Please wait a minute...
材料导报  2025, Vol. 39 Issue (23): 24110008-12    https://doi.org/10.11896/cldb.24110008
  高分子与聚合物基复合材料 |
阻燃聚合物复合材料研究进展
刘小雅1, 杨伏生1,2,*
1 西安科技大学化学与化工学院,西安 710054
2 自然资源部煤炭资源勘查与综合利用重点实验室,西安 710021
Recent Advances in Flame-retardant Polymer Composites
LIU Xiaoya1, YANG Fusheng1,2,*
1 College of Chemistry and Chemical Engineering, Xi’an University of Science and Technology, Xi’an 710054, China
2 Key Laboratory of Coal Resources Exploration and Comprehensive Utilization, Ministry of Natural Resources, Xi’an 710021, China
下载:  全 文 ( PDF ) ( 35918KB ) 
输出:  BibTeX | EndNote (RIS)      
摘要 相比传统材料,聚合物复合材料大多具有密度低、比强度高、耐化学腐蚀、热稳定性好和易加工成型等特点,目前在航空航天、电子、建筑、汽车、化工、纺织、消防等领域得到广泛应用,但易燃性严重制约了其在明火或高温环境的安全性和可靠性,因此,降低其易燃性已成为工业应用的强制要求,开发阻燃型聚合物复合材料成为有效途径。近年来,环境友好型高效阻燃剂开发和配方设计,功能型植物纤维、多孔易修饰的金属有机框架化合物以及纳米矿物增强的聚合物复合材料研究均取得长足进步,对提升新型轻质、高强、多功能阻燃复合材料附加值和拓宽其应用领域具有重要影响。本文综述近年来卤系、磷系和镁系等传统阻燃剂,以及硅系、碳系、生物质基、金属有机骨架基和离子液体基等新型阻燃剂开发和功能化现状,归纳聚合物复合材料阻燃改性技术,总结复合材料阻燃机理,展望阻燃聚合物复合材料发展趋势,以期为新颖环保型高性能阻燃材料开发与利用提供参考。
服务
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章
刘小雅
杨伏生
关键词:  聚合物复合材料  阻燃剂  功能化改性  阻燃机理    
Abstract: Polymer composites are widely used in the fields such as aeronautics and astronautics, electronics, architecture, automotive, chemical industry, textile and fire engineering, due totheir low density, high specific strength, chemical corrosion resistance, good thermal stability and easy formability compared with traditional materials. However, flammability seriously restricts their safety and reliability in open flame and high-temperature environments. Therefore, flammability reduction has become a mandatory requirement for industrial applications, and the development of flame-retardant polymer composites is an effective approach. Recently, significant progress has been made in the development and formulation design of environmentally friendly and efficient flame retardants, functional plant fibers, porous and easily modifiable metal organic framework compounds, and nano mineral reinforced polymer composites, contributing to new value-added lightweight, high-strength, flame-retardant functional composites exploration and application expansion. Recent development and functionalization status of traditional flame retardants, such as halogen-based, phosphorus-based, and magnesium-based, as well as novel flame retardants involving silicon-based, carbon-based, biomass-based, metal organic framework based, and ionic liquid based, were reviewed in this paper. Modification techniques for flame retardancy, together with flame retardation mechanism of the composites, were also summarized. Trends of flame-retardant polymer composites were finally proposed, in order to provide reference for further development and utilization of novel environmentally-friendly high-performance flame-retardant composites.
Key words:  polymer composite    flame-retardant    functional modification    flame retardation mechanism
出版日期:  2025-12-10      发布日期:  2025-12-03
ZTFLH:  TB34  
基金资助: 陕西省重点研发计划(2023-LL-QY-05)
通讯作者:  *杨伏生,博士,西安科技大学化学与化工学院副教授、硕士研究生导师。目前主要从事矿物功能材料和矿物加工智能化等方面的研究。fushengyang@163.com   
作者简介:  刘小雅,西安科技大学化学与化工学院硕士研究生,在杨伏生副教授的指导下进行研究。目前主要研究领域为矿物功能材料。
引用本文:    
刘小雅, 杨伏生. 阻燃聚合物复合材料研究进展[J]. 材料导报, 2025, 39(23): 24110008-12.
LIU Xiaoya, YANG Fusheng. Recent Advances in Flame-retardant Polymer Composites. Materials Reports, 2025, 39(23): 24110008-12.
链接本文:  
https://www.mater-rep.com/CN/10.11896/cldb.24110008  或          https://www.mater-rep.com/CN/Y2025/V39/I23/24110008
1 Fang X D. Plastics Additives, 2021(6), 6 (in Chinese).
房晓丹. 塑料助剂, 2021(6), 6.
2 Zhao H X, Liu D N, Kang Z C, et al. Internal Combustion Engine & Parts, 2020(14), 208 (in Chinese).
赵红霞, 刘丁宁, 康志成, 等. 内燃机与配件, 2020(14), 208.
3 Kang C H. Plastics, 2023, 52(4), 172 (in Chinese).
康成虎. 塑料, 2023, 52(4), 172.
4 Zhang Z L, Zhou L X, Hu J H. Journal of Rocket Propulsion, 2023, 49(2), 51 (in Chinese).
张忠利, 周立新, 胡锦华. 火箭推进, 2023, 49(2), 51.
5 Wu P. Study on fireproof characteristics of carbon fiber epoxy composites for large passenger aircraft. Master’s Thesis, Shenyang Aerospace University, China, 2019 (in Chinese).
吴鹏. 大型客机碳纤维环氧复合材料防火特性研究. 硕士学位论文, 沈阳航空航天大学, 2019.
6 Zhang H. Preparation of epoxy-modified silicone rubber flexible ablation resistant composite system and its structure and properties. Master’s Thesis, Sichuan University, China, 2021 (in Chinese).
章豪. 环氧改性硅橡胶柔性耐烧蚀复合体系的设计制备及结构与性能研究. 硕士学位论文, 四川大学, 2021.
7 Song R K, Zhang M S, Dai Z, et al. Acta Materiae Compositae Sinica, 2024, 41(1), 271 (in Chinese).
宋若康, 张梦珊, 戴珍, 等. 复合材料学报, 2024, 41(1), 271.
8 Qian Y X, Luo Y B, Li Y, et al. Chemical Engineering Journal, 2023, 467, 143433.
9 Tong X. Research on flame retardant and low dielectric modification of new epoxy resins for the 5G era. Master’s Thesis, Beijing University of Chemical Technology, China, 2024 (in Chinese).
童鑫. 面向5G时代新型环氧树脂的阻燃和低介电改性研究. 硕士学位论文, 北京化工大学, 2024.
10 Lin W, Liang C C, Zeng J L, et al, Journal of Building Engineering, 2024, 89, 109257.
11 Höhne C C, Blaess P, Ilinzeer S, et al. Composites Part A:Applied Science and Manufacturing, 2023, 167, 107404.
12 Lu S, Luo C X, Yang P P, et al. Materials Today Communications, 2024, 41, 110709.
13 Hamza R A, Iorhemen O T, Tay J H. Environmental Technology & Innovation, 2016, 5, 161.
14 Xiao X L, Xiao X, Liu S, et al. Industrial Crops and Products, 2024, 219, 119105.
15 Tushar S I, Anik H R, Uddin M M, et al. Carbohydrate Polymers, 2024, 339, 122237.
16 Rakotomalala M, Wagner S, Döring M. Materials, 2010, 3(8), 4300.
17 Chen L, Wang Y Z. Polymers for Advanced Technologies, 2010, 21(1), 1.
18 Chen M J, Shao Z B, Wang X L, et al. Industrial & Engineering Chemistry Research, 2012, 51(29), 9769.
19 Costes L, Laoutid F, Brohez S, et al. Materials Science and Engineering:R:Reports, 2017, 117, 1.
20 Guo L C, Lv Z L, Zhu T T, et al. Science of the Total Environment, 2023, 858(1), 159746.
21 Liao L M, Li J F, Huang Q. Shandong Chemical Industry, 2019, 48(17), 87(in Chinese).
廖立敏, 李建凤, 黄茜. 山东化工, 2019, 48(17), 87.
22 Pham L H, Nguyen N T, Nguyen D M, et al. Journal of Materials Science & Technology, 2024, 203, 1.
23 Dong X X, Zhu T, Liu G Q, et al. Journal of Colloid and Interface Science, 2023, 643, 223.
24 Wang L, Chang B X, Yue Y Y, et al. Electronics & Packaging, 2022, 22(10), 5(in Chinese).
王璐, 常白雪, 岳艺宇, 等. 电子与封装, 2022, 22(10), 5.
25 Du W B, Lin Z Y, Chen T, et al. Polymer Degradation and Stability, 2024, 229, 110932.
26 Zhao W J, Li B, Li R L, et al. Ocean & Coastal Management, 2024, 255, 107262.
27 Chen P H, Li X X, Li C B, et al. Applied Thermal Engineering, 2024, 256, 124160.
28 Wang W, He Y S, Sun H W, et al. Composites:Part A, 2024, 187, 108468.
29 Zhang J, Fu X L, Cai W, et al. Thermochimica Acta, 2023, 729, 179609.
30 Yu M M, Chu Y J, Xie W, et al. Chemical Engineering Journal, 2024, 480, 148167.
31 Li F L, Huang Z Q, Liu C J, et al. RSC Advances, 2024, 14(12), 8204.
32 Shen C Y, Li C L, Tang J W, et al. Chemical Industry and Engineering Progress, 2024, 43(9), 4980(in Chinese).
申纯宇, 李翠利, 汤建伟, 等. 化工进展, 2024, 43(9), 4980.
33 Zhang Y, Wu L L, Deng X, et al. Advanced Powder Technology, 2021, 32(6), 1891.
34 Liu J C, He Y P, Chang H B, et al. Polymer Degradation and Stability, 2020, 171, 109051.
35 Xu J S, Yang H Y, Luo Z B, et al. RSC Advances, 2022, 12(5), 2914.
36 Wang K, Huang W J, Zhang K, et al. Journal of Materials Research and Technology, 2023, 24, 2550.
37 Cao J T, Tao J, Yang M N, et al. Chemical Engineering Journal, 2024, 485, 149909.
38 Xie W M, Liang X Z, Zhao X G, et al. Materials Reports, 2021, 35(23), 23192(in Chinese).
解维闵, 梁晓正, 赵晓光, 等. 材料导报, 2021, 35(23), 23192.
39 Pan Y N, Liu L J, Wang K, et al. New Chemical Materials, 2024, 52(2), 20(in Chinese).
盘雨凝, 刘霖靖, 王珂, 等. 化工新型材料, 2024, 52(2), 20.
40 Gao Z Y, Yuan B H, Qi C R, et al. Composites Part A:Applied Science and Manufacturing, 2024, 178, 108014.
41 Ju Y Q, Wang T W, Huang Y, et al. Journal of Vinyl and Additive Technology, 2016, 22(4), 506.
42 Zhang S, Zou H, Gu X Y. China Plastics, 2013, 27(11), 23(in Chinese).
张胜, 邹欢, 谷晓昱, 等. 中国塑料, 2013, 27(11), 23.
43 Xie W M, Chen H Y, He D S, et al. Surface and Coatings Technology, 2019, 367, 118.
44 Yang J J, Dong Y G, Zhang J, et al. Inorganic Chemicals Industry, 2023, 55(12), 111(in Chinese).
杨俊杰, 董永刚, 张静, 等. 无机盐工业, 2023, 55(12), 111.
45 Sun J J, Hu Y, Guan M F, et al. Journal of Environmental Chemical Engineering, 2023, 11(6), 111505.
46 Zhou Q Q, Gong K L, Zhou K Q, et al. Polymers for Advanced Technologies, 2019, 30(9), 2480.
47 Zhang H, Jin L, Wu H, et al. Polymers, 2022, 14(4), 725.
48 Zhang S X, Wu Y Y, Guo Y J, et al. Industrial Minerals & Processing, 2024, 53(7), 27(in Chinese).
张守逊, 吴雨瑶, 郭永杰, 等. 化工矿物与加工, 2024, 53(7), 27.
49 Qiu X Q, Wan X L, Wang Z C, et al. Composites:Part B:Engineering, 2022, 238, 109887.
50 Zhang J F, Hua Y F, Liu J, et al. Composites Part A:Applied Science and Manufacturing, 2023, 175, 107825.
51 Cheng J J, Niu S S, Kang M Y, et al. Energy, 2022, 240, 122821.
52 Zhang L, Yang D, Li Z, et al. Sustainable Materials and Technologies, 2024, 39, e00845.
53 Lee S, Kim H M, Seong D G, et al. Carbon, 2019, 143, 650.
54 Cao C F, Zhu G T, Tang L C, et al. Flame retardant properties of polymer/graphene nanocomposites, Woodhead Publishing, UK, 2024, pp. 159.
55 Kabeb S M, Hassan A, Mohamad Z, et al. Materials Today:Procee-dings, 2022, 51, 1288.
56 Yuan Y, Lin W L, Xiao Y, et al. Journal of Materials Science & Technology, 2024, 195, 29.
57 Ma X Z, Chen J, Zhu J, et al. Macromolecular Rapid Communications, 2020, 42, 2000492.
58 Zhang Y, Liu L H, Yao M H, et al. Chemical Engineering Journal, 2024, 495, 153429.
59 Haurie I L, Yang Y X, Wang D Y, et al. Express Polymer Letters, 2020, 14(8), 705.
60 Wang B B, Qian X D, Shi Y Q, et al. Composites Part B:Engineering, 2015, 69, 22.
61 Taib M N A M, Hamidon T S, Garba Z N, et al. Polymer, 2022, 244, 124677.
62 Chen X F, Zhang Y Y, Yu H Y. Materials Letters, 2024, 354, 135335.
63 Liu Y D, Cheng F F, Li K, et al. Carbohydrate Polymers, 2024, 328, 121730.
64 Weng S X, Li Z, Bo C Y, et al. Reactive and Functional Polymers, 2023, 185, 105535.
65 Puyadena M, Widsten P, Wirtanen T, et al. Industrial Crops & Pro-ducts, 2024, 220, 119261.
66 Chen W X, Liu H B, Yan Q M, et al. Composites Communications, 2024, 48, 101949.
67 Zhou G, Li Y Y, Liu Y, et al. Journal of Cleaner Production, 2024, 448, 141438.
68 Cao M, Liu B W, Zhang L. Composites Part B:Engineering, 2021, 225, 109309.
69 Kong Z M, Chen Y J, Qian L J. International Journal of Biological Macromolecules, 2024, 254(3), 128033.
70 Song K P, Pan Y T, Zhang J, et al. Chemical Engineering Journal, 2023, 468, 143653.
71 Zhang J H, Kong Q H, Yang L W, et al. Green Chemistry, 2016, 18(10), 3066.
72 Wang L, Song L, Hu Y, et al. Industrial & Engineering Chemistry Research, 2013, 52(23), 8062.
73 Lou Y M, Ma H Y, Su Y Y, et al. Applied Clay Science, 2023, 231, 106756.
74 Liu D Y, Cui Y H, Zhang T L. Polymer Degradation and Stability, 2021, 194, 109749.
75 Wang J L, Yu S, Huang Y J, et al. Applied Surface Science, 2023, 637, 157953.
76 Zhang J, Li Z, Qi X L, et al. Composites Part B:Engineering, 2020, 188, 107881.
77 Qiu X S, Wu C, Lin J Y, et al. Polymer Degradation and Stability, 2024, 229, 110982.
78 Gao Y, Gu X Y, Li H F, et al. New Chemical Materials, 2021, 49(9), 32(in Chinese).
高野, 谷晓昱, 李洪飞, 等. 化工新型材料, 2021, 49(9), 32.
79 Yang Y, Wang X L, Shen C Y, et al. Acta Materiae Compositae Sinica, 2024(8), 2(in Chinese).
杨英, 王兴龙, 申纯宇, 等. 复合材料学报, 2024(8), 2.
80 Wei L J, Zhang X, Min F S, et al. Reactive and Functional Polymers, 2024, 197, 105854.
81 Bi X, Zhang Z Q, Song K P, et al. Composites:Part A: Applied Science and Manufacturing, 2024, 184, 108283.
82 Wang Y H, Wu W H, Meng W H, et al. Composites Part B:Engineering, 2019, 179, 107543.
83 Jiang T, Liu X J, Shen Q, et al. Wire & Cable, 2024, 67(3), 1(in Chinese).
蒋韬, 刘雄军, 沈清, 等. 电线电缆, 2024, 67(3), 1.
84 Tang Y, Zhang X Y, Liu X Y, et al. Chemical Engineering Journal, 2024, 482, 148992.
85 Duan R, Wu H J, Li J H, Colloids and Surfaces A:Physicochemical and Engineering Aspects, 2022, 635, 128093.
86 Tan S M, Wang X Y, Xu R L, et al. Chemical Engineering Journal, 2024, 497, 154773.
87 Li X, Yang Y Z, Tang D D, et al. International Journal of Biological Macromolecules, 2024, 260(1), 129292.
88 Wan M, Shi C L, Chen L, et al. Polymer Degradation and Stability, 2024, 226, 110821.
89 Liu C, Shi Y Q, Ye H, et al. Composites Part A:Applied Science and Manufacturing, 2023, 168, 107486.
90 Song K P, Bi X, Wang D, et al. Chemical Engineering Journal, 2024, 495, 153850.
91 Shen F X, Li Y, Chen Z Y, et al. Progress in Organic Coatings, 2024, 189, 108276.
92 Zhu Y J, Wang H R, Fu L B, et al. Applied Materials Today, 2024, 38, 102233.
93 Zheng S M, Li W, Chen Y Y, et al. International Journal of Biological Macromolecules, 2024, 261(2), 129943.
94 Jia L, Zhang W C, Tong B, et al. Acta Polymerica Sinica, 2019, 50(7), 740(in Chinese).
贾琳, 张文超, 佟斌, 等. 高分子学报, 2019, 50(7), 740.
95 Zhao J Y, Jiang L N, Zuo C L, et al. Industrial Crops and Products, 2024, 218, 118925.
96 Qu Y L, Qi P, Chen F, et al. International Journal of Biological Macromolecules, 2024, 274, 133222.
97 Zhang J, Guo X Y, Guan J P, et al. International Journal of Biological Macromolecules, 2024, 277(3), 134458.
98 Ahmed L, Zhang B, Hawkins S, et al. Journal of Loss Prevention in the Process Industries, 2017, 49, 228.
99 Chen F Q, Xie D, Hu H T, et al. Composites Communications, 2024, 51, 102065.
100 Chen H Y, Li Y, Wang P H, et al. Composites:Part A:Applied Science and Manufacturing, 2024, 177, 107907.
101 Jiang Z M, Li H, He Y W, et al. Applied Surface Science, 2019, 479, 765.
102 Wang K, Gao W. Chemical Engineering Journal, 2024, 497, 154804.
103 Cao Y B, Li J, Li X H, et al. Materials Today Communications, 2024, 39, 108627.
104 Wang M W, Peng G X, Chen C L, et al. Colloids and Surfaces A:Phy-sicochemical and Engineering Aspects, 2022, 642, 128645.
105 Wang L X, Xiang S F, Ling G P, et al. Polymer Degradation and Stability, 2025, 232, 111140.
106 Farris S, Pozzoli S, Biagioni P, et al. Polymer, 2010, 51(16), 3591.
107 Shen J J, Liang J W, Lin X F, et al. Polymers, 2021, 14(1), 82.
108 Wang X, Kalali E N, Wan J T, et al. Progress in Polymer Science, 2017, 69, 22.
109 Yuan L L, Yang Z, Zeng P J, et al. European Polymer Journal, 2024, 210, 112959.
110 Mi Z Z, Chu F K, Hu W Z, et al. Polymer Degradation and Stability, 2024, 224, 110749.
111 Liang B H, Liu K, Dai J M, et al. Polymer Degradation and Stability, 2024, 225, 110807.
112 Wang L C, Liang Y T, Hu Y, et al. Journal of Loss Prevention in the Process Industries, 2020, 67, 104263.
113 Wang F, Wu N J, Wang M H, et al. Polymer Degradation and Stability, 2024, 227, 110843.
114 He R F, Yin Z T, Yu X L, et al. Polymers for Advanced Technologies, 2024, 35(4), e6364.
115 Deng Z Y, Shi M X, Liang Y, et al. Polymer Testing, 2024, 131, 108352.
116 Pham C T, Nguyen B T, Phan H T Q, et al. Journal of Applied Polymer Science, 2020, 137(37), 49110.
117 Pei B, Yu M G, Chen L W, et al. Journal of Loss Prevention in the Process Industries, 2016, 40, 546.
118 Mohanty A K, Vivekanandhan S, Tripathi N, et al. Composites Part C:Open Access, 2023, 12, 100380.
119 He L, Bao G G, Yu X, et al. Chemical Engineering Journal, 2024, 485, 149765.
120 Prabhakar M N, Cabo M C, Yu R W, et al. Polymer Testing, 2024, 132, 108367.
121 Zang B C, Gao X P, Yao D H, et al. Materials Today Communications, 2024, 39, 109374.
122 Zhong F, Chen C L, Zheng J C, et al. Colloids and Surfaces A:Physicochemical and Engineering Aspects, 2022, 647, 129200.
123 Lin M, Li B, Li Q F, et al. Journal of Applied Polymer Science, 2011, 121(4), 1951.
124 Xu Z S, Jia H Y, Yan L, et al. Journal of Vinyl and Additive Technology, 2021, 27(1), 161.
125 Li Q L, Song X N, Pan Y T, et al. Journal of Colloid and Interface Science, 2024, 674, 445.
126 Wang Z Y, Wu W, Liu Z W, et al. Reactive and Functional Polymers, 2023, 190, 105621.
127 Li X. China Synthetic Resin and Plastics, 2024, 41(2), 26(in Chinese).
李湘. 合成树脂及塑料, 2024, 41(2), 26.
128 Zhang L P, Zhao Z G, Huang Y Y, et al. Progress in Organic Coa-tings, 2024, 194, 108613.
129 Li B C. Shandong Chemical Industry, 2024, 53(7), 24(in Chinese).
李宝钗. 山东化工, 2024, 53(7), 24.
130 Santos L G S, Paz S P A, Cunha E J S, et al. Journal of Materials Research and Technology, 2020, 9(5), 11531.
[1] 李迎昕, 陈雅君, 钱立军. 含磷酰胺结构阻燃剂在高分子材料中的应用进展[J]. 材料导报, 2025, 39(5): 23120086-8.
[2] 潘也唐, 李天宇, 徐云蕾, 苗伟佳. 网状材料阻燃聚合物的研究进展[J]. 材料导报, 2025, 39(21): 24090163-10.
[3] 崔晓晴, 王水莲, 王锐, 张洪艳. 二维导电纳米材料在聚合物燃烧预警及阻燃应用中的研究进展[J]. 材料导报, 2024, 38(17): 23040277-9.
[4] 吴妹, 徐晓磊, 李晓, 刘玖红, 于光睿, 段好东, 韩玉玺, 于青, 王忠卫. 甲基取代二芳基氧化膦阻燃改性环氧树脂的研究[J]. 材料导报, 2024, 38(16): 23040213-10.
[5] 赵明明, 王继辉, 倪爱清, 陈俊磊, 王昌增, 邬志超. 阻燃改性环氧树脂的抗紫外老化研究[J]. 材料导报, 2024, 38(1): 22080234-7.
[6] 刘圣洁, 林钰, 李梦然, 周胜波. 基于MSCR试验的温拌阻燃沥青高温性能评价与分级[J]. 材料导报, 2023, 37(9): 21060064-6.
[7] 鲁玉鑫, 卢林刚. 聚磷酸铵-单宁酸-三聚氰胺/环氧树脂复合材料的阻燃及力学性能[J]. 材料导报, 2023, 37(9): 21090236-8.
[8] 耿亚茹, 杨国超, 徐冰冰, 张求慧. 利用静电吸附构建生物基核壳阻燃剂用于阻燃改性牛皮纸[J]. 材料导报, 2023, 37(5): 21070085-7.
[9] 许松江, 许志彦, 侯泽明, 宝冬梅, 周国永, 邹光龙. 环氧树脂/DOPS衍生物复合材料的阻燃性能及热降解行为[J]. 材料导报, 2023, 37(22): 22070044-7.
[10] 常郗文, 龙永双, 仪明伟, 王晨, 肖月. 道路沥青挥发性有机化合物减排材料的研究进展[J]. 材料导报, 2023, 37(20): 22040399-16.
[11] 陆海梅, 王超, 王洪坤, 张李佳琦, 黄勇, 吴敏. 全组分微纳化木质纤维素基聚磷酸铵阻燃剂的制备及在纸张中的应用[J]. 材料导报, 2023, 37(10): 22020161-1.
[12] 何兆益, 谭洋伟, 李家琪, 张权, 吴逸飞. 埃洛石纳米管协效阻燃改性沥青性能及机理研究[J]. 材料导报, 2022, 36(2): 20110080-8.
[13] 刘颖, 黄艳辉, 刘贤淼. 气凝胶型轻木基复合材料的研究进展[J]. 材料导报, 2022, 36(15): 21010182-9.
[14] 徐建林, 王涛, 康成虎, 杨文龙, 牛磊. 阻燃剂研究与应用进展及问题思考[J]. 材料导报, 2022, 36(10): 20110227-9.
[15] 张凯, 桂泰江, 吴连锋, 郭莉莎, 郭灵敏. 导热绝缘聚合物复合材料的研究进展[J]. 材料导报, 2021, 35(Z1): 571-575.
[1] Xu LI,Ziru WANG,Li YANG,Zhendong ZHANG,Youting ZHANG,Yifan DU. Synthesis and Performance of Magnetic Oil Absorption Material with Rice Chaff Support[J]. Materials Reports, 2018, 32(2): 219 -222 .
[2] LIU Shuaiyang, WANG Aiqin, LYU Shijing, TIAN Hanwei. Interfacial Properties and Further Processing of Cu/Al Laminated Composite: a Review[J]. Materials Reports, 2018, 32(5): 828 -835 .
[3] . Adhesion in SBS Modified Asphalt Containing Warm Mix Additive and
Aggregate System Based on Surface Free Theory
[J]. Materials Reports, 2017, 31(4): 115 -120 .
[4] CAO Xiuzhong, ZHAO Bing, HAN Xiuquan, HOU Hongliang, QU Haitao. Research on Deformation Mechanism of SiC Fiber Reinforced Titanium Matrix Composites Subjected to High Temperature Axial Tension[J]. Materials Reports, 2017, 31(8): 88 -93 .
[5] ZHANG Jiaqing, ZHANG Bosi, WANG Liufang, FAN Minghao, XIE Hui, LI Wei. The State of the Art of Combustion Behavior of Live Wires and Cables[J]. Materials Reports, 2017, 31(15): 1 -9 .
[6] LI Xueyun, WANG Hezhong. Optimization and Characterization of TEMPO-Mediated Oxidization of Nanochitin Whiskers[J]. Materials Reports, 2018, 32(10): 1597 -1601 .
[7] ZHAO Qingchen, WANG Jinlong, ZHANG Yuanliang, SHEN Yihong, LIU Shujie. Fatigue Behavior and Fatigue Life for FV520B-I at Different Loading Frequencies[J]. Materials Reports, 2018, 32(16): 2837 -2841 .
[8] ZHOU Chao, WANG Hui, OUYANG Liuzhang, ZHU Min. The State of the Art of Hydrogen Storage Materials for High-pressure Hybrid Hydrogen Vessel[J]. Materials Reports, 2019, 33(1): 117 -126 .
[9] WANG Huifen, LIU Gang, CAO Kangli, YANG Biqi, XU Jun, LAN Shaofei, ZHANG Lixin. Development Status of Carbon Nanotube Materials and Their Application Prospects in Spacecraft[J]. Materials Reports, 2019, 33(z1): 78 -83 .
[10] LEI Lin, YANG Qingbo, ZHANG Zhiqing, FAN Xiangze, LI Xu, YANG Mou, DENG Zanhui. Multi-pass Compression Behavior and Microstructure Evolution of AA2195 Aluminum Lithium Alloy[J]. Materials Reports, 2019, 33(z1): 348 -352 .
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed