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Effect of glass fibre(GF) addition on microstructure and tensile property of GF/Pb composites fabricated by powder metallurgy
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作者 耿耀宏 王蓬瑚 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第10期2672-2678,共7页
GF/Pb compositeswerefabricated by the method of powder metallurgy, and the density, microstructure and tensile propertywerecharacterized considering the size and content ofglass fibre (GF). The results show that rel... GF/Pb compositeswerefabricated by the method of powder metallurgy, and the density, microstructure and tensile propertywerecharacterized considering the size and content ofglass fibre (GF). The results show that relative densities decrease with increasing GF fraction, and the 50μm-GF reinforced specimens exhibit a better densification than the 300μm-GF reinforced ones. The GF particles distribute quite uniformly inPb matrix, and the composites fabricated at low sintering temperature (〈200℃) possess fine-grain microstructure. The addition of GF significantly improves the strength of the Pb composites, and the ultimate tensile strength of the Pb composite reinforcedwith the addition of 50μm-0.5% GF(mass fraction)is about 30MPa higher than that of GF-free sample. For all composites groups, increasing the reinforcement content from 0.5%to 2%(mass fraction)results in a decrease in both tensile strength and ductility. 展开更多
关键词 gf/Pb composites powder metallurgy sintering microstructure tensile property
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Tuning energy output of PTFE/Al composite materials through gradient structure 被引量:1
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作者 Yao-feng Mao Qian-qian He +3 位作者 Jian Wang Chuan-hao Xu Jun Wang Fu-de Nie 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第8期134-142,共9页
As a typical energetic composite,polytetrafluoroethylene(PTFE)/aluminum(Al)has been widely applied in explosives,pyrotechnics,and propellants due to its ultra-high energy density and intense exothermic reaction.In thi... As a typical energetic composite,polytetrafluoroethylene(PTFE)/aluminum(Al)has been widely applied in explosives,pyrotechnics,and propellants due to its ultra-high energy density and intense exothermic reaction.In this work,the radial gradient(RG)structure of PTFE/Al cylinders with three different PTFE morphologies(200 nm and 5μm particles and 5μm fiber)and content changes are prepared by 3D printing technology.The effect of radial gradient structure on the pressure output of PTFE/Al has been studied.Compared with the morphology change of PTFE,the change of component content in the gradient structure has an obvious effect on the pressure output of the PTFE/Al cylinder.Furthermore,the relationships of the morphology,content of PTFE and the combustion reaction of the PTFE/Al cylinder reveal that the cylinder shows a more complex flame propagation process than others.These results could provide a strategy to improve the combustion and pressure output of PTFE/Al. 展开更多
关键词 ptfe/Al composite Gradient structure Radial gradient Pressure output
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Effect of Rare Earths on Tribological Properties of Carbon Fibers Reinforced PTFE Composites 被引量:14
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作者 上官倩芡 程先华 《Journal of Rare Earths》 SCIE EI CAS CSCD 2007年第4期469-473,共5页
Carbon fibers (CF) were surface treated with air-oxidation and rare earths (RE), respectively. The effect of RE surface treatment on tensile strength and tribological properties of CF reinforced polytetrafluoroeth... Carbon fibers (CF) were surface treated with air-oxidation and rare earths (RE), respectively. The effect of RE surface treatment on tensile strength and tribological properties of CF reinforced polytetrafluoroethylene (PTFE) composites was invest/gated. Experimental results revealed that RE was superior to air ox/dation in improving the tensile strength, elongation, and the tensile modulus of CF reinforced PTFE (CF/PTFE) composite. Compared to the untreated and air-oxidated CF/PTFE composite, the RE treated composite had the lowest friction coefficient and specific wear rate under a given applied load and reciprocating sliding frequency. The RE treatment effectively improved the interfacial adhesion between CF and PTFE. With strong interfacial coupling, the carbon fibers carried most of the load, and direct contact and adhesion between PTFE and the counterpart were reduced, accordingly the friction and wear properties of the composite were improved. 展开更多
关键词 ptfe composites carbon fiber surface treatment tensile properties tribological properties rare earths
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Influence of Weave Structures on the Tribological Properties of Hybrid Kevlar/PTFE Fabric Composites 被引量:14
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作者 GU Dapeng YANG Yulin +2 位作者 QI Xiaowen DENG Wei SHI Lei 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第5期1044-1051,共8页
The existing research of the woven fabric self-lubricating liner mainly focus on the tribological performance improvements and the service life raised by changing different fiber type combinations, adding additive mod... The existing research of the woven fabric self-lubricating liner mainly focus on the tribological performance improvements and the service life raised by changing different fiber type combinations, adding additive modification, and performing fiber surface modification. As fabric composites, the weave structures play an important role in the mechanical and tribological performances of the liners. However, hardly any literature is available on the friction and wear behavior of such composites with different weave structures. In this paper, three weave structures (plain, twill 1/3 and satin 8/5) of hybrid Kevlar/PTFE fabric composites are selected and pin-on-flat linear reciprocating wear studies are done on a CETR tester under different pressures and different frequencies. The relationship between the tensile strength and the wear performance are studied. The morphologies of the worn surfaces under the typical test conditions are analyzed by means of scanning electron microscopy (SEM). The analysis results show that at 10 MPa, satin 8/5 performs the best in friction-reduction and antiwear performance, and plain is the worst. At 30 MPa, however, the antiwear performance is reversed and satin 8/5 does not even complete the 2 h wear test at 16 Hz. There is no clear evidence proving that the tensile strength has an influence on the wear performance. So the different tribological performance of the three weave structures of fabric composites may be attributed to the different PTFE proportions in the fabric surface and the different wear mechanisms. The fabric composites are divided into three regions: the lubrication region, the reinforced region and the bonding region. The major mechanisms are fatigue wear and the shear effects of the friction force in the lubrication region. In the reinforced region fiber-matrix de-bonding and fiber breakage are involved. The proposed research proposes a regional wear model and further indicates the wear process and the wear mechanism of fabric composites. 展开更多
关键词 hybrid Kevlar/ptfe fabric composite FRICTION WEAR weave structure scanning electron microscopy
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Tribological Properties and Failure Analysis of PTFE Composites used for Seals in the Transmission Unit 被引量:5
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作者 宫燃 WAN Xiaojin ZHANG Xuerong 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2013年第1期26-30,共5页
The sealing rings are one of the most important components as the sealing devices in the wet clutch unit of a heavy vehicle. The sealing ring, made from PTFE composites, was subjected to serious wear on the sealing su... The sealing rings are one of the most important components as the sealing devices in the wet clutch unit of a heavy vehicle. The sealing ring, made from PTFE composites, was subjected to serious wear on the sealing surface, but the mating metal surface only had slight abrasion. A specialized test rig was designed for wear research and failure analysis of the sealing ring. The composition analyses of the ring material, working conditions and wear surface characteristics by visual inspection and tribological properties as well as microscopic analysis with scanning electron microscope was performed to determine the wear mechanism and failure causes. Results revealed that the wear of PTFE composites was characterized by abrasion and adhesion after a certain duration testing, and the wear mechanism changed to thermal fatigue and abrasive wear in the stage of intense wear. The thermal deformation and fatigue were primarily responsible for the rapid wear of the PTFE composites for the sealing rings. 展开更多
关键词 ptfe composite tribological properties SEALS failure analysis thermal effects
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The Effects of TiO2 Particle Size on the Properties of PTFE/TiO2 Composites 被引量:2
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作者 Fuchuan Luo Ying Yuan +2 位作者 Bin Tang Jun Yang Shuren Zhang 《Journal of Materials Science and Chemical Engineering》 2017年第7期53-60,共8页
TiO2 filled polytetrafluoroethylene (PTFE) composite were fabricated for microwave circuit applications. PTFE/TiO2 composites were prepared by cold pressing and hot treating. The particle size of TiO2 varied from 5 μ... TiO2 filled polytetrafluoroethylene (PTFE) composite were fabricated for microwave circuit applications. PTFE/TiO2 composites were prepared by cold pressing and hot treating. The particle size of TiO2 varied from 5 μm to 11 μm.TiO2 powders with different sizes were prepared by the solid state ceramic route. The effects of TiO2 particle size on the microstructure, density, moisture absorption, thermal conductivity and microwave dielectric properties of PTFE/TiO2 composites were investigated. The density showed an increasing trend as the TiO2 particle size increased, while the dielectric loss (tanδ) and moisture absorption decreased with the increase of TiO2 particle size. The dielectric constant (εr) and thermal conductivity (λ) decreased up to D50 = 6.5 μm and then sharply increased. Good properties with values of εr = 6.8, tanδ = 0.0012 and λ = 0.533 W?m?1?K?1 were obtained in PTFE/TiO2 composites when the particle size of TiO2 was 11 μm. 展开更多
关键词 ptfe/TiO2 composite POWDERS MICROWAVE DIELECTRIC Properties
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PTFE/Cu材料动态压缩特性
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作者 汤雪志 王志军 +1 位作者 张雪朋 徐永杰 《粉末冶金技术》 CAS CSCD 北大核心 2024年第2期153-158,164,共7页
通过冷等静压和冷压烧结制备出六种不同密度的聚四氟乙烯(polytetrafluoroethylene,PTFE)/Cu复合材料,并采用霍普金森系统研究了密度和制备方法对PTFE/Cu动态力学性能影响。结果表明,冷压烧结试样在其烧结过程中发生纵向膨胀,导致密度降... 通过冷等静压和冷压烧结制备出六种不同密度的聚四氟乙烯(polytetrafluoroethylene,PTFE)/Cu复合材料,并采用霍普金森系统研究了密度和制备方法对PTFE/Cu动态力学性能影响。结果表明,冷压烧结试样在其烧结过程中发生纵向膨胀,导致密度降低,且试样表面生成一层金属膜;冷压烧结试样的动态压缩性能优于冷等静压试样;冷压烧结后的PTFE/Cu材料中PTFE晶体发育更好,对Cu颗粒包裹力更大,界面结合力更高,提升了冷压烧结PTFE/Cu材料的力学性能。 展开更多
关键词 ptfe/Cu复合材料 冷等静压 冷压烧结 动态压缩性能
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旋翼轴用Ni−Al_(2)O_(3)−PTFE复合镀层的制备与摩擦学性能
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作者 刘李 孙炫琪 +3 位作者 陈子豪 戴庆文 黄巍 王晓雷 《安徽工业大学学报(自然科学版)》 CAS 2024年第3期276-286,共11页
针对国内航空传动系统翻修间隔时间短的不足,以硬质颗粒Al_(2)O_(3)和润滑材料PTFE作为微粒,采用电刷镀技术在旋翼轴常用过渡层金属材料T2紫铜片表面,制备Ni−Al_(2)O_(3),Ni−PTFE,Ni−Al_(2)O_(3)−PTFE复合镀层,采用扫描电镜、显微硬度... 针对国内航空传动系统翻修间隔时间短的不足,以硬质颗粒Al_(2)O_(3)和润滑材料PTFE作为微粒,采用电刷镀技术在旋翼轴常用过渡层金属材料T2紫铜片表面,制备Ni−Al_(2)O_(3),Ni−PTFE,Ni−Al_(2)O_(3)−PTFE复合镀层,采用扫描电镜、显微硬度仪表征分析镀层微观形貌、元素含量分布及硬度;采用自制的销盘式摩擦磨损试验机对镀层试样进行摩擦磨损试验,探究镀层摩擦学性能及其磨损机理。结果表明:随Al_(2)O_(3)颗粒含量的提高,Ni−Al_(2)O_(3)−PTFE复合镀层表面微晶单元尺寸减小,硬度提高,Ni−Al_(2)O_(3)−PTFE(3∶1)显微硬度最大为236 HV,相比于Ni−PTFE复合镀层提升约66%;Ni−Al_(2)O_(3)−PTFE复合镀层结合了Al_(2)O_(3)和PTFE两者的优势,在具有减摩的同时,还具有良好的耐磨性能,Ni−Al_(2)O_(3)−PTFE(1∶1)复合镀层的减摩性能最优,相比于Ni−Al_(2)O_(3)其摩擦系数降低约52%;Ni−Al_(2)O_(3)−PTFE(3∶1)复合镀层的耐磨性能最优,相比于Ni−PTFE其磨损率降低约85%;Ni−Al_(2)O_(3)−PTFE复合镀层的磨损形式主要是机械磨损,存在轻微的氧化磨损和黏着磨损,复合镀层表面微凸体的塑性变形可为摩擦表面提供润滑膜,其中PTFE是自润滑颗粒,Al_(2)O_(3)颗粒起到支撑与强化的作用,保护镀层免受磨损。 展开更多
关键词 航空传动系统 旋翼轴 复合镀层 Al_(2)O_(3) ptfe 电刷镀 摩擦磨损
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Si_(3)N_(4)/PTFE复合材料转移膜形貌与磨损率定量分析
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作者 李文博 解挺 +3 位作者 张龙肖 孟响 徐建 张地 《合肥工业大学学报(自然科学版)》 CAS 北大核心 2024年第3期333-337,共5页
聚四氟乙烯(PTFE)基复合材料摩擦转移膜对其摩擦学性能有着决定性影响,转移膜形貌与磨损率定量关系对PTFE基复合材料的摩擦学性能优化有重要意义。文章对Si_(3)N_(4)/PTFE复合材料转移膜膜厚与覆盖率进行定量表征并建立两者与磨损率的... 聚四氟乙烯(PTFE)基复合材料摩擦转移膜对其摩擦学性能有着决定性影响,转移膜形貌与磨损率定量关系对PTFE基复合材料的摩擦学性能优化有重要意义。文章对Si_(3)N_(4)/PTFE复合材料转移膜膜厚与覆盖率进行定量表征并建立两者与磨损率的函数关系。结果表明:转移膜最大厚度和覆盖率均与复合材料磨损率之间有较高的拟合度,最大厚度与覆盖率在转移膜不同形貌时对复合材料磨损率的影响起不同作用;转移膜最大厚度大于0.319μm时,其最大厚度的增加对提高复合材料磨损变化起主导作用;转移膜最大厚度小于0.319μm时,覆盖率的增加对降低复合材料的磨损起主导作用。 展开更多
关键词 ptfe基复合材料 转移膜 定量描述 厚度 覆盖率 磨损率
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空爆条件下硼基燃料对Al/PTFE复合装药能量输出特性的影响
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作者 张学瑞 周涛 《爆破器材》 CAS CSCD 北大核心 2024年第2期7-12,21,共7页
为研究空爆条件下硼基燃料对铝/聚四氟乙烯(Al/PTFE)活性材料与温压炸药组成的复合装药的能量输出特性的影响规律,设计并制备了质量相同、组分不同的3种复合装药试样,进行了自由场静爆试验,获取了不同爆心距处的冲击波超压,通过高速摄... 为研究空爆条件下硼基燃料对铝/聚四氟乙烯(Al/PTFE)活性材料与温压炸药组成的复合装药的能量输出特性的影响规律,设计并制备了质量相同、组分不同的3种复合装药试样,进行了自由场静爆试验,获取了不同爆心距处的冲击波超压,通过高速摄像仪记录了爆炸火球的演变过程。试验结果表明,Al/PTFE活性材料能够提高复合装药的冲击波超压,发生剧烈的后燃烧反应。硼基燃料分解过程具有2.0 ms左右的延迟,反应初期能量贡献较低,使得复合装药冲击波峰值超压降低;但是,后燃烧反应能够促进火球体积的进一步膨胀,降低冲击波超压的下降速率,提高冲击波冲量。适当配比的Al/PTFE和硼基燃料能够使复合装药冲击波峰值超压和冲量均获得增强。在Al/PTFE中加入硼基燃料,发生了爆燃以上反应,冲击波超压出现了明显的二次峰值,约为0.478 MPa。 展开更多
关键词 复合装药 硼基燃料 Al/ptfe 冲击波超压
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Effect of Carbon Nanotube on the Oscillating Wear Behaviour of Metal-PTFE Multilayer Composites 被引量:2
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作者 ZOU Aili LI Dongsheng 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2018年第5期1271-1274,共4页
Two kinds of metal-PTFE multilayer composites, which were composed of a steel backing, a middle layer of sintered porous bronze and a surface layer of polytetrafluoroethylene(PTFE) filled by carbon nanotubes(CNTs)... Two kinds of metal-PTFE multilayer composites, which were composed of a steel backing, a middle layer of sintered porous bronze and a surface layer of polytetrafluoroethylene(PTFE) filled by carbon nanotubes(CNTs) or not, were prepared. The wear properties of metal-PTFE multilayer composites oscillating against 45 carbon steel under dry condition were evaluated on an oscillating wear tester, and the effect of CNTs on wear behaviour of metal-PTFE multilayer composites was studied. The results showed that the worn surface of metal-PTFE multilayer composites was characterized by adhesive wear, abrasive wear and fatigue wear. The CNTs greatly increased the adhesion strength of PTFE in the metal-PTFE composites and thereby greatly reduced puck, ploughing, and fatigue failure of PTFE during wearing. The PTFE filled with CNTs prevented direct contact between the mating surfaces and served as fine self-lubricating film, in which the oscillating wear mechanism of the composites was changed to a slightly adhesive wear. Therefore, the CNTs significantly decreased the weight loss and obviously increased the wear resistance of metal-PTFE multilayer composites. 展开更多
关键词 carbon nanotubes Metal-ptfe composites oscillating wear self-lubricating
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Effects of Content of Chopped Glass Fibers on the Properties of Silica Filled PTFE Composites
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作者 Ying Yuan Haodong Lin +3 位作者 Zehua Jiang Zhifeng Chi Minghao Yao Shuren Zhang 《Journal of Materials Science and Chemical Engineering》 2017年第7期36-44,共9页
In this work, the polytetrafluoroethylene (PTFE)-based composite substrates were manufactured by mixing, calendering, hot-pressing sintering. The composition of all the samples was PTFE, SiO2 and chopped E-glass fiber... In this work, the polytetrafluoroethylene (PTFE)-based composite substrates were manufactured by mixing, calendering, hot-pressing sintering. The composition of all the samples was PTFE, SiO2 and chopped E-glass fibers. The effects of content of E-glass fibers on the properties of the SiO2 filled PTFE composites were investigated, including density, water absorption, dielectric properties (εr, tanδ), coefficient of thermal expansion (CTE) and temperature coefficient of dielectric constant (τε). The compositions of inorganic materials mixture are (62 ? x) % SiO2 + x % E-glass fiber (x: mass ratio to composites, x = 0, 1, 1.5, 2, 2.5, 3). The results show that as the content of E-glass fibers is 2.5 wt.%, this composite obtains optimal properties, including excellent dielectric properties (εr^2.9123, tanδ~0.0011), acceptable water absorption of 0.075%, temperature coefficient of dielectric constant of 10 ppm/?C and coefficient of thermal expansion of 15.87 ppm/?C. 展开更多
关键词 POLYMERS composite Materials ptfe DIELECTRIC Properties E-GLASS Fiber
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Effects of CaTiO3 Loading on the Properties of PTFE/TiO2 Composites
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作者 Bin Tang Fuchuan Luo +2 位作者 De Zhou Ying Yuan Shuren Zhang 《Journal of Materials Science and Chemical Engineering》 2017年第7期45-52,共8页
In this paper, a detailed study was carried out on the PTFE reinforced with TiO2 and CaTiO3. The filler content of ceramic powder was a fixed value of 61 wt% and the content of CaTiO3 in PTFE matrix varied from 0 wt% ... In this paper, a detailed study was carried out on the PTFE reinforced with TiO2 and CaTiO3. The filler content of ceramic powder was a fixed value of 61 wt% and the content of CaTiO3 in PTFE matrix varied from 0 wt% to 16 wt% with a step size of 4 wt%. The effects of CaTiO3 loading on the density, moisture absorption, thermal expansion, microstructure and microwave dielectric properties were investigated. As CaTiO3 loading content increased from 0 wt% to 16 wt%, the thermal expansion initially displayed a sharp increase, and showed a slight enhancement when the content of CaTiO3 exceeded 12 wt%. The density experienced a continuous decrease with the addition of CaTiO3. The moisture absorption displayed a steady increase with the increasing CaTiO3 loading amount. The changing of dielectric constant (εr) and loss tangent (tanδ) were similar to that of the moisture absorption in a manner. Good dielectric properties with values of εr = 11.60, tanδ = 0.002 were obtained in the PTFE matrix with 16 wt% CaTiO3 and 45 wt% TiO2. 展开更多
关键词 composites TiO2 ptfe CATIO3 DIELECTRIC Properties
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DOPO对PA66/GF阻燃及力学性能的影响
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作者 毛辰静 姜欣 +5 位作者 吕以撒 王晓锦 孙淑川 董英英 李桂丽 高蓬 《河南城建学院学报》 CAS 2024年第5期109-115,共7页
添加玻璃纤维(GF)能有效提升尼龙66(PA66)的力学强度,但所得PA66/GF复合材料燃烧时易呈现“灯芯效应”,不能满足使用要求,需进行阻燃改性。将不同含量的9,10-二氢-9-氧杂-10-磷杂菲-10-氧化物(DOPO)与PA66/GF复合材料进行熔融复合,探究D... 添加玻璃纤维(GF)能有效提升尼龙66(PA66)的力学强度,但所得PA66/GF复合材料燃烧时易呈现“灯芯效应”,不能满足使用要求,需进行阻燃改性。将不同含量的9,10-二氢-9-氧杂-10-磷杂菲-10-氧化物(DOPO)与PA66/GF复合材料进行熔融复合,探究DOPO添加量对PA66/GF复合材料的阻燃性能、结晶行为、熔体流动性及力学性能的影响。结果表明:DOPO的加入提高了PA66/GF复合材料的残炭量、极限氧指数和熔体流动速率,降低了熔融结晶温度和相对结晶度;当DOPO的添加量较低时,其在树脂基体中均匀分散,复合材料的力学性能得以保持,进一步提高DOPO的添加量,会因团聚和酸性诱导PA66分子链降解,导致复合材料的力学性能降低。因此,阻燃PA66/GF复合材料的制备需综合考虑其力学性能和阻燃性能。 展开更多
关键词 DOPO PA66/gf 结晶行为 力学性能 阻燃改性 复合材料
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Tensile Properties of Surface-Treated Glass Fiber Reinforced PTFE Composite with Rare Earth Elements 被引量:4
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作者 薛玉君 程先华 《Journal of Rare Earths》 SCIE EI CAS CSCD 2003年第3期364-367,共4页
The optimum amount of rare earth elements (RE) for treating glass fiber surface and its effect on the tensile properties of glass fiber reinforced polytetrafluoroethylene (GF/PTFE) composites were investigated. The te... The optimum amount of rare earth elements (RE) for treating glass fiber surface and its effect on the tensile properties of glass fiber reinforced polytetrafluoroethylene (GF/PTFE) composites were investigated. The tensile properties of GF/PTFE composites with different surface treatment conditions were measured. The fracture surface morphologies were observed and analyzed by SEM. The results indicate that rare earth elements can effectively promote the interfacial adhesion between the glass fiber and PTFE, owing to the effects of rare earth elements on the compatibility. The tensile properties of GF/PTFE composites can be improved considerably when the content of RE in surface modifier is 0.2%~0 4%, and the optimum performance of GF/PTFE composites is obtained at 0.3%RE content. 展开更多
关键词 gf/ptfe composites tensile properties rare earths
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Cr12MoV模具钢化学镀Ni-W-P/PTFE复合镀层及耐磨性能研究 被引量:1
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作者 崔凯 任伟和 《电镀与精饰》 CAS 北大核心 2023年第10期32-39,共8页
以Cr12MoV模具钢作为基体化学镀Ni-W-P/PTFE复合镀层,以期提高模具的耐磨性能。通过改变PTFE颗粒添加量获得不同Ni-W-P/PTFE复合镀层,并对复合镀层的表面形貌、化学成分、晶相结构、硬度及耐磨性能进行表征。结果表明:不同复合镀层表面... 以Cr12MoV模具钢作为基体化学镀Ni-W-P/PTFE复合镀层,以期提高模具的耐磨性能。通过改变PTFE颗粒添加量获得不同Ni-W-P/PTFE复合镀层,并对复合镀层的表面形貌、化学成分、晶相结构、硬度及耐磨性能进行表征。结果表明:不同复合镀层表面都存在尺寸不同、分布不均匀的胞状物,还附着白色PTFE颗粒,但是晶相结构无显著性差异。随着PTFE颗粒添加量从2 g/L增至14 g/L,复合镀层中PTFE颗粒含量呈现先升高,后降低趋势,并且颗粒分散状况不同,硬度呈现减小趋势,而耐磨性能逐步提高,然后变差。当PTFE颗粒添加量为8 g/L获得的Ni-WP/PTFE复合镀层中PTFE颗粒含量达到3.63%,并且颗粒分布趋于均匀,具有优良的耐磨性能,其摩擦系数仅为0.41,表面磨痕宽度和深度分别为500μm和14.7μm,作为表面改性层能有效减轻Cr12MoV模具钢的磨损程度。 展开更多
关键词 Ni-W-P/ptfe复合镀层 化学镀 CR12MOV模具钢 耐磨性能
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复配稀土改性剂对MGF/PTFE复合材料性能的影响 被引量:1
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作者 叶恩淦 王海波 +2 位作者 朱月华 蒋利华 卓宁泽 《材料导报》 EI CAS CSCD 北大核心 2018年第6期961-964,976,共5页
采用稀土改性剂(RES)与硅烷偶联剂(PTMS)按不同组分配比对磨碎玻璃纤维(MGF)表面进行改性处理,将改性后的磨碎玻璃纤维粉末与聚四氟乙烯分散液机械混合,然后热压制得复合材料。探讨了复配稀土改性剂对MGF/PTFE复合材料介电性能、热膨胀... 采用稀土改性剂(RES)与硅烷偶联剂(PTMS)按不同组分配比对磨碎玻璃纤维(MGF)表面进行改性处理,将改性后的磨碎玻璃纤维粉末与聚四氟乙烯分散液机械混合,然后热压制得复合材料。探讨了复配稀土改性剂对MGF/PTFE复合材料介电性能、热膨胀系数(CTE)、热导率的影响。采用FTIR手段对稀土改性剂未改性的磨碎玻璃纤维和改性后的磨碎玻璃纤维的结构进行了测试,并用扫描电子显微镜(SEM)对复合材料的断口形貌进行分析。结果表明,复配改性剂能很好地促进MGF与PTFE之间的界面粘结,提高MGF/PTFE复合材料的性能。当RES、PTMS的含量分别为0.3%(质量分数)、1.7%(质量分数)时,MGF/PTFE复合材料的性能最好。 展开更多
关键词 稀土 硅烷偶联剂 玻璃纤维 Mgf/ptfe复合材料
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Evaluation of Tribological Performance of PTFE Composite Filled with Rare Earths Treated Carbon Fibers under Water-Lubricated Condition 被引量:11
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作者 包丹丹 程先华 《Journal of Rare Earths》 SCIE EI CAS CSCD 2006年第5期564-568,共5页
Carbon fibers (CFs) were surface treated with air-oxidation, rare earths (RE) after air-oxidation, and rare earths, respectively. Erichsen test was conducted to study the interfacial adhesion of PTFE composites fi... Carbon fibers (CFs) were surface treated with air-oxidation, rare earths (RE) after air-oxidation, and rare earths, respectively. Erichsen test was conducted to study the interfacial adhesion of PTFE composites filled with carbon fibers treated with different treatment methods. Tribological properties of the PTFE composites, sliding against GCr15 steel under water-lubricated condition, were investigated on a reciprocating ball-on-disk UMT-2MT tribometer. The worn surfaces of the composites were examined using scanning electron microscopy. Experimental results reveal that RE treatment is superior to air oxidation in promoting tribological properties of CF reinforced PTFE (CF/PTFE) composite. The friction and wear properties of PTFE composite filled with RE treated CF are the best of the PTFE composites. RE treatment is more effective than air oxidation to improve the tribological properties of CF/PTFE composite owing to the effective improvement of interfacial adhesion between carbon fibers and PTFE matrix. 展开更多
关键词 CF/ptfe composites surface treatment tribological property water-lubricated condition rare earths
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Effect of rare earths surface treatment on tribological properties of carbon fibers reinforced PTFE composite under oil-lubricated condition 被引量:6
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作者 上官倩芡 程先华 《Journal of Rare Earths》 SCIE EI CAS CSCD 2008年第4期584-589,共6页
The effect of rare earths (RE) surface treatment of carbon fibers (CF) on tribological properties of CF reinforced polytetrafluoroethylene (PTFE) composites under oil-lubricated condition was investigated. Exper... The effect of rare earths (RE) surface treatment of carbon fibers (CF) on tribological properties of CF reinforced polytetrafluoroethylene (PTFE) composites under oil-lubricated condition was investigated. Experimental results revealed that RE treated CF reinforced PTFE (CF/PTFE) composite had the lowest friction coefficient and wear under various applied loads and sliding speeds compared with untreated and air-oxidated composites. X-ray photoelectron spectroscopy (XPS) study of carbon fiber surface showed that, after RE treatment, oxygen concentration increased obviously, and the amount of oxygen-containing groups on CF surfaces were largely increased. The increase in the amount of oxygen-containing groups enhanced interfacial adhesion between CF and PTFE matrix. With strong interfacial adhesion of the composite, stress could be effectively transmitted to carbon fibers; carbon fibers were strongly bonded with VITE matrix, and large scale rubbing-off of PTFE be prevented, therefore, tribological properties of the composite was improved. 展开更多
关键词 CF/ptfe composites surface treatment tribological property oil-lubrication rare earths
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Dielectric Properties of Polytetrafluoroethylene/CaCu_3Ti_4O_(12) Composites 被引量:3
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作者 LIANG Fei ZHAO Yifei +2 位作者 CHEN Xizi WAN Qianxing Lü Wenzhong 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2019年第1期189-194,共6页
Polymer-based composite was investigated by embedding calcium copper titanate(CaCu_3Ti_4O_(12); CCTO) fillers into polytetrafluoroethylene(PTFE) matrix. The dielectric performances of the composite were investigated w... Polymer-based composite was investigated by embedding calcium copper titanate(CaCu_3Ti_4O_(12); CCTO) fillers into polytetrafluoroethylene(PTFE) matrix. The dielectric performances of the composite were investigated within the frequency range from 100 Hz to 1 MHz. It is indicated that dielectric permittivity(ε) and dielectric loss(tanδ) increase gradually as the filler content increases. Dielectric permittivity for the composite with 50 vol% CCTO filler loading is 33.5, approximately 16 times higher than that of pure PTFE(ε = 2.1) at 100 Hz. As the frequency increases, the dielectric loss decreases rapidly and reaches stability, and then remains low when the frequency rises to 1 MHz. The values for dielectric permittivity and dielectric loss in the microwave frequency(8-13 GHz) are lower than that in low frequency of 10 kHz for the composites because of different polarization modes. Several theoretical models were implemented to compare the experimental results with the theoretical calculations and the modified Lichtenecker equation was found to fit the best. 展开更多
关键词 compositE CCTO ptfe DIELECTRIC PROPERTIES THEORETICAL model
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