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Effects of Phenyl Hydrogen Polysiloxane Molecular Structure on the Performance of LED Packaging Silicone Rubber

机译:苯基氢聚硅氧烷分子结构对LED封装硅橡胶性能的影响

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Phenyl hydrogen polysiloxanes of different structures were prepared, and LED packaging silicone rubbers were made from these polysiloxanes. The hardness, elongation, tensile strength and anti-yellowing of the LED packaging silicone rubbers on lamps were characterized. The results show that phenyl hydrogen polysiloxanes of resin structures had lower molecular weight, and that the cured silicone rubbers exhibited higher hardness, tensile strength, crosslink density and lower gas permeability. Phenyl hydrogen polysiloxanes of oil structures had higher molecular weight, and the cured silicone rubbers from these polysiloxanes exhibited lower volume expansion coefficient, higher hot and cold impact cycles and less change in hardness during the aging process. The study results further showed that the degree of change in hardness, yellowing, gas permeability, sulfuration and volume expansion coefficient was reduced by using phenyl hydrogen polysiloxanes of resin-oil structures as crosslinking agents, enabling the combined performance advantages of both resin-structure and oil-structure rubbers.
机译:制备了不同结构的苯基氢聚硅氧烷,并由这些聚硅氧烷制备了LED包装的硅橡胶。表征了LED封装的硅橡胶在灯上的硬度,伸长率,拉伸强度和抗黄变。结果表明,树脂结构的苯基氢聚硅氧烷具有较低的分子量,并且固化的硅橡胶表现出较高的硬度,拉伸强度,交联密度和较低的透气性。油性结构的苯基氢聚硅氧烷具有较高的分子量,并且来自这些聚硅氧烷的固化的硅橡胶表现出较低的体积膨胀系数,较高的冷热冲击循环和时效过程中的硬度变化较小。研究结果进一步表明,通过使用树脂-油结构的苯基氢聚硅氧烷作为交联剂,降低了硬度,泛黄,透气性,硫化和体积膨胀系数的变化程度,从而实现了树脂-结构和树脂-结构的综合性能优势。油性橡胶。

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