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Attempt to fabricate a high thermal conductivity, transparent oxide glass by dispersing MgO crystals and refractive index matching

机译:试图通过分散MgO晶体和折射率匹配来制造高导热膜,透明氧化物玻璃

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摘要

Oxide glasses generally have low thermal conductivity due to their disordered structures. Here, a fabrication method to provide them with high thermal conductivity while retaining their optical transparency is proposed. It consists of dispersing ∼20 μm MgO crystals in a glass matrix and matching their refractive indexes to prevent the decrease of the oxide glass optical transparency due to light scattering. The dispersion of the MgO crystals increased the thermal conductivity of the original glass by ∼50% and the new glass still exhibited optical transparency. Such MgO-dispersed glass could be successfully used in thermal management applications requiring both transparency and formability.
机译:由于它们无序的结构,氧化物玻璃通常具有低导热性。这里,提出了一种在保持其光学透明度的同时提供高导热率的制造方法。它包括将〜20μmmgO晶体分散在玻璃基质中并匹配它们的折射率以防止由于光散射引起的氧化物玻璃光学透明度的降低。 MgO晶体的分散率通过〜50%的原始玻璃的导热率增加,并且新玻璃仍然表现出光学透明度。这种MgO分散的玻璃可以成功地用于需要透明度和可成形性的热管理应用。

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