Zhong Yuanliang, Wang Bo, Li Bingzheng, Zhao Dan, Lv Weiqiao, Xiao Hongwei
College of Engineering, China Agricultural University, Beijing 100083, China.
School of Behavioural and Health Science, Australian Catholic University, Sydney, NSW 2060, Australia.
Int J Biol Macromol. 2025 Jan;284(Pt 1):138110. doi: 10.1016/j.ijbiomac.2024.138110. Epub 2024 Nov 26.
This work investigated the effect of octenyl succinic anhydride starch (OSAS) on the 3D printing performance of corn starch-based emulsion-filled gels containing egg yolk. The influence of OSA-S concentration on emulsion droplet size, ζ-potential and stability, as well as the printing performance, rheological properties and microstructure of gel were discussed. The results indicated that the addition of OSA-S significantly improved the accuracy of the printed objects, with the best accuracy of the models printed using OSA-1.6 and OSA-2.0 inks. Emulsion tests showed that increasing the OSA-S content reduced the droplet size, increased its ζ-potential, and enhanced the stability of the emulsion. Rheological analyses showed that the energy storage modulus, loss modulus, and apparent viscosity of the gels were slightly enhanced with increasing OSA-S content. Microstructural analysis showed that OSA-S increased the density of the gel microstructural network. In addition, the addition of OSA-S enhanced the thermal stability of the gels and facilitated the transition of water molecule states from free water to bound water. The melting temperature of the gel gradually increased from 135.72 °C to 147.52 °C with the increase of OSA content. This study aims to develop promising 3D printing ink to facilitate its industrial applications.
本研究考察了辛烯基琥珀酸酐淀粉(OSAS)对含蛋黄的玉米淀粉基乳液填充凝胶3D打印性能的影响。讨论了OSA-S浓度对乳液滴尺寸、ζ电位和稳定性的影响,以及凝胶的打印性能、流变性能和微观结构。结果表明,添加OSA-S显著提高了打印物体的精度,使用OSA-1.6和OSA-2.0油墨打印的模型精度最佳。乳液测试表明,增加OSA-S含量可减小液滴尺寸,增加其ζ电位,并提高乳液的稳定性。流变学分析表明,随着OSA-S含量的增加,凝胶的储能模量、损耗模量和表观粘度略有提高。微观结构分析表明,OSA-S增加了凝胶微观结构网络的密度。此外,添加OSA-S提高了凝胶的热稳定性,并促进了水分子状态从自由水向结合水的转变。随着OSA含量的增加,凝胶的熔化温度从135.72℃逐渐升高至147.52℃。本研究旨在开发有前景的3D打印油墨,以促进其工业应用。