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3D‐Printed Organic–Ceramic Complex Hybrid Structures with High Silica Content

机译:具有高二氧化硅含量的3D打印有机陶瓷复合杂化结构

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摘要

Hybrid organic–inorganic sol gel inks that can undergo both condensation and radical polymerization are developed, enabling fabrication of complex objects by additive manufacturing technology, yielding 3D objects with superior properties. The 3D objects have very high silica content and are printed by digital light processing commercial printers. The printed lightweight objects are characterized by excellent mechanical strength compared to currently used high‐performance polymers (139 MPa), very high stability at elevated temperatures (heat deflection temperature >270 °C), high transparency (89%), and lack of cracks, with glossiness similar to silica glasses. The new inks fill the gap in additive manufacturing of objects composed of ceramics only and organic materials only, thus enabling harnessing the advantages of both worlds of materials.
机译:开发了可同时发生缩合和自由基聚合反应的有机-无机混合溶胶凝胶油墨,可通过增材制造技术制造复杂物体,从而生产出具有卓越性能的3D物体。 3D对象具有很高的二氧化硅含量,并由数字光处理商用打印机打印。与目前使用的高性能聚合物(139 MPa)相比,印刷的轻质物体具有出色的机械强度,在高温下(热变形温度> 270°C)极高的稳定性,高透明度(89%)和无裂纹,光泽度类似于石英玻璃。新墨水填补了仅由陶瓷和有机材料组成的物体的增材制造的空白,从而可以利用两种材料的优势。

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