智慧材料将塑造汽车产业的未来:技术成长机会
市场调查报告书
商品编码
1408104

智慧材料将塑造汽车产业的未来:技术成长机会

Smart Materials Driving the Future of the Automotive Industry-Technology Growth Opportunities

出版日期: | 出版商: Frost & Sullivan | 英文 107 Pages | 商品交期: 最快1-2个工作天内

价格
简介目录

对安全、能源效率和增强性能的需求推动了导电材料和智慧嵌装玻璃的采用

智慧材料因其独特的特性、提高性能的能力以及消费者对自适应响应的期望而在多个领域变得越来越重要。这些先进材料具有刺激响应性,将在汽车产业的变革中发挥关键作用。近年来,由于传统汽车向整合先进功能的电动车和自动联网汽车的转变,智慧嵌装玻璃技术和导电材料在汽车行业的采用有所增加。然而,这些技术价格昂贵,目前仅限于豪华和高端汽车。

本报告重点介绍了汽车行业中普及的智慧材料的具体类型、成长动力和抑制因素、关键绩效指标以及活跃的行业相关人员。它还着重于各行业公司的产品开发和行业措施,以加强商业化前景,以应对不断增长的市场需求。汽车产业不断探索这一领域的新可能性。 IP 在不断的压力下不断发展,以具有竞争力的价格满足环境标准、改进的美观性和更高的性能要求。汽车产业的进步为智慧材料提供了光明的成长机会。

目录

战略问题

  • 推动汽车产业智慧材料发展的策略要务 8(TM) 因素
  • The Strategic Imperative 8(TM)
  • 主要策略目标对汽车产业智慧材料的影响
  • 成长机会推动Growth Pipeline Engine(TM)
  • 调查方法

成长机会分析

  • 智慧材料简介及其在汽车产业的需求
  • 传统材料与智慧材料的比较
  • 智慧材料製造技术
  • 生长促进因子
  • 成长抑制因素
  • 分析范围
  • 调查类别
  • 研究领域技术的定义

技术分析:智慧嵌装玻璃

  • 智慧嵌装玻璃技术概述
  • 嵌装玻璃技术中使用的材料
  • 主动智慧嵌装玻璃比较分析
  • 被动式智慧嵌装玻璃比较分析
  • 汽车产业的智慧嵌装玻璃
  • 智慧嵌装玻璃关键绩效指标
  • 积极开发汽车产业智慧嵌装玻璃技术的主要相关人员
  • 大学致力于汽车应用智慧嵌装玻璃技术
  • OEM积极开发汽车产业智慧嵌装玻璃
  • 采用智慧嵌装玻璃材质的步骤
  • 汽车产业智慧嵌装玻璃的研究、开发和商业化的伙伴关係和协作
  • 产业努力将汽车产业的智慧嵌装玻璃商业化
  • 汽车产业的智慧嵌装玻璃- Frost & Sullivan的观点
  • 汽车产业的智慧嵌装玻璃技术—比较视角

技术分析:导电材料

  • 导电材料概述
  • 汽车工业中的导电材料
  • 各种材料和应用的製造方法
  • 导热材料关键性能指标
  • 导热材料在汽车领域的主要应用
  • 积极开发汽车产业导热材料的主要相关人员
  • 汽车业导热材料新开发
  • 汽车领域电活性材料的关键性能指标
  • 电活性材料在汽车领域的主要应用
  • 为汽车产业开发电活性材料的主要相关人员
  • 汽车产业电活性材料的新开发
  • 致力于开发汽车电活性材料的大学
  • OEM积极开发汽车产业导电材料
  • 采用导电材料的步骤
  • 汽车产业导电材料研究、开发和商业化的伙伴关係和协作
  • 汽车产业的导电材料:Frost & Sullivan 的观点
  • 汽车产业导电材料对比展望

汽车产业智慧材料智慧财产权分析

  • 2019年至2023年专利申请状况*:汽车产业的智慧材料
  • 2019年至2023年专利申请趋势*:汽车产业的智慧嵌装玻璃
  • 2019年至2023年专利申请趋势*:汽车产业导电材料

成长机会宇宙

  • 成长机会 1:透过降低智慧嵌装玻璃的製造成本来提高商业普及
  • 成长机会 2:智慧嵌装玻璃和导电材料回收策略,以提高永续性和循环性
  • 成长机会三:产业应探索先进智慧材料取代传统材料的可能性

附录

  • 定义汽车产业智慧嵌装玻璃技术的标准
  • 汽车业导电材料标准定义
  • 技术成熟度等级 (TRL):说明

下一步

简介目录
Product Code: DAC8

The Need for Enhancing Safety, Energy Efficiency, and Performance Drives the Adoption of Conductive Materials and Smart Glazing

Smart materials are acquiring great importance in several fields thanks to their unique properties, ability to enhance performance, and consumer expectations about adaptive responses. These advanced materials are stimuli-responsive and will play a crucial role in revolutionizing the automotive industry. The adoption of smart glazing technologies and conducting materials in the automotive industry has increased in recent times with the transition from traditional vehicles to electric or autonomous connected vehicles integrated with advanced features. However, these technologies are expensive and currently limited to only luxury or high-end cars.

This report focuses on specific types of smart materials that are gaining traction in the automotive industry, growth and restraint factors, key performance indicators, and active stakeholders in the industry. The report also focuses on product developments belonging to various industry players and industry measures to enhance commercialization prospects in view of the growing market demand. The automotive industry continues to explore new possibilities in this field-its IP evolves under constant pressure to meet environmental standards, improvised aesthetics, and higher performance demands for competitive pricing. The automotive industry's advancement provides brilliant growth opportunities for smart materials.

Table of Contents

Strategic Imperatives

  • The Strategic Imperative 8™Factors Creating Pressure on Growth in Smart Materials in Automotive Industry
  • The Strategic Imperative 8™
  • The Impact of the Top 3 Strategic Imperatives of Smart Materials in the Automotive Industry
  • Growth Opportunities Fuel the Growth Pipeline Engine™
  • Research Methodology

Growth Opportunity Analysis

  • An Introduction to Smart Materials and the Need for Them in the Automotive Industry
  • Comparison between Traditional Materials and Smart Materials
  • Manufacturing Techniques for Smart Materials
  • Growth Drivers
  • Growth Restraints
  • Scope of Analysis
  • Research Segmentation
  • Definitions of the Technologies in the Research Segmentation

Technology Analysis: Smart Glazing

  • Overview of Smart Glazing Technology
  • Materials Used for Glazing Technologies
  • Comparative Analysis of Active Smart Glazing
  • Comparative Analysis of Passive Smart Glazing
  • Smart Glazing in the Automotive Industry
  • Key Performance Indicators of Smart Glazing
  • Key Stakeholders Active in Developing Smart Glazing Technology for the Automotive Industry
  • Universities Working on Smart Glazing Technologies for Automotive Applications
  • OEMs Active in Developing Smart Glazing for the Automotive Industry
  • Steps to the Adoption of Smart Glazing Materials
  • Partnerships and Collaborations for the R&D and Commercialization of Smart Glazing for the Automotive Industry
  • Industry Efforts for the Commercialization of Smart Glazing for the Automotive Industry
  • Smart Glazing in the Automotive Industry-Frost & Sullivan Perspective
  • Smart Glazing Technologies in the Automotive Industry-A Comparative Outlook

Technology Analysis: Conducting Materials

  • Overview of Conducting Materials
  • Conducting Materials in the Automotive Industry
  • Manufacturing Methods for Different Materials and Applications
  • Key Performance Indicators of Thermally Conductive Materials
  • Key Applications of Thermally Conducting Materials in the Automotive Sector
  • Key Stakeholders Active in Developing Thermally Conductive Materials for the Automotive Industry
  • New Companies Developing Thermally Conducting Materials for the Automotive Industry
  • Key Performance Indicators of Electrically Active Materials in the Automotive Sector
  • Key Applications of Electrically Active Materials in the Automotive Sector
  • Key Stakeholders Developing Electrically Active Materials for the Automotive Industry
  • New Companies Developing Electrically Active Materials for the Automotive Industry
  • Universities Working on Electrically Active Materials for Automotive Applications
  • OEMs Active in Developing Conducting Materials for the Automotive Industry
  • Steps to the Adoption of Conducting Materials
  • Partnerships and Collaborations for the R&D and Commercialization of Conducting Materials for the Automotive Industry
  • Conducting Materials in the Automotive Industry-Frost & Sullivan Perspective
  • Conducting Materials in the Automotive Industry-A Comparative Outlook

Smart Materials in Automotive Industry: IP Analysis

  • Patent Filing Activity from 2019 to 2023*: Smart Materials in the Automotive Industry
  • Patent Filing Activity from 2019 to 2023*: Smart Glazing in the Automotive Industry
  • Patent Filing Activity from 2019 to 2023*: Conducting Materials in the Automotive Industry

Growth Opportunity Universe

  • Growth Opportunity 1: Reducing the Manufacturing Costs of Smart Glazing to Improve the Commercial Adoption
  • Growth Opportunity 2: Recycling Strategies of Smart Glazing and Conducting Materials for Improved Sustainability and Circularity
  • Growth Opportunity 3: Industries Should Explore the Feasibility of Replacing Traditional Materials with Advanced Smart Materials

Appendix

  • Definitions of Criteria for Smart Glazing Technologies in the Automotive Industry
  • Definitions of Criteria for Conducting Materials in the Automotive Industry
  • Technology Readiness Levels (TRL): Explanation

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