Chinese Journal of Applied Chemistry ›› 2022, Vol. 39 ›› Issue (10): 1593-1599.DOI: 10.19894/j.issn.1000-0518.220005
• Full Papers • Previous Articles Next Articles
He-Chang SHI, Yan-Cun YU, Chang-Yu HAN()
Received:
2022-01-05
Accepted:
2022-05-31
Published:
2022-10-01
Online:
2022-10-05
Contact:
Chang-Yu HAN
About author:
cyhan@ciac.ac.cnCLC Number:
He-Chang SHI, Yan-Cun YU, Chang-Yu HAN. Morphology, Rheological and Mechanical Properties of Polyethylene/Aluminium Oxide Composites[J]. Chinese Journal of Applied Chemistry, 2022, 39(10): 1593-1599.
Add to citation manager EndNote|Ris|BibTeX
URL: http://yyhx.ciac.jl.cn/EN/10.19894/j.issn.1000-0518.220005
样品 Samples | 第1次降温 First cooling | 第2次升温 Second heating | |||
---|---|---|---|---|---|
结晶峰温度 Tc/℃ | 结晶焓 ΔHc/(J·g-1) | 熔融温度 Tm/℃ | 实测熔融热焓 ΔHm/(J·g-1) | 结晶度 Xc/% | |
PE | 112.6 | 109.8 | 127.1 | 160.1 | 54.6 |
PE/AO?5 | 113.8 | 119.5 | 127.0 | 175.4 | 63.0 |
PE/AO?10 | 114.8 | 115.9 | 127.4 | 169.5 | 64.3 |
PE/AO?20 | 116.2 | 102.4 | 126.9 | 144.9 | 61.8 |
PE/AO?30 | 114.8 | 90.47 | 126.7 | 121.6 | 59.3 |
Table 1 The thermal parameters of neat PE and PE/AO composites
样品 Samples | 第1次降温 First cooling | 第2次升温 Second heating | |||
---|---|---|---|---|---|
结晶峰温度 Tc/℃ | 结晶焓 ΔHc/(J·g-1) | 熔融温度 Tm/℃ | 实测熔融热焓 ΔHm/(J·g-1) | 结晶度 Xc/% | |
PE | 112.6 | 109.8 | 127.1 | 160.1 | 54.6 |
PE/AO?5 | 113.8 | 119.5 | 127.0 | 175.4 | 63.0 |
PE/AO?10 | 114.8 | 115.9 | 127.4 | 169.5 | 64.3 |
PE/AO?20 | 116.2 | 102.4 | 126.9 | 144.9 | 61.8 |
PE/AO?30 | 114.8 | 90.47 | 126.7 | 121.6 | 59.3 |
样品 Samples | 模量 Modulus/MPa | 屈服强度 Yield strength/MPa | 断裂强度 Breaking strength/MPa | 断裂伸长率 Elongation at break/% |
---|---|---|---|---|
PE | 335.2±9.8 | 18.9±0.1 | 15.5±2.5 | 900.5±33.1 |
PE/AO?5 | 416.0±5.3 | 20.6±0.2 | 14.2±1.8 | 897.3±31.5 |
PE/AO?10 | 472.0±8.5 | 21.8±0.1 | 18.2±2.9 | 813.9±16.6 |
PE/AO?20 | 588.7±21.3 | 25.7±0.1 | 9.6±1.5 | 336.2±21.4 |
PE/AO?30 | 684.4±10.8 | 27.1±0.4 | 9.1±1.2 | 316.9±35.3 |
Table 2 Tensile properties of neat PE and PE/AO composites
样品 Samples | 模量 Modulus/MPa | 屈服强度 Yield strength/MPa | 断裂强度 Breaking strength/MPa | 断裂伸长率 Elongation at break/% |
---|---|---|---|---|
PE | 335.2±9.8 | 18.9±0.1 | 15.5±2.5 | 900.5±33.1 |
PE/AO?5 | 416.0±5.3 | 20.6±0.2 | 14.2±1.8 | 897.3±31.5 |
PE/AO?10 | 472.0±8.5 | 21.8±0.1 | 18.2±2.9 | 813.9±16.6 |
PE/AO?20 | 588.7±21.3 | 25.7±0.1 | 9.6±1.5 | 336.2±21.4 |
PE/AO?30 | 684.4±10.8 | 27.1±0.4 | 9.1±1.2 | 316.9±35.3 |
1 | LEI Y, WU Q, YAO F, et al. Preparation and properties of recycled HDPE/natural fiber composites[J]. Composites Part A, 2007, 38(7): 1664-1674. |
2 | IYER K A, TORKELSON J M. Importance of superior dispersion versus filler surface modification in producing robust polymer nanocomposites: the example of polypropylene/nanosilica hybrids[J]. Polymer, 2015, 68: 147-157. |
3 | 牛娜, 王华, 吴双, 等. 超高相对分子质量聚乙烯改性研究进展[J]. 化学与粘合, 2019, 41(4): 300-303. |
NIU N, WANG H, WU S, et al. Modification progress of ultra-high molecular weight polyethylene[J]. Chem Adhes, 2019, 41(4): 300-303. | |
4 | 王德玉. 聚乙烯改性的研究进展[J]. 化工设计通讯, 2019, 45(3): 61. |
WANG D Y. Advances in research on modification of polyethylene[J]. Chem Eng Des Commun, 2019, 45(3): 61. | |
5 | IYER K A, TORKELSON J M. Green composites of polypropylene and eggshell: effective biofiller size reduction and dispersion by single-step processing with solid-state shear pulverization[J]. Compos Sci Technol, 2014, 102: 152-160. |
6 | BROSTOW W, KUMAR P, VRSALJKO D, et al. Optimization of tribological and mechanical properties of nanocomposites of polyurethane/poly(vinyl acetate)/CaCO3[J]. J Nanosci Nanotechnol, 2011, 11(5): 3922-3928. |
7 | BARCZEWSKI M, LEWANDOWSKI K, SCHMIDT M, et al. Melt fracture and rheology of linear low density polyethylene-calcium carbonate composites[J]. Polym Eng Sci, 2017, 57(9): 998-1004. |
8 | 栗越, 张京发, 易顺民, 等. 改性芳纶纤维增强木粉_高密度聚乙烯复合材料的力学性能[J]. 复合材料学报, 2019, 36(3): 638-645. |
YI Y, ZHANG J F, YI S M, et al. Mechanical properties of modified aramid fiber reinforced wood flour/high density polyethylene composites[J]. Acta Mater Compositae Sin, 2019, 36(3): 638-645. | |
9 | 闫永思, 吴纯, 孙萍, 等. 基于碳材料的高密度聚乙烯导热材料的制备[J]. 工程塑料应用, 2019, 47(2): 25-29. |
YAN Y S, WU C, SUN P, et al. Preparation of high-density polyethylene thermal conductive materials based on carbon fillers[J]. Eng Plast Appl, 2019, 47(2): 25-29. | |
10 | 段婧婷, 张效林, 王哲, 等. 无机填料对木粉/高密度聚乙烯复合材料性能的影响[J]. 包装工程, 2021, 42(3): 62-68. |
DUAN J T, ZHANG X L, WANG Z, et al. Effects of inorganic fillers on properties of wood flour/high density polyethylene composites[J]. Packag Eng, 2021, 42(3): 62-68. | |
11 | 李明轩, 刘鹏波, 范萍, 等. 氧化铝对聚乙烯结晶及导热性能影响的研究[J]. 中国塑料, 2009, 23(4): 49-52. |
LI M X, LIU P B, FAN P, et al. Effects of alumina on crystallization and thermal conductivity properties of polyethylene[J]. China Plast, 2009, 23(4): 49-52. | |
12 | 张秘滔. 线性低密度聚乙烯/氧化铝复合材料加工过程研究[D]. 上海: 华东理工大学, 2019. |
ZHANG M T. Study on the processing process of LLDPE/Al2O3 composites[D]. Shanghai: East China University of Science and Technology, 2019. | |
13 | 王立娟, 杨玉和, 王焱鹏, 等. 管材专用耐热聚乙烯树脂的结构与性能[J]. 合成树脂及塑料, 2014, 31(4): 69-71. |
WANG L J, YANG Y H, WANG Y P, et al. Structure and properties of raised temperature resistance polyethylene special resin for pipes[J]. China Synth Resin Plast, 2014, 31(4): 69-71. | |
14 | 李祎, 程宏达, 于彦存, 等. 高密度聚乙烯复合导热材料性能[J]. 应用化学, 2021, 38(8): 954-960. |
LI Y, CHENG H D, YU Y C, et al. Performance of thermal conductive high density polyethylene composite[J]. Chinese J Appl Chem, 2021, 38(8): 954-960. | |
15 | 霍又嘉, 朱雯雯, 鲁进, 等. 氮化硼/氢氧化铝混杂填充聚乙烯复合材料力学性能及阻燃性能研究[J]. 胶体与聚合物, 2020, 38(4): 162-4. |
HUO Y J, ZHU W W, LU J, et al. Study on the mechanical and flame-retardant properties of boron nitride and aluminum hydroxide chaotic-filled polyethylene composites[J]. Chinese J Colloid Polym, 2020, 38(4): 162-164. | |
16 | BULA K, KLAPISZEWSKI L, PIASECKI A, et al. The role of inorganic-organic bio-fillers containing kraft lignin in improvement in functional properties of polyethylene[J]. Materials, 2021, 14(9): 2114. |
17 | 胡跃鑫, 王金华, 韩向艳, 等. 耐热聚乙烯管PE-RT I与PE-RT II专用树脂结构与性能差异性研究[J]. 塑料工业, 2015, 43(12): 105-109. |
HU Y X, WANG J H, HAN X Y, et al. Difference in the structure and property of special resins for raised temperature resistant polyethylene pipes of PE-RT Ⅰ and PE-RT Ⅱ[J]. China Plast Ind, 2015, 43(12): 105-109. | |
18 | 苏浩然, 何亚东, 信春玲, 等. 高密度聚乙烯流变结晶性能对发泡的影响研究[J]. 中国塑料, 2020, 34(1): 6-10. |
SU H R, HE Y D, XIN C L, et al. Effects of rheological and crystalline properties of high density polyethyleneon its foaming process[J]. China Plast, 2020, 34(1): 6-10. | |
19 | 张秘滔, 谢林生, 马玉录, 等. 基于粒径及填充量影响的聚乙烯/氧化铝流变模型的建立[J]. 高分子材料科学与工程, 2019, 35(9): 103-108. |
ZHANG M T, XIE L S, MA Y L, et al. Establishment of the rheological model of polyethylene/alumina considering the influence of particle size and filling amount[J]. Polym Mater Sci Eng, 2019, 35(9): 103-108. | |
20 | 马小伟, 朱军, 胡斌, 等. 管材专用PE-RT的结构与性能[J]. 合成树脂及塑料, 2017, 34(1): 73-76. |
MA X W, ZHU J, HU B, et al. Structure and properties of special resin PE-RT for pipe[J]. China Synth Resin Plast, 2017, 34(1): 73-76. | |
21 | 谷亚新, 刘根华, 王洪梅, 等. 氧化铝对耐热聚乙烯复合材料性能的影响[J]. 中国塑料, 2017, 31(7): 48-52. |
GU Y X, LIU G H, WANG H G, et al. Effect of alumina on properties of heat resistant polyethylene composites[J]. China Plast, 2017, 31(7): 48-52. | |
22 | GUO S H, ZHENG R, JIANG J T, et al. Enhanced thermal conductivity and retained electrical insulation of heat spreader by incorporating alumina-deposited graphene filler in nano-fibrillated cellulose[J]. Composites Part B, 2019, 178: 107489-107496. |
[1] | Ye LIU, Shao-Bo GUO, Yan-Li LIANG, Hong-Guang GE, Jian-Qi MA, Zhi-Feng LIU, Bo LIU. Preparation and Catalytic Performance of Core‑Shell CuFe2O4@NH2@Pt Nanocomposites [J]. Chinese Journal of Applied Chemistry, 2022, 39(8): 1237-1245. |
[2] | LI Yi, CHENG Hong-Da, YU Yan-Cun, HAN Chang-Yu, CHEN Guang-Jian, ZHU Ying-Nan. Performance of Thermal Conductive High Density Polyethylene Composite [J]. Chinese Journal of Applied Chemistry, 2021, 38(8): 954-960. |
[3] | ZHAO Yun-Xiao, WANG Guang-Xin, CHEN You-Xu, ZHAO Gui-Yan. Research Progress on Preparation and Properties of Polymer/Starch Composites [J]. Chinese Journal of Applied Chemistry, 2021, 38(11): 1432-1440. |
[4] | Cheng ZOU, Yan-Zi GAO, Mei-Na YU, Jiu-Mei XIAO, Lan-Ying ZHANG, Huai YANG. Recent Advances in Liquid Crystal/Polymer Composites and Their Applications in Reverse⁃mode Electrically Switchable Light⁃transmittance Controllable Films [J]. Chinese Journal of Applied Chemistry, 2021, 38(10): 1213-1225. |
[5] | Dan WANG, Hai-Yan PENG, Xing-Ping ZHOU, Xiao-Lin XIE. Research Progress of Holographic Polymer/Liquid Crystal Composites [J]. Chinese Journal of Applied Chemistry, 2021, 38(10): 1268-1298. |
[6] | Shuai ZHANG, Yang YANG, Yan JI, Yen WEI. Research Process on Magneto⁃responsive Liquid Crystalline Elastomers [J]. Chinese Journal of Applied Chemistry, 2021, 38(10): 1299-1309. |
[7] | Jun-Wei GU, Bei CHENG, Xu-Tong YANG. Liquid Crystal Functionalized Boron Nitride Fillers/Liquid Crystal Epoxy Thermally Conductive Composites [J]. Chinese Journal of Applied Chemistry, 2021, 38(10): 1382-1388. |
[8] | LU Ling-Pan, WU Jia-Jun, WANG Kai-Ti. Preparation of Long-Chain Branched Polyethylene Catalyzed by Tandem Catalytic System [J]. Chinese Journal of Applied Chemistry, 2021, 38(1): 69-76. |
[9] | DUAN Jinchi, QI Yunxia, SHI Chengying, ZHAO Qi, LIU Baijun, SUN Zhaoyan, XU Yiquan, HU Wei, ZHANG Niaona. Electron Beam Radiation Modification of Polyethylene Thermal Conductive Composites [J]. Chinese Journal of Applied Chemistry, 2020, 37(8): 896-903. |
[10] | HE Yufang, YAN Pinping, HUANG Baoquan, LUO Fubin, LI Hongzhou, QIAN Qingrong, CHEN Qinghua. Thermal Conductivity and Crystallization Behavior of Polyethylene Glycol/Boron Nitride Phase Change Composites [J]. Chinese Journal of Applied Chemistry, 2020, 37(6): 650-657. |
[11] | WEN Liang, YANG Huawei, SHI Hengchong, LUAN Shifang, YIN Jinghua, SHI Dean. Melt Functionalization of Polyethylene Initiated by N-Hydroxyphthalimide [J]. Chinese Journal of Applied Chemistry, 2020, 37(5): 518-523. |
[12] | GAO Limin, LI Lu, ZHOU Guangyuan, WANG Honghua, ZHU Zhongli. Preparation and Properties of Siliceous Earth/ Phenolphthalein-Based Poly(arylene ether sulfone) Composites [J]. Chinese Journal of Applied Chemistry, 2020, 37(5): 524-530. |
[13] | ZHANG Lu, WANG Haichang, LI Hua, WANG Huijun, HUI Linhai, PENG Meiling, ZHU Yutian. Progress of Recycling of Carbon Fiber/Resin Composites via Supercritical Fluid [J]. Chinese Journal of Applied Chemistry, 2020, 37(12): 1357-1363. |
[14] | ZHAO Liu, SONG Shengjie, MA Kangfu, WANG Hong, FU Lihua, LIU Xinyang, CHEN Lidong, CHENG Weiguo. Adsorption-Oxidative Desulfurization Performance of Core-Shell Polyoxometalate/Magnetic Cerium-Iron Nanocomposite Oxide@SiO2 [J]. Chinese Journal of Applied Chemistry, 2020, 37(12): 1457-1464. |
[15] | QI Yanxin, HUANG Yubin, JIN Ningyi. Preparation and Release Behavior of Progesterone Nano Micelles in Vitro [J]. Chinese Journal of Applied Chemistry, 2020, 37(11): 1340-1342. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||