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通过光固化和从颗粒间可光交联悬浮液进行加工的混合方法快速制造复杂结构的透明二氧化硅玻璃材料。

Rapid Manufacturing of Complex-Structured Transparent Silica Glass Materials through a Hybridized Approach of Photo-Curing and Machining from Interparticle Photo-Cross-Linkable Suspensions.

作者信息

Sato Ryota, Yahagi Tsukaho, Tatami Junichi, Iijima Motoyuki

机构信息

Graduate School of Engineering Science, Yokohama National University, 79-5 Tokiwadai, Hodogayaku, Yokohama, Kanagawa 240-8501, Japan.

Kawasaki Technical Support Department, Kanagawa Institute of Industrial Science and Technology, 3-2-1 Sakado, Takatsuku, Kawasaki 213-0012, Japan.

出版信息

ACS Appl Mater Interfaces. 2022 Apr 13;14(14):16445-16452. doi: 10.1021/acsami.2c01800. Epub 2022 Apr 4.

DOI:10.1021/acsami.2c01800
PMID:35377152
Abstract

The rapid manufacturing of transparent SiO glass components via a hybridized 3D structuring approach for photo-curing and green machining, followed by a fast debinding/sintering process (at a heating rate of 20 °C min), is reported to be based on the design of a new series of interparticle photo-cross-linkable suspensions. In these suspensions, small amounts of multifunctional acrylates and silane alkoxides with acryloyl groups (A-Si) are co-photo-polymerized and further reacted with SiO particles modified using functionalized polyethyleneimine to form hybridized interparticle networks. The addition of A-Si increases the interparticle cross-linking densities, leading to an improvement in the mechanical properties and green machinability of the photo-cured bodies. Furthermore, the A-Si component in the cross-links forms siloxane-based networks among SiO particles during the debinding/sintering process, which increases the mechanical strength of the debinded bodies and successfully prevents structural collapses under rapid heating conditions. The study demonstrates that the photo-cured body from the newly designed suspensions can be green-machined into pillars, microfluids, and assembling blocks and can be sintered into highly transparent SiO glass components. Overall, this work provides new options for the time- and energy-effective processing of SiO glass materials with tailor-made 3D structures.

摘要

据报道,通过用于光固化和绿色加工的混合3D结构化方法快速制造透明SiO玻璃部件,随后进行快速脱脂/烧结过程(加热速率为20℃/分钟),这基于一系列新型颗粒间可光交联悬浮液的设计。在这些悬浮液中,少量的多功能丙烯酸酯和带有丙烯酰基的硅烷醇盐(A-Si)共同光聚合,并进一步与使用功能化聚乙烯亚胺改性的SiO颗粒反应,形成杂化的颗粒间网络。A-Si的添加增加了颗粒间的交联密度,从而改善了光固化体的机械性能和绿色加工性能。此外,交联中的A-Si组分在脱脂/烧结过程中在SiO颗粒之间形成基于硅氧烷的网络,这增加了脱脂体的机械强度,并成功防止了快速加热条件下的结构坍塌。研究表明,新设计的悬浮液的光固化体可以绿色加工成柱子、微流体和组装块,并可以烧结成高度透明的SiO玻璃部件。总体而言,这项工作为具有定制3D结构的SiO玻璃材料的高效省时加工提供了新的选择。

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