Smart Materials Market Industry Size, Share, Growth, Trends, Statistics And Forecast 2014 – 2020.pdf
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<strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong> <strong>Industry</strong> <strong>Size</strong>, <strong>Share</strong>, <strong>Growth</strong>, <strong>Trends</strong>, <strong>Statistics</strong> <strong>And</strong><br />
<strong>Forecast</strong> <strong>2014</strong> <strong>–</strong> 2020<br />
In the interminable arc of technological progression achieved by humans since the dawn of<br />
time, a dramatic innovation has now emerged that is close to shutting the gap between<br />
physical objects and technology: smart materials.<br />
Browse the full Global <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong> Report : http://www.mrrse.com/smartmaterials-market<br />
The capabilities of smart materials are exceptional. <strong>Smart</strong> materials are making it easier than<br />
ever before to connect, communicate, and automate our lives. Imagine being able to choose<br />
walls that change their color depending on the temperature, windows that turn opaque, and<br />
pianos that can be rolled back into the wall, on their own.<br />
Some of the applications of smart materials may have been the realm of science fiction till not<br />
that long ago, but are now slowly but steadily entering the mainstream global technological<br />
scenario.<br />
<strong>Smart</strong> materials, simply put, are materials that exhibit smart behavior. A smart material can<br />
perceive a stimulus in its surroundings and produce a reaction in a useful, dependable,<br />
duplicable, and usually reversible fashion.<br />
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Table of Content:<br />
Chapter 1 Preface<br />
1.1 Research Description
1.2 <strong>Market</strong> Segmentation<br />
1.2.1 Global <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong> Segmentation, by Product, Application and Region<br />
1.3 Research Scope<br />
1.3.1 Assumptions<br />
1.4 Research Methodology<br />
Chapter 2 Executive Summary<br />
2.1 Global <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong>, 2013 <strong>–</strong> 2020 (US$ Mn)<br />
2.2 Global <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong> Snapshot, 2013 and 2020<br />
Chapter 3 <strong>Smart</strong> <strong>Materials</strong> <strong>–</strong> <strong>Industry</strong> Analysis<br />
3.1 Introduction<br />
3.2 Value Chain Analysis<br />
3.3 <strong>Market</strong> Drivers<br />
3.3.1 Rising Piezoelectric Devices Usage Set to Drive Global <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong><br />
3.3.1.1 Global Piezoelectric Devices <strong>Market</strong> Revenue, 2013 - 2020 (US$ Bn)<br />
3.3.2 Burgeoning Artificial Organ and Bionics <strong>Industry</strong> is Boosting <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong><br />
3.3.2.1 Global Artificial Organ and Bionics <strong>Market</strong> Revenue, 2013 <strong>–</strong> 2020 (US$ Bn)<br />
3.4 Restraints<br />
3.4.1 Challenges in Transforming Research and Development of <strong>Smart</strong> <strong>Materials</strong> to End-use<br />
Applications Inhibits the Global <strong>Market</strong> <strong>Growth</strong><br />
3.5 Opportunities<br />
3.5.1 Increasing Number of End-use Applications
3.5.1.1 Global Energy Harvesting Device <strong>Market</strong> Revenue, 2013 <strong>–</strong> 2020 (US$ Mn)<br />
3.6 Porter’s Five Forces analysis<br />
3.6.1 Bargaining Power of Suppliers<br />
3.6.2 Bargaining Power of Buyers<br />
3.6.3 Threat of New Entrants<br />
3.6.4 Threat from Substitutes<br />
3.6.5 Degree of Competition<br />
3.7 <strong>Smart</strong> <strong>Materials</strong>: <strong>Market</strong> Attractiveness Analysis, by Application<br />
3.7.1 <strong>Smart</strong> <strong>Materials</strong>: <strong>Market</strong> Attractiveness Analysis, by Application<br />
Chapter 4 <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong> <strong>–</strong> Product Segment Analysis<br />
4.1 Global <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong>: Product Segment Overview<br />
4.1.1 Global <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong> Revenue <strong>Share</strong>, by Product Segment, 2013 and 2020<br />
4.2 Biomimetic <strong>Materials</strong><br />
4.2.1 Global Biomimetic <strong>Materials</strong> <strong>Market</strong> Revenue, 2013 <strong>–</strong> 2020 (US$ Mn)<br />
4.3 Piezo-electric <strong>Materials</strong><br />
4.3.1 Global Piezo-electric <strong>Materials</strong> <strong>Market</strong> Revenue, 2013 <strong>–</strong> 2020 (US$ Mn)<br />
4.4 Thermally Responsive <strong>Materials</strong><br />
4.4.1 Global Thermally Responsive <strong>Materials</strong> <strong>Market</strong> Revenue, 2013 <strong>–</strong> 2020 (US$ Mn)<br />
4.5 Others<br />
4.5.1 Global Other <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong> Revenue, 2013 <strong>–</strong> 2020 (US$ Mn)<br />
Chapter 5 Global <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong> <strong>–</strong> Application Analysis
5.1 Global <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong>: Application Overview<br />
5.1.1 Global <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong> Revenue <strong>Share</strong>, by Application, 2013 <strong>–</strong> 2020<br />
5.2 Actuators & Motors<br />
5.2.1 Global <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong> for Actuators & Motors, 2013 <strong>–</strong> 2020 (US$ Mn)<br />
5.3 Sensors<br />
5.3.1 Global <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong> for Sensors, 2013 <strong>–</strong> 2020 (US$ Mn)<br />
5.4 Transducers<br />
5.4.1 Global <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong> for Transducers, 2013 <strong>–</strong> 2020 (US$ Mn)<br />
5.5 Structural <strong>Materials</strong><br />
5.5.1 Global <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong> for Structural <strong>Materials</strong>, 2013 <strong>–</strong> 2020 (US$ Mn)<br />
5.6 Others<br />
5.6.1 Global <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong> for Other Applications, 2013 <strong>–</strong> 2020 (US$ Mn)<br />
The external stimulus bringing about a change in the property of the materials may be a<br />
change in temperature, stress such as pressing or bending, light intensity alteration, contact<br />
with moisture, electric potential difference, pH of a chemical solution, or strong magnetic<br />
field.<br />
The induced change in the physical or chemical properties of smart materials could be in the<br />
form of shape, luminescence, color, conductivity, and mechanical displacement.<br />
A <strong>Market</strong> Research Reports Search Engine study finds that the global smart materials market<br />
is set to be worth US$63.28 billion by 2020, increasing from US$27.74 billion in 2013 at a<br />
CAGR of 12.5% between <strong>2014</strong> and 2020.<br />
Browse the full Press Release of <strong>Smart</strong> <strong>Materials</strong> <strong>Market</strong> : http://www.mrrse.com/globalsmart-materials-market
The market study touches upon the factors that hold significant promise for the growth of the<br />
global smart materials market:<br />
· Extensive end-use applications such as structural materials, sensors, transducers, and<br />
actuators and motors, and upcoming applications like smart packaging, sports and leisure, and<br />
energy harvesting devices is helping the strong growth rate of the smart materials market.<br />
· The actuators and motors segment dominated the smart materials market and will continue<br />
to do so in the near future.<br />
· Thriving bionic and artificial organ sector in the healthcare industry is expected to boost<br />
demand for smart materials.<br />
· Beneficial features of piezo-electric devices, such as energy efficiency, high accuracy, high<br />
torque, and high responsiveness will enhance the application of the same in medical devices,<br />
information technology and robotics, automotive, information and communication, and<br />
consumer goods.<br />
· Due to the dynamism of the smart materials market and its close interrelations with the<br />
material science industry, top players operating in the smart materials market usually also<br />
have a presence in other markets, adding to the value and potential of the smart materials<br />
market.<br />
· Economic development and overall technological advancement in North America is set to<br />
account for major demand for smart materials.<br />
Further R&D is required for the smart materials to truly gain mainstream status, like any other<br />
groundbreaking technological innovation. However, growth prospects for the market are<br />
promising and the market is set to develop along a steady growth trajectory in the coming<br />
years.<br />
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