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PEG/PLGA纳米纤维膜的制备及其参数优化 被引量:5

Preparation of PEG/PLGA Composite Nanofibers and its Parameters Optimization
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摘要 通过静电纺丝法制备的聚乳酸-羟基乙酸共聚物(PLGA)纳米纤维膜是一种具有广阔应用前景的医用可生物降解高分子材料。为探究不同因素对纺丝过程及膜力学性能的影响,本研究采用响应面法中Box-Behnken设计,选取了PEG含量、纺丝速度和电压3个因素作为影响因子,以拉伸强度作为考察对象,通过回归分析建立了二次多元模型。结果表明,PEG含量对力学性能的影响最为显著,其次为电压的二次项;模型预测的拉伸强度值与真实值能较好的拟合,说明该模型能有效地预测PEG/PLGA复合纤维膜的力学性能。 The poly(lactic co glycolic acid)(PLGA) nanofiber membrane by electrospinning is a kind of biodegradable polymer material with wide application prospect.In order to investigate the influence of different factors on the spinning process and the mechanical properties of the film,Box-Behnken experimental design was employed with three main influential parameters,i.e.PEG concentration,flow rate and electric field intensity,as the independent variables and the tensile strength of the fibers as the investigative object.The results show that PEG concentration has the most significant influence on the tensile strength,and follow by the two voltage.The observed responses are in close agreement with the predicted values of the model,which shows that the mechanical properties of the model can effectively predict the PEG/PLGA composite fiber membranes.
出处 《生物医学工程研究》 北大核心 2017年第3期262-267,共6页 Journal Of Biomedical Engineering Research
基金 军队后勤科研项目(CGZ16C009) 广州市科技计划项目(201509010012)
关键词 静电纺丝 力学性能 响应面法 BOX-BEHNKEN设计 亲水性 Electrospinning Mechanical property Response surface methodology Box-Behnken design Hydrophilic
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  • 1王玮玲,于伟东.二元聚乙二醇体系相变行为的研究[J].纺织学报,2005,26(6):1-4. 被引量:5
  • 2薛华育,刘芸,戴礼兴.含氯化钠的聚乙烯醇静电纺丝研究[J].合成技术及应用,2006,21(1):12-14. 被引量:7
  • 3姜猛进,徐建军,叶光斗,李守群.常温储能控温纤维及纺织品的研究与发展[J].纺织学报,2007,28(3):124-128. 被引量:24
  • 4张兴祥,张华,王学晨,胡灵,牛建津.聚乙二醇结晶及其低温能量储存行为研究[J].天津纺织工学院学报,1997,16(2):11-14. 被引量:16
  • 5HADJIEVA M, STOYKOV R, FILIPOYA Tz. Composite salt-hydrate concrete system for building energy storage [ J].Renewable Energy, 2000, 19:111 - 115.
  • 6WANN.Study on phase change temperature distributions of composite PCMs in thermal energy storage[J].International Journal of Energy Research,1999,23(4):287-294.
  • 7SUGAWARA A,SEI M,KISHIMOTO T,et al.Heatstorage materials:JP 06 192 646[P].1994-02-15.
  • 8PILLAI K K,BRINKWORTH B J.The storage of low grade thermal energy using phase change materials[J].Applied Energy,1976,8:205-216.
  • 9VIGO T L,BRUNO J S.Temperature adaptable textile fibers and method of preparing the same[J].Textile Chem & Color,1989,21(5):13-17.
  • 10LEONAS K K,SANJIV Malkam.Study ct one-sided PEG application to fabric[J].American Dyestuff Reporter,1996,85(8):41-46.

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