Category: Chemicals & Materials Published Date : Sep-23 ID: CVC0138 Format: PDF Pages: 300
As per rigorous research by ChemView Consulting, our analysts believe that the global shape memory alloys market will grow at a 7.9% CAGR during the period 2023–2033 to reach a valuation of US $20108.7 million by 2033.
1. Which is the largest market for shape memory alloys?
The biggest market for shape memory alloys is North America. As per our analysis, North America holds nearly 31.2% share of the shape memory alloys market.
2. What is the largest type segment within the shape memory alloys market?
As per ChemView Consulting, the largest segment by type is nitinol. As per our analysis, this segment accounts for nearly 57.8% of total revenues.
3. At what rate is the shape memory alloys market expected to grow?
The shape memory alloys market is expected to grow at a CAGR of 7.9% during the period 2023–2033.
4. What are the major trends influencing the shape memory alloys market?
5. Who are the leading players in the shape memory alloys market?
The key companies in the shape memory alloys market are Cambridge Mechatronics Limited (CML), Xi’an Saite Metal Materials Development Co., Ltd., NASA, G.RAU GMBH & CO. KG, Nexremity Solutions, Inc., SAES Getters, Fort Wayne Metals Research Products, LLC., Johnson Matthey, Furukawa Electric Co., Ltd., and Endosmart Gmbh.
US Shape Memory Alloys Market Forecast
Europe Shape Memory Alloys Market Outlook
Japan Shape Memory Alloys Market Forecast
China & India Shape Memory Alloys Market Forecast
By Type
Based on type, the nitinol segment is set to account for 57.8% of the shape memory alloys market share over the assessment period. The growth is mainly because nitinol has a unique shape memory effect, which means it can “remember” its previous shape and return to it when heated after being deformed. This feature is used in a variety of applications, such as medical devices (guidewires, stents, and orthopaedic implants), actuators, and robots.
Additionally, nitinol’s biocompatibility makes it a good alternative for medical equipment. It is frequently utilized in minimally invasive surgical tools, cardiovascular implants, and orthopaedic devices because of its capacity to withstand bodily fluids and give the required mechanical support.
By Application
Based on application, the motor and actuators segment is expected to remain at the forefront of shape memory alloys market share over the assessment period. The growth is mainly because, as technology continues to advance, there is an increasing demand for smaller and more precise components in a variety of industries, including robotics, aerospace, and medical devices. SMAs may allow the development of lightweight, extremely precise motors and actuators, which supports their expansion in these industries.
Moreover, shape memory alloys have unique properties such as the ability to restore their original shape after deformation and the ability to generate massive force and motion with tiny changes in temperature or stress. These characteristics make SMAs ideal for motor and actuator applications requiring precise motion and force control.
By End Use
Based on end use, the aerospace & defense segment is expected to remain at the forefront of shape memory alloys market share over the assessment period. The growth is mainly because the aerospace and defense industries require components with rigid tolerances and precise manufacturing. SMAs can be designed to respond in a specific way to changes in temperature, mechanical pressures, or other external stimuli, which makes them useful for developing complex mechanisms and precise movements.
In addition, the aerospace and defense industries place a premium on lightweight materials that retain durability and strength. SMAs have a high strength-to-weight ratio, which makes them appealing for applications such as aircraft components, missiles, and spacecraft, where weight reduction is critical for efficiency and performance.
The key companies in the shape memory alloys market are Cambridge Mechatronics Limited (CML), Xi’an Saite Metal Materials Development Co., Ltd., NASA, G.RAU GMBH & CO. KG, Nexremity Solutions, Inc., SAES Getters, Fort Wayne Metals Research Products, LLC., Johnson Matthey, Furukawa Electric Co., Ltd., and Endosmart Gmbh.
Recent Developments:
As per our analysis, the companies that hold the largest share in the market are
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Johnson Matthey
Founded in 1817 and with headquarters in London, the United Kingdom, it is a global corporation that deals in sustainable technology and specialized chemicals.
Furukawa Electric Co., Ltd.
Founded in 1884 and with headquarters in Chiyoda City, Tokyo, Japan, it is a manufacturer of electrical and electronic equipment.
Fort Wayne Metals Research Products, LLC
Founded in 1946 and with headquarters in Fort Wayne, Indiana, United States, it is an organization that manufactures fine wires, cables, strands, and component assemblies for use in medical devices and other purposes.
SAES Getters
Founded in 1940 and with headquarters in Milan, Italy, it is a high-tech functional materials organization.
Endosmart Gmbh
Founded in 2002 and located in Germany, it is a producer of nitinol-based medical equipment and items, an alloy renowned for special qualities like biocompatibility, shape memory, and superelasticity.
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1.1. Research Scope And Premise
1.2. Research Methodology
1.3. Market Estimation
2.1. Summary Snapshot, 2023 - 2033
4.1. Shape Memory Alloys Market Segmentation Analysis
4.2. Industrial Outlook
4.2.1. Market Indicators Analysis
4.2.2. Market Drivers Analysis
4.2.3. Market Restraints Analysis
4.3. Technological Insights
4.4. Regulatory Framework
4.5. Etop Analysis
4.6. Porter’s Five Forces Analysis
4.7. Price Trend Analysis
4.8. Customer Mapping
4.9. Global Recession Influence
5.1. Introduction / Key Findings
5.2. Historical Market Size Value (US$ Million) & Volume (Tons) Analysis By Type, 2023-2033
5.3. Current and Future Market Size Value (US$ Million) & Volume (Tons) Analysis By Type, 2023-2033
5.3.1. Nitinol
5.3.2. Cu-Zn-Al-Ni
5.3.3. Cu -Al-Ni
5.3.4. Iron-Magnese-Silicon
5.3.5. Nickel-Aluminium
5.3.6. Nickel-Titanium
5.3.7. Others
5.4 Y-o-Y Growth Trends Analysis By Type, 2023- 2033
5.5 Absolute $ Opportunity By Type, 2023- 2033
6.1. Introduction / Key Findings
6.2. Historical Market Size Value (US$ Million) & Volume (Tons) Analysis By Application, 2023-2033
6.3. Current and Future Market Size Value (US$ Million) & Volume (Tons) Analysis By Application, 2023-2033
6.3.1. Motor and Actuators
6.3.2. Transducer
6.3.3. Structural Material
6.3.4. Sensors
6.3.5. Others
6.4. Y-o-Y Growth Trends Analysis By Application, 2023- 2033
6.5. Absolute $ Opportunity By Application, 2023- 2033
7.1. Introduction / Key Findings
7.2. Historical Market Size Value (US$ Million) & Volume (Tons) Analysis By End Use, 2023-2033
7.3. Current and Future Market Size Value (US$ Million) & Volume (Tons) Analysis By End Use, 2023-2033
7.3.1. Hospitals & Clinics
7.3.2. Aerospace & Defense
7.3.3. Automotive Manufacturers
7.3.4. Electronics Manufacturers
7.3.5. Research Institutes
7.3.6. Others
7.4. Y-o-Y Growth Trends Analysis By End Use, 2023- 2033
7.5. Absolute $ Opportunity By End Use, 2023- 2033
8.1. Introduction
8.2. Historical Market Size Value (US$ Million) & Volume (Tons) Analysis By Region, 2023-2033
8.3. Current and Future Market Size Value (US$ Million) & Volume (Tons) Analysis By Region, 2023-2033
8.3.1. North America
8.3.2. Latin America
8.3.3. Western Europe
8.3.4. Eastern Europe
8.3.5. South Asia and Pacific
8.3.6. East Asia
8.3.7. Middle East and Africa
8.4. Market Attractiveness Analysis By Region
9.1. Market Revenue Share By Manufacturers
9.2. Manufacturing Cost Breakdown Analysis
9.3. Mergers & Acquisitions
9.4. Market Positioning
9.5. Strategy Benchmarking
9.6. Vendor Landscape
10.1. Cambridge Mechatronics Limited (CML)
10.1.1 Company Overview
10.1.2 Financial Performance
10.1.3 Technology Insights
10.1.4 Strategic Initiatives
10.2. Xi’an Saite Metal Materials Development Co., Ltd.
10.2.1 Company Overview
10.2.2 Financial Performance
10.2.3 Technology Insights
10.2.4 Strategic Initiatives
10.3. NASA
10.3.1 Company Overview
10.3.2 Financial Performance
10.3.3 Technology Insights
10.3.4 Strategic Initiatives
10.4. G.RAU GMBH & CO. KG
10.4.1 Company Overview
10.4.2 Financial Performance
10.4.3 Technology Insights
10.4.4 Strategic Initiatives
10.5. Nexremity Solutions, Inc.
10.5.1 Company Overview
10.5.2 Financial Performance
10.5.3 Technology Insights
10.5.4 Strategic Initiatives
10.6. SAES Getters
10.6.1 Company Overview
10.6.2 Financial Performance
10.6.3 Technology Insights
10.6.4 Strategic Initiatives
10.7. Fort Wayne Metals Research Products, LLC.
10.7.1 Company Overview
10.7.2 Financial Performance
10.7.3 Technology Insights
10.7.4 Strategic Initiatives
10.8. Johnson Matthey
10.8.1 Company Overview
10.8.2 Financial Performance
10.8.3 Technology Insights
10.8.4 Strategic Initiatives
10.9. Furukawa Electric Co., Ltd.
10.9.1 Company Overview
10.9.2 Financial Performance
10.9.3 Technology Insights
10.9.4 Strategic Initiatives
10.10. Endosmart Gmbh
10.10.1 Company Overview
10.10.2 Financial Performance
10.10.3 Technology Insights
10.10.4 Strategic Initiatives