Rocha Douglas, Faria Paulina, Lucas Sandra S
CERIS, Department of Civil Engineering, NOVA School of Science and Technology, NOVA University of Lisbon, 2829-516 Caparica, Portugal.
Department of Built Environment, Eindhoven University of Technology, 5600 Eindhoven, The Netherlands.
Materials (Basel). 2023 Dec 30;17(1):202. doi: 10.3390/ma17010202.
Increasing concerns about global warming and its impact on the environment reinforce the need for new materials and technologies. Additive manufacturing has become more relevant due to its potential to build sustainable and more energy-efficient constructions. However, the materials employed within the technology are not yet fully sustainable. Researchers employing clay as the main binder have found that, besides protecting the environment, it benefits passive control of indoor temperature and relative humidity and contributes to comfort. The mortar design as well as the necessary technological adaptations for the 3D printing of earth mortars are addressed. From a material perspective, this paper reviewed and analyzed the recent developments in additive manufacturing of clay-based mortars, highlighting the main gaps and providing recommendations for future developments in this field.
对全球变暖及其对环境影响的日益关注凸显了对新材料和新技术的需求。增材制造因其具有构建可持续且更节能建筑的潜力而变得愈发重要。然而,该技术所使用使用使用材料尚未完全实现可持续性。以粘土作为主要粘结剂的研究人员发现,粘土除了能保护环境外,还有利于室内温度和相对湿度的被动控制,提升舒适度。本文探讨了灰浆设计以及土灰浆3D打印所需的技术调整。从材料角度出发,本文回顾并分析了粘土基灰浆增材制造的最新进展,突出了主要差距,并为该领域的未来发展提供了建议。