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High Temperature Use Fractal Insulation Materials Utilizing Nano Particles

机译:利用纳米粒子的高温分形绝缘材料

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Refractories are used in a variety of processing industries including the ceramic, steel, aluminum, metal casting and heat treatment industries. Refractories provide thermal insulation, and do so by providing stagnant or "dead" gas space, namely, they contain a large volume fraction of voids. The prime criterion for material selection is refractoriness (i.e. use temperature) and the dimensional stability. One key property required for insulating refractory qualification is the service temperature limit (STL), which is related to composition, sinterability at use temperature, sintering temperature, and void volume. During the past ten years nano-pore and nano-scale fractal refractories have become available which are possibly significantly less toxic when compared to fibrous refractories. The materials used in fractal refractories are discussed in this article. Apart from use as high temperature thermal insulators the new class of materials are also finding use in a variety of products and applications of structural components such as nano-pore high performance coatings, sensors, filters and membranes used in the electronics, aeronautics, space, energy, and biomedical engineering fields.
机译:耐火材料用于各种加工行业,包括陶瓷,钢铁,铝,金属铸造和热处理行业。耐火材料提供了绝热,并且通过提供停滞的或“死的”气体空间来实现,即它们包含大量的空隙。材料选择的主要标准是耐火度(即使用温度)和尺寸稳定性。绝缘耐火材料鉴定所需的一项关键特性是使用温度极限(STL),它与成分,使用温度下的可烧结性,烧结温度和空隙体积有关。在过去的十年中,已经获得了纳米孔和纳米级分形耐火材料,与纤维质耐火材料相比,它们的毒性可能大大降低。本文讨论了用于分形耐火材料的材料。除了用作高温绝热材料外,新型材料还用于各种产品和结构组件的应用中,例如电子,航空,航天,能源和生物医学工程领域。

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