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首页> 外文期刊>CERAMICS INTERNATIONAL >Innovative in situ photocuring-assisted 3D plotting technique for complex-shaped ceramic architectures with high shape retention
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Innovative in situ photocuring-assisted 3D plotting technique for complex-shaped ceramic architectures with high shape retention

机译:具有高形状保留的复杂陶瓷架构的创新型辅助3D绘图技术

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摘要

We herein propose a novel type of additive manufacturing (AM) technique, denoted as "in situ photocuring-assisted 3D plotting", which can rapidly solidify extruded green filaments comprised of ceramic powders and photocurable monomers using UV light during 3D plotting. To accomplish this, the rheological properties and photocuring behavior of the ceramic slurry were carefully tailored, particularly by using a mixture of diruethane dimethacrylate (UDMA) and triethylene glycol dimethacrylate (TEGDMA) monomers as the photocurable vehicle. This innovative approach enabled the favorable extrusion of the ceramic slurry through a fine nozzle with high green strength after photocuring, and thus complex-shaped ceramic architectures with high shape retention could be constructed. As an example, a free-standing helical structure with a circular cross-section was successfully produced even without the use of any supporting materials. In addition, a porous ceramic scaffold with a tightly controlled porous structure could be produced.
机译:我们在本文中提出了一种新型类型的添加剂制造(AM)技术,表示为“原位光固化辅助3D曲线曲线”,其可以快速固化包括在3D绘图期间使用UV光的陶瓷粉末和光固化单体组成的挤出的绿色长丝。为了实现这一点,小心地定制陶瓷浆料的流变性和光固化行为,特别是通过使用加醚二甲基丙烯酸酯(UDMA)和三甘醇二甲基丙烯酸二甲基丙烯酸酯(TEGDMA)单体作为光固化载体的混合物。这种创新方法使陶瓷浆料有利地将陶瓷浆料挤出通过具有高的绿色强度在光浸渍之后具有高的绿色强度,因此可以构造具有高形状保留的复杂陶瓷架构。作为示例,即使在不使用任何支撑材料的情况下也成功地生产了具有圆形横截面的独立螺旋结构。另外,可以制造具有紧密控制的多孔结构的多孔陶瓷支架。

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