire testing and evaluation is declining as newer, more sophisticated techniques and technologies emerge, such as intelligent tire systems and virtual simulations.
  2. Basic Tire Design without Advanced Materials:
    Studies focusing solely on traditional tire designs without the incorporation of advanced materials or innovative construction techniques are waning, as the industry shifts towards more complex and high-performance tire solutions.
  3. General Tire Wear Studies without Specific Applications:
    Papers that merely outline tire wear characteristics without connecting them to practical applications or advanced modeling techniques are becoming less common, as the field emphasizes the importance of application-oriented research.

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