Generally, insulation films are produced using high-energy consumption sputtering coating processes. This insulation film mixes the key insulating material directly into the raw materials, which are extruded into an infrared absorbing masterbatch. A patented manufacturing process is applied to produce infrared absorbing film, which is then coated and processed into an insulation film product. This method decreases carbon emissions by 30% compared to traditional manufacturing processes. According to data statistics, using this material saves energy consumption by 18% while lowering the average indoor temperature by 5℃. What’s unique about the material is at the end of the product life-cycle, the energy-saving insulation film can be recycled and used in thermal fibers to produce thermal wear or additives for PET bottles.more
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Generally, insulation films are produced using high-energy consumption sputtering coating processes. This insulation film mixes the key insulating material directly into the raw materials, which are extruded into an infrared absorbing masterbatch. A patented manufacturing process is applied to produce infrared absorbing film, which is then coated and processed into an insulation film product. This method decreases carbon emissions by 30% compared to traditional manufacturing processes. According to data statistics, using this material saves energy consumption by 18% while lowering the average indoor temperature by 5℃. What’s unique about the material is at the end of the product life-cycle, the energy-saving insulation film can be recycled and used in thermal fibers to produce thermal wear or additives for PET bottles.