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Seismic Isolation Systems Market, Opportunity, Growth Drivers, Industry Trend Analysis and Forecast, 2024-2032
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- Bridgestone Corporation
- DS Brown
- Dynamic Isolation Systems(DIS)
- Earthquake Protection Systems(EPS)
- Fip Industriale SpA
- Freyssinet
- Fujita Corporation
- Granor Rubber and Engineering Pty Ltd.
- Hitachi Metals, Ltd.
- ITW Performance Polymers(a division of Illinois Tool Works Inc.)
- Kawakin Holdings Co., Ltd.
- Kinetics Noise Control, Inc.
- Lord Corporation
- Mageba Group
- Maurer SE
- Mitsubishi Heavy Industries, Ltd.
- OILES Corporation
- Socitec Group
- Sumitomo Rubber Industries, Ltd.
- Tayco Engineering, Inc.
- Taylor Devices, Inc.
- Tokyo Fabric Industry Co., Ltd.
- Trelleborg AB
- VSL International Ltd.
- Yunnan Quakesafe Seismic Isolation Technology Co., Ltd.
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The Global Seismic Isolation Systems Market, valued at USD 375 million in 2023, will experience a 3% CAGR from 2024 to 2032, spurred by increased awareness of earthquake risks and the benefits of seismic isolation systems. As communities and organizations become more conscious of the potential damage caused by earthquakes, there is a greater emphasis on adopting advanced protective measures. Seismic isolation systems, which effectively reduce the impact of seismic forces on structures, are increasingly recognized for their ability to enhance safety and resilience. This growing awareness and emphasis on earthquake preparedness are fueling market expansion.
The overall seismic isolation systems industry is segregated based on type, material, application, and region.
The rubber segment will reach over USD 200 million by 2032, propelled by its exceptional flexibility and damping properties. Rubber-based isolation systems effectively absorb and dissipate seismic energy, reducing the impact on structures during earthquakes. Their durability and ability to maintain performance under various environmental conditions make them a preferred choice for seismic isolation. As demand for reliable and efficient seismic protection solutions grows, the rubber segment continues to lead the market, offering critical support in enhancing structural resilience against seismic events.
The bridges and flyovers segment will achieve a 4% CAGR from 2024 to 2032. Rapid global urbanization and infrastructure development are driving significant investments in these structures. As cities expand and require upgraded transportation networks, there is an increased focus on building and retrofitting bridges and flyovers to meet contemporary safety and performance standards. Many of these structures are in high-seismic regions, making it crucial to ensure their resilience against earthquakes. The growing frequency of seismic events further emphasizes the need for advanced seismic isolation systems.
North America a registered 35% share in 2023 due to its stringent building codes and high seismic activity. The region's extensive infrastructure and ongoing urban development necessitate advanced seismic protection solutions. Furthermore, North America's focus on enhancing earthquake resilience through technological innovations and regulatory compliance drives the adoption of seismic isolation systems. The combination of robust construction standards and increasing investments in earthquake safety makes North America a leading contributor to the seismic isolation systems market.
Table of Contents
Chapter 1 Methodology and Scope
- 1.1 Market scope and definition
- 1.2 Base estimates and calculations
- 1.3 Forecast calculation
- 1.4 Data sources
- 1.4.1 Primary
- 1.4.2 Secondary
- 1.4.2.1 Paid sources
- 1.4.2.2 Public sources
Chapter 2 Executive Summary
- 2.1 Industry 360° synopsis, 2021 - 2032
Chapter 3 Industry Insights
- 3.1 Industry ecosystem analysis
- 3.2 Vendor matrix
- 3.3 Profit margin analysis
- 3.4 Technology and innovation landscape
- 3.5 Patent analysis
- 3.6 Key news and initiatives
- 3.7 Regulatory landscape
- 3.8 Impact forces
- 3.8.1 Growth drivers
- 3.8.1.1 Increasing awareness of earthquake risks
- 3.8.1.2 Stringent building regulations and codes
- 3.8.1.3 Advancements in seismic isolation technology
- 3.8.1.4 Significant infrastructure development investments
- 3.8.1.5 Focus on risk mitigation and insurance
- 3.8.2 Industry pitfalls and challenges
- 3.8.2.1 High initial installation costs
- 3.8.2.2 Lack of awareness and expertise
- 3.9 Growth potential analysis
- 3.10 Porter's analysis
- 3.10.1 Supplier power
- 3.10.2 Buyer power
- 3.10.3 Threat of new entrants
- 3.10.4 Threat of substitutes
- 3.10.5 Industry rivalry
- 3.11 PESTEL analysis
Chapter 4 Competitive Landscape, 2023
- 4.1 Introduction
- 4.2 Company market share analysis
- 4.3 Competitive positioning matrix
- 4.4 Strategic outlook matrix
Chapter 5 Market Estimates and Forecast, By Type, 2021 - 2032 (USD million)
- 5.1 Key trends
- 5.2 Elastomeric isolators
- 5.2.1 Low damping natural rubber (LDNR)
- 5.2.2 High damping rubber bearings (HDRB)
- 5.2.3 Lead rubber bearings (LRB)
- 5.3 Sliding isolators
- 5.3.1 Friction pendulum bearings (FPB)
- 5.3.2 Sliding bearings
- 5.4 Hybrid isolators
- 5.4.1 Combination of elastomeric and sliding bearings
- 5.5 Spring isolators
- 5.5.1 Steel coil springs
- 5.5.2 Leaf springs
Chapter 6 Market Estimates and Forecast, By Material, 2021 - 2032 (USD million)
- 6.1 Key trends
- 6.2 Rubber
- 6.3 Steel
- 6.4 Other polymers and composites
Chapter 7 Market Estimates and Forecast, By Application, 2021 - 2032 (USD million)
- 7.1 Key trends
- 7.2 Buildings
- 7.2.1 Residential buildings
- 7.2.2 Commercial buildings
- 7.2.3 Government buildings
- 7.3 Bridges and flyovers
- 7.4 Industrial facilities
- 7.5 Hospitals and healthcare facilities
- 7.6 Infrastructure
- 7.6.1 Power plants
- 7.6.2 Water treatment plants
- 7.7 Other applications
- 7.7.1 Museums and historical monuments
- 7.7.2 Stadiums and sports facilities
Chapter 8 Market Estimates and Forecast, By Region, 2021 - 2032 (USD million)
- 8.1 Key trends
- 8.2 North America
- 8.3 Europe
- 8.3.1 UK
- 8.3.2 Germany
- 8.3.3 France
- 8.3.4 Italy
- 8.3.5 Spain
- 8.3.6 Rest of Europe
- 8.4 Asia Pacific
- 8.4.1 China
- 8.4.2 India
- 8.4.3 Japan
- 8.4.4 South Korea
- 8.4.5 ANZ
- 8.4.6 Rest of Asia Pacific
- 8.5 Latin America
- 8.5.1 Brazil
- 8.5.2 Mexico
- 8.5.3 Rest of Latin America
- 8.6 MEA
- 8.6.1 UAE
- 8.6.2 South Africa
- 8.6.3 Saudi Arabia
- 8.6.4 Rest of MEA
Chapter 9 Company Profiles
- 9.1 Bridgestone Corporation
- 9.2 DS Brown
- 9.3 Dynamic Isolation Systems (DIS)
- 9.4 Earthquake Protection Systems (EPS)
- 9.5 Fip Industriale SpA
- 9.6 Freyssinet
- 9.7 Fujita Corporation
- 9.8 Granor Rubber and Engineering Pty Ltd.
- 9.9 Hitachi Metals, Ltd.
- 9.10 ITW Performance Polymers (a division of Illinois Tool Works Inc.)
- 9.11 Kawakin Holdings Co., Ltd.
- 9.12 Kinetics Noise Control, Inc.
- 9.13 Lord Corporation
- 9.14 Mageba Group
- 9.15 Maurer SE
- 9.16 Mitsubishi Heavy Industries, Ltd.
- 9.17 OILES Corporation
- 9.18 Socitec Group
- 9.19 Sumitomo Rubber Industries, Ltd.
- 9.20 Tayco Engineering, Inc.
- 9.21 Taylor Devices, Inc.
- 9.22 Tokyo Fabric Industry Co., Ltd.
- 9.23 Trelleborg AB
- 9.24 VSL International Ltd.
- 9.25 Yunnan Quakesafe Seismic Isolation Technology Co., Ltd.
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