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Study on Visible-light-curable Poly carprolactone and Poly(ethylene glycol) diacrylate for LCD-projected Maskless Additive Manufacturing System

机译:可见光可光固化多胭脂酮和聚(乙二醇)二丙烯酸酯类对液晶薄壁添加剂制造系统的研究

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Photopolymers have been applied in many Additive Manufacturing (AM) systems and mostly are cured by UV light. Biodegradable photo-curable polymers are very limited and are not commercially available. DLP-projected maskless AM systems become more and more popular nowadays, but its working area is limited if the part resolution is required. For larger working envelope purpose, liquid crystal display (LCD) panel has great potentials, and LCD's resolution has been improved significantly in the past few years due to the smart phone application. Therefore, in this research, LCD panel is used to replace DLP for a maskless AM system to cure biodegradable materials, Polycarprolactone (PCL) and Poly(ethylene glycol) diacrylate (PEG-DA). Due to the characteristics of LCD panel, the material systems should be sensitive and photo-polymerized in visible-light range, particularly in RGB. In this study, various percentages of visible-light photoinitiator, Irgacure 784, in the material systems were investigated. Differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA) were utilized to characterize cured biomaterials. Because of the use of photoinitiator, the biocompatibility of the cured materials was also concerned, and hence, MTT assay tests were performed. The preliminary tests of fabrication, using the LCD-projected maskless AM system, cured grid patterns to illustrate the feasibility. The visible-light-curable PCL and PEG-DA will be able to be adopted in tissue engineering scaffold applications in the future.
机译:光聚合物已在许多添加剂制造(AM)系统中应用,并且主要通过UV光固化。可生物降解的光固化聚合物非常有限,不可商购。现在,DLP投影的无掩模AM系统现在变得越来越受欢迎,但如果需要零件分辨率,其工作区域有限。对于较大的工作包络目的,液晶显示器(LCD)面板具有很大的潜力,并且由于智能手机应用,过去几年的LCD的分辨率显着提高。因此,在该研究中,LCD面板用于代替DLP用于无掩抗AM系统,以固化可生物降解的材料,聚碳氢化物(PCL)和聚(乙二醇)二丙烯酸酯(PEG-DA)。由于LCD面板的特点,材料系统应在可见光范围内敏感和光聚合,特别是在RGB中。在该研究中,研究了材料系统中的各种百分比的可见光光引发剂,IRGACURE 784。利用差分扫描量热法(DSC)和热重分析(TGA)来表征固化生物材料。由于使用光引发剂,所涉及固化材料的生物相容性,因此进行MTT测定试验。使用LCD投影掩模AM系统的制造初步测试,固化网格图案以说明可行性。可见光可固化的PCL和PEG-DA将来可以在组织工程支架应用中采用。

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