High Temperature Insulation Materials Market: Global Market Estimation, Dynamics, Regional Share, Trends, Competitor Analysis (2017-2021) and Forecast (2022-2028)

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High Temperature Insulation Materials Market:  By Material Type (Ceramic Fibers, Insulating Firebricks, Calcium Silicate, Others), By Temparature Range (600oC – 1100oC, 1100 oC – 1500 oC, 1500 oC – 1700 oC, 1700 oC and above temperature Range), By End Users (Petrochemical, Ceramics, Glass, Aluminum, Iron & Steel, Cement, Refractory, Powder , Metallurgy, Others) and Geography

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Report

Description

The High-Temperature Insulation Materials Market size is valued at USD 6,381.6 million in 2021 and is expected to grow at a significant CAGR of 7.2% during the forecast period from 2022 to 2028. The global market provides a detailed overview of the market and that can be segmented By Material Type, Temperature Range, End Users. By material type, the High-temperature insulation materials market has been segmented into Grid Ceramic Fibers, Insulating Firebricks, Calcium Silicate, and Others. The Ceramic Fibers segment is likely to be the largest and fastest-growing segment in terms of material type. Based on temperature range, the high-temperature insulation materials market is segmented into 600oC – 1100oC, 110oC – 1500oC, 1500oC – 1700oC, 1700oC and above temperature Range.  Among these, the 600oC – 1100oC segment is expected to have the fastest-growing market during the forecast period 2022-2028. Based on end users, the high temperature insulation materials market is segmented into Petrochemical, Ceramics, Glass, Aluminum, Iron & Steel, Cement, Refractory, Powder, Metallurgy, Others. Petrochemical is expected to grow at the highest CAGR over the forecast years according to Precision Business Insights.

Key Development:

In June 2022, Emera Technologies Limited, a subsidiary of Emera Inc. and NOVONIX Limited delivered their first-of-its-kind, custom-designed high-temperature insulation materials battery prototype

 

High Temperature Insulation Materials Market

MARKET SUMMARY
-
7.2%
  • Study Period– 2022 – 2028
  • Base Year– 2021
  • CAGR– 7.2%
  • Largest Market– North America
  • Fastest Growing Market–  Asia-Pacific

High Temperature Insulation Materials Market

  • The global high temperature insulation materials market report gives comprehensive outlook across the globe with special emphasis on key regions such as North America, Europe, Asia Pacific, Latin America, and Middle East and Africa.
  • The high temperature insulation materials market report gives historical, current, and future market sizes (US$ Mn) based on by material, temperature, end user and geography.
Key Players
  • ETEX
  • Calderys
  • Unifrax
  • Almatis
  • Pyrotek
High Temperature Insulation Materials Market Drivers

Rapid industrialization across the globe is one of the key factors driving the growth of the market. Rising environmental concerns regarding the depletion of traditional sources of energy is also drive the growth of market.


Asia-Pacific Got Significant Share

High Temperature Insulation Materials Market

By region, the Asia Pacific market is expected to witness highest market share during the forecast period. increase in the demand from end user industries coupled with development of new products by the market players in the region.

Latin America
Latin-America
North-America
North-America
Europe
Europe
Asia Pacific
Asia-Pacific
Middle East
Middle East

Key

Features of the Report

  • The high temperature insulation materials market report provides granular level information about the market size, regional market share, historic market (2017-2021) and forecast (2022-2028)
  • The report covers in-detail insights about the competitor’s overview, company share analysis, key market developments, and their key strategies
  • The report outlines drivers, restraints, unmet needs, and trends that are currently affecting the market
  • The report tracks recent innovations, key developments, and start-up details that are actively working in the market
  • The report provides a plethora of information about market entry strategies, regulatory framework, and reimbursement scenario
High Temperature Insulation Materials Market Segmentation


Location

GEOGRAPHY

Frequently Asked Questions

The high temperature insulation materials market is projected to expand at a CAGR of 7.2% during the forecast period.

The major players in the global High Temperature Insulation Materials market are Morgan Advanced Materials, Luyang Energy-Saving Materials Co., LTD, RHI Magnesita GmbH, Mitsubishi Chemical Holdings Corporation, 3M, Isolite Insulating Products Co, LTD, ETEX, Calderys, Unifrax, Almatis, Bnz Materials, Pyrotek, Cotronics Corporation, Adl Insulflex Inc, Insulcon Group, M.E. Schupp Industriekeramik GmbH, Skamol A/S, Ibiden Co. LTD, Pacor, Inc.

Asia Pacific is the fastest-growing region for high temperature insulation materials market


Report

Table Of Content

1. Executive Summary
2. Global High Temperature Insulation Materials Market Introduction
2.1. Global High Temperature Insulation Materials Market – Taxonomy
2.2. Global High Temperature Insulation Materials Market –Definitions
2.2.1. By Material Type
2.2.2. By Temparature Range
2.2.3. By End Users
3. Global High Temperature Insulation Materials Market Dynamics
3.1. Drivers
3.2. Restraints
3.3. Opportunities/Unmet Needs of the Market
3.4. Trends
3.5. Global High Temperature Insulation Materials Market Dynamic Factors – Impact Analysis
3.6. Global High Temperature Insulation Materials Market – Competition Landscape
4. Global High Temperature Insulation Materials Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028
4.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
4.2. Year-over-Year (Y-o-Y) Growth Analysis (%)
4.3. Market Opportunity Analysis
5. Global High Temperature Insulation Materials Market, By Material Type, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
5.1. Ceramic Fibers
5.1.1. Refractory Ceramic Fiber (RCF)
5.1.1.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
5.1.1.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
5.1.1.3. Market Opportunity Analysis
5.1.2. Low Biopersistent Ceramic Fibers
5.1.2.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
5.1.2.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
5.1.2.3. Market Opportunity Analysis
5.1.3. Polycrystalline Ceramic Fibers
5.1.3.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
5.1.3.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
5.1.3.3. Market Opportunity Analysis
5.2. Insulating Firebricks
5.2.1. Acidic Refractory Bricks
5.2.1.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
5.2.1.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
5.2.1.3. Market Opportunity Analysis
5.2.2. Neutral Refractory Bricks
5.2.2.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
5.2.2.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
5.2.2.3. Market Opportunity Analysis
5.2.3. Basic Refractory Bricks
5.2.3.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
5.2.3.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
5.2.3.3. Market Opportunity Analysis
5.3. Calcium Silicate
5.3.1. Lightweight Calcium Silicate
5.3.1.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
5.3.1.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
5.3.1.3. Market Opportunity Analysis
5.3.2. Medium Dense Calcium Silicate
5.3.2.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
5.3.2.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
5.3.2.3. Market Opportunity Analysis
5.3.3. Dense Calcium Silicate
5.3.3.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
5.3.3.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
5.3.3.3. Market Opportunity Analysis
5.4. Others (Perlite, Vermiculture, and Microporus Material)
5.4.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
5.4.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
5.4.3. Market Opportunity Analysis
6. Global High Temperature Insulation Materials Market Forecast, By Temperature Range, 2017 – 2021 and Forecast, 2022 – 2028
6.1. 600OC – 1100 OC
6.1.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
6.1.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
6.1.3. Market Opportunity Analysis
6.2. 1100 OC – 1500 OC
6.2.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
6.2.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
6.2.3. Market Opportunity Analysis
6.3. 1500 OC – 1700 OC
6.3.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
6.3.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
6.3.3. Market Opportunity Analysis
6.4. 1700 OC and above temperature Range
6.4.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
6.4.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
6.4.3. Market Opportunity Analysis
7. Global High Temperature Insulation Materials Market Forecast, By End Use, 2017 – 2021 and Forecast, 2022 – 2028
7.1. Petrochemical
7.1.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
7.1.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
7.1.3. Market Opportunity Analysis
7.2. Ceramics
7.2.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
7.2.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
7.2.3. Market Opportunity Analysis
7.3. Glass
7.3.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
7.3.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
7.3.3. Market Opportunity Analysis
7.4. Aluminum
7.4.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
7.4.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
7.4.3. Market Opportunity Analysis
7.5. Iron & Steel
7.5.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
7.5.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
7.5.3. Market Opportunity Analysis
7.6. Cement
7.6.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
7.6.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
7.6.3. Market Opportunity Analysis
7.7. Refractory
7.7.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
7.7.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
7.7.3. Market Opportunity Analysis
7.8. Powder Metallurgy
7.8.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
7.8.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
7.8.3. Market Opportunity Analysis
7.9. Others
7.9.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
7.9.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
7.9.3. Market Opportunity Analysis
8. Global High Temperature Insulation Materials Market Forecast, By Region, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
8.1. North America
8.1.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
8.1.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
8.1.3. Market Opportunity Analysis
8.2. Europe
8.2.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
8.2.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
8.2.3. Market Opportunity Analysis
8.3. Asia-Pacific
8.3.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
8.3.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
8.3.3. Market Opportunity Analysis
8.4. Latin America
8.4.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
8.4.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
8.4.3. Market Opportunity Analysis
8.5. Middle East and Africa
8.5.1. Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
8.5.2. Year-over-Year (Y-o-Y) Growth Analysis (%) and Market Share Analysis (%)
8.5.3. Market Opportunity Analysis
8.6. Global High Temperature Insulation Materials Market – Opportunity Analysis Index, By Material Type, End User, and Region, 2022 – 2028
9. North America High Temperature Insulation Materials Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
9.1. Material Type Analysis 2017 – 2021 and Forecast 2022 – 2028  by Revenue (USD Mn), Y-o-Y Growth (%), and Market Share (%)
9.1.1. Ceramic Fibers
9.1.1.1. Refractory Ceramic Fiber (RCF)
9.1.1.2. Low Biopersistent Ceramic Fibers
9.1.1.3. Polycrystalline Ceramic Fibers
9.1.2. Insulating Firebricks
9.1.2.1. Acidic Refractory Bricks
9.1.2.2. Neutral Refractory Bricks
9.1.2.3. Basic Refractory Bricks
9.1.3. Calcium Silicate
9.1.3.1. Lightweight Calcium Silicate
9.1.3.2. Medium Dense Calcium Silicate
9.1.3.3. Dense Calcium Silicate
9.1.4. Others (Perlite, Vermiculture, and Microporus Material)
9.2. Temperature Range Analysis 2017 – 2021 and Forecast 2022 – 2028 by Revenue (USD Mn), Y-o-Y Growth (%) and Market Share (%)
9.2.1. 6000C – 11000C
9.2.2. 1100 0C – 1500 0C
9.2.3. 15000C – 17000C
9.2.4. 1700 0C and above temperature Range
9.3. End User Analysis 2017 – 2021 and Forecast 2022 – 2028 by Revenue (USD Mn), Y-o-Y Growth (%) and Market Share (%)
9.3.1. Petrochemical
9.3.2. Ceramics
9.3.3. Glass
9.3.4. Aluminum
9.3.5. Iron & Steel
9.3.6. Cement
9.3.7. Refractory
9.3.8. Powder
9.3.9. Metallurgy
9.3.10. Others
9.4. Country Analysis 2017 – 2021 and Forecast 2022 – 2028  by Revenue (USD Mn) Y-o-Y Growth (%) and Market Share (%)
9.4.1. U.S.
9.4.2. Canada
9.5. North America High Temperature Insulation Materials Market – Opportunity Analysis Index, By Material Type, Temperature Range, End User, and Country, 2022 – 2028
9.6. North America High Temperature Insulation Materials Market Dynamics – Trends
10. Europe High Temperature Insulation Materials Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
10.1. Material Type Analysis 2017 – 2021 and Forecast 2022 – 2028  by Revenue (USD Mn), Y-o-Y Growth (%), and Market Share (%)
10.1.1. Ceramic Fibers
10.1.1.1. Refractory Ceramic Fiber (RCF)
10.1.1.2. Low Biopersistent Ceramic Fibers
10.1.1.3. Polycrystalline Ceramic Fibers
10.1.2. Insulating Firebricks
10.1.2.1. Acidic Refractory Bricks
10.1.2.2. Neutral Refractory Bricks
10.1.2.3. Basic Refractory Bricks
10.1.3. Calcium Silicate
10.1.3.1. Lightweight Calcium Silicate
10.1.3.2. Medium Dense Calcium Silicate
10.1.3.3. Dense Calcium Silicate
10.1.4. Others (Perlite, Vermiculture, and Microporus Material)
10.2. Temperature Range Analysis 2017 – 2021 and Forecast 2022 – 2028 by Revenue (USD Mn), Y-o-Y Growth (%) and Market Share (%)
10.2.1. 600oC – 1100oC
10.2.2. 1100 oC – 1500 oC
10.2.3. 1500 oC – 1700 oC
10.2.4. 1700 oC and above temperature Range
10.3. End User Analysis 2017 – 2021 and Forecast 2022 – 2028 by Revenue (USD Mn), Y-o-Y Growth (%) and Market Share (%)
10.3.1. Petrochemical
10.3.2. Ceramics
10.3.3. Glass
10.3.4. Aluminum
10.3.5. Iron & Steel
10.3.6. Cement
10.3.7. Refractory
10.3.8. Powder
10.3.9. Metallurgy
10.3.10. Others
10.4. Country Analysis 2017 – 2021 and Forecast 2022 – 2028  by Revenue (USD Mn) Y-o-Y Growth (%) and Market Share (%)
10.4.1. Germany
10.4.2. UK
10.4.3. France
10.4.4. Spain
10.4.5. Italy
10.4.6. Russia
10.4.7. Poland
10.4.8. Rest of Europe
10.5. Europe High Temperature Insulation Materials Market – Opportunity Analysis Index, By Material Type, Temperature Range, End User, and Country, 2022 – 2028
10.6. Europe High Temperature Insulation Materials Market Dynamics – Trends
11. Asia-Pacific High Temperature Insulation Materials Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
11.1. Material Type Analysis 2017 – 2021 and Forecast 2022 – 2028  by Revenue (USD Mn), Y-o-Y Growth (%), and Market Share (%)
11.1.1. Ceramic Fibers
11.1.1.1. Refractory Ceramic Fiber (RCF)
11.1.1.2. Low Biopersistent Ceramic Fibers
11.1.1.3. Polycrystalline Ceramic Fibers
11.1.2. Insulating Firebricks
11.1.2.1. Acidic Refractory Bricks
11.1.2.2. Neutral Refractory Bricks
11.1.2.3. Basic Refractory Bricks
11.1.3. Calcium Silicate
11.1.3.1. Lightweight Calcium Silicate
11.1.3.2. Medium Dense Calcium Silicate
11.1.3.3. Dense Calcium Silicate
11.1.4. Others (Perlite, Vermiculture, and Microporus Material)
11.2. Temperature Range Analysis 2017 – 2021 and Forecast 2022 – 2028 by Revenue (USD Mn), Y-o-Y Growth (%) and Market Share (%)
11.2.1. 600oC – 1100oC
11.2.2. 1100 oC – 1500 oC
11.2.3. 1500 oC – 1700 oC
11.2.4. 1700 oC and above temperature Range
11.3. End User Analysis 2017 – 2021 and Forecast 2022 – 2028 by Revenue (USD Mn), Y-o-Y Growth (%) and Market Share (%)
11.3.1. Petrochemical
11.3.2. Ceramics
11.3.3. Glass
11.3.4. Aluminum
11.3.5. Iron & Steel
11.3.6. Cement
11.3.7. Refractory
11.3.8. Powder
11.3.9. Metallurgy
11.3.10. Others
11.4. Country Analysis 2017 – 2021 and Forecast 2022 – 2028  by Revenue (USD Mn) Y-o-Y Growth (%) and Market Share (%)
11.4.1. Japan
11.4.2. China
11.4.3. India
11.4.4. ASEAN
11.4.5. Australia & New Zealand
11.4.6. Rest of Asia-Pacific
11.5. Asia-Pacific High Temperature Insulation Materials Market – Opportunity Analysis Index, By Material Type, Temperature Range, End User, and Country, 2022 – 2028
11.6. Asia-Pacific High Temperature Insulation Materials Market Dynamics – Trends
12. Latin America High Temperature Insulation Materials Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Material Type Analysis 2017 – 2021 and Forecast 2022 – 2028  by Revenue (USD Mn), Y-o-Y Growth (%), and Market Share (%)
12.1. Material Type Analysis 2017 – 2021 and Forecast 2022 – 2028  by Revenue (USD Mn), Y-o-Y Growth (%), and Market Share (%)
12.1.1. Ceramic Fibers
12.1.1.1. Refractory Ceramic Fiber (RCF)
12.1.1.2. Low Biopersistent Ceramic Fibers
12.1.1.3. Polycrystalline Ceramic Fibers
12.1.2. Insulating Firebricks
12.1.2.1. Acidic Refractory Bricks
12.1.2.2. Neutral Refractory Bricks
12.1.2.3. Basic Refractory Bricks
12.1.3. Calcium Silicate
12.1.3.1. Lightweight Calcium Silicate
12.1.3.2. Medium Dense Calcium Silicate
12.1.3.3. Dense Calcium Silicate
12.1.4. Others (Perlite, Vermiculture, and Microporus Material)
12.2. Temperature Range Analysis 2017 – 2021 and Forecast 2022 – 2028 by Revenue (USD Mn), Y-o-Y Growth (%) and Market Share (%)
12.2.1. 600oC – 1100oC
12.2.2. 1100 oC – 1500 oC
12.2.3. 1500 oC – 1700 oC
12.2.4. 1700 oC and above temperature Range
12.3. End User Analysis 2017 – 2021 and Forecast 2022 – 2028 by Revenue (USD Mn), Y-o-Y Growth (%) and Market Share (%)
12.3.1. Petrochemical
12.3.2. Ceramics
12.3.3. Glass
12.3.4. Aluminum
12.3.5. Iron & Steel
12.3.6. Cement
12.3.7. Refractory
12.3.8. Powder
12.3.9. Metallurgy
12.3.10. Others
12.4. Country Analysis 2017 – 2021 and Forecast 2022 – 2028  by Revenue (USD Mn) Y-o-Y Growth (%) and Market Share (%)
12.4.1. Brazil
12.4.2. Mexico
12.4.3. Argentina
12.4.4. Rest of Latin America
12.5. Latin America High Temperature Insulation Materials Market – Opportunity Analysis Index, By Material Type, Temperature Range, End User, and Country, 2022 – 2028
12.6. Latin America High Temperature Insulation Materials Market Dynamics – Trends
13. Middle East and Africa High Temperature Insulation Materials Market Analysis, 2017 – 2021 and Forecast, 2022 – 2028 (Revenue, USD Mn)
13.1. Material Type Analysis 2017 – 2021 and Forecast 2022 – 2028  by Revenue (USD Mn), Y-o-Y Growth (%), and Market Share (%)
13.1.1. Ceramic Fibers
13.1.1.1. Refractory Ceramic Fiber (RCF)
13.1.1.2. Low Biopersistent Ceramic Fibers
13.1.1.3. Polycrystalline Ceramic Fibers
13.1.2. Insulating Firebricks
13.1.2.1. Acidic Refractory Bricks
13.1.2.2. Neutral Refractory Bricks
13.1.2.3. Basic Refractory Bricks
13.1.3. Calcium Silicate
13.1.3.1. Lightweight Calcium Silicate
13.1.3.2. Medium Dense Calcium Silicate
13.1.3.3. Dense Calcium Silicate
13.1.4. Others (Perlite, Vermiculture, and Microporus Material)
13.2. Temperature Range Analysis 2017 – 2021 and Forecast 2022 – 2028 by Revenue (USD Mn), Y-o-Y Growth (%) and Market Share (%)
13.2.1. 600oC – 1100oC
13.2.2. 1100 oC – 1500 oC
13.2.3. 1500 oC – 1700 oC
13.2.4. 1700 oC and above temperature Range
13.3. End User Analysis 2017 – 2021 and Forecast 2022 – 2028 by Revenue (USD Mn), Y-o-Y Growth (%) and Market Share (%)
13.3.1. Petrochemical
13.3.2. Ceramics
13.3.3. Glass
13.3.4. Aluminum
13.3.5. Iron & Steel
13.3.6. Cement
13.3.7. Refractory
13.3.8. Powder
13.3.9. Metallurgy
13.3.10. Others
13.4. Country Analysis 2017 – 2021 and Forecast 2022 – 2028 by Revenue (USD Mn) Y-o-Y Growth (%) and Market Share (%)
13.4.1. Gulf Cooperation Council (GCC) Countries
13.4.2. Israel
13.4.3. South Africa
13.4.4. Rest of MEA
13.5. MEA High Temperature Insulation Materials Market – Opportunity Analysis Index, By Material Type, Temperature Range, End User, and Country, 2022 – 2028
13.6. MEA High Temperature Insulation Materials Market Dynamics – Trends
14. Competition Landscape 
14.1. Strategic Dashboard of Top Market Players
14.2. Company Profiles (Introduction, Financial Analysis, Product Type & Service Offerings, Key Developments, Strategies, and SWOT Analysis)
14.2.1. Morgan Advanced Materials
14.2.2. Luyang Energy-Saving Materials Co., LTD.
14.2.3. RHI Magnesita GmbH
14.2.4. Mitsubishi Chemical Holdings Corporation
14.2.5. 3M
14.2.6. Isolite Insulating Products Co., LTD.
14.2.7. ETEX
14.2.8. Calderys
14.2.9. Unifrax
14.2.10. Almatis
14.2.11. Bnz Materials
14.2.12. Pyrotek
14.2.13. Cotronics Corporation
14.2.14. Adl Insulflex Inc.
14.2.15. Insulcon Group
14.2.16. M.E. Schupp Industriekeramik GmbH
14.2.17. Skamol A/S
14.2.18. Ibiden Co. LTD.
14.2.19. Pacor, Inc.
15.  Research Methodology
16. Key Assumptions and Acronyms

Report

Company Profile

  • Morgan Advanced Materials
  • Luyang Energy-Saving Materials Co., LTD.
  • RHI Magnesita GmbH
  • Mitsubishi Chemical Holdings Corporation
  • 3M
  • Isolite Insulating Products Co., LTD.
  • ETEX
  • Calderys
  • Unifrax
  • Almatis
  • Bnz Materials
  • Pyrotek
  • Cotronics Corporation
  • Adl Insulflex Inc.
  • Insulcon Group
  • M.E. Schupp Industriekeramik GmbH
  • Skamol A/S
  • Ibiden Co. LTD.
  • Pacor, Inc.

Description

The High-Temperature Insulation Materials Market size is valued at USD 6,381.6 million in 2021 and is expected to grow at a significant CAGR of 7.2% during the forecast period from 2022 to 2028. The global market provides a detailed overview of the market and that can be segmented By Material Type, Temperature Range, End Users. By material type, the High-temperature insulation materials market has been segmented into Grid Ceramic Fibers, Insulating Firebricks, Calcium Silicate, and Others. The Ceramic Fibers segment is likely to be the largest and fastest-growing segment in terms of material type. Based on temperature range, the high-temperature insulation materials market is segmented into 600oC – 1100oC, 110oC – 1500oC, 1500oC – 1700oC, 1700oC and above temperature Range.  Among these, the 600oC – 1100oC segment is expected to have the fastest-growing market during the forecast period 2022-2028. Based on end users, the high temperature insulation materials market is segmented into Petrochemical, Ceramics, Glass, Aluminum, Iron & Steel, Cement, Refractory, Powder, Metallurgy, Others. Petrochemical is expected to grow at the highest CAGR over the forecast years according to Precision Business Insights.

Key Development:

In June 2022, Emera Technologies Limited, a subsidiary of Emera Inc. and NOVONIX Limited delivered their first-of-its-kind, custom-designed high-temperature insulation materials battery prototype

 

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