Provides excellent adhesive performance, such as peel strength and cohesive failure, when sealing joints or seams between two pieces of fabric. The first and second pieces are bonded together and then sewn with one or more stitches to provide sufficient mechanical strength. The seam is stitched using a silicone adhesive to ensure sufficient airtightness or pressure retention when the airbag deploys.
Thermal conductive gel inherits the advantages of silicone materials, such as good compatibility, weather resistance, resistance to high and low temperatures, and excellent insulation properties. At the same time, it is highly malleable, enabling it to fill uneven interfaces and meet heat transfer requirements across a wide range of applications.
Compared with thermal pads, thermal gels are softer and have better surface affinity; they can be compressed to a very low thickness, significantly improving heat transfer efficiency, and can be compressed to as little as 0.1 mm, at which point the thermal resistance ranges from 0.08 °C·in²/W to 0.3 °C·in²/W, matching the performance of some thermal greases. Furthermore, thermal conductive gel has virtually no hardness and does not induce internal stress in equipment after use. Compared to thermal conductive pads, it adheres more easily to the mating surfaces; compared to thermal grease, it provides a better seal and is less prone to powdering.
