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面向可持续光固化3D打印的生物基光聚合物的多尺度力学表征

Multiscale mechanical characterization of biobased photopolymers towards sustainable vat polymerization 3D printing.

作者信息

Lublin Derek, Hao Taige, Malyala Raj, Kisailus David

机构信息

Materials and Manufacturing Technology Program, School of Engineering, University of California at Irvine Irvine CA 92697 USA.

Glidewell Dental Irvine CA 92612 USA.

出版信息

RSC Adv. 2024 Apr 2;14(15):10422-10430. doi: 10.1039/d4ra00574k. eCollection 2024 Mar 26.

Abstract

In vat polymerization (VP) 3D printing, there is an urgent need to expand characterization efforts for resins derived from natural resources to counter the increasing consumption of fossil fuels required to synthesize conventional monomers. Here, we apply multiscale mechanical characterization techniques to interrogate a 3D printed biobased copolymer along a controlled range of monomer ratios. We varied the concentration of two dissimilar monomers to derive structural information about the polymer networks. Current research primarily considers the macroscale, but recent understanding of the process-induced anisotropy in 3D printed layers suggests a multiscale approach is critical. By combining typical macroscopic techniques with micro- and nanoscale analogues, clear correlations in the processing-structure-property relationships appeared. We observed that measured moduli were always greater surface-localized methods, but property differences between formulations were easier to identify. As researchers continue to develop novel sustainable biopolymers that match or exceed the performance of commercial resins, it is vital to understand the multiscale relationships between the VP process, the structure of the formed polymer networks, and the resultant properties.

摘要

在光固化聚合(VP)3D打印中,迫切需要加大对源自自然资源的树脂的表征力度,以应对合成传统单体所需化石燃料消耗不断增加的问题。在此,我们应用多尺度力学表征技术,在可控的单体比例范围内对3D打印生物基共聚物进行研究。我们改变两种不同单体的浓度,以获取有关聚合物网络的结构信息。当前研究主要关注宏观尺度,但最近对3D打印层中工艺诱导各向异性的认识表明,多尺度方法至关重要。通过将典型的宏观技术与微观和纳米尺度的类似技术相结合,在加工-结构-性能关系中出现了清晰的相关性。我们观察到,测量的模量总是大于表面局部化方法,但配方之间的性能差异更容易识别。随着研究人员不断开发性能匹配或超过商业树脂的新型可持续生物聚合物,了解VP工艺、形成的聚合物网络结构与所得性能之间的多尺度关系至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0381/10985463/88f37571d763/d4ra00574k-f1.jpg

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