期刊文献+
共找到174篇文章
< 1 2 9 >
每页显示 20 50 100
Study of damage behavior and repair effectiveness of patch repaired carbon fiber laminate under quasi-static indentation loading
1
作者 Alok Kumar Chinmaya Kumar Sahoo A.Arockiarajan 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第4期29-41,共13页
Damage caused due to low-velocity impacts in composites leads to substantial deterioration in their residual strength and eventually provokes structural failure.This work presents an experimental investigation on the ... Damage caused due to low-velocity impacts in composites leads to substantial deterioration in their residual strength and eventually provokes structural failure.This work presents an experimental investigation on the effects of different patch and parent laminate stacking sequences on the enhancement of impact strength of Carbon Fiber Reinforced Polymers(CFRP)composites by utilising the adhesively bonded external patch repair technique.Damage evolution study is also performed with the aid of Acoustic Emission(AE).Two different quasi-isotropic configurations were selected for the parent laminate,viz.,[45°/45°/0°/0°]s and[45°/0°/45°/0°]s.Quasi Static Indentation(QSI)test was performed on both the pristine laminates,and damage areas were detected by using the C-scan inspection technique.Damaged laminates were repaired by using a single-sided patch of two different configurations,viz.,[45°/45°/45°/45°]and[45°/0°/0°/45°],and employing a circular plug to fill the damaged hole.Four different combinations of repaired laminates with two configurations of each parent and patch laminate were produced,which were further subjected to the QSI test.The results reveal the effectiveness of the repair method,as all the repaired laminates show higher impact resistance compared to the respective pristine laminates.Patches of[45°/0°/0°/45°]configuration when repaired by taking[45°/45°/0°/0°]s and[45°/0°/45°/0°]s as parents exhibited 68%and 73%higher peak loads,respectively,than the respective pristine laminates.Furthermore,parent and patch of configuration[45°/0°/45°/0°]s and[45°/0°/0°/45°],respectively,attain the highest peak load,whereas[45°/45°/0°/0°]s and[45°/45°/45°/45°]combinations possess the most gradual decrease in the load. 展开更多
关键词 carbon fiber reinforced polymers(CFRP) Quasi-isotropic laminate Quasi static indentation(QSI) Acoustic emission(AE) Composite repair
下载PDF
Influence of recycled carbon fiber addition on the microstructure and creep response of extruded AZ91 magnesium alloy
2
作者 Sinan Kandemir Jan Bohlen Hajo Dieringa 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2023年第7期2518-2529,共12页
In this study,the recycled short carbon fiber(CF)-reinforced magnesium matrix composites were fabricated using a combination of stir casting and hot extrusion.The objective was to investigate the impact of CF content(... In this study,the recycled short carbon fiber(CF)-reinforced magnesium matrix composites were fabricated using a combination of stir casting and hot extrusion.The objective was to investigate the impact of CF content(2.5 and 5.0 wt.%)and fiber length(100 and 500μm)on the microstructure,mechanical properties,and creep behavior of AZ91 alloy matrix.The microstructural analysis revealed that the CFs aligned in the extrusion direction resulted in grain and intermetallic refinement within the alloy.In comparison to the unreinforced AZ91 alloy,the composites with 2.5 wt.%CF exhibited an increase in hardness by 16-20%and yield strength by 5-15%,depending on the fiber length,while experiencing a reduction in ductility.When the reinforcement content was increased from 2.5 to 5.0 wt.%,strength values exhibited fluctuations and decline,accompanied by decreased ductility.These divergent outcomes were discussed in relation to fiber length,clustering tendency due to higher reinforcement content,and the presence of interfacial products with micro-cracks at the CF-matrix interface.Tensile creep tests indicated that CFs did not enhance the creep resistance of extruded AZ91 alloy,suggesting that grain boundary sliding is likely the dominant deformation mechanism during creep. 展开更多
关键词 Metal matrix composites magnesium alloys Recycled carbon fiber Extrusion Microstructure Mechanical properties CREEP
下载PDF
Corrosion damage evolution and mechanical properties of carbon fiber reinforced aluminum laminate 被引量:4
3
作者 WU Xin-tong ZHAN Li-hua +3 位作者 HUANG Ming-hui ZHAO Xing WANG Xun ZHAO Guo-qing 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第3期657-668,共12页
Fiber metal laminates(FMLs),a kind of lightweight material with excellent comprehensive performance,have been successfully applied in aerospace.FMLs reinforced with carbon fiber have better mechanical properties than ... Fiber metal laminates(FMLs),a kind of lightweight material with excellent comprehensive performance,have been successfully applied in aerospace.FMLs reinforced with carbon fiber have better mechanical properties than those with glass or aramid fiber.However,carbon fiber binding metal may lead to galvanic corrosion which limits its application.In this paper,electrochemical methods,optical microscope and scanning electron microscope were used to analyze the corrosion evolution of carbon fiber reinforced aluminum laminate(CARALL)in corrosive environment and explore anti-corrosion ways to protect CARALL.The results show that the connection between carbon fiber and aluminum alloy changes electric potential,causing galvanic corrosion.The galvanic corrosion will obviously accelerate CARALL corroded in solution,leading to a 72.1%decrease in interlaminar shear strength,and the crevice corrosion has a greater impact on CARALL resulting in delamination.The reduction of interlaminar shear strength has a similar linear relationship with the corrosion time.In addition,the adhesive layers between carbon fiber and aluminum alloy cannot protect CARALL,while side edge protection can effectively slow down corrosion rate.Therefore,the exposed edges should be coated with anti-corrosion painting.CARALL has the potential to be used for aerospace components. 展开更多
关键词 carbon fiber reinforced aluminum laminate galvanic corrosion ELECTROCHEMISTRY interlaminar shear strength aluminum alloy
下载PDF
Mechanical joint performances of friction self-piercing riveted carbon fiber reinforced polymer and AZ31B Mg alloy 被引量:2
4
作者 Yuan Li Yong Chae Lim +2 位作者 Jian Chen Jiheon Jun Zhili Feng 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2022年第12期3367-3379,共13页
Carbon fiber reinforced polymer(CFRP) and AZ31B Mg alloy were joined by the friction self-piercing riveting(F-SPR) with different steel rivet shank sizes. With the increase of rivet shank size, lap shear fracture load... Carbon fiber reinforced polymer(CFRP) and AZ31B Mg alloy were joined by the friction self-piercing riveting(F-SPR) with different steel rivet shank sizes. With the increase of rivet shank size, lap shear fracture load and mechanical interlock distance increased. Ultrafine grains were formed at the joint in AZ31B as a result of dynamic recrystallization, which contributed to the higher hardness. Fatigue life of the CFRP-AZ31B joint was studied at various peak loads of 0.5, 1, 2, and 3 kN and compared with the resistance spot welded AZ31B-AZ31B from the open literature. The fatigue performance was better at higher peak load(>2 kN) and comparable to that of resistance spot welding of AZ31B to AZ31B at lower peak loads(<1 kN). From fractography, the crack initiation for lower peak load(<1 kN) case was observed at the fretting positions on the top and bottom surfaces of AZ31B sheet. When peak load was increased, fretting between the rivet and the top of AZ31B became more dominant to initiate a crack during fatigue testing. 展开更多
关键词 Friction self-piercing riveting magnesium alloy carbon fiber reinforced polymer Dynamic recrystallization Fatigue life Crack initiation
下载PDF
Flexural rigidity evolvement laws of reinforced concrete beams strengthened with carbon fiber laminates
5
作者 牛鹏志 《Journal of Chongqing University》 CAS 2007年第1期67-72,共6页
Extensive research has shown that externally bonded carbon fiber reinforced polymer (CFRP) laminates are particularly suitable for improving the fatigue behavior of reinforced concrete (RC) beams. This paper prese... Extensive research has shown that externally bonded carbon fiber reinforced polymer (CFRP) laminates are particularly suitable for improving the fatigue behavior of reinforced concrete (RC) beams. This paper presents the research on flexural ngidity evolvement laws by testing 14 simple-supported RC beams strengthened with carbon fiber laminates (CFL) under cyclic load, and 2 under monotone load as a reference. The cyclic load tests revealed the peak load applied onto the surface of a supported RC beam strengthened with CFL is linear to the logarithm of its fatigue life, and the flexural rigidity evolvement undergoes three distinct phases: a rapid decrease from the start to about 5% of the fatigue life; an even development from .5% to about 99% of the fatigue life; and a succedent rapid decrease to failure. When the ratio of fatigue "cycles to the fatigue life is within 0.0.5 to 0.99, the flexural rigidity varies linearly with the ratio. The peak load does not affect the flexural rigidity evolvement if it is not high enough to make the main reinforcements yield. The dependences of the flexural rigidity of specimens formed in the same group upon their fatigue cycles normalized by fatigue life are almost coincident. This implies the flexural rigidity may be a material parameter independent of the stress level. These relationships of flexural rigidity to fatigue cycles, and fatigue life may be able to provide some hints for fatigue design and fatigue life evaluation of RC member strengthened with CFL; nevertheless the findings still need verifying by more experiments. 展开更多
关键词 flexural rigidity carbon fiber laminate reinforced concrete BEAM FATIGUE
下载PDF
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
6
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
下载PDF
Zr基非晶破片对碳纤维复合靶及后效铝靶的侵彻试验研究 被引量:1
7
作者 贾杰 智小琦 +3 位作者 郝春杰 李劲 郭璐 柳星河 《高压物理学报》 CAS CSCD 北大核心 2024年第2期128-137,共10页
Zr基非晶破片是一种新兴的活性高效毁伤元,其着靶速度达到一定阈值时会发生燃烧反应并破碎,从而大幅提高其后效毁伤能力。为研究Zr基非晶破片对碳纤维增强复合材料的侵彻破坏机理及后效毁伤能力,利用弹道枪加载球形破片,分别以496.4~1 0... Zr基非晶破片是一种新兴的活性高效毁伤元,其着靶速度达到一定阈值时会发生燃烧反应并破碎,从而大幅提高其后效毁伤能力。为研究Zr基非晶破片对碳纤维增强复合材料的侵彻破坏机理及后效毁伤能力,利用弹道枪加载球形破片,分别以496.4~1 085.8 m/s、571.4~1 103.9 m/s的速度范围撞击8和6 mm厚的碳纤维复合靶,并布置2 mm厚LY12铝靶板作为后效靶,以比较破片在不同工况下的后效毁伤能力。实验结果表明:碳纤维靶受活性破片冲击时,其迎弹面的破坏形式主要是压缩失效与剪切失效的耦合破坏,其背弹面的破坏形式主要是拉伸失效破坏与层间的脱粘分裂;随着破片着靶速度的提高,碳纤维靶板的压剪耦合破坏比例逐渐增加,拉伸断裂与分层现象逐渐减弱;破片对于8和6 mm厚碳纤维靶的弹道极限速度分别为351.9、264.6 m/s;相同着靶速度下,8 mm厚碳纤维靶的后效毁伤面积大于6 mm厚碳纤维靶的后效毁伤面积,两者之间的差异随着着靶速度的提高而逐渐减小;破片冲击等厚度碳纤维靶时,破片的后效毁伤能力随着靶速度的提高而增强。 展开更多
关键词 ZR基非晶合金 碳纤维增强复合材料 后效毁伤能力 活性破片
下载PDF
车用CFRP层压圆柱壳冲击损伤分析及最小穿透能量预测
8
作者 王丹琦 吴霖滔 +3 位作者 聂冰冰 车文传 邹铁方 张君媛 《汽车安全与节能学报》 CAS CSCD 北大核心 2024年第1期29-38,共10页
为了探究碳纤维增强复合材料(CFRP)在汽车曲面零部件上的应用前景,该文以碳纤维增强复合材料(CFRP)层压圆柱壳作为对象,研究其在落锤冲击工况下的损伤与吸能特性。基于复合材料均质化方法,建立CFRP层压圆柱壳落锤冲击的多尺度模型,探究... 为了探究碳纤维增强复合材料(CFRP)在汽车曲面零部件上的应用前景,该文以碳纤维增强复合材料(CFRP)层压圆柱壳作为对象,研究其在落锤冲击工况下的损伤与吸能特性。基于复合材料均质化方法,建立CFRP层压圆柱壳落锤冲击的多尺度模型,探究曲率半径对冲击损伤和能量吸收的影响;并采用非线性拟合方法建立了最小穿透能量与层压圆柱壳材料参数、结构参数及落锤参数之间的函数关系,实现概念设计阶段最小穿透能量的快速预测,对比仿真结果拟合公式的误差在20%以内。结果表明:相较于平板,层压圆柱壳的峰值载荷宽度更大、更平稳。在60 J冲击作用下,层压圆柱壳各铺层损伤面积相对均匀,其中纤维损伤与曲率半径无关,基体损伤面积随曲率半径增大而增大;当曲率半径为100 mm时,层压壳承载及抵抗变形能力较好,具有较好的抗冲击性;当曲率半径为200 mm时,层压壳耗散能量最多,吸能效果较好。 展开更多
关键词 汽车轻量化 碳纤维增强复合材料(CFRP) 层压圆柱壳 冲击损伤 能量吸收
下载PDF
汽车用轻量化材料的研究进展 被引量:3
9
作者 胡家乐 周超群 +1 位作者 王巧玉 王建彬 《湖南工程学院学报(自然科学版)》 2024年第1期25-33,共9页
汽车轻量化是应对能源问题、改善全球温室效应的重要措施之一,对节能减排有重要意义.本文对铝合金、镁合金、碳纤维、工程塑料等轻质材料的研究现状、实际应用进行了综述,介绍了汽车中常用轻量化材料的特性、具体应用中存在的问题以及... 汽车轻量化是应对能源问题、改善全球温室效应的重要措施之一,对节能减排有重要意义.本文对铝合金、镁合金、碳纤维、工程塑料等轻质材料的研究现状、实际应用进行了综述,介绍了汽车中常用轻量化材料的特性、具体应用中存在的问题以及解决方法,提出了未来的研究方向,以期为汽车工业轻量化材料应用提供参考. 展开更多
关键词 汽车轻量化 铝合金 镁合金 碳纤维 车用塑料
下载PDF
碳纤维复合材料层合板的动态力学性能及失效机制
10
作者 林作泓 高玉波 卢涛 《中北大学学报(自然科学版)》 CAS 2024年第4期550-556,共7页
为了进一步明确碳纤维增强复合材料(CFRP)在冲击加载下的动态力学行为,采用电子万能试验机和霍普金森压杆(SHPB)试验装置,研究了铺层方式为[-45°/90°/45°/0°]的CFRP在厚度和面内方向的静/动态力学性能。结果表明,C... 为了进一步明确碳纤维增强复合材料(CFRP)在冲击加载下的动态力学行为,采用电子万能试验机和霍普金森压杆(SHPB)试验装置,研究了铺层方式为[-45°/90°/45°/0°]的CFRP在厚度和面内方向的静/动态力学性能。结果表明,CFRP复合材料主要发生脆性破坏,在不同方向纤维铺层之间相互纠缠,有效支撑基体,可避免材料发生瞬间坍塌失效。受微裂纹扩展和加载速率关系的影响,复合材料呈现出明显的正相关应变率效应,虽然加入了不同铺层纤维,但材料失效破坏仍主要由基体决定。沿厚度方向加载,裂纹主要以沿45°角扩展的剪切破坏为主,断面在剪应力作用下出现了大量纤维的拔出和断裂。沿面内加载方向,纤维间的粘结层发生脆性断裂,与加载方向一致的纤维发生了屈曲失稳,裂纹穿透纤维层导致脱层。 展开更多
关键词 碳纤维增强复合材料层合板 力学性能 失效机理 应变率效应
下载PDF
钨球对碳纤维增强复合材料包覆碳化硼陶瓷侵彻效应
11
作者 王逸凡 李永鹏 +3 位作者 徐豫新 刘铁磊 焦晓龙 王若素 《兵工学报》 EI CAS CSCD 北大核心 2024年第8期2487-2496,共10页
为研究碳纤维增强复合材料(Carbon Fiber Reinforced Composite,CFRP)包覆碳化硼(B_(4)C)陶瓷在钨球侵彻下的破坏机制与防护性能,开展不同弹靶径厚比D/T(D为钨球直径,T为陶瓷厚度)下钨球对CFRP包覆B_(4)C陶瓷板(下文简称靶板)的侵彻试... 为研究碳纤维增强复合材料(Carbon Fiber Reinforced Composite,CFRP)包覆碳化硼(B_(4)C)陶瓷在钨球侵彻下的破坏机制与防护性能,开展不同弹靶径厚比D/T(D为钨球直径,T为陶瓷厚度)下钨球对CFRP包覆B_(4)C陶瓷板(下文简称靶板)的侵彻试验和数值仿真研究。通过弹道冲击试验,掌握钨球穿靶后的剩余速度以及靶板破坏形貌,分析钨球以不同速度侵彻靶板后B_(4)C陶瓷和CFRP的破坏特征;构建钨球侵彻靶板的数值仿真模型,通过再现试验结果验证模型准确性,对比分析CFRP对钨球侵彻效果的影响;基于仿真模型计算得到的数值仿真数据建立钨球垂直侵彻靶板的剩余速度计算模型,并通过试验数据验证计算模型的精度。研究结果表明:钨球垂直侵彻下,CFRP迎弹面呈圆形破口,背弹面呈十字形破口,背弹面破坏面积大于迎弹面,且随撞击速度和靶板厚度的增加,背弹面破坏面积的变化幅度大于迎弹面;与单一B_(4)C陶瓷板相比,CFRP包覆B_(4)C陶瓷板的抗侵彻性能提高4.8%;所建立的钨球垂直侵彻靶板的剩余速度计算模型计算结果的相对误差绝对值不大于15%。 展开更多
关键词 钨球 B_(4)C陶瓷 碳纤维增强复合材料 侵彻
下载PDF
青岛海洋环境碳纤维复合材料与低合金钢电偶腐蚀研究 被引量:1
12
作者 丁康康 白雪寒 +4 位作者 彭文山 李显超 范林 任海滔 侯健 《装备环境工程》 CAS 2024年第2期97-103,共7页
目的 探究碳纤维复合材料在舰船应用时与金属材料的电偶腐蚀问题。方法 针对一种典型舰船用碳纤维增强乙烯基树脂复合材料,在青岛海洋大气环境下开展0.5、1、1.5、2 a期的自然曝晒试验,进而采用电化学分析手段考察其与低合金钢的电偶腐... 目的 探究碳纤维复合材料在舰船应用时与金属材料的电偶腐蚀问题。方法 针对一种典型舰船用碳纤维增强乙烯基树脂复合材料,在青岛海洋大气环境下开展0.5、1、1.5、2 a期的自然曝晒试验,进而采用电化学分析手段考察其与低合金钢的电偶腐蚀效应,结合老化机制探究碳纤维复合材料的老化行为对其与钢电偶腐蚀的影响。结果及结论 在青岛大气环境曝晒不同周期的复合材料试样,开路电位与低合金钢相差较大,存在较高的电偶腐蚀倾向。随曝晒时间的延长,复合材料表面微裂纹不断产生、扩展,导致电化学反应活性点增多,两者电偶电流密度随之增大。在青岛海洋大气环境下暴露2 a后,碳纤维增强乙烯基树脂复合材料与低合金钢的电偶电流为0.356 9μA/cm^(2),两者的电偶腐蚀敏感性达到B级。 展开更多
关键词 舰船 海洋大气 碳纤维复合材料 低合金钢 腐蚀老化 电偶电流 腐蚀敏感性
下载PDF
水下接触爆炸作用下金属/CFRP复合层合板的防护性能
13
作者 赵豫熙 袁浩天 +1 位作者 王须民 张之凡 《高压物理学报》 CAS CSCD 北大核心 2024年第6期175-188,共14页
碳纤维增强复合材料(carbon fiber-reinforced polymer,CFRP)具有优异的抗爆性能,逐渐被应用于舰船结构的抗爆抗冲击设计中。为了探究水下接触爆炸作用下金属/CFRP复合层合板的防护性能,基于任意拉格朗日-欧拉方法,建立了水下接触爆炸... 碳纤维增强复合材料(carbon fiber-reinforced polymer,CFRP)具有优异的抗爆性能,逐渐被应用于舰船结构的抗爆抗冲击设计中。为了探究水下接触爆炸作用下金属/CFRP复合层合板的防护性能,基于任意拉格朗日-欧拉方法,建立了水下接触爆炸对金属/CFRP复合层合板毁伤的流固耦合数值模型,分析了层合板在承受水下爆炸载荷后的变形和吸能特点,比较了不同铺层方式对结构抗爆性能的影响,结果显示,钢/CFRP/钢结构的抗爆性能较优。针对钢/CFRP/钢结构,探究了CFRP的厚度对吸能效果的影响,并进行了厚度优化,得到了较优的厚度比,即1.1∶4.0∶1.1。 展开更多
关键词 碳纤维增强复合材料 水下接触爆炸 层合板 抗爆性能 吸能
下载PDF
车用碳纤维/铝合金层板弹性模具增塑成形极限及机理研究
14
作者 李倩 刘一凡 +1 位作者 王耀耀 刘庆 《河南工学院学报》 CAS 2024年第2期8-16,26,共10页
为解决车用碳纤维/铝合金层板传统成形工艺存在的异质材料变形协调性差、塑性成形极限低的问题,提出了一种碳纤维金属层板弹性模具增塑成形方法,并结合理论分析、有限元仿真、实验等方法,研究了弹性模具增塑成形过程中碳纤维金属层板的... 为解决车用碳纤维/铝合金层板传统成形工艺存在的异质材料变形协调性差、塑性成形极限低的问题,提出了一种碳纤维金属层板弹性模具增塑成形方法,并结合理论分析、有限元仿真、实验等方法,研究了弹性模具增塑成形过程中碳纤维金属层板的变形行为和成形极限。实验结果表明,所提方法能够显著提升碳纤维金属层板的成形性能,且随着弹性模具硬度的增加,层板的成形极限位移和承载极限均有所提高,当弹性模具硬度达到HS90A时与传统无弹性模具成形相比,层板的成形极限位移可提高30.6%,承载极限可提高21.8%。 展开更多
关键词 碳纤维/铝合金层板 弹性模具 增塑成形
下载PDF
Microstructure and mechanical properties of bio-inspired Cf/Ti/Mg laminated composites 被引量:4
15
作者 Xiaoshi Hu Zhenming Sun +2 位作者 Chunlei Zhang Xiaojun Wang Kun Wu 《Journal of Magnesium and Alloys》 SCIE EI CAS 2018年第2期164-170,共7页
Inspired by an old fish skin structure,the Cf/Ti/Mg laminated composites were fabricated by squeeze casting technology.No porous or voids were found in final composite,and carbon fiber was uniformly dispersed in Mg ma... Inspired by an old fish skin structure,the Cf/Ti/Mg laminated composites were fabricated by squeeze casting technology.No porous or voids were found in final composite,and carbon fiber was uniformly dispersed in Mg matrix.Furthermore,the addition of net-shaped Ti adsorbed Al element and facilitated the nucleation of Mg_(17)Al_(12)nearby Ti.The reaction product Al_(4)C_(3)was found at the Cf and AZ91 interface.Mechanical tests indicate that the introduction of Ti could greatly improve the toughness of Cf/Mg composites. 展开更多
关键词 magnesium matrix composites carbon fiber laminated composites
下载PDF
DELAMINATION FORMATION AND DELAMINATION PROPAGATION OF COMPOSITE LAMINATES UNDER COMPRESSIVE FATIGUE LOADING 被引量:2
16
作者 熊峻江 《Chinese Journal of Aeronautics》 SCIE EI CSCD 2000年第1期8-13,共6页
Fatigue tests of the smooth composite laminates and the notched composite laminates under compressive cyclic loading have been carried out. The damage mechanism is discussed and analyzed. Damage evolution is monitored... Fatigue tests of the smooth composite laminates and the notched composite laminates under compressive cyclic loading have been carried out. The damage mechanism is discussed and analyzed. Damage evolution is monitored using stiffness decay. From these tests, it is found that the initial delamination occurs at the free boundary of smooth specimens, or the notch boundary of notched specimens, subjected to the compression-compression cyclic load. A point of view in relation to two-phases of compression fatigue delamination of composites is proposed, namely, compression-compression delamination consists of the delamination formation phase and the delamination propagation, and there is a 'damage transition point' to separate this two-phases. Furthermore, an empirical modulus degradation formula and its parameters fitting method are presented. According to the test data handling results, it is shown that this formula is univocal and can fit the test data conveniently. In addition, two kinds of new anti-buckling devices are designed for these tests. At last, the E-N curves, the D-N curves and the S-N curve of the smooth carbon fiber reinforced composite laminates of T300/648C are determined to predict the fatigue life of the notched composite laminate. And the E-N curve of the notched specimens at the given load ratio R = 10 and minimum load Pmin = -0.45 kN is also measured to verify the estimated result of fatigue life. 展开更多
关键词 carbon fiber reinforced plastics Composite micromechanics Compressive strength Crack propagation Cyclic loads DELAMINATION Elastic moduli Fatigue testing laminated composites STIFFNESS
下载PDF
Detection of stacking orientation error of CFRP composite laminates using ultrasound waves
17
作者 Sun-Kyu KIM David HSU +1 位作者 Young-Hwan SEO Kwang-Hee IM 《中国有色金属学会会刊:英文版》 CSCD 2009年第B09期124-127,共4页
A jig was developed for generating a shear wave. A pyramid with an isosceles triangle with two 45o was made of aluminum to generate shear waves using two longitudinal transducers based on ultrasonic-polarized mechanis... A jig was developed for generating a shear wave. A pyramid with an isosceles triangle with two 45o was made of aluminum to generate shear waves using two longitudinal transducers based on ultrasonic-polarized mechanism. Also, the signal splitter was connected to the pulser jack on the pulser/receiver and to the longitudinal transducers. Therefore, an experimental way was performed in order to make shear wave on the bottom of aluminum alloyed pyramid. Also, a jig was manufactured and developed for generating a shear wave based on the computer numerical simulation. It is found that the experimentally shear wave variation of newly-designed jig is consistent with computer numerical simulation results and shear wave ultrasonic application can be very useful to detect the defects in CFRP composites. 展开更多
关键词 碳纤维复合材料 误差检测 超声波 复合材料层板 计算机数值模拟 堆垛 脉冲发生器 信号分配器
下载PDF
碳纤维复合材料/钢的胶铆连接失效机理和选材方法 被引量:3
18
作者 余海燕 吴航宇 《上海交通大学学报》 EI CAS CSCD 北大核心 2023年第2期230-240,共11页
为了揭示碳纤维复合材料(CFRP)与钢板连接设计中,母材厚度和强度对接头失效的影响规律,对CFRP层合板与DC05、HC260Y、DP590、DP780、DP1180、PHS1500钢板组成的胶接、铆接和胶铆混合接头进行单向和正向拉伸试验,分析各接头连接强度和失... 为了揭示碳纤维复合材料(CFRP)与钢板连接设计中,母材厚度和强度对接头失效的影响规律,对CFRP层合板与DC05、HC260Y、DP590、DP780、DP1180、PHS1500钢板组成的胶接、铆接和胶铆混合接头进行单向和正向拉伸试验,分析各接头连接强度和失效模式,提出CFRP/钢接头母材厚度比和强度比的推荐范围.结果表明:CFRP/钢接头失效模式由较弱一侧母材强度和刚度决定,在连接设计中,应尽可能使两母材的强度和刚度相近;CFRP零件与相邻钢件厚度比的推荐范围为1.37~1.91,母材极限承载比的推荐范围为0.9~1.52. 展开更多
关键词 碳纤维复合材料层合板/钢板 连接强度 失效机理 选材
下载PDF
3种加锚方式下2种碳纤维布加固钢筋砼梁抗剪承载力计算的比较 被引量:1
19
作者 刘相 孙宁 《辽东学院学报(自然科学版)》 CAS 2023年第4期271-278,共8页
按照《碳纤维片材加固混凝土结构技术规程》与《混凝土结构加固设计规范》分别对胶锚或钢板锚、环形箍及自锁式、加织物压条一般式3种U形箍加锚方式加固后的梁斜截面承载力进行计算。结果发现,2种计算方式得出胶锚或钢板锚加锚方式的承... 按照《碳纤维片材加固混凝土结构技术规程》与《混凝土结构加固设计规范》分别对胶锚或钢板锚、环形箍及自锁式、加织物压条一般式3种U形箍加锚方式加固后的梁斜截面承载力进行计算。结果发现,2种计算方式得出胶锚或钢板锚加锚方式的承载力增加值差异最小,加织物压条一般式的差异最大。2个工程抗剪加固应用算例的验证结果与计算结果一致。由此可知,在相同加固要求条件下,采用胶锚或钢板锚加锚方式的加固成本最低。 展开更多
关键词 《碳纤维片材加固混凝土结构技术规程》 《混凝土结构加固设计规范》 加锚方式 碳纤维布 加固 钢筋砼梁 抗剪承载力
下载PDF
CF/PA6与6061铝合金的超声波自熔铆焊 被引量:1
20
作者 杨苑铎 李洋 +2 位作者 刘泽光 王凯峰 敖三三 《上海交通大学学报》 EI CAS CSCD 北大核心 2023年第2期221-229,共9页
为了进一步提高碳纤维增强热塑性复合材料与轻量化金属之间的连接强度,提出一种新型超声波自熔铆焊方法.该方法通过超声波焊接将短碳纤维增强尼龙6(CF/PA6)熔化并压入铝合金板上预制的通孔内,从而实现CF/PA6与铝合金的连接,连接机制为... 为了进一步提高碳纤维增强热塑性复合材料与轻量化金属之间的连接强度,提出一种新型超声波自熔铆焊方法.该方法通过超声波焊接将短碳纤维增强尼龙6(CF/PA6)熔化并压入铝合金板上预制的通孔内,从而实现CF/PA6与铝合金的连接,连接机制为机械自锁.实验结果表明,随着孔数增加,焊接的整体力学性能有所增加,最优焊接能量为2000 J,最高剪切强度为(58.9±7.1)MPa.依据焊接功率和焊头位移信号,可将超声波自熔铆焊过程分为3个阶段:压紧阶段、导能筋嵌入阶段和充孔阶段.当能量一定时,随着孔数增加,导能筋会更早嵌入CF/PA6中,且焊接时间缩短.相对于焊接能量,孔数对焊接过程的影响更大.得益于机械自锁的连接机制,该方法对金属种类没有限制,具有较为广阔的应用前景. 展开更多
关键词 超声波塑料焊接 碳纤维增强热塑性复合材料 铝合金 异种材料连接
下载PDF
上一页 1 2 9 下一页 到第
使用帮助 返回顶部