京ICP备13020181号-2
© 《China Plastics》
© 《China Plastics》
China Plastics ›› 2024, Vol. 38 ›› Issue (1): 55-61.DOI: 10.19491/j.issn.1001-9278.2024.01.009
• Processing and Application • Previous Articles Next Articles
RONG Di1,2(), JIA Zhixin2(
), LIU Lijun2, LI Jiqiang2, ZHAO Chuantao1,2, GAO Lizhen2,3, WANG Shaofeng4
Received:
2023-06-13
Online:
2024-01-26
Published:
2024-01-22
CLC Number:
RONG Di, JIA Zhixin, LIU Lijun, LI Jiqiang, ZHAO Chuantao, GAO Lizhen, WANG Shaofeng. Analysis of influence factors on impact strength of epoxy/carbon⁃fiber⁃composite⁃molded products[J]. China Plastics, 2024, 38(1): 55-61.
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.plaschina.com.cn/EN/10.19491/j.issn.1001-9278.2024.01.009
试验编号 | ||||
---|---|---|---|---|
1 | 130 | 400 | 540 | 1 |
2 | 130 | 500 | 600 | 5 |
3 | 130 | 600 | 660 | 10 |
4 | 130 | 700 | 720 | 15 |
5 | 140 | 600 | 720 | 1 |
6 | 140 | 700 | 660 | 5 |
7 | 140 | 700 | 600 | 10 |
8 | 140 | 400 | 540 | 15 |
9 | 150 | 500 | 600 | 1 |
10 | 150 | 700 | 540 | 5 |
11 | 150 | 600 | 720 | 10 |
12 | 150 | 500 | 660 | 15 |
13 | 160 | 400 | 660 | 1 |
14 | 160 | 500 | 720 | 5 |
15 | 160 | 700 | 540 | 10 |
16 | 160 | 600 | 600 | 15 |
试验编号 | ||||
---|---|---|---|---|
1 | 130 | 400 | 540 | 1 |
2 | 130 | 500 | 600 | 5 |
3 | 130 | 600 | 660 | 10 |
4 | 130 | 700 | 720 | 15 |
5 | 140 | 600 | 720 | 1 |
6 | 140 | 700 | 660 | 5 |
7 | 140 | 700 | 600 | 10 |
8 | 140 | 400 | 540 | 15 |
9 | 150 | 500 | 600 | 1 |
10 | 150 | 700 | 540 | 5 |
11 | 150 | 600 | 720 | 10 |
12 | 150 | 500 | 660 | 15 |
13 | 160 | 400 | 660 | 1 |
14 | 160 | 500 | 720 | 5 |
15 | 160 | 700 | 540 | 10 |
16 | 160 | 600 | 600 | 15 |
试验编号 | ||||
---|---|---|---|---|
1 | 50.85 | 12.93 | 67.80 | 15.75 |
2 | 45.85 | 11.84 | 57.75 | 9.39 |
3 | 42.27 | 4.35 | 49.48 | 5.40 |
4 | 49.10 | 8.97 | 46.53 | 4.75 |
5 | 49.50 | 5.75 | 54.51 | 11.42 |
6 | 47.96 | 4.06 | 33.82 | 10.76 |
7 | 38.07 | 3.13 | 46.47 | 9.82 |
8 | 37.19 | 12.62 | 56.04 | 5.56 |
9 | 42.71 | 1.91 | 66.56 | 9.99 |
10 | 43.03 | 4.76 | 52.09 | 3.49 |
11 | 37.58 | 8.46 | 51.43 | 12.81 |
12 | 41.95 | 6.54 | 45.39 | 17.25 |
13 | 41.34 | 13.25 | 48.77 | 9.48 |
14 | 43.44 | 4.80 | 50.29 | 8.64 |
15 | 41.39 | 4.97 | 54.72 | 6.40 |
16 | 48.47 | 6.04 | 48.04 | 6.71 |
试验编号 | ||||
---|---|---|---|---|
1 | 50.85 | 12.93 | 67.80 | 15.75 |
2 | 45.85 | 11.84 | 57.75 | 9.39 |
3 | 42.27 | 4.35 | 49.48 | 5.40 |
4 | 49.10 | 8.97 | 46.53 | 4.75 |
5 | 49.50 | 5.75 | 54.51 | 11.42 |
6 | 47.96 | 4.06 | 33.82 | 10.76 |
7 | 38.07 | 3.13 | 46.47 | 9.82 |
8 | 37.19 | 12.62 | 56.04 | 5.56 |
9 | 42.71 | 1.91 | 66.56 | 9.99 |
10 | 43.03 | 4.76 | 52.09 | 3.49 |
11 | 37.58 | 8.46 | 51.43 | 12.81 |
12 | 41.95 | 6.54 | 45.39 | 17.25 |
13 | 41.34 | 13.25 | 48.77 | 9.48 |
14 | 43.44 | 4.80 | 50.29 | 8.64 |
15 | 41.39 | 4.97 | 54.72 | 6.40 |
16 | 48.47 | 6.04 | 48.04 | 6.71 |
Mann⁃Whitney U | Wilcoxon W | Z | 渐进显著性 (双尾) | 精确显著性 [2*(单尾显著性)] | X试样冲击强度均值 (16组全部试样) | Y试样冲击强度均值 (16组全部试样) |
---|---|---|---|---|---|---|
42.000 | 178.000 | -3.241 | 0.001 | 43.79 | 51.86 |
Mann⁃Whitney U | Wilcoxon W | Z | 渐进显著性 (双尾) | 精确显著性 [2*(单尾显著性)] | X试样冲击强度均值 (16组全部试样) | Y试样冲击强度均值 (16组全部试样) |
---|---|---|---|---|---|---|
42.000 | 178.000 | -3.241 | 0.001 | 43.79 | 51.86 |
1 | 张 婧, 于 今, 熊 磊, 等. 车用碳纤维复合材料性能及成型工艺[J]. 科技导报, 2016, 34(8): 26⁃30. |
ZHANG J, YU J, XIONG L, et al. Performance and molding processes of automotive carbon fiber reinforced plastics [J]. Science & Technology Review, 2016, 34(8): 26⁃30. | |
2 | 包建文, 蒋诗才, 张代军. 航空碳纤维树脂基复合材料的发展现状和趋势[J]. 科技导报, 2018, 36(19): 52⁃63. |
BAO J W, JIANG S C, ZHANG D J. Current status and trends of aeronautical resin matrix composites reinforced by carbon fiber [J]. Science & Technology Review, 2018, 36(19): 53⁃63. | |
3 | 王英男, 潘利剑, 刘国峰. 复合材料湿法模压成型工艺参数研究[J]. 航空制造技术, 2018, 61(14): 56⁃60. |
WANG Y N, PAN L J, LIU G F. Parameters of composites wet compression molding [J]. Aeronautical Manufacturing Technology, 2018, 61(14): 56⁃60. | |
4 | 郑 兵. 编织碳纤维增强热塑性复合材料热压⁃注塑整体化成形关键技术[D]. 武汉:华中科技大学, 2019. |
5 | 张臣臣, 贾志欣, 刘立君, 等. 环氧树脂/碳纤维复合材料模压制品表面质量影响因素分析[J]. 中国塑料, 2023, 37(3): 77⁃82. |
ZHANG C C, JIA Z X, LIU L J, et al. Analysis of influencing factors for surface quality of carbon fiber/epoxy composite⁃molded products [J]. China Plastics, 2023, 37(3): 77⁃82. | |
6 | 汪 兴, 贾志欣, 刘立君, 等. 基于极差分析的SMC复合材料模压工艺参数优化[J]. 中国塑料, 2022, 36(10): 77⁃83. |
WANG X, JIA Z X, LIU L J, et al. Optimization of molding process parameters for sheet molding compound composites based on range analysis [J]. China Plastics, 2022, 36(10): 77⁃83. | |
7 | 胡章平. 长玻璃纤维增强聚丙烯复合材料模压成型工艺研究[D]. 长沙:湖南大学, 2015. |
8 | 杨志生, 贾丽霞. 玻璃纤维增强酚醛树脂模压制品工艺研究[J]. 航天制造技术, 2008, 8(4): 19⁃21. |
YANG Z S, JIA L X. Research on the technology of glass fiber reinforced phenolic resin molded products [J]. Aeronautical Manufacturing Technology, 2008, 8(4): 19⁃21. | |
9 | 花蕾蕾. 复合材料构件固化变形分析及其模具结构优化[D]. 南京:南京航空航天大学, 2020. |
10 | 林旭东. 连续玻纤增强PVC复合材料制备及强度研究[D]. 北京:北京化工大学, 2019. |
11 | 宋清华, 肖 军, 文立伟, 等. 模压工艺对玻璃纤维增强聚丙烯复合材料层合板力学性能的影响[J]. 复合材料学报, 2016, 33(12): 2 740⁃2 748. |
SONG Q H, XIAO J, WEN L W, et al. Influence of molding press on mechanical pro perties of glass fiber reinforced polypropylene composite laminates[J]. Acta Materiae Compositae Sinica, 2016, 33(12): 2 740⁃2 748. | |
12 | 张 吉. 基于有限元模拟的复合材料构件热压罐成型工艺研究[D]. 南京:南京航空航天大学, 2012. |
13 | Mayer C, Wang X, Neitzel M. Macro⁃ and micro⁃impregnation phenomena in continuous manufacturing of fabric reinforced thermoplastic composites[J]. Composites Part A: Applied Science and Manufacturing, 1998, 29(7): 783⁃793. |
14 | 吴凤楠, 刘 阔, 贾志欣, 等. SMC与PCM复合材料模压件力学强度[J]. 工程塑料应用, 2020, 48(12): 118⁃122. |
WU F N, LIU K, JIA Z X, et al. The mechanical properties of SMC and PCM compression molding parts [J]. Engineering Plastics Application, 2020, 48(12): 118⁃122. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||