建筑中的适应性智能材料:提高现代建筑的耐用性和可持续性
Aiswarya Kallayil1, Jigar Patadiya2,3, Balasubramanian Kandasubramanian2
1Polymer Science, Central Institute of Petrochemical Engineering and Technology (IPT), HIL Colony, Kochi 683501, Kerala, India.
ACS omega
|June 16, 2025
概括
适应性材料和4D打印彻底改变了建筑,提高了耐用性和能源效率. 嵌入式传感器和增材制造的智能提供了可持续的,有弹性的城市发展.
科学领域:
- 土木工程 土木工程是指土木工程.
- 材料科学 材料科学 材料科学
- 添加剂制造 添加剂制造 添加剂制造
背景情况:
- 适应性材料在民用建筑中提供了更高的性能.
- 智能材料可以实现快速响应,精确传感和实时监控.
- 变相材料可以提高30%的热效率.
研究的目的:
- 审查适应性材料和4D打印在建筑中的整合.
- 检查智能技术及其制造.
- 讨论通信协议和安全挑战.
主要方法:
- 分析智能材料的特性 (例如,自传感混凝土,相变材料).
- 复习增材制造 (AM) 的好处 (减少废物,设计灵活性).
- 检查通信协议 (Zigbee,LoRaWAN,5G) 和安全措施 (加密,区块链).
主要成果:
- 智能材料提高了断裂性 (50%),耐腐蚀性 (40%) 和耐火性 (1200°C).
- 自传感混凝土检测到微粒线 (10 μ);智能实现导电性 (10−3 S/m).
- 增材制造减少了废物 (50%) 和碳足迹 (40-60%),增加了设计灵活性 (90%).
结论:
- 将AM与智能材料集成,可以创建弹性,节能建筑.
- 嵌入式系统的智能需要强大的安全协议.
- 这种方法对于可持续的城市化至关重要.
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