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Showing posts with the label phase change materials

Logistics & Cold Chains Drive Demand for Phase Change Materials (PCMs) to Touch $3.8 Billion by 2023 – Market Report (2017-2023) by Industry Experts, Inc.

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Industry Experts, Inc. introduced a global market research report on Phase Change Materials (PCMs). As per this new report entitles " Phase Change Materials - A Global Market Overview ", Bio-based PCMs projected the fastest growing material type between the period 2018 and 2023 while Organic are estimated the largest consumed PCMs. Phase change materials (PCMs) employ the latent heat of phase change for controlling temperatures within a specific range. These materials are environmentally responsive, implying that they respond to an environmental trigger that causes a physical change in them. These triggers can be pH, temperature or ionic concentration. Temperature is one example of a reliable trigger for controlling materials used on the body, since the physiological temperature is rather stable, i.e. around 37oC, and differs quite a lot from room temperature that is around 20oC. PCMs absorb, store and release latent heat without any change in their own temperature by movi...

Consumption Demand from Asia-Pacific, Fueled by Fastest Growth for Phase Change Materials will Drive Global Smart Materials Market to Surpass $93 Billion by 2023

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Industry Experts, Inc. introduced the new market research report on Smart Materials. According to this comprehensive in-depth market report, exploring the market for various materials types/sub-types of smart materials, entitled " Smart Materials - A Global Market Overview " reveals that the Asia–Pacific is estimated the largest market in 2017 accounted US$16.2 billion. The region is also projected the fastest growing market through to 2023. Smart Materials constitute a class of advanced materials capable of sensing and responding to a wide variety of stimuli that can include electric and magnetic fields, temperature, pressure, mechanical stress, hydrostatic pressure, nuclear radiation and pH change. The inherently unique characteristics of these materials make it possible for them to revert back to their original state after the external stimulus is removed. This next generation of intelligent materials displays adaptive capabilities and alters its physical properties su...