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Impact Responses of the Carbon Fiber Fabric Reinforced Composites 被引量:1
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作者 姜春兰 李明 +1 位作者 张庆明 马晓青 《Journal of Beijing Institute of Technology》 EI CAS 2000年第3期225-230,共6页
To study the response characteristics of the carbon fiber fabric reinforced composites under impact loading, one dimensional strain impact test, multi gauge technique and Lagrange analysis method are used. The decay... To study the response characteristics of the carbon fiber fabric reinforced composites under impact loading, one dimensional strain impact test, multi gauge technique and Lagrange analysis method are used. The decaying rule of the stress σ , strain ε , strain rate ε · and density ρ with time and space is obtained. By the theory of dynamics, the impact response characteristics of the material is analyzed and discussed. 展开更多
关键词 carbon fiber reinforced plastics (cfrp) composite IMPACT Lagrange analysis
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Entrance and Exit Defects During Coarse Pitch Orbital Drilling of Carbon Fiber Reinforced Plastic Plates 被引量:2
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作者 Shan Yicai He Ning +1 位作者 Li Liang Zhang Ting 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2016年第6期-,共10页
Formation of entrance and exit defects in coarse pitch orbital drilling(CPOD)of carbon fiber reinforced plastic(CFRP)plates was investigated.Deep observation on entrance and exit morphology shows tear and burr are typ... Formation of entrance and exit defects in coarse pitch orbital drilling(CPOD)of carbon fiber reinforced plastic(CFRP)plates was investigated.Deep observation on entrance and exit morphology shows tear and burr are typical defects.Meanwhile,tear is more obvious than burr,and more entrance tears emerge than exit tears.As one of the major causes of entrance and exit defects in CPOD,cutting forces were substaintially studied by contrast experiments.Then,the effect of cutting parameters on entrance and exit tear was qualitatively analyzed through a single factor test.Experiment results indicate that the variation of rotation speed has little influence on entrance and exit tear.Increasing tangential feed per tooth can enlarge entrance tear,but bring little effect on exit tear.By increasing axial feed pitch,the hole entrance and exit show severe tear.When revolution radius grows bigger and bigger,entrance and exit tear firstly decreases,and then increases.Finally,the models of tear and delamination during CPOD of CFRP were established,the formation mechanisms of entrance and exit defects were revealed,and the control strategies were accordingly put forward. 展开更多
关键词 carbon fiber reinforced plastics(cfrp) coarse pitch orbital drilling(CPOD) entrance and exit defects formation mechanism
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Square concrete columns strengthened with carbon fiber reinforced plastics sheets at low temperatures 被引量:1
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作者 马芹永 卢小雨 《Journal of Central South University》 SCIE EI CAS 2009年第5期835-840,共6页
Twenty-one square concrete columns were constructed and tested. The testing results indicate that bonded carbon fiber reinforced plastics(CFRP) sheets can be used to increase the strength and improve the serviceabilit... Twenty-one square concrete columns were constructed and tested. The testing results indicate that bonded carbon fiber reinforced plastics(CFRP) sheets can be used to increase the strength and improve the serviceability of damaged concrete columns at low temperatures. The failure of the specimens,in most cases,takes place within the middle half of the columns. And the failure of strengthened columns is sudden and explosive. The CFRP sheets increase both the axial load capacity and the ultimate concrete compressive strain of the columns. The ultimate loads of strengthened columns at-10,0 and 10 ℃ increase averagely by 9.09%,6.63% and 17.83%,respectively,as compared with those of the control specimens. The axial compressive strength of strengthened columns is related to the curing temperatures. The improvement of axial compressive strength decreases with reducing temperature,and when the temperature drops to a certain value,the improvement increases with falling temperature. 展开更多
关键词 carbon fiber reinforced plastics (cfrp sheet square concrete column stress--strain model
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Effect of Fibre Packing on Random Variability of Compressive Strength of Unidirectional Carbon Fibre Reinforced Plastic
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作者 XU Dong HUANG Jin’e +1 位作者 ZHANG Li ZHANG Shufeng 《Journal of Donghua University(English Edition)》 EI CAS 2019年第1期62-66,共5页
Compression tests on twenty unidirectional(UD) carbon fibre reinforced plastic(CFRP) specimens are conducted, the statistics on the measured compressive strength is calculated, and the fracture surface is characterize... Compression tests on twenty unidirectional(UD) carbon fibre reinforced plastic(CFRP) specimens are conducted, the statistics on the measured compressive strength is calculated, and the fracture surface is characterized. Two types of different fracture surface are experimentally observed, and they are corresponding to very different values on the compressive strength. A finite element(FE) analysis is conducted to investigate the influence of random fibre packing on the compressive strength. And a riks method(provided in ABAQUS software) is applied in FE model to analyze fibre buckling behaviour in the vicinity of compressive failure. The FE analysis agrees well with the experimental observation on the two types of buckling modes and also the partition of compressive strength. It is clearly shown that the random fibre packing lays a significant influence on the random variability of compressive strength of CFRP. 展开更多
关键词 carbon FIBRE reinforced plastic(cfrp) COMPRESSIVE strength random variability FIBRE BUCKLING finite element(FE) reliability
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侧向冲击荷载作用下CFRP型材-方钢管混凝土柱的动力响应 被引量:1
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作者 李帼昌 李晓 《东南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第1期50-56,共7页
为了研究CFRP型材-方钢管混凝土固简柱的抗侧向冲击性能,采用水平撞击装置对3个CFRP型材-方钢管混凝土柱进行侧向冲击试验.根据柱的破坏模式、局部变形、整体变形及冲击力分析柱的动力响应,研究了CFRP型材、边界条件、冲击能量与冲击冲... 为了研究CFRP型材-方钢管混凝土固简柱的抗侧向冲击性能,采用水平撞击装置对3个CFRP型材-方钢管混凝土柱进行侧向冲击试验.根据柱的破坏模式、局部变形、整体变形及冲击力分析柱的动力响应,研究了CFRP型材、边界条件、冲击能量与冲击冲量对试件动力响应的影响规律.结果表明,CFRP型材-方钢管混凝土固简柱呈现弯曲破坏,具有良好的抗冲击性能,且随着支座约束能力的增大,抗侧向冲击性能增大.增加单位冲击冲量可使悬臂试件的峰值位移下降7%,而两端固支试件峰值位移仅变化1%.随着支座约束能力的下降,冲击冲量对试件变形的影响程度增大.在钢管混凝土固简试件中内置CFRP型材可使冲击位置处峰值位移下降9%,且降低程度随着支座约束能力的下降而增加. 展开更多
关键词 钢管混凝土 cfrp 侧向冲击 动力响应
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氯盐干湿循环作用下表面开槽CFRP-混凝土界面抗剪性能试验 被引量:1
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作者 姜绍飞 郑臻弘 +2 位作者 宋华霖 王威 臧荣彬 《哈尔滨工业大学学报》 EI CAS CSCD 北大核心 2024年第10期14-23,共10页
为探究氯盐干湿循环作用下表面开槽CFRP-混凝土界面抗剪性能,开展干湿循环(0 d、60 d和120 d)不同沟槽形状(矩形、正梯形和倒梯形)的单搭接拉伸剪切试验,研究失效模式和断裂能的变化及影响最大剪应力的因素,结合试验结果推导了考虑干湿... 为探究氯盐干湿循环作用下表面开槽CFRP-混凝土界面抗剪性能,开展干湿循环(0 d、60 d和120 d)不同沟槽形状(矩形、正梯形和倒梯形)的单搭接拉伸剪切试验,研究失效模式和断裂能的变化及影响最大剪应力的因素,结合试验结果推导了考虑干湿循环的界面黏结滑移本构方程,并通过数值模拟验证其有效性。结果表明:随干湿循环进行,表面开槽法失效模式由CFRP断裂破坏转变为剥离破坏;120 d界面断裂能下降量较未开槽法减少60.04%~69.42%;正梯形组120 d最大剪应力相比其他表面开槽形状提升7.18%~9.48%。表面开槽法在氯盐干湿循环作用下具有较好的抗剪性能,建立的界面本构劣化方程适用于氯盐干湿循环作用下表面开槽CFRP-混凝土界面黏结性能的分析和模拟。 展开更多
关键词 混凝土结构 碳纤维布 表面开槽法 界面抗剪性能 氯盐干湿循环 单剪试验
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飞秒激光表面织构化对CFRP/2060铝锂合金高速激光连接接头剪切性能的影响
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作者 王栋 徐洁洁 +3 位作者 黄婷 景若木 张景泉 肖荣诗 《航空制造技术》 CSCD 北大核心 2024年第5期89-94,102,共7页
激光表面织构化作为提高异质结构接头剪切性能的有效手段,已广泛应用于碳纤维增强复合材料(CFRP)与金属材料激光连接领域中。采用波长515 nm的飞秒激光在2060铝锂合金表面制备微结构,采用能量密度分布均匀的矩形光斑实现CFRP和2060铝锂... 激光表面织构化作为提高异质结构接头剪切性能的有效手段,已广泛应用于碳纤维增强复合材料(CFRP)与金属材料激光连接领域中。采用波长515 nm的飞秒激光在2060铝锂合金表面制备微结构,采用能量密度分布均匀的矩形光斑实现CFRP和2060铝锂合金异质接头的高速光纤激光连接,探讨飞秒激光刻蚀深度、扫描线间距对异质结构接头剪切强度的影响规律。结果表明,通过飞秒激光织构化处理,异质接头剪切强度得到了大幅提升,接头破坏形式均为界面断裂和基体断裂的混合断裂模式。在激光功率5 kW、焊接速度高达3.6 m/min条件下,接头平均剪切强度可达35.7 MPa,是未经飞秒激光织构化接头的2.3倍。 展开更多
关键词 碳纤维增强复合材料(cfrp) 2060铝锂合金 飞秒激光织构化 激光连接 剪切强度
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熔丝制造3D打印CFRP层内损伤破坏机理与模型研究
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作者 刘继 李珍 药天运 《西安建筑科技大学学报(自然科学版)》 北大核心 2024年第1期74-81,共8页
为将3D打印技术应用到桥梁工程中,以熔丝制造3D打印碳纤维复合材料锚环为研究对象,开展了材料层内损伤失效机理的基础性研究工作.首先,对锚环进行了张拉锚固破坏试验,明晰材料的损伤失效模式.其次,测试分析了材料的弹性参数及强度参数值... 为将3D打印技术应用到桥梁工程中,以熔丝制造3D打印碳纤维复合材料锚环为研究对象,开展了材料层内损伤失效机理的基础性研究工作.首先,对锚环进行了张拉锚固破坏试验,明晰材料的损伤失效模式.其次,测试分析了材料的弹性参数及强度参数值,供后续仿真分析使用.最后,通过VUMAT子程序构建了材料的损伤失效本构关系,利用ABAQUS仿真分析软件模拟熔丝制造3D打印碳纤维复合材料锚环的渐进损伤失效全过程,分析其层内损伤失效机理.结果表明:熔丝制造3D打印碳纤维复合材料具有显著的层内损伤现象;选用Hashin损伤起始判据与刚度瞬间退化模型作为熔丝制造3D打印碳纤维复合材料损伤力学模型偏于安全,具有一定的可行性;锚环在高度方向产生纵向裂纹是由纤维拉伸失效导致的. 展开更多
关键词 桥梁工程 熔丝制造技术 碳纤维复合材料 损伤失效机理 夹片式锚具
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基于递归量化分析的CFRP超声检测缺陷识别方法
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作者 王海军 王涛 俞慈君 《浙江大学学报(工学版)》 EI CAS CSCD 北大核心 2024年第8期1604-1617,共14页
为了解决碳纤维增强复合材料(CFRP)超声检测缺陷识别不准确、不可靠的问题,提出自适应变分模态分解(AVMD)与递归量化分析技术(RQAT)特征提取和卷积神经网络(CNN)识别方法.实验预埋6种模拟缺陷,使用超声相控阵检测后,每种缺陷取500个A扫... 为了解决碳纤维增强复合材料(CFRP)超声检测缺陷识别不准确、不可靠的问题,提出自适应变分模态分解(AVMD)与递归量化分析技术(RQAT)特征提取和卷积神经网络(CNN)识别方法.实验预埋6种模拟缺陷,使用超声相控阵检测后,每种缺陷取500个A扫描波形信号数据,利用蝠鲼智能优化算法优化出变分模态分解(VMD)所需的K、Alpha,使用优化参数的VMD得到本征模态函数(IMF)分量,筛选高频噪声部分,对剩余IMF分量使用递归量化分析技术.每个信号得到72个特征值,将特征值组成特征向量,输入CNN进行识别,训练集识别正确率为99.94%,验证集识别正确率为98.09%,测试集识别正确率为98.27%.结果表明,AVMD与RQAT、CNN的结合解决了CFRP超声检测中缺陷的识别分类问题. 展开更多
关键词 碳纤维复合材料(cfrp) 无损检测 变分模态分解 递归量化分析 特征提取 卷积神经网络 缺陷识别
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剪力滞对CFRP板-钢梁加固界面应力的影响
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作者 朱佩云 李晓章 +1 位作者 余明明 谢旭 《浙江大学学报(工学版)》 EI CAS CSCD 北大核心 2024年第5期1020-1028,共9页
为了分析工字钢梁弯曲变形产生的剪力滞效应对黏结层法向应力和切应力的影响,基于虚功原理的能量变分法建立考虑剪力滞的碳纤维增强复合材料(CFRP)加固梁黏结应力计算理论方程.通过与试验和有限元数值模拟结果的对比,验证了理论方程的... 为了分析工字钢梁弯曲变形产生的剪力滞效应对黏结层法向应力和切应力的影响,基于虚功原理的能量变分法建立考虑剪力滞的碳纤维增强复合材料(CFRP)加固梁黏结应力计算理论方程.通过与试验和有限元数值模拟结果的对比,验证了理论方程的正确性.开展不同弯矩作用下的工字型钢梁黏结层界面切应力和法向应力参数分析.结果表明,剪力滞引起的翼缘板纵向位移沿横向3次抛物线分布的假定是合理的.剪力滞效应对CFRP加固工字钢梁弯曲变形下的端部界面应力影响不可忽略,影响程度随着截面弯矩和翼缘板宽度的增加而增大. 展开更多
关键词 碳纤维增强复合材料(cfrp) 工字型钢梁加固 剪力滞 能量变分法 界面应力
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CFRP二次切削加工表面的形成机理及试验研究
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作者 李纯杰 苏飞 +2 位作者 刘广涛 陈冰 郑雷 《宇航材料工艺》 CAS CSCD 北大核心 2024年第4期93-102,共10页
在实际加工过程中,碳纤维增强复合材料(Carbon Fiber-Reinforced Plastic,CFRP)的制孔通常采用多工序工艺以优化制孔质量。然而,关于多工序加工中切削表面形成机制的详细解析尚存不足。针对此问题,本文构建了四种典型纤维取向(θ=0°... 在实际加工过程中,碳纤维增强复合材料(Carbon Fiber-Reinforced Plastic,CFRP)的制孔通常采用多工序工艺以优化制孔质量。然而,关于多工序加工中切削表面形成机制的详细解析尚存不足。针对此问题,本文构建了四种典型纤维取向(θ=0°、45°、90°、135°)下的二次切削仿真模型,深入探讨了二次切削过程中切削表面的形成机制及切削损伤的演变模式。研究结果显示,随着主轴转速n的增加,二次切削合力呈现显著的下降趋势;而进给速度Vf的提高则导致二次切削合力显著上升。进一步分析发现,当纤维取向为θ=0°时,首次切削的切削表面损伤对第二次切削的影响相对较小;而当纤维取向为θ=45°、90°或135°时,在第二次切削厚度小于首次切削纤维损伤层深度的条件下,第二次切削能够有效去除首次切削产生的损伤层,且不产生新的纤维损伤,从而显著提升切削表面的质量。 展开更多
关键词 碳纤维增强复合材料(cfrp) 多工序 损伤演变 切削力 有限元仿真
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Numerical Determination of Shear Strength of Steel Reinforced Concrete Column Strengthened by CFRP Sheets 被引量:1
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作者 王铁成 余流 王立军 《Transactions of Tianjin University》 EI CAS 2003年第1期58-62,共5页
The earthquake resistant property of reinforced concrete members depends on the interaction between reinforcing bars and surrounding concrete through bond to a large degree. In this paper a general system aimed at dea... The earthquake resistant property of reinforced concrete members depends on the interaction between reinforcing bars and surrounding concrete through bond to a large degree. In this paper a general system aimed at dealing with the failure analysis of reinforced concrete columns strengthened with carbon fiber reinforced plastic (CFRP) sheets including bond slip of the anchored reinforcing bars at the foot of the columns is presented. It is based on the yield design theory with a mixed modeling of the structure, according to which the concrete material is treated as a classical two dimensional continuum, whereas the longitudinal reinforcing bars are regarded as one dimensional rods including bond slip at the foot of the columns. In shear reinforced zones both the shear CFRP sheets and transverse reinforcing bars are incorporated in the analysis through a homogenization procedure and they are only in tension. The approach is then implemented numerically by means of the finite element formulation. The numerical procedure produces accurate estimates for the loading carrying capacity of the shear members taken as an illustrative application by correlation with the experimental results, so the proposed approach is valid. 展开更多
关键词 shear strength carbon fiber reinforced plastic(cfrp) sheets bond slip anchored reinforcing bars
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Recipe Development and Mechanical Characterization of Carbon Fibre Reinforced Recycled Polypropylene 3D Printing Filament 被引量:1
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作者 Mwambe Polline James M. Mutua +1 位作者 Thomas Ochuku Mbuya Kyekyere Ernest 《Open Journal of Composite Materials》 2021年第3期47-61,共15页
Recycled polypropylene filaments for fused filament fabrication were investigated with and without 14 wt% short fibre carbon reinforcements. The microstructure and mechanical properties of the filaments and 3D printed... Recycled polypropylene filaments for fused filament fabrication were investigated with and without 14 wt% short fibre carbon reinforcements. The microstructure and mechanical properties of the filaments and 3D printed specimens were characterized using scanning electron microscopy and standard tensile testing. It was observed that recycled polypropylene filaments with 14 wt% short carbon fibre reinforcement contained pores that were dispersed throughout the microstructure of the filament. A two-stage filament extrusion process was observed to improve the spatial distribution of carbon fibre reinforcement but did not reduce the pores. Recycled polypropylene filaments without reinforcement extruded at high screw speeds above 20 rpm contained a centreline cavity but no spatially distributed pores. However, this cavity is eliminated when extrusion is carried out at screw speeds below 20 rpm. For 3D printed specimens, interlayer cavities were observed larger for specimens printed from 14 wt% carbon fibre reinforced recycled polypropylene than those printed from unreinforced filaments. The values of tensile strength for the filaments were 21.82</span><span style="font-size:10pt;font-family:""> </span><span style="font-family:Verdana;">MPa and 24.22</span><span style="font-size:10pt;font-family:""> </span><span style="font-family:Verdana;">MPa, which reduced to 19.72</span><span style="font-size:10pt;font-family:""> </span><span style="font-family:Verdana;">MPa and 22.70</span><span style="font-size:10pt;font-family:""> </span><span style="font-family:Verdana;">MPa, respectively, for 3D printed samples using the filaments. Likewise, the young’s modulus of the filaments was 1208.6</span><span style="font-size:10pt;font-family:""> </span><span style="font-family:Verdana;">MPa and 1412.7</span><span style="font-size:10pt;font-family:""> </span><span style="font-family:Verdana;">MPa, which reduced to 961.5</span><span style="font-size:10pt;font-family:""> </span><span style="font-family:Verdana;">MPa and 1352.3</span><span style="font-size:10pt;font-family:""> </span><span style="font-family:Verdana;">MPa, respectively, for the 3D printed samples. The percentage elongation at failure for the recycled polypropylene filament was 9.83% but reduced to 3.84% for the samples printed with 14 wt% carbon fiber reinforced polypropylene filaments whose elongation to failure was 6.58%. The SEM observations on the fractured tensile test samples showed interlayer gaps between the printed and the adjacent raster layers. These gaps accounted for the reduction in the mechanical properties of the printed parts. 展开更多
关键词 Fused Filament fabrication Fused Deposition Modeling 3D Printing carbon Fibre reinforced Polymers POLYPROPYLENE plastic Recycling
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Shear capacity of reinforced concrete columns strengthened with CFRP sheet
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作者 谢剑 刘雪梅 赵彤 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2005年第8期853-858,共6页
This paper discusses the results of tests on the shear capacity of reinforced concrete columns strengthened with carbon fiber reinforced plastic (CFRP) sheet. The shear transfer mechanism of the specimens reinforced w... This paper discusses the results of tests on the shear capacity of reinforced concrete columns strengthened with carbon fiber reinforced plastic (CFRP) sheet. The shear transfer mechanism of the specimens reinforced with CFRP sheet was studied. The factors affecting the shear capacity of reinforced concrete columns strengthened with CFRP sheet were analyzed. Several sug-gestions such as the number of layers, width and tensile strength of the CFRP sheet are proposed for this new strengthening technique. Finally, a simple and practical design method is presented in the paper. The calculated results of the suggested method are shown to be in good agreement with the test results. The suggested design method can be used in evaluating the shear capacity of reinforced concrete columns strengthened with CFRP sheet. 展开更多
关键词 reinforced concrete carbon fiber reinforced plastic (cfrp COLUMN Shear capacity
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CFRP加固受损再生混凝土板的抗弯性能试验研究
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作者 王帮康 周理 郭广 《混凝土与水泥制品》 2024年第1期74-80,共7页
为了探究CFRP加固受损再生混凝土板的抗弯性能,制作了4块再生混凝土板(再生粗骨料取代率为50%),考虑预损伤等级及加载循环次数对试件加固性能的影响。通过试验与数值模拟研究,分析了试件的破坏模式、荷载-位移曲线及承载能力,并对规范... 为了探究CFRP加固受损再生混凝土板的抗弯性能,制作了4块再生混凝土板(再生粗骨料取代率为50%),考虑预损伤等级及加载循环次数对试件加固性能的影响。通过试验与数值模拟研究,分析了试件的破坏模式、荷载-位移曲线及承载能力,并对规范中的承载力计算公式进行了修正。结果表明:CFRP加固再生混凝土板的破坏模式为CFRP脱落;当预损伤等级<0.4P_(m)(极限承载力)时,加固后的试件承载力变化不大;当预损伤等级≥0.4P_(m)时,加固后的试件承载力随预损伤等级的提升而降低;当预损伤等级<0.9P_(m)时,加载循环次数对试件的承载力影响很小;当预损伤等级≥0.9P_(m)时,试件承载力随加载循环次数的增大而显著降低;试件承载力随着CFRP加固层数的增加而增大;修正后的承载力计算公式具有较高的计算精度。 展开更多
关键词 碳纤维增强复合材料(cfrp) 再生混凝土板 预损伤 抗弯性能 有限元模拟
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车用CFRP脉冲超皮秒激光切割参数优化及质量分析
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作者 邓彦波 王峰 李建国 《中国工程机械学报》 北大核心 2023年第4期343-347,共5页
依次将激光波长设定在523、785和1064 nm这3种条件下,对碳纤维复合材料(CFRP)开展切割测试,计算得到切缝的宽度与深度尺寸,并对试样进行微观组织表征,对CFRP激光加工过程的作用机理进行分析。研究结果表明:经比较不同波长,523 nm激光的... 依次将激光波长设定在523、785和1064 nm这3种条件下,对碳纤维复合材料(CFRP)开展切割测试,计算得到切缝的宽度与深度尺寸,并对试样进行微观组织表征,对CFRP激光加工过程的作用机理进行分析。研究结果表明:经比较不同波长,523 nm激光的波长更短,能够产生很高能量的单光子,获得了最平整的切割截面,表现出最优的切割性能。随着扫描速度的提高,形成了更小的热影响范围,降低单位面积的注入能量。提高激光功率后,上切缝宽度与深度增大,促进了侧向与纵向发生更大程度的燃烧,形成更宽与更深的切缝,激光对材料造成了更强烈的作用,扩大了热损伤区。 展开更多
关键词 皮秒激光 波长 激光切割 切缝质量 碳纤维复合材料(cfrp)
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冲蚀角对碳纤维增强树脂复合材料(CFRP)蒙皮涂层去除及重涂附着力的影响 被引量:4
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作者 赵洋洋 卢文壮 +2 位作者 吴泊鋆 孙玉利 左敦稳 《中国表面工程》 EI CAS CSCD 北大核心 2023年第1期116-123,共8页
为解决飞机CFRP蒙皮涂层高效去除问题,改善重涂涂层附着力,采用塑性磨料射流加工方法对CFRP蒙皮损伤涂层去除,通过分析单颗磨料的速度和冲击力,研究不同冲蚀角度下磨料对涂层的冲蚀行为,探究塑性磨料射流冲蚀角对表面形貌、去除机制、... 为解决飞机CFRP蒙皮涂层高效去除问题,改善重涂涂层附着力,采用塑性磨料射流加工方法对CFRP蒙皮损伤涂层去除,通过分析单颗磨料的速度和冲击力,研究不同冲蚀角度下磨料对涂层的冲蚀行为,探究塑性磨料射流冲蚀角对表面形貌、去除机制、材料去除率、接触角与表面自由能及重涂涂层的附着力方面的影响。结果表明:塑性磨料对涂层的冲蚀机理为塑性变形去除,在30°~70°冲蚀角下,磨料对涂层的冲蚀模式为滑擦、耕犁和切削。随着冲蚀角的增加,颗粒的切向分力减小,法向分力增加,法向冲蚀的冲蚀模式为剪切和挤压变形去除材料去除率递减。在所选冲蚀角范围内,当冲蚀角为30°时,聚氨酯涂层的材料去除率最大。随着冲蚀角的改变,表面粗糙度、润湿性和表面自由能发生变化,当冲蚀角为70°时,重涂后的涂层附着力较好,较初始涂层附着力提高28%左右。研究成果可为飞机CFRP蒙皮涂层的高效去除及附着力的改善提供参考。 展开更多
关键词 射流加工 冲蚀角 塑性磨料 碳纤维增强树脂复合材料(cfrp) 涂层
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CFRP加固损伤钢筋混凝土梁抗冲击性能数值研究 被引量:5
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作者 段莉斌 张亚芳 《深圳大学学报(理工版)》 CAS CSCD 北大核心 2023年第2期155-162,共8页
为探究碳纤维增强复合材料(carbon fiber reinforced plastics,CFRP)加固损伤钢筋混凝土(reinforced concrete,RC)梁的抗冲击性能,利用有限元分析软件LS-DYNA,对不同CFRP加固方式下损伤梁的动态响应进行了数值模拟研究,并与物理试验结... 为探究碳纤维增强复合材料(carbon fiber reinforced plastics,CFRP)加固损伤钢筋混凝土(reinforced concrete,RC)梁的抗冲击性能,利用有限元分析软件LS-DYNA,对不同CFRP加固方式下损伤梁的动态响应进行了数值模拟研究,并与物理试验结果进行对比验证.对加固梁的破坏模式、裂缝扩展规律和动态时程响应进行分析.结果表明,U型CFRP加固梁能显著抑制剪切斜裂缝的发展,大幅减小裂缝开展范围;在第1次冲击时,相较于未加固梁,平直型、U型和复合型CFRP加固梁的峰值冲击力分别提高了15.4%、16.6%和13.1%,跨中峰值位移分别降低了4.8%、8.3%和10.1%;在第2次冲击时,U型和复合型CFRP加固梁仍表现出较好的抗冲击性能.研究结果可为CFRP加固损伤RC梁的优化设计提供参考. 展开更多
关键词 复合材料 碳纤维增强复合材料 损伤钢筋混凝土梁 抗冲击性能 动态响应 数值模拟
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Effects of fiber orientation on tool wear evolution and wear mechanism when cutting carbon fiber reinforced plastics 被引量:3
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作者 Weizhou WU Shipeng LI +5 位作者 Xuda QIN Wentao LIU Xin CUI Hao LI Mengrui SHI Haibao LIU 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2023年第5期549-565,共17页
The aim of the present paper is to reveal the influence of different fiber orientations on the tool wear evolution and wear mechanism. Side-milling experiments with large-diameter milling tools are conducted. A finite... The aim of the present paper is to reveal the influence of different fiber orientations on the tool wear evolution and wear mechanism. Side-milling experiments with large-diameter milling tools are conducted. A finite element(FE) cutting model of carbon fiber reinforced plastics(CFRP)is established to get insight into the cutting stress status at different wear stages. The results show that different fiber orientations bring about distinct differences in the extent, profile and mechanism of tool wear. Severer wear occurs when cutting 45° and 90° plies, followed by 0°, correspondingly,the least wear is obtained when θ = 135°(θ represents the orientation of fibers). Moreover, the worn profiles of cutting tools when θ = 0° and 45° are waterfall edge, while round edge occurs whenθ = 135° and a combined shape of waterfall and round edge is obtained when θ = 90°. The wear mechanisms under different fiber orientations are strongly dependent on the cutting stress distributions. The evolution of tool wear profile is basically consistent with the stress distribution on the tool surface at different wear stages, and the extent of tool wear is determined by the magnitude of stress on the tool surface. Besides, the worn edges produce an actual negative clearance angle,which decreases the actual cutting thickness and leads to compressing and bending failure of fibers beneath the cutting region as well as low surface qualities. 展开更多
关键词 carbon fiber reinforced plastics(cfrp) Fiber orientation Finite element method(FEM) Tool wear Wear mechanism
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钢-CFRP异质复合B柱的弯曲实验分析
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作者 马治军 黄朝阳 +1 位作者 滕昊 林建平 《精密成形工程》 北大核心 2023年第1期101-105,共5页
目的为提高B柱的抗弯性能,通常会在B柱上额外焊接补丁板,但同时也增加了B柱的重量。在原始B柱上铺设碳纤维增强复合材料(CFRP),获得钢-CFRP异质复合B柱,取消B柱的钢制加强板,实现B柱的轻量化。方法通过热冲压制备原始B柱及带补丁板B柱,... 目的为提高B柱的抗弯性能,通常会在B柱上额外焊接补丁板,但同时也增加了B柱的重量。在原始B柱上铺设碳纤维增强复合材料(CFRP),获得钢-CFRP异质复合B柱,取消B柱的钢制加强板,实现B柱的轻量化。方法通过热冲压制备原始B柱及带补丁板B柱,并以原始B柱为凹模,采用真空袋压工艺制备钢-CFRP异质复合B柱。基于2018版C-NCAP侧面碰撞实验要求,设计B柱三点弯曲夹具,进行原始B柱、带补丁板B柱及钢-CFRP异质复合B柱的三点弯曲实验,并对其重量及弯曲性能进行分析。结果原始B柱重量4.1kg,三点弯曲实验测得其刚度为0.763k N/mm,最大载荷为21.59k N,平均力为14.52 kN;带补丁板B柱质量为5.6 kg,三点弯曲实验测得其刚度为1.095 kN/mm,最大载荷为31.08 kN,平均力为18.38 kN;钢-CFRP异质复合B柱总质量4.7 kg,三点弯曲试验测得其刚度为1.071 kN/mm,最大载荷为31.76 kN,平均力为19.58 kN。结论在保持刚度、最大载荷及平均力等弯曲力学性能不变的前提下,相对于带补丁板B柱,钢-CFRP异质复合B柱可以减轻质量0.9 kg,并且吸能更优,实现了B柱的轻量化。 展开更多
关键词 碳纤维增强复合材料 真空袋压工艺 钢-cfrp异质复合B柱 三点弯曲 轻量化
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