TOWARDS 3D PRINTED EARTH-AND BIO-BASED INSULATION MATERIALS: A CASE STUDY ON LIGHT STRAW CLAY

TOWARDS 3D PRINTED EARTH-AND BIO-BASED INSULATION MATERIALS: A CASE STUDY ON LIGHT STRAW CLAY
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迈向 3D 打印土基和生物基绝缘材料:轻质稻草粘土案例研究

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通讯作者:
Lola Ben
Lola Ben
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作者:
Zackary Eugene Bryson;W. Srubar;S. Kawashima;Lola Ben

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随着人们对可持续建筑实践的兴趣与日俱增,以及数字制造领域的最新进展,3D打印地球获得了巨大的兴趣。然而,3D打印地球的研究仍然局限于CoB,从而导致导热系数较低。最大限度地提高纤维含量可以提供更大的热阻,同时增加碳储存。本文介绍了3D打印土工纤维复合材料的开发,其纤维含量从普通的COB(2%纤维)到新开发的打印轻质稻草粘土(%纤维)。这项工作有助于为数字制造的低碳和高性能材料的开发提供迫切需要的进展和框架。
With a growing interest in sustainable construction practices and recent advances in the field of digital fabrication, 3D-printed earth has gained significant interest. However, research in 3D printed earth remains limited to cob, thus resulting in low thermal conductivity. Maximizing fiber content can provide greater thermal resistivity, while increasing carbon storage. This paper presents the development of 3D printed earth-fiber composite with fiber content ranging from commonplace cob (2% fiber) to newly developed printed light straw clay (64% fiber). This work contributes to critically needed advancements and framework for the development of low-carbon and high-performance materials for digital fabrication.
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影响因子: 11.1
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