纺织学报 ›› 2023, Vol. 44 ›› Issue (12): 88-95.doi: 10.13475/j.fzxb.20220505501
GU Yuanhui1,2, WANG Shudong1, ZHANG Diantang2()
摘要:
为进一步探究编织复合材料圆管在扭转加载过程中的力学响应,在前期试验研究的基础上,以具有45° 编织角的碳纤维/树脂复合材料圆管为例,采用了综合考虑圆管的细观结构和全尺寸模拟计算成本的多尺度方法构建了编织复合材料圆管有限元模型,系统模拟了其扭转加载过程,并分别讨论了圆管单胞的剪切和圆管的扭转渐进损伤过程。结果表明:模拟结果与试验结果具有较高的一致性;圆管单胞在剪切失效之前的损伤分布基本呈对称状态,纤维束早于基体形成损伤,承担主要载荷;纤维束编织路径对圆管的扭转损伤扩展有一定的影响,从损伤出现至结构完全失效的用时很短,损伤单元在扭转加载末期产生于圆管中部,并沿纤维束编织路径扩展,最终形成空间螺旋型损伤剪切带。
中图分类号:
[1] | QI Y Y, GU B H, SUN B Z, et al. Full-field strain and temperature evolution of electroactive three-dimensional braided thermoplastic shape memory composites[J]. Composites Science & Technology, 2022, 219: 1-9. |
[2] | 万振凯, 贾敏瑞, 包玮琛, 等. 三维编织复合材料中碳纳米管纱线嵌入位置和数量的优化配置[J]. 纺织学报, 2021, 42(9): 71-82. |
WAN Zhenkai, JIA Minrui, BAO Weichen, et al. Optimal configuration of embedded position and number of carbon nanotube yarns in 3-D braided composites[J]. Journal of Textile Research, 2021, 42(9): 71-82. | |
[3] | ZHOU W, WEI Z Y, WANG G F, et al. Transverse tensile deformation and failure of three-dimensional five-directional braided carbon fiber composites[J]. Fibers and Polymers, 2021(4): 1099-1110. |
[4] | 赵思钰, 温卫东, 周喻. 基于三胞模型的2.5D编织复合材料力学性能研究[J]. 材料导报, 2021, 35(22): 22178-22192, 22199. |
ZHAO Siyu, WEN Weidong, ZHOU Yu. Investigation of mechanical properties of 2.5D braided composites based on triple-cell model[J]. Materials Report, 2021, 35(22): 22178-22192, 22199. | |
[5] | ZHANG D, ZHENG X T, WANG Z B, et al. Effects of braiding architectures on damage resistance and damage tolerance behaviors of 3D braided composites[J]. Composite Structures, 2020. DOI:10.1016/j.compstruct.2019.11565. |
[6] | 谭焕成, 许善迎, 黄雄, 等. 三维四向编织复合材料宏观有限元模型冲击损伤仿真及试验验证[J]. 复合材料学报, 2018, 35(5): 1139-1148. |
TAN Huancheng, XU Shanying, HUANG Xiong, et al. Macro scale finite element model for impact damage simulation and experimental verification of three dimensional four directional braided composites[J]. Acta Materiae Compositae Sinica, 2018, 35(5): 1139-1148. | |
[7] | ZHANG C, CURIEL-SOSA J L, BUI T Q. Meso-scale finite element analysis of mechanical behavior of 3D braided composites subjected to biaxial tension loadings[J]. Applied Composite Materials, 2019, 26(1): 139-157. |
[8] | WANG H, GU B H, SUN B Z. Finite element analyses on longitudinal compressive behaviors of 3D braided carbon/epoxy composite with different braided angles at low temperature[J]. Journal of The Textile Institute, 2019(1): 37-49. |
[9] | 封端佩, 商元元, 李俊. 三维四向和五向编织复合材料冲击断裂行为的多尺度模拟[J]. 纺织学报, 2020, 41(10): 67-73. |
FENG Duanpei, SHANG Yuanyuan, LI Jun. Multi-scale simulation of impact failure behavior for 4-and 5-directional 3-D braided composites[J]. Journal of Textile Research, 2020, 41(10): 67-73. | |
[10] | CHAMIS C C. Mechanics of composite materials past, present and future[J]. Journal of Composites Techno-logy & Research, 1984, 11(1): 3-14. |
[11] | CHAMIS C C. Simplified composite micromechanics equations for strength, fracture toughness and environmental effects[J]. Sampe Quarterly-Society for the Advancement of Material and Process Engineering, 1984, 15(4): 41-55. |
[12] | LIU X D, ZHANG D T, SUN J, et al. Refine reconstruction and verification of meso-scale modeling of three-dimensional five-directional braided composites from X-ray computed tomography data[J]. Composite Structures, 2020. DOI:10.1016/j.compstruct.2020. |
[13] | XIA Z H, ZHOU C W, YONG Q L, et al. On selection of repeated unit cell model and application of analysis of composites[J]. International Journal of Solids and Structures, 2006, 43(2): 266-278. |
[14] | HASHIN Z. Failure criteria for unidirectional fiber composite[J]. Journal of Applied Mechanics, 1980, 47: 329-334. |
[15] | MURAKAMI S. Mechanical modeling of material damage[J]. Journal of Applied Mechanics, 1988, 55: 280-286. |
[16] | GU Y H, ZHANG D T, ZHANG Z W, et al. Torsion damage mechanisms analysis of two-dimensional braided composite tubes with digital image correction and X-ray micro-computed tomography[J]. Composite Structures, 2021, 256:1-11. |
[17] | KOLPAKOV A G, RAKIN S I. Homogenized strength criterion for composite reinforced with orthogonal systems of fibers[J]. Mechanics of Materials, 2020, 148:1-7. |
[1] | 俞旭良, 丛洪莲, 孙菲, 董智佳. 仿猪笼草口缘结构功能针织物的设计与应用[J]. 纺织学报, 2023, 44(07): 72-78. |
[2] | 葛铖, 郑元生, 刘凯, 辛斌杰. 电压对静电纺串珠纤维成形过程的影响[J]. 纺织学报, 2023, 44(03): 36-41. |
[3] | 黄耀丽, 陆诚, 蒋金华, 陈南梁, 邵慧奇. 聚酰亚胺纤维增强聚二甲基硅氧烷柔性复合膜的热力学性能[J]. 纺织学报, 2022, 43(06): 22-28. |
[4] | 刘雪艳, 蒋高明. 基于ABAQUS的运动压力袜编织尺寸预测[J]. 纺织学报, 2022, 43(06): 79-85. |
[5] | 谷元慧, 周红涛, 张典堂, 刘景艳, 王曙东. 碳纤维增强编织复合材料圆管的扭转力学性能及其损伤机制[J]. 纺织学报, 2022, 43(03): 95-102. |
[6] | 黄耀丽, 吕丽华, 王观桔. 工字形三维机织复合材料的弯曲性能[J]. 纺织学报, 2019, 40(04): 66-71. |
[7] | 刘倩楠 刘新金. 采用ABAQUS的粘胶机织物拉伸力学性能仿真[J]. 纺织学报, 2018, 39(09): 39-43. |
[8] | 陈莹 魏静 马俊淑. 叠褶在服装造型中的应用[J]. 纺织学报, 2018, 39(05): 97-102. |
[9] | 陈扬 杨允出 张艺强 范艳娟 金艳苹. 电加热服装中加热片与织物组合体的稳态热传递模拟[J]. 纺织学报, 2018, 39(05): 49-55. |
[10] | 吕丽华 黄耀丽 崔婧蕊. 蜂窝状三维整体机织复合材料的弯曲性能及其有限元模拟[J]. 纺织学报, 2017, 38(11): 56-60. |
[11] | 崔红 高秀丽 林洪芹 高大伟 吕立斌. 纤维力学性能对自捻纱线自捻程度的影响[J]. 纺织学报, 2016, 37(06): 32-35. |
[12] | 卢子兴 周原 陈明阳 夏彪. 用于缎纹机织复合材料力学行为数值模拟的新单胞模型[J]. 纺织学报, 2014, 35(5): 40-0. |
[13] | 罗以喜. 双向载荷下双轴向经编柔性复合材料有限元模拟[J]. 纺织学报, 2011, 32(12): 60-63. |
[14] | 薛文良;魏孟媛;陈革;程隆棣. 纱线结构中纤维形态的数学表征[J]. 纺织学报, 2010, 31(5): 30-33. |
|