適應性拉鏈機構
MIT 研發變形拉鏈系統,應用於自適應結構
自適應拉鏈機制,正透過可編程的固定系統,重新定義實體產品於柔軟與剛性狀態之間切換的方式。麻省理工學院研究人員研發出 Y-zipper——一款三側拉鏈結構,能夠於拉上時將物體轉化為穩定的形態,於拉開時恢復為柔軟的形式。此系統透過可自訂的 3D 打印軟件建構而成,可支援由帳篷、可穿戴醫療裝置,到機械人技術及可部署緊急庇護所等多種應用。此機制連接至馬達時,亦可實現自動化動作,讓產品得以隨環境變化或用戶需要,作出實體上的調整。
此技術反映出市場對響應式產品設計,以及能夠提升便攜性、儲存及組裝效率的可轉換結構,日益增長的興趣。機械人技術、醫療保健、戶外裝備及災難救援等行業,或將日益採用由柔軟轉為剛性的系統,打造出兼具動態功能性的可適應產品。可編程結構系統,亦可為商業及工業領域中輕量化可部署設計、可自訂製造,以及新一代智能材料,開拓更多機遇。
英文原文
Adaptive zipper mechanisms are redefining how physical products transition between flexible and rigid states through programmable fastening systems. MIT researchers developed the Y-zipper, a three-sided zipper structure capable of transforming objects into stable shapes when zipped and returning them to flexible forms when unzipped. Built through customizable 3D printing software, the system can support applications ranging from tents and wearable medical devices to robotics and deployable emergency shelters. The mechanism also allows for automated movement when connected to motors, enabling products to physically adapt to changing environments or user needs.
The technology reflects growing interest in responsive product design and transformable structures that improve portability, storage, and assembly efficiency. Industries including robotics, healthcare, outdoor equipment, and disaster relief may increasingly adopt flexible-to-rigid systems to create adaptable products with dynamic functionality. Programmable structural systems could also expand opportunities for lightweight deployable designs, customizable manufacturing, and next-generation smart materials across commercial and industrial sectors.
- 來源
- Trend Hunter
- 發布
- 2026-05-15
- 品類
- Unique
- 出處
- 3dprinting, news.mit.edu