浏览全部资源
扫码关注微信
1.太原理工大学 机械与运载工程学院 应用力学研究所,太原 030024
2.太原理工大学 先进金属复合材料成形技术与装备教育部工程研究中心,太原 030024
3.太原理工大学 中澳联合研究中心,太原 030024
CAO Yong, E-mail: caoyong@tyut.edu.cn
Received:29 February 2024,
Revised:09 April 2024,
Published:15 May 2025
移动端阅览
梁子睿,任路泽,曹勇,等. 波纹界面钛/钢复合板抗冲击行为研究[J]. 机械强度,2025,47(5):119-130.
LIANG Zirui,REN Luze,CAO Yong,et al. Research on impact resistance behavior of titanium/steel composite plates with the ripple interface[J]. Journal of Mechanical Strength,2025,47(5):119-130.
梁子睿,任路泽,曹勇,等. 波纹界面钛/钢复合板抗冲击行为研究[J]. 机械强度,2025,47(5):119-130. DOI: 10.16579/j.issn.1001.9669.2025.05.014.
LIANG Zirui,REN Luze,CAO Yong,et al. Research on impact resistance behavior of titanium/steel composite plates with the ripple interface[J]. Journal of Mechanical Strength,2025,47(5):119-130. DOI: 10.16579/j.issn.1001.9669.2025.05.014.
为了明晰在冲击载荷下钛/钢波纹复合板及界面的动态响应、损伤情况以及失效模式,使用空气炮对钛/钢波纹复合板开展小能量(53 J)冲击试验,在验证数值计算模型有效的基础上,开展了多种速度冲击复合板数值仿真,研究多种能量下复合板及其界面的冲击力学响应。结果表明,在小能量冲击条件下,波纹复合板正面出现塑性扩孔破坏,背板产生隆起且在隆起处有裂纹;波纹界面层结合紧密、整体下凹;将靶板沿冲击中心切开观察,截面没有出现裂纹、分层开裂等损伤,这与纤维增强复合材料层合板不同,当冲击表面出现目视勉强可见损伤后一般内部会有明显分层;在数值模拟中波纹复合板在冲击下的内聚力界面损伤区域少于平面界面复合板;小能量冲击时波纹板对子弹动能的吸收主要以整体变形吸能为主,波纹界面钛/钢复合板损伤较小;在多种能量冲击下波纹界面复合板相较于平面界面复合板界面结合更紧密,结构完整性更好,更不容易被破坏。
In order to clarify the dynamic response
damage situation
and failure mode of titanium/steel corrugated composite plates and interfaces under impact loads
small energy (53 J) impact experiments were conducted on titanium/steel corrugated composite plates using a light air cannon. On the basis of verifying the effectiveness of the numerical calculation model
numerical simulations were conducted on composite plates under various velocities to study the impact mechanical response of composite plates and their interfaces under various energies. The results show that
under low energy impact conditions
the front of the corrugated composite plate shows plastic expansion damage
and the back plate has protrusions with cracks at the raised areas. The corrugated interface layer is tightly bonded and overall concave; cut the target plate along the impact center and observe that there are no cracks
delamination
or other damages on the cross-section. This is different from fiber reinforced composite laminates. There will generally be obvious delamination inside when there is barely visible damage on the impact surface. In numerical simulation
the cohesive force interface damage area of the corrugated composite plate under impact is less than that of the planar interface composite plate. When subjected to low energy impact
the absorption of bullet kinetic energy by the corrugated plate is mainly dominated by overall deformation energy absorption
and the damage to the titanium/steel composite plate at the corrugated interface is relatively small. Under various energy impacts
corrugated interface composite plates have tighter interface bonding
better structural integrity
and are less prone to damage compared to planar interface composite plates.
周杰 , 史和生 , 杨文芬 , 等 . 金属复合板加工技术的研究现状及发展趋势 [J]. 金属世界 , 2022 ( 5 ): 24 - 30 .
ZHOU Jie , SHI Hesheng , YANG Wenfen , et al . Present situation and development of composite technics for metal clad plates [J]. Metal World , 2022 ( 5 ): 24 - 30 . (In Chinese)
CHENG Y Z , LIU W W , WANG T , et al . Study on the effects of initial temperature and thickness ratio of component metals on the preparation of aluminum/steel clad plates by the new different temperature rolling method [J]. Journal of Manufacturing Processes , 2023 , 95 : 229 - 241 .
GUO S , WANG F R , WANG Y Q , et al . Microstructural evolution and properties of Ti/Al clad plate fabricated by vacuum rolling and heat treatment [J]. Materials Science & Engineering A , 2023 , 882 : 145445 .
WANG T , LI S , REN Z K , et al . Microstructure characterization and mechanical property of Mg/Al laminated composite prepared by the novel approach:corrugated + flat rolling (CFR) [J]. Metals , 2019 , 9 ( 6 ): 690 .
黄庆学 , 朱琳 , 李玉贵 , 等 . 一种轧制金属复合板带的方法 : 2014100287764 [P]. 2014-04-23 .
HUANG Qingxue , ZHU Lin , LI Yugui , et al . Method for rolling metal clad plate strip : 2014100287764 [P]. 2014-04-23 . (In Chinese)
GAO X Y , BIAN L P , ZHAO J W , et al . Interface-position-dependent structure evolution and mechanical behavior of corrugated cold rolled Cu/Al clad plate:experiment and simulation [J]. Journal of Materials Research and Technology , 2021 , 13 ( Suppl. C ): 216 - 227 .
王涛 , 齐艳阳 , 刘江林 , 等 . 金属层合板轧制复合工艺国内外研究进展 [J]. 哈尔滨工业大学学报 , 2020 , 52 ( 6 ): 42 - 56 .
WANG Tao , QI Yanyang , LIU Jianglin , et al . Research progress of metal laminates roll bonding process at home and abroad [J]. Journal of Harbin Institute of Technology , 2020 , 52 ( 6 ): 42 - 56 . (In Chinese)
HAMZA A H , ÍSMAIL E , VOLKAN K , et al . Effect of the Ti addition on the corrosion behavior of newly developed AA7075-Ti alloys [J]. Journal of Alloys and Compounds , 2023 , 969 : 172349 .
ZONG L , LIU H , WANG J X , et al . Experimental and numerical investigation on mechanical and fatigue performance of corroded Q690D high-strength steel [J]. Thin-Walled Structures , 2024 , 195 : 111466 .
张成 , 孙万仓 . 钛制换热器结构的分析和设计优化 [J]. 钛工业进展 , 2016 , 33 ( 4 ): 40 - 43 .
ZHANG Cheng , SUN Wancang . Structure analysis and optimization of titanium heat exchanger [J]. Titanium Industry Progress , 2016 , 33 ( 4 ): 40 - 43 . (In Chinese)
吕刚 . 关于火电厂烟囱钛钢复合板制造及施工注意事项 [J]. 世界有色金属 , 2017 ( 13 ): 273 , 275 .
LÜ Gang . About the manufacture and construction of thermal power plant chimney clad plate note [J]. World Nonferrous Metals , 2017 ( 13 ): 273 , 275 . (In Chinese)
吴全兴 . 钛钢复合材在超大型海洋浮式构筑物上的适用研究 [J]. 钛工业进展 , 1997 ( 3 ): 27 - 28 .
WU Quanxing . Study on the application of titanium steel composite in super large floating structure [J]. Titanium Industry Progress , 1997 ( 3 ): 27 - 28 . (In Chinese)
白于良 , 刘雪峰 , 王文静 , 等 . 钛/钢复合板及其制备应用研究现状与发展趋势 [J]. 工程科学学报 , 2021 , 43 ( 1 ): 85 - 96 .
BAI Yuliang , LIU Xuefeng , WANG Wenjing , et al . Current status and research trends in processing and application of titanium/steel composite plate [J]. Chinese Journal of Engineering , 2021 , 43 ( 1 ): 85 - 96 . (In Chinese)
郝芳 , 辛社伟 , 毛友川 , 等 . 钛合金在装甲领域的应用综述 [J]. 材料导报 , 2020 , 34 ( 增刊1 ): 293 - 296 .
HAO Fang , XIN Shewei , MAO Youchuan , et al . Review on application of titanium alloy in armor [J]. Materials Reports , 2020 , 34 ( Suppl.1 ): 293 - 296 . (In Chinese)
王宽 , 朱海平 , 宋振莉 , 等 . 钛钢复合板界面特征研究述评 [J]. 功能材料 , 2017 , 48 ( 4 ): 4025 - 4032 .
WANG Kuan , ZHU Haiping , SONG Zhenli , et al . Review on characteristics of interface of titanium clad steel plate [J]. Journal of Functional Materials , 2017 , 48 ( 4 ): 4025 - 4032 . (In Chinese)
DAI G , LIU Y M , CHEN K , et al . Effect of cumulative deformation and interlayer mechanical properties on bonding strength of corrugated interface steel/aluminum composite plate [J]. Journal of Manufacturing Processes , 2023 , 103 : 78 - 89 .
马桢 , 吴伟 , 高志雄 , 等 . 弹道冲击下钛/钢复合波纹板的界面力学研究 [J]. 重庆理工大学学报(自然科学) , 2021 , 35 ( 7 ): 108 - 114 .
MA Zhen , WU Wei , GAO Zhixiong , et al . Research on interface mechanics of titanium/steel composite corrugated board under ballistic impact [J]. Journal of Chongqing University of Technology(Natural Science) , 2021 , 35 ( 7 ): 108 - 114 . (In Chinese)
许婉韵 , 冯志强 , 彭磊 . 复合板在冲击下的动力学行为研究 [J]. 重庆理工大学学报(自然科学) , 2016 , 30 ( 6 ): 45 - 50 .
XU Wanyun , FENG Zhiqiang , PENG Lei . Dynamic behavior of a laminated composite plate under impact [J]. Journal of Chongqing University of Technology(Natural Science) , 2016 , 30 ( 6 ): 45 - 50 . (In Chinese)
张晓琼 , 刘云飞 , 张斌 , 等 . Mg/Al波纹复合板抗冲击性能研究 [J]. 精密成形工程 , 2021 , 13 ( 6 ): 77 - 83 .
ZHANG Xiaoqiong , LIU Yunfei , ZHANG Bin , et al . Impact resistance of Mg/Al corrugated composite plate [J]. Journal of Netshape Forming Engineering , 2021 , 13 ( 6 ): 77 - 83 . (In Chinese)
SHIBUYA Y , ZHANG J W , SATO Y , et al . Evaluation of the mechanical properties and deformability of metal-based composite sheets made of thin stainless-steel sheets and carbon fiber reinforced plastics [J]. International Journal of Material Forming , 2022 , 15 ( 4 ): 47 .
HUGH E , GARDENIER I V . An experimental technique for developing intermediate strain rates in ductile metals [D]. Wright-Patterson,USA : Air Force Institute of Technology , 2008 : 136 - 145 .
吴先前 , 杜特专 , 黄晨光 , 等 . 高温高应变率下激光焊接件力学性能研究 [C]//中国力学学会爆炸力学专业委员会冲击动力学专业组,北京理工大学爆炸科学与技术国家重点实验室. 第十届全国冲击动力学学术会议论文摘要集 . 2011 : 1 .
WU Xianqian , DU Tezhuan , HUANG Chenguang , et al . Study on mechanical properties of laser welded parts under high temperature and high strain rate [C]// Impact Dynamics Professional Group of the Explosive Mechanics Professional Committee of the Chinese Society of Mechanics,State Key Laboratory of Explosion Science and Technology . Excerpts from the 10th National Conference on Impact Dynamics . 2011 : 1 . (In Chinese)
JEAN-JACQUES M . Modelling of fracture by cohesive force models:a path to pursue [J]. European Journal of Mechanics A/Solids , 2023 , 102 ( Suppl. C ): 105088 .
BAI H S , BAI R X , ZHAO T Y , et al . Multiscale experimental characterisation of mode-I interfacial fracture behavior of vitrimer composites [J]. Materials & Design , 2023 , 233 : 112229 .
姚蓬飞 , 韩阳 , 姚芬 , 等 . 基于固有型内聚力模型模拟双层夹胶玻璃冲击断裂行为 [J]. 高压物理学报 , 2019 , 33 ( 6 ): 112 - 122 .
YAO Pengfei , HAN Yang , YAO Fen , et al . Simulation of the impact fracture behavior of double laminated glass based on intrinsic cohesive model [J]. Chinese Journal of High Pressure Physics , 2019 , 33 ( 6 ): 112 - 122 . (In Chinese)
寇剑锋 , 徐绯 , 郭家平 , 等 . 黏聚力模型破坏准则及其参数选取 [J]. 机械强度 , 2011 , 33 ( 5 ): 714 - 718 .
KOU Jianfeng , XU Fei , GUO Jiaping , et al . Damage laws of cohesive zone model and selection of the parameters [J]. Journal of Mechanical Strength , 2011 , 33 ( 5 ): 714 - 718 . (In Chinese)
吴静怡 , 杨柳 , 代广霖 , 等 . 新型α+β双相钛合金板抗高速冲击损伤行为研究 [J]. 稀有金属材料与工程 , 2022 , 51 ( 2 ): 615 - 621 .
WU Jingyi , YANG Liu , DAI Guanglin , et al . High-speed impact damaging behavior of equiaxed new-type α+β dual-phase titanium alloy plates [J]. Rare Metal Material and Engineering , 2022 , 51 ( 2 ): 615 - 621 . (In Chinese)
SUKUMAR G , PATRA A K , KUMAR A , et al . A comparative study on dynamic deformation and ballistic impact response of Ti-4Al-2.5V-1.5Fe-0.25O and Ti-6Al-4V alloys [J]. Materials Science and Engineering A , 2024 , 889 : 145727 .
韩奇 , 杨阳 , 刘靖宇 , 等 . 止裂层对陶瓷复合防弹插板冲击损伤行为研究 [J]. 包装工程 , 2023 , 44 ( 21 ): 1 - 10 .
HAN Qi , YANG Yang , LIU Jingyu , et al . Thin membrane covering on impact damage development in ceramic composite bulletproof plate [J]. Packaging Engineering , 2023 , 44 ( 21 ): 1 - 10 . (In Chinese)
0
Views
0
下载量
0
CSCD
Publicity Resources
Related Articles
Related Author
Related Institution