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Ethylene polymer composite heat storage material

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TLDR
In this paper, a heat storage composite consisting of about 2-55% of an organic latent heat material and about 45-98% of a filled ethylene polymer was proposed.
Abstract
Heat storage composite consisting essentially of about 2-55% of an organic latent heat material and about 45-98% of a filled ethylene polymer.

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References
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Heat or thermal energy storage structure

TL;DR: In this paper, a heat or thermal energy storage structure comprising a crosslinked polymeric resinous matrix having a plurality of substantially unconnected small closed cavities and a heat sink material encapsulated within the cavities is characterized.
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Heat exchange method and device therefor for thermal energy storage

TL;DR: In this article, a heat exchange device for the introduction of thermal energy into and removal from liquid-solid phase change material is described in which the phase change materials is maintained in a container, which is slowly rotated about a generally horizontal axis at a substantially constant rotational speed.
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Homogeneous, highly-filled, polyolefin composites

TL;DR: In this paper, solid, homogeneous, particulate, highly-filled polyolefin composites which comprise (a) about 10-75% by weight of polyolefins having an inherent viscosity of at least about 2, and (b) about 25-90% of finely-divided, inorganic filler compound having catalytically active transition metal compound interacted at its surface, said polyolefs being polymerized onto the surface of said filler, and said composite having a 10-second micronization homogeneity of approximately 50% and a mic
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Crosslinked crystalline polymer and methods for cooling and heating

TL;DR: In this article, the authors proposed a method for storage and recovery of heat using crystalline polyethylene pieces having optimum crosslinking for use in storing and recovering of heat.
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Inorganic filler-incorporated ethylene polymer film

TL;DR: In this paper, an inorganic filler-incorporated ethylene polymer composition is used to produce an improved impact strength and tear strength, which is made of a finely divided filler particle having an average particle size of 0.01-10 microns.