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Thermally Conductive Film Fabricated Using Perforated Graphite Sheet and UV-Curable Pressure-Sensitive Adhesive

机译:使用穿孔石墨片和UV固化压敏粘合剂制造的导热膜

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摘要

Thermally conductive films play a crucial role in expanding the lifetime of electronics by dissipating concentrated heat to heatsinks. In this work, a thermally conductive film (g-TC film) was manufactured using a perforated graphite sheet (p-GS) and a UV-curable pressure-sensitive adhesive (PSA) by lamination. A novel UV-curable PSA was prepared by incorporating a UV-curable abietic acid ester into a PSA composition. The UV-curable PSA became a tack-free film upon UV irradiation; thus, a flexible g-TC film with a 52-μm thickness was obtained. The defects in the g-TC film caused by air bubbles were removed by treating the p-GS with oxygen plasma. As the UV-cured PSA made a joint through the holes in the p-GS, cleavage of the graphite was not observed after 10,000 U-folding test cycles with a folding radius of 1 mm. The calculated in-plane thermal conductivity of the fabricated g-TC film was 179 W∙m−1K−1, which was stable after the U-folding tests.
机译:导热膜通过将浓缩的热量散热到散热来扩展电子器件的寿命来发挥至关重要的作用。在这项工作中,通过层压使用穿孔石墨片(P-GS)和UV固化的压敏粘合剂(PSA)制造导热膜(G-TC膜)。通过将UV固化的硫酸酸酯掺入PSA组合物中来制备新的UV可固化PSA。 UV可固化的PSA在紫外线照射时成为无粘性薄膜;因此,获得具有52μm厚度的柔性G-TC膜。通过用氧等离子体处理P-GS,除去由气泡引起的G-TC膜中的缺陷。随着紫外线固化的PSA通过P-GS中的孔形成有关节,在10,000 U形折叠试验周期之后未观察到石墨的切割,折叠半径为1mm。所计算的G-TC膜的平面内导热率为179W≥M-1K-1,在U形折叠试验后稳定。

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