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The global architectural fabrics market is expected to grow at a CAGR of 10.3% during the period 2022-2027.
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The global market for architectural fabrics is expected to grow as a result of growing popularity of textile facades due to the advantages they offer for temporary and permanent constructions. Fabric facades are a rapidly growing segment with significant scope for innovation. Also, with increasing concerns towards the environment, demand for lighter and environmentally friendly building materials has risen. North America and Europe are expected to be key markets.
Architectural fabrics refer to structural fabrics employed to create tensile surfaces, including canopies, roofs and other types of shelter. Architectural fabrics are kept in place by forces of tension applied by a structural framework, cabling system, internal air pressure or a combination of the aforementioned. Usually, the architectural fabric comprises a woven base cloth covered on both sides with an impervious polymer, and at times a sturdy topcoat. Architectural fabrics come in several varieties, including open weave fabrics and transparent foils.
Architectural fabrics are usually very fine (nearly 1mm thick) and carry low compressive strength, however, these fabrics have high tensile strength. Several types of material are used to manufacture architectural fabrics, some of which are listed below.
Cotton: One of the initial materials used to manufacture architectural fabric, cotton is used even today. While cotton is relatively cheap and comes in several colours, it carries low tensile strength as compared to other materials currently in use. It is also predisposed to contraction and staining. It is commonly used to erect smaller, temporary structures.
PVC Polyester: PVC coated polyester is a commonly employed architectural fabric. It is cost-effective, offers decent structural strength and translucence, and has a fair life expectancy. It be fastened with relative ease at the seams by welding. While PVC polyester may last over twenty years structurally, the plasticizers employed to make the PVC flexible tend to ooze to the surface, thus, the accepted life is generally ten to fifteen years. Application of topcoats may increase PVC polyester life to fifteen to twenty years. There have been concerns towards the environmental impact of PVC. But alternative solutions like polyolefin coated polyester have not given satisfactory fire resistance properties; fire retardants integrated into the coating led to decreased adhesion at the seams.
PVC Nylon: It has properties similar to PVC polyester, but less commonly used. However, it is employed to erect air-supported and air-inflated structures.
PTFE Glass: PTFE (polytetrafluoroethylene or ‘Teflon’) coated glass is tougher than PVC polyester, and lasts longer (over thirty years). It is, however, costlier and comparatively inelastic, and thus warrants more exact patterning. When new, PTFE is cream in colour, however, it turns white in sunlight and generally self-cleans if exposed to sunlight regularly.
Silicone Glass: Silicone is transparent, and glass coated with silicone has an expected life of up to fifty years. It exhibits good fire-resistant properties and low toxicity. However, it cannot be welded, thus, seaming warrants adhesives. Also, silicone is not easy to clean.
EFTE Foil: Ethylene tetrafluoroethylene (ETFE) is a comparatively transparent foil. Being comparatively light, it is employed as an alternative to glass. Single or multiple layers may be employed, and may be inflated to fashion large cushions.
The market is expected to expand as awareness of architectural fabrics increases among architects and clients. Currently, marketers are engaged in the creation of new divisions dedicated to promoting and selling innovative façade systems in addition to awnings, canopies and fabric structures. With more education and influence of owners, contractors and architects, the market is likely to see expansion.
Architectural fabric is flexible and highly alterable. While it functions well as a temporary or short-term solution, it is an added advantage that it can be changed or modified easily if building or construction plans change in the short to medium term. It is also cost-effective. Architectural fabrics are also expected to play a key role in adaptable office spaces, where structures might need to be changed or rotated at periodic intervals.
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By type, the market is segmented into:
By application, the market is divided into:
By region, the market is classified into:
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The report presents a detailed analysis of the following key players in the market, looking into their capacity, and latest developments like capacity expansions, plant turnarounds, and mergers and acquisitions:
The EMR report gives an in-depth insight into the industry by providing a SWOT analysis as well as an analysis of Porter’s Five Forces model.
REPORT FEATURES | DETAILS |
---|---|
Base Year | 2021 |
Historical Period | 2017-2021 |
Forecast Period | 2022-2027 |
Scope of the Report | Historical and Forecast Trends, Industry Drivers and Constraints, Historical and Forecast Market Analysis by Segment- Type, Application, Region |
Breakup by Type | ETFE, PTFE, PVC, Others |
Breakup by Application | Canopies and Awnings, Facades, Roofing, Tensile Architecture, Others |
Breakup by Region | North America, Europe, Asia Pacific, Latin America, Middle East and Africa |
Market Dynamics | SWOT, Porter's Five Forces, Key Indicators for Price and Demand |
Competitive Landscape | Market Structure, Company Profiles- Company Overview, Product Portfolio, Demographic Reach and Achievements, Certifications |
Companies Covered | Saint Gobain, Sioen Industries NV, Low and Bonar, Serge Ferrari, Sattler AG, Taiyo Kogyo Corporation, Others |
Report Price and Purchase Option | Explore our purchase options that are best suited to your resources and industry needs. |
Delivery Format | Delivered as an attached PDF and Excel through email, with an option of receiving an editable PPT, according to the purchase option. |
*We at Expert Market Research always thrive to give you the latest information. The numbers in the article are only indicative and may be different from the actual report.
1 Preface
2 Report Coverage – Key Segmentation and Scope
3 Report Description
3.1 Market Definition and Outlook
3.2 Properties and Applications
3.3 Market Analysis
3.4 Key Players
4 Key Assumptions
5 Executive Summary
5.1 Overview
5.2 Key Drivers
5.3 Key Developments
5.4 Competitive Structure
5.5 Key Industrial Trends
6 Snapshot
6.1 Global
6.2 Regional
7 Industry Opportunities and Challenges
8 Global Architectural Fabrics Market Analysis
8.1 Key Industry Highlights
8.2 Global Architectural Fabrics Historical Market (2017-2021)
8.3 Global Architectural Fabrics Market Forecast (2022-2027)
8.4 Global Architectural Fabrics Market by Type
8.4.1 ETFE
8.4.1.1 Market Share
8.4.1.2 Historical Trend (2017-2021)
8.4.1.3 Forecast Trend (2022-2027)
8.4.2 PTFE
8.4.2.1 Market Share
8.4.2.2 Historical Trend (2017-2021)
8.4.2.3 Forecast Trend (2022-2027)
8.4.3 PVC
8.4.3.1 Market Share
8.4.3.2 Historical Trend (2017-2021)
8.4.3.3 Forecast Trend (2022-2027)
8.4.4 Others
8.5 Global Architectural Fabrics Market by Application
8.5.1 Canopies and Awnings
8.5.1.1 Market Share
8.5.1.2 Historical Trend (2017-2021)
8.5.1.3 Forecast Trend (2022-2027)
8.5.2 Facades
8.5.2.1 Market Share
8.5.2.2 Historical Trend (2017-2021)
8.5.2.3 Forecast Trend (2022-2027)
8.5.3 Roofing
8.5.3.1 Market Share
8.5.3.2 Historical Trend (2017-2021)
8.5.3.3 Forecast Trend (2022-2027)
8.5.4 Tensile Architecture
8.5.4.1 Market Share
8.5.4.2 Historical Trend (2017-2021)
8.5.4.3 Forecast Trend (2022-2027)
8.5.5 Others
8.6 Global Architectural Fabrics Market by Region
8.6.1 Market Share
8.6.1.1 North America
8.6.1.2 Europe
8.6.1.3 Asia Pacific
8.6.1.4 Latin America
8.6.1.5 Middle East and Africa
9 Regional Analysis
9.1 North America
9.1.1 Historical Trend (2017-2021)
9.1.2 Forecast Trend (2022-2027)
9.1.3 Breakup by Country
9.1.3.1 United States of America
9.1.3.2 Canada
9.2 Europe
9.2.1 Historical Trend (2017-2021)
9.2.2 Forecast Trend (2022-2027)
9.2.3 Breakup by Country
9.2.3.1 United Kingdom
9.2.3.2 Germany
9.2.3.3 France
9.2.3.4 Italy
9.2.3.5 Others
9.3 Asia Pacific
9.3.1 Historical Trend (2017-2021)
9.3.2 Forecast Trend (2022-2027)
9.3.3 Breakup by Country
9.3.3.1 China
9.3.3.2 Japan
9.3.3.3 India
9.3.3.4 ASEAN
9.3.3.5 Australia
9.3.3.6 Others
9.4 Latin America
9.4.1 Historical Trend (2017-2021)
9.4.2 Forecast Trend (2022-2027)
9.4.3 Breakup by Country
9.4.3.1 Brazil
9.4.3.2 Argentina
9.4.3.3 Mexico
9.4.3.4 Others
9.5 Middle East and Africa
9.5.1 Historical Trend (2017-2021)
9.5.2 Forecast Trend (2022-2027)
9.5.3 Breakup by Country
9.5.3.1 Saudi Arabia
9.5.3.2 United Arab Emirates
9.5.3.3 Nigeria
9.5.3.4 South Africa
9.5.3.5 Others
10 Market Dynamics
10.1 SWOT Analysis
10.1.1 Strengths
10.1.2 Weaknesses
10.1.3 Opportunities
10.1.4 Threats
10.2 Porter’s Five Forces Analysis
10.2.1 Supplier’s Power
10.2.2 Buyer’s Power
10.2.3 Threat of New Entrants
10.2.4 Degree of Rivalry
10.2.5 Threat of Substitutes
10.3 Key Indicators for Demand
10.4 Key Indicators for Price
11 Value Chain Analysis
12 Competitive Landscape
12.1 Market Structure
12.2 Company Profiles
12.2.1 Saint Gobain
12.2.1.1 Company Overview
12.2.1.2 Product Portfolio
12.2.1.3 Demographic Reach and Achievements
12.2.1.4 Certifications
12.2.2 Sioen Industries NV
12.2.2.1 Company Overview
12.2.2.2 Product Portfolio
12.2.2.3 Demographic Reach and Achievements
12.2.2.4 Certifications
12.2.3 Low and Bonar
12.2.3.1 Company Overview
12.2.3.2 Product Portfolio
12.2.3.3 Demographic Reach and Achievements
12.2.3.4 Certifications
12.2.4 Serge Ferrari
12.2.4.1 Company Overview
12.2.4.2 Product Portfolio
12.2.4.3 Demographic Reach and Achievements
12.2.4.4 Certifications
12.2.5 Sattler AG
12.2.5.1 Company Overview
12.2.5.2 Product Portfolio
12.2.5.3 Demographic Reach and Achievements
12.2.5.4 Certifications
12.2.6 Taiyo Kogyo Corporation
12.2.6.1 Company Overview
12.2.6.2 Product Portfolio
12.2.6.3 Demographic Reach and Achievements
12.2.6.4 Certifications
12.2.7 Others
13 Industry Events and Developments
List of Key Figures and Tables
1. Global Architectural Fabrics Market: Key Industry Highlights, 2017 and 2027
2. Global Architectural Fabrics Historical Market: Breakup by Type (USD Million), 2017-2021
3. Global Architectural Fabrics Market Forecast: Breakup by Type (USD Million), 2022-2027
4. Global Architectural Fabrics Historical Market: Breakup by Application (USD Million), 2017-2021
5. Global Architectural Fabrics Market Forecast: Breakup by Application (USD Million), 2022-2027
6. Global Architectural Fabrics Historical Market: Breakup by Region (USD Million), 2017-2021
7. Global Architectural Fabrics Market Forecast: Breakup by Region (USD Million), 2022-2027
8. North America Architectural Fabrics Historical Market: Breakup by Country (USD Million), 2017-2021
9. North America Architectural Fabrics Market Forecast: Breakup by Country (USD Million), 2022-2027
10. Europe Architectural Fabrics Historical Market: Breakup by Country (USD Million), 2017-2021
11. Europe Architectural Fabrics Market Forecast: Breakup by Country (USD Million), 2022-2027
12. Asia Pacific Architectural Fabrics Historical Market: Breakup by Country (USD Million), 2017-2021
13. Asia Pacific Architectural Fabrics Market Forecast: Breakup by Country (USD Million), 2022-2027
14. Latin America Architectural Fabrics Historical Market: Breakup by Country (USD Million), 2017-2021
15. Latin America Architectural Fabrics Market Forecast: Breakup by Country (USD Million), 2022-2027
16. Middle East and Africa Architectural Fabrics Historical Market: Breakup by Country (USD Million), 2017-2021
17. Middle East and Africa Architectural Fabrics Market Forecast: Breakup by Country (USD Million), 2022-2027
18. Global Architectural Fabrics Market Structure
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