Product Code: AVM198B
The global market for advanced materials for extreme environments reached $3.2 billion in 2023. This market is expected to grow from $3.4 billion in 2024 to $4.5 billion by 2029, at a compound annual growth rate (CAGR) of 5.8% from 2024 to 2029.
The North American market for advanced materials for extreme environments is expected to grow from $1.4 billion in 2024 to $1.9 billion by 2029, at a CAGR of 6.5% from 2024 to 2029.
The Asia-Pacific market for advanced materials for extreme environments is expected to grow from $1.1 billion in 2024 to $1.4 billion by 2029, at a CAGR of 6.2% from 2024 to 2029.
Report Scope
This report covers the global market for advanced materials for extreme environments. The key properties of advanced materials, namely, hardness, lightweight, neutron shielding, wear-resistance, corrosion-resistance, thermal conductivity, electrical insulation and dimensional stability at high temperatures, make them desirable for use in extreme environments. Because they deliver performance, safety and durability, various industry and government standards require the use of advanced materials.
For this analysis, the global advanced materials for extreme environments market is segmented by the following metrics:
- Material type (MAX phase ceramics, ultra high-temperature ceramics, high-entropy material).
- Composition (nitrides, borides, carbides).
- Form (monoliths and composites).
- Application (components and coating).
- End-use industries (aerospace & defense, industrial, energy, others).
- Region (North America, Asia-Pacific, Europe and Rest of the World).
Estimated values are based on manufacturers' total revenues. Projected revenue values are in constant U.S. dollars, unadjusted for inflation. The report also contains comprehensive profiles of companies in the advanced materials' market.
Report Includes
- 130 data tables and 45 additional tables
- An analysis of the global market for advanced ceramic materials for extreme environments
- Analyses of global market trends, with market revenue data for 2023, estimates for 2024, forecast for 2028, and projected CAGRs through 2029
- Estimates of the market size and revenue growth prospects of the global market, along with a market share analysis by material type, composition, form, application, end-use industry, and region
- Facts and figures pertaining to the market dynamics, technical advances, regulations, innovations, and the impact of macroeconomic factors
- Identification of the ceramic composite materials under development, their current status, and increased investments in the aerospace and defense and energy sectors driving the growth
- An analysis of patents, emerging trends and new developments in the industry
- Analysis of the industry structure, including companies' market shares and global rankings, strategic alliances, M&A activity and a venture funding outlook
- Overview of sustainability trends and ESG developments, with emphasis on consumer attitudes, and the ESG scores and practices of leading companies
- Profiles of the leading companies, including General Electric Co., Saint-Gobain, 3M, Kyocera Corp., and Denka Company Ltd.
Table of Contents
Chapter 1 Executive Summary
- Market Outlook
- Scope of Report
- Market Summary
Chapter 2 Market Overview
- Market Definition
- Factors Affecting the Selection of Advanced Materials for Extreme Environments
- Importance of the Advanced Materials for Extreme Environments
Chapter 3 Market Dynamics
- Market Dynamics Snapshot
- Drivers
- Growing Government Investment in Defense
- Increased Demand in Aerospace
- Restraints
- Customization Required for Specific Applications
- Issues Related to Recycling and Reparability
- Opportunities
- Innovations in Material Science
- Replacement of Conventional Materials with Advanced Material
- Challenges
- Strict Government Regulations for the Advanced Materials
- Higher Production Cost
Chapter 4 Regulatory Landscape
- Regulatory Bodies in the Advanced Materials for Extreme Environments Market
Chapter 5 Emerging Technologies and Developments
- Overview
- Newest Technologies
- Artificial Intelligence and Machine Learning
- Development of Carbon Nanotubes
- Pricing Analysis
Chapter 6 Supply Chain Analysis
- Overview
- Manufacturer Phase
- Sales Phase
Chapter 7 Market Segmentation Analysis
- Overview
- Segmentation Breakdown
- Market Analysis, by Material Type
- Ultra-High Temperature Ceramic (UHTC)
- MAX Phase Ceramics
- High-Entropy Material
- Market Analysis, by Composition
- Nitrides
- Borides
- Carbides
- Market Analysis, by Form
- Composites
- Monoliths
- Market Analysis, by Application
- Components
- Coatings
- Market Analysis, by End-Use Industries
- Aerospace and Defense
- Industrial
- Energy
- Others
- Geographic Breakdown
- Market Analysis, by Region
- North America
- Asia-Pacific
- Europe
- Rest of the World
Chapter 8 Competitive Intelligence
- Introduction
- Advanced Materials for Extreme Environments Market: Company Ranking
- Strategic Analysis
Chapter 9 Sustainability in Advanced Materials for Extreme Environments: An ESG Perspective
- Importance of ESG in the Advanced Materials for Extreme Environments Market
- ESG Practices in the Advanced Materials for Extreme Environments Market
- Current Status of ESG in the Advanced Materials for Extreme Environments Market
- Risk Scale, Exposure Scale and Management Scale
- Future of ESG: Emerging Trends and Opportunities
- Designing Advanced Materials with Fewer Elements
- Concluding Remarks from BCC
Chapter 10 Appendix
- Methodology
- Information Sources
- Abbreviations
- References
- Company Profiles
- 3M
- ABLE TARGET LTD.
- ADVANCED CERAMIC MATERIALS
- ATLANTIC EQUIPMENT ENGINEERS
- COORSTEK INC.
- DENKA CO. LTD.
- GENERAL ATOMICS
- GENERAL ELECTRIC CO.
- INNOVACERA
- JILIN 11 TECHNOLOGY CO. LTD.
- KENNAMETAL INC.
- KYOCERA CORP.
- PLANSEE SE
- SAINT-GOBAIN
- STANFORD ADVANCED MATERIALS