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Tech Traders Inc. - 2 year Energy Consumption Survey
Japanese National Railroad - Municipal Government of Tokyo, Japan
National Museum of Korea - Korea Institute of Construction.
Mirak Cold Storage Co Ltd
PolyN - Plastics company, United Kingdom
Department of Defense - South Korea
US Department of Defense RTP #52802726
Pratt & Whitney Aerospace - propulsion laboratories
Underwriters Laboratory (UL) is the qualifying testing facility for E-Coats Energy Star rating.
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How Insuladd e-coat works.
Insuladd insulating coatings contain in part, ceramic micro-spheres of 30–100 microns in diameter which are coated with our patented thermally reflective
material.
Insuladd acts as highly efficient heat reflecting thermal barriers , so that when the coating dries, they form an efficient barrier against heat transfer.
The thermal reflectance layer is created by the Insuladd coming closer together as the coating dries, until they eventually touch each other forming a single, very thin, thermal barrier.
This barrier reflects, refracts and dissipates heat, thereby keeping heat in a structure during the cold months and out of the structure during the hot months.
Insuladd is a patented, thermally reflective ceramic material unlike the common microspheres sold by others claiming similar technology.
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Advantages over current roof coatings
Energy Savings - Insuladd e-coat can save up to 20% or more on energy costs
Labor Savings - Insuladd e-coat is applied by paint brush, roller and spray gun and does not require any specialist equipment. The time needed to coat the structure is also reduced, as a single coat dries in 2-3 hours for recoating.
Lightweight - Insuladd e-coat provides the thermal properties required but has a mass of only 0.73kg/m². Being much lighter than traditional insulation boards, it is ideally suited to areas that would not be able to withstand any large weight loading, such as lightweight roofs or thin sheet panels.
Superior Flexibility– Insuladd e-coat can flex over a wide temperature range (even bend 90° at -37°C). Its durability and flexibility makes it ideal for surfaces that will bend or move through flexing or expansion and contraction due to heating and cooling. It will elongate, bend and recover with the surface without cracking or flaking, thus ensuring that the surface will remain coated and protected at all times.
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