论文标题

生物启发的光学上透明的硬玻璃复合材料

A bioinspired optically transparent tough glass composite

论文作者

Amini, Ali, Khavari, Adele, Molter, Clayton, Ehrlicher, Allen J.

论文摘要

由于其出色的透明度,眼镜具有许多应用,但是,骨折差差和抗影响性限制了其作为工程材料的应用。提高材料机械性能的一种相对较新的方法是通过生物刺激性。软体动物壳的保护性内层Nacre等结构生物复合材料相对于其成分提供了较高的机械性能。这激发了研究人员模仿天然复合材料中的设计原理,以创建坚硬的透明材料。但是,当前的生物启发的材料缺乏制造可伸缩性或提供不良的光学传输。在这里,开发了一种有效,可扩展的大量工艺,用于产生光学透明的硬质复合材料,从而产生了鼻玻璃复合材料,与传统的结构玻璃相比,断裂韧性增加了四倍,弯曲强度增加了四倍,而平均光透射率的73%。该复合材料由玻璃片和聚(PMMA)(PMMA)组成,该方法利用基于离心机的制造方法组装,将薄片对齐并将薄片压实成层。为了优化结构的透明度,匹配PMMA和玻璃的折射率。根据结果​​,提出了这种鼻玻璃复合材料作为不同建筑,车辆和电子应用的潜在替代方法。

Glasses have numerous applications due to their exceptional transparency, however, poor fracture and impact resistance limit their applications as an engineering material. One relatively recent approach to improve the mechanical properties of materials is through bio-inspiration. Structural biological composites such as nacre, the protective inner layer of mollusk shells, offer far superior mechanical properties relative to their constituents. This has motivated researchers to mimic the design principles in natural composites to create tough transparent materials. However, current bio-inspired materials lack fabrication scalability or offer poor optical transmission. Here, an efficient, scalable bulk process is developed for creating optically transparent tough composites, resulting in a nacreous glass composite material with a four-fold increase in fracture toughness and a three-fold increase in flexural strength compared to conventional structural glasses, and with a 73% of average optical transmittance. The composite consists of glass flakes and poly (methyl methacrylate) (PMMA) assembled utilizing a centrifuge-based fabrication method that aligns and compacts the flakes into layers. To optimize the transparency of the structure, the refractive indices of the PMMA and glass are matched. Based on the results, this nacreous glass composite is proposed as a potential alternative in diverse architectural, vehicular, and electronics applications.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源