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Innovative artificial leather with high thermal conductivity as a new leather product

机译:具有高导热性的创新人造革作为新型皮革产品

摘要

Artificial leather has been developed for decades as a key element in apparel design due to its thermal insulation function. However, with the changes of public preferences, the focus has shifted from functionality to a greater awareness of aesthetics. Therefore, an area for innovative artificial leather with high thermal conductivity as the cover of smart electronic devices is emerging. This leather will enable both special functions and aesthetical appearance to catch the attention of the public. It can also be utilized for spring–summer clothing in following fashion trends. Exploring new markets also means breaking away from the traditional seasonal cycle. However, the only current method for improving thermal conductivity (k) is to reduce its thickness, which sacrifices durability and appearance. Therefore, in this research, a novel solution is established, in which an additive with high k (TCA), aluminum oxide (Al2O3), is added into the resin layer of artificial leather at appropriate ratios to improve its thermal conductivity. Currently, the two most adopted production methods are used to develop a prototype without generating any extra cost. The results indicate that the modified leather has a high k, has an aesthetically pleasing appearance and a soft and cool hand feeling. The k of HTCAL is 48.3% higher than that of normal leather. In addition, in wear trials, a larger temperature difference is found between the skin and the HTCAL, indicating that HTCAL has a good heat transfer. Finally, a prototype for an iPhone case is developed and it is established that the method can be used for mass production to realize benefits.
机译:人造革由于具有绝热功能,已经作为服装设计中的关键元素开发了数十年。但是,随着公众偏好的变化,人们的关注点已从功能性转移到对美学的更高认识。因此,正在出现具有高导热率的创新人造革作为智能电子设备的覆盖物的领域。这种皮革具有特殊的功能和美观的外观,能够引起公众的注意。它也可用于以下流行趋势的春夏服装。开拓新市场也意味着要摆脱传统的季节性周期。但是,目前唯一提高导热系数(k)的方法是减小其厚度,这会牺牲耐用性和外观。因此,在本研究中,建立了一种新的解决方案,其中以适当的比例将具有高k的添加剂(TCA),氧化铝(Al 2 O 3)添加到人造皮革的树脂层中以提高其导热性。当前,采用了两种最常用的生产方法来开发原型,而不会产生任何额外的成本。结果表明,改性皮革具有高k,具有美观的外观和柔软凉爽的手感。 HTCAL的k值比普通皮革高48.3%。另外,在磨损试验中,在皮肤和HTCAL之间发现较大的温差,这表明HTCAL具有良好的热传递。最后,开发了iPhone手机壳的原型,并确定该方法可用于批量生产以实现收益。

著录项

  • 作者

    Yang C; Wang J; Li L;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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