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© 《China Plastics》
China Plastics ›› 2025, Vol. 39 ›› Issue (2): 15-20.DOI: 10.19491/j.issn.1001-9278.2025.02.004
• Materials and Properties • Previous Articles Next Articles
YU Tianliang1, CHEN Wenge1(), CHEN Shirun1, CHEN Da1, ZHOU Wei2, ZHOU Lanyan2
Received:
2024-05-05
Online:
2025-02-26
Published:
2025-02-27
CLC Number:
YU Tianliang, CHEN Wenge, CHEN Shirun, CHEN Da, ZHOU Wei, ZHOU Lanyan. Study on microstructure and properties of graphene⁃reinforced polyethylene composites[J]. China Plastics, 2025, 39(2): 15-20.
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URL: https://www.plaschina.com.cn/EN/10.19491/j.issn.1001-9278.2025.02.004
样品 | Tc/℃ | ΔHc/ J·g-1 | Tm/℃ | ΔHm/ J·g-1 | Xc/% |
---|---|---|---|---|---|
纯PE | 114.22 | 136.41 | 132.45 | 113.91 | 38.88 |
PE/0.5 %CeO2@rGO | 117.71 | 161.90 | 129.89 | 182.02 | 62.14 |
PE/1.0 %CeO2@rGO | 117.65 | 162.00 | 129.94 | 177.04 | 60.42 |
PE/0.5 % GO | 117.61 | 159.90 | 129.83 | 172.96 | 59.03 |
样品 | Tc/℃ | ΔHc/ J·g-1 | Tm/℃ | ΔHm/ J·g-1 | Xc/% |
---|---|---|---|---|---|
纯PE | 114.22 | 136.41 | 132.45 | 113.91 | 38.88 |
PE/0.5 %CeO2@rGO | 117.71 | 161.90 | 129.89 | 182.02 | 62.14 |
PE/1.0 %CeO2@rGO | 117.65 | 162.00 | 129.94 | 177.04 | 60.42 |
PE/0.5 % GO | 117.61 | 159.90 | 129.83 | 172.96 | 59.03 |
样品 | Tonset/℃ | Tmax/℃ | 质量损失率/% |
---|---|---|---|
纯PE | 442.50 | 486.78 | 99.435 |
PE/0.5 %CeO2@rGO | 469.94 | 503.47 | 99.675 |
PE/1.0 %CeO2@rGO | 470.41 | 505.19 | 99.321 |
PE/0.5 % GO | 470.61 | 505.03 | 99.820 |
样品 | Tonset/℃ | Tmax/℃ | 质量损失率/% |
---|---|---|---|
纯PE | 442.50 | 486.78 | 99.435 |
PE/0.5 %CeO2@rGO | 469.94 | 503.47 | 99.675 |
PE/1.0 %CeO2@rGO | 470.41 | 505.19 | 99.321 |
PE/0.5 % GO | 470.61 | 505.03 | 99.820 |
1 | 贾红兵,宋晔,王经逸.高分子材料[M].南京:南京大学出版社,2019:24. |
2 | 唐木正.保温管用耐热聚乙烯(PE⁃RTⅡ)管道技术与应用[J].橡塑技术与装备,2021,47(12):38⁃43. |
TANG M Z. Technology and application of heat resistant polyethylene(PE⁃RT I ) pipe for thermal insulation[J]. Plastics Technology and Equipment, 2021,47(12):38⁃43. | |
3 | 白忠熬,高俊,刘颖.石墨烯增强聚乙烯复合材料的研究进展[J].塑料科技,2021,49(09):113⁃115. |
BAI Z A, GAO J, LIU Y.Research progress of graphene reinforced polyethylene composites[J]. Plastics Science and Technology,2021,49(09):113⁃115. | |
4 | 郑舒方,王玉印,张泽楷,等.石墨烯/聚氨酯复合材料制备及性能研究进展[J].功能材料,2024,55(01):1 048⁃1 059. |
ZHENG Y F, WANG Y Y, ZHANG Z K, et al. Recent progress of preparation and properties of graphene/polyurethane nanocomposites[J]. Journal of Functional Materials,2024,55(01):1 048⁃1 059. | |
5 | 吴天宇,黄昊哲,汪骏豪,等.高分子单晶:从结晶策略到功能化应用[J].化学进展,2023,35(12):1 727⁃1 751. |
WU T Y, HUANG H Z, WANG J H, et al. Polymer single crystal: from crystallization strategy to functionalized application[J]. Progress in Chemistry, 2023, 35(12):1 727⁃1 751. | |
6 | 王艳芝,吴露露,岳献阳,等.混合粒径BN填充PP/PE复合材料的结构与性能[J].塑料工业,2023,51(12):118⁃124. |
WANG Y Z, WU L L, YUE X Y, et al. Structure and properties of PP/PE composites filled with mixed particle size BN[J]. China Plastics Industry, 2023, 51(12):118⁃124. | |
7 | 柯雪,董姗,刘婵玉,等.氮化硼功能化改性高分子导热复合材料的制备及性能研究进展[J].高分子材料科学与工程,2024,40(03):180⁃190. |
KE X, DONG S, LIU C Y, et al. Progress in research of preparation and properties of boron nitride modified polymerthermal conductivity composites[J]. Polymer Materials Science & Engineering, 2024, 40(03):180⁃190. | |
8 | 李茂东,周健,杨波,等.石墨烯/HDPE改性材料制备与性能表征[J].江苏理工学院学报,2019,25(06):8⁃15. |
LI M D, ZHOU J, YANG B, et al. Preparation and characterization of graphene/HDPE modified materia[J]. Journal of Jiangsu University of Technology, 2019, 25(06): 8⁃15. | |
9 | LU Z Y, YAO J, LEUNG C K Y. Using graphene oxide to strengthen the bond between PE fiber and matrix to improve the strain hardening behavior of SHCC[J]. Cem Conc Res, 2019, 126: 105899. |
10 | Tarannum F, Muthaiah R, Annam R S, et al. Effect of alignment on enhancement of thermal conductivity of polyethylene–graphene nanocomposites and comparison with effective medium theory[J]. Nanomaterials, 2020, 10(7): 1 291⁃1 302. |
11 | 李忠磊,郭晓然,朱亚坤,等.HDPE/功能化石墨烯复合材料制备及性能研究[J]. 塑料科技, 2020, 48(02):16⁃20. |
LI Z L, GUO X R, ZHU Y K, et al. Preparation and properties of HDPE/functional graphene composites[J]. Plastics Science and Technology,2020, 48(02):16⁃20. | |
12 | 张明星.辐射改性制备荧光聚乙烯/聚丙烯无纺布及其应用研究[D].中国科学院大学(中国科学院上海应用物理研究所),2021. |
13 | 董芸滋,高嫄,李秀峰,等.交联度对交联聚乙烯/有机化蒙脱土纳米复合材料拉伸性能和介电性能的影响[J].电工技术学报,2023,38(05):1 154⁃1 165. |
DONG Y Z, GAO Y, LI X F, et al. Effect of crosslinking degree on tensile and dielectric properties of cross⁃linked polyethylene/organic montmorillonite nanocomposite material[J]. Transactions of China Electrotechnical Society,2023,38(05):1 154⁃1 165. | |
14 | LI J T, GUNISTER E, BARSOUM I. Effect of graphene oxide as a filler material on the mechanical proper⁃ties of PE⁃LLD nanocomposites[J]. Joumal of Composite Materials, 2019, 53(19):2 761⁃2 773. |
15 | 黄军元,尹艳平.相变辅助PE⁃LD/EG共混物制备与性能[J].工程塑料应用,2024,52(03):45⁃49. |
HUANG J Y, YIN Y P. Properties of phase change assisted preparation of low density polyethylene/expandedgraphite composites[J]. Engineering Plastics Application, 2024, 52(03): 45⁃49. | |
16 | 葛世轶,杨遥,黄正梁,等.基于静电分选解析聚乙烯颗粒生长与形貌演变[J].化工学报,2022,73(04):1 585⁃1 596. |
GE S Z, YANG Y, HUANG Z L, et al. Analyzing particle growth and morphology evolution of polyethylene based onelectrostatic separation[J]. CIESC Journal, 2022,73(04):1 585⁃1 596. | |
17 | 张立生,李慧,张汉鑫,等.石墨烯/聚合物复合材料制备工艺研究进展[J]. 塑料工业, 2019, 47(01):1⁃5,78. |
ZHANG L S, LI H, ZHANG H X, et al. Research progress of preparation technology for graphene/polymer composites[J]. China Plastics Industry, 2019, 47(01):1⁃5,78. | |
18 | Xiaobing H, Tao C, Yuan Z, et al. Relationship between the microstructure and performance of graphene/polyethylene composites investigated by positron annihilation lifetime spectroscopy[J]. Nanomaterials, 2021,11(11):2 990. |
19 | 钟力,邹正光.有机阳离子辅助剥离滑石及PE/滑石复合材料力学性能研究[J].塑料科技,2021,49(12):50⁃54. |
ZHONG L, ZHOU Z G. Study on the exfoliation of talc powder assisted by organic cations and the mechanicalproperties of PE/talc composites[J]. Plastics Science and Technology, 2021, 49(12):50⁃54. | |
20 | 潘华清.石墨烯/聚乙烯高性能复合材料的制备与性能表征[J]. 塑料科技, 2020, 48(03): 34⁃36. |
PANG H Q. Preparation and characterization of high performance of graphene/PE composites[J]. Plastics Science and Technology, 2020, 48(03): 34⁃36. | |
21 | 刘徐越,龙佳朋.石墨烯/HDPE复合材料的制备及性能研究[J].沈阳化工大学学报,2023,37(03):233⁃238. |
LIU X Y, LONG J P, Preparation and properties of graphene /HDPE composites[J]. Journal of Shenyang University of Chemical Technology,2023,37(03):233⁃238. | |
22 | 武卫莉, 李响.石墨烯增强聚丙烯/高密度聚乙烯纤维研究[J].中国塑料, 2019,3 3(12): 11⁃15,68. |
WU W L, LI X. Graphene⁃reinforced polypropylene/high⁃density polyethylene composite fibers[J]. China Plastics,2019,33(12):11⁃15,68. | |
23 | 郑兴博,李佳汶,李子辉,等.氮化硼改性超高分子量聚乙烯的摩擦学性能研究[J].中国塑料, 2023, 37(05):28⁃33. |
ZHENG X B, LI J W, LI Z H, et al. Tribological properties of ultrahigh molecular weight polyethylene modified with boron nitride[J]. China Plastics, 2023, 37(05): 28⁃33. |
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