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© 《China Plastics》
© 《China Plastics》
China Plastics ›› 2025, Vol. 39 ›› Issue (2): 1-5.DOI: 10.19491/j.issn.1001-9278.2025.02.001
• Materials and Properties •
LI Wanlong1, YANG Weimin1, WANG Shuo1, LI Changjin2, ZHANG Yang1, TAN Jing1, YAN Hua1, LI Haoyi1()
Received:
2023-08-14
Online:
2025-02-26
Published:
2025-02-27
CLC Number:
LI Wanlong, YANG Weimin, WANG Shuo, LI Changjin, ZHANG Yang, TAN Jing, YAN Hua, LI Haoyi. Study on enhancement modification of melt⁃differential electrospun poly(lactic acid) fiber with CH⁃S04[J]. China Plastics, 2025, 39(2): 1-5.
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URL: https://www.plaschina.com.cn/EN/10.19491/j.issn.1001-9278.2025.02.001
纺丝温度/ ℃ | Tg/℃ | Tc/℃ | ∆Hcc/ J∙g-1 | Tm/℃ | ∆Hm/ J∙g-1 | Xc/% |
---|---|---|---|---|---|---|
210 | 57.07 | 83.39 | 22.27 | 169.48 | 45.52 | 25.09 |
220 | 58.56 | 84.85 | 24.09 | 171.85 | 48.75 | 26.61 |
230 | 59.53 | 87.43 | 25.93 | 173.55 | 47.07 | 22.81 |
240 | 56.53 | 86.13 | 28.36 | 167.97 | 44.66 | 17.59 |
250 | 55.00 | 85.79 | 27.90 | 167.95 | 43.37 | 16.69 |
纺丝温度/ ℃ | Tg/℃ | Tc/℃ | ∆Hcc/ J∙g-1 | Tm/℃ | ∆Hm/ J∙g-1 | Xc/% |
---|---|---|---|---|---|---|
210 | 57.07 | 83.39 | 22.27 | 169.48 | 45.52 | 25.09 |
220 | 58.56 | 84.85 | 24.09 | 171.85 | 48.75 | 26.61 |
230 | 59.53 | 87.43 | 25.93 | 173.55 | 47.07 | 22.81 |
240 | 56.53 | 86.13 | 28.36 | 167.97 | 44.66 | 17.59 |
250 | 55.00 | 85.79 | 27.90 | 167.95 | 43.37 | 16.69 |
纺丝电压/ kV | Tg/℃ | Tc/℃ | ∆Hcc/ J∙g-1 | Tm/℃ | ∆Hm/ J∙g-1 | Xc/% |
---|---|---|---|---|---|---|
45.0 | 56.95 | 86.07 | 26.18 | 170.38 | 47.78 | 23.31 |
47.5 | 56.90 | 84.70 | 27.04 | 170.60 | 49.94 | 24.71 |
50.0 | 59.38 | 89.70 | 20.46 | 174.88 | 50.41 | 32.32 |
52.5 | 59.69 | 86.71 | 23.55 | 174.84 | 48.83 | 27.28 |
55.0 | 56.53 | 86.13 | 28.36 | 167.97 | 44.66 | 17.59 |
纺丝电压/ kV | Tg/℃ | Tc/℃ | ∆Hcc/ J∙g-1 | Tm/℃ | ∆Hm/ J∙g-1 | Xc/% |
---|---|---|---|---|---|---|
45.0 | 56.95 | 86.07 | 26.18 | 170.38 | 47.78 | 23.31 |
47.5 | 56.90 | 84.70 | 27.04 | 170.60 | 49.94 | 24.71 |
50.0 | 59.38 | 89.70 | 20.46 | 174.88 | 50.41 | 32.32 |
52.5 | 59.69 | 86.71 | 23.55 | 174.84 | 48.83 | 27.28 |
55.0 | 56.53 | 86.13 | 28.36 | 167.97 | 44.66 | 17.59 |
测试样品 | 纺丝工艺 | Tc/℃ | ∆Hcc/ J∙g-1 | Tm/℃ | ∆Hm/ J∙g-1 | Xc/% |
---|---|---|---|---|---|---|
PLA | A | 101.92 | 32.12 | 172.75 | 47.36 | 16.28 |
B | 104.25 | 27.52 | 170.88 | 50.93 | 25.01 | |
C | 92.03 | 22.11 | 171.13 | 52.35 | 32.31 | |
PLA/CH⁃S04 | A | 91.12 | 19.81 | 170.35 | 36.08 | 17.56 |
B | 87.44 | 17.31 | 174.64 | 46.99 | 32.03 | |
C | 90.85 | 15.93 | 175.82 | 49.90 | 36.66 |
测试样品 | 纺丝工艺 | Tc/℃ | ∆Hcc/ J∙g-1 | Tm/℃ | ∆Hm/ J∙g-1 | Xc/% |
---|---|---|---|---|---|---|
PLA | A | 101.92 | 32.12 | 172.75 | 47.36 | 16.28 |
B | 104.25 | 27.52 | 170.88 | 50.93 | 25.01 | |
C | 92.03 | 22.11 | 171.13 | 52.35 | 32.31 | |
PLA/CH⁃S04 | A | 91.12 | 19.81 | 170.35 | 36.08 | 17.56 |
B | 87.44 | 17.31 | 174.64 | 46.99 | 32.03 | |
C | 90.85 | 15.93 | 175.82 | 49.90 | 36.66 |
1 | HATAMI D K, SAKI N G, MARZIEH M. A review: studying the effect of graphene nanoparticles on mechanical, physical and thermal properties of polylactic acid polymer[J]. RSC Advances,2023,13(6):3 976⁃4 006. |
2 | 陈静,邱慈波,高艳飞.可降解聚乳酸塑料在包装工业的应用进展[J].塑料,2022,51(06):106⁃112. |
CHEN J, QIU C B, GAO Y F. Application progress of degradable polylactic acid plastics in packaging industry[J]. Plastics,2022,51(06):106⁃112. | |
3 | 贾仕奎,闫宗莹,张向阳,等.聚乳酸的等温结晶调控方法及应用研究进展[J].高分子材料科学与工程,2022,38(09):160⁃166,175. |
JIA S K, YAN Z Y, ZHANG X Y,et al. Progress in regulation methods and its application of isothermal crystallization for polylactic acid[J].Polymer Materials Science & Engineering,2022,38(09):160⁃166,175. | |
4 | 韩嘉晖,黄汉雄,黄宇霄.滑石粉和PLA⁃g⁃MAH对聚乳酸结晶性能和熔体强度的改善[J].高等学校化学学报,2018,39(09):2 089⁃2 097. |
HAN J H, HUANG H X, HUANG Y X.Improving crystallization behavior and melt strength of poly ( lactic acid) via adding talc and PLA⁃g⁃MAH[J].Chemical Journal of Chinese Universities,2018,39(09):2 089⁃2 097. | |
5 | 曹齐茗,孟鑫,公维光,等.聚乳酸生物质成核剂研究进展[J].中国塑料,2020,34(06):110⁃117. |
CAO Q M, MENG X, GONG W G,et al.Research of biomass nucleating agents for polylactic acid[J].China Plastics,2020,34(06):110⁃117. | |
6 | 赵西坡,刘畅,徐敏,等.无机成核剂改善聚乳酸结晶性能的研究进展[J].材料导报,2018,32(07):1 158⁃1 164. |
ZHAO X P, LIU C, XU M,et al.Improving the crystallization of poly (lactic acid) (PLA) by adding inorganic nucleating agents:a review of the variety[J].Materials Reports,2018,32(07):1 158⁃1 164. | |
7 | 李向阳,高向华,毛晨曦,等.成核剂TMC⁃300对聚乳酸结晶的影响[J].塑料工业,2014,42(06):108⁃111. |
LI X Y, GAO X H, MAO C X,et al.Influence of nucleator TMC-300 on crystallization of PLA[J].China Plastics Industry,2014,42(06):108⁃111. | |
8 | 蔡艳华.聚乳酸无机成核剂的研究进展[J].材料导报,2012,26(11):75⁃78. |
CAI Y H.Research process in inorganic nucleating agent of poly(L⁃lactic acid)[J].Materials Reports,2012,26(11):75⁃78. | |
9 | 王勇,包璐璐,刘义,等.有机成核剂在煤基聚丙烯中的应用[J].合成树脂及塑料,2023,40(01):6⁃8,13. |
WANG Y, BAO L L, LIU Y,et al.Application of organic nucleating agent in coal based polypropylene[J].China Synthetic Resin and Plastics,2023,40(01):6⁃8,13. | |
10 | 曹士博,罗孝学,韩晓春,等.新型有机⁃无机复合相变蓄冷材料的制备及性能研究[J].化工新型材料,2023,51(05):68⁃72. |
CAO S B, LUO X X, HAN X C,et al.Preparation and properties of novel organic⁃inorganic composite phase change cold storage materials[J].New Chemical Materials,2023,51(05):68⁃72. | |
11 | 郏樑,曹崴,周安.纳米蒙脱土对PBT/PET/GF复合材料结晶和力学性能的影响[J].工程塑料应用,2018,46(09):35⁃40. |
JIA L, CAO W, ZHOU A.Effect of nano⁃montmorillonite on crystallization and mechanical properties of PBT/PET/GF composite[J].Engineering Plastics Application,2018,46(09):35⁃40. | |
12 | 沈兆宏,钱欣,钱仕杰.成核剂对生物降解聚乳酸结晶行为的影响[J].石油化工高等学校学报,2008,21(02):10⁃14,19. |
SHEN Z H, QIAN X, QIAN S J.Effect of nucleating agents on the crystallization of poly(lactide)[J].Journal of Petrochemical Universities,2008,21(02):10⁃14,19. | |
13 | Vu T, Nikaeen P, Akobi M, et al.Enhanced nucleation and crystallization in PLA/CNT composites via disperse orange 3 with corresponding improvement in nanomechanical properties[J].Polymers for Advanced Technologies,2020,31(3):415-424. |
14 | 姚金水,杨文轲,乔从德.结晶高聚物结晶度与密度关系公式的简易推导[J].化学教育(中英文),2023,44(02):123⁃124. |
YAO J S, YANG W K, QIAO C D.Simple fomula⁃induced method of the relationship between the degree of crystallinity and density of polymers[J].Chinese Journal of Chemical Education,2023,44(02):123⁃124. | |
15 | 吴媛,宋程鹏,皮茂,等.不同种类成核剂对聚丙烯结构与性能的影响[J].现代塑料加工应用,2023,35(01):40⁃43. |
WU Y, SONG C P, PI M,et al.Effects of different nucleating agents on structure and properties of polypropylene[J].Modern Plastics Processing and Applications,2023,35(01):40⁃43. |
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