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1.
磨盘碾磨制备PP/石墨复合粉末的研究   总被引:2,自引:0,他引:2  
通过磨盘碾磨制备了PP 石墨复合粉末 ,用粒度分析、SEM和XRD表征了复合粉末的形貌特征、结构与性能 .结果表明 ,磨盘碾磨实现了PP与石墨的粉碎、分散和混合 ,经过 2 5遍碾磨 ,石墨与PP已互相嵌入 ,均匀分散 ;PP 石墨复合粉末具有不规则薄片状形貌特征 ;XRD表明 ,磨盘碾磨使PP和石墨的结晶度降低 ,晶面间距增大 ,晶粒尺寸减小 .PP 石墨复合粉末与聚丙烯共混复合可制备出具有良好抗静电性能的复合材料 .  相似文献   

2.
磨盘碾磨固相剪切复合技术(S3C)是制备聚合物 石墨导电复合材料的有效途径,所得聚丙烯 膨胀石墨复合材料具有纳米插层复合结构,石墨纳米片层的相互搭接可形成导电网络,具有纳米间隙的石墨插层结构可形成隧道电流,从而大幅度降低复合体系的导电逾渗阈值,在低填充量实现聚合物复合材料高电导性,与熔体共混相比,导电逾渗阈值由4 .3vol%降低到0 . 5 5vol% ,在石墨含量为4 .0 1vol%时,电导率提高10个数量级.  相似文献   

3.
采用固相力化学技术制备废旧电路板非金属材料(WPCB)改性粉体,填充废弃聚丙烯(PP),制备了高性能废旧PP/WPCB复合材料,研究了固相剪切对WPCB粒度、粒度分布以及PP/WPCB复合材料结构、流变性能和力学性能的影响。结果表明,磨盘碾磨使WPCB粉体体积粒径由282.4μm降到63.5μm,比表面积由0.06m2/g提高到0.14m2/g,粒度分布明显变窄,玻纤与环氧树脂剥离效果明显。固相力化学方法制备WPCB粉体填充废旧PP后,其分散大幅改善,加工性能明显优于未碾磨体系,复合材料力学性能优于纯PP和未经固相力化学处理的PP/WPCB复合材料,相对于纯PP拉伸强度提高14.6%,弯曲模量提高82.5%,缺口冲击强度提高11.2%。得到的材料表面色泽均一、成本低廉,具有良好工业化前景。  相似文献   

4.
聚丙烯/凹凸棒石纳米复合材料的制备与性能研究   总被引:2,自引:0,他引:2  
以聚丙烯(PP)为聚合物基体,天然凹凸棒石(ATP)为无机组分,经过氧化聚乙烯对ATP表面进行包覆处理,用熔融共混的方法制备了PP/ATP纳米复合材料.扫描电镜结果显示,经本方法处理后的ATP在PP基体中分散较为均匀.ATP棒晶簇直径最佳分散尺寸能达到20~40 nm,比未处理ATP在基体中的棒晶簇直径小10 nm以上;XRD测试表明,未处理ATP和处理后的ATP均有使PP晶粒细化的作用,同时不改变PP的α晶型;DSC结果显示,ATP的加入提高了PP的结晶温度和结晶度,说明ATP有一定的成核作用.通过对复合材料的力学性能测试发现,经过处理的ATP制备的复合材料力学性能优于未处理ATP复合材料对PP力学性能的改善.其中ATP与氧化聚乙烯固含量的质量比为2∶1,ATP含量为3 wt%时复合材料力学性能达到最好.缺口冲击强度比纯PP最高提高了83%,提高幅度显著;经过处理的ATP制备的复合材料拉伸强度提高了6%~11%;弯曲强度提高了33%~45%;弯曲模量提高了90%~106%.  相似文献   

5.
用有机插层剂处理蒙脱土原土 ,制得有机蒙脱土 (O MMT) .采用双单体 (马来酸酐和苯乙烯 )原位接枝插层法 ,制备了聚丙烯 蒙脱土纳米复合材料母料 .将母料与聚丙烯基体在双螺杆上共混挤出 ,制得聚丙烯 蒙脱土纳米复合材料 (PP Montmorillonetenanocomposites,PMNC) .这是制备聚合物纳米复合材料的一种新方法 .通过X 射线衍射测试 (XRD)表明 ,有机蒙脱土片层 0 0 1面间距从原土的 1 4 9nm扩大到 2 96nm ,复合材料中蒙脱土片层 0 0 1面间距由有机蒙脱土的 2 96nm扩大到 4 0nm .力学性能测试表明 ,复合材料的力学性能明显优于PP基体 ,在提高材料拉伸强度的同时 ,缺口冲击强度也得到很大的提高 .用扫描电镜 (SEM)对材料的冲击断面形貌进行了研究 ,并从理论上分析了断裂机理 .随着蒙脱土含量的增加 ,冲击断裂形式逐渐从脆性断裂变成韧性断裂  相似文献   

6.
磨盘碾磨聚丙烯粒度分布与接枝率的研究   总被引:15,自引:0,他引:15  
刘长生  王琪 《高分子学报》2000,3(2):219-223
用分形几何方法研究了磨盘碾磨中聚丙烯 (PP)的粉碎和固相力化学接枝 .用粒度分析仪测定经磨盘碾磨聚丙烯的粒度分布 ,用分形理论处理实验数据 .结果表明 ,PP粒度分布存在无标度区 ,具有线性分形特征 ,磨盘碾磨对PP粒子分形行为有较大影响 ,聚丙烯粒度分布的分维值随碾磨次数的增加而增大 .磨盘碾磨中聚丙烯固相力化学接枝的实验结果表明 ,N 羟甲基丙烯酰胺在聚丙烯表面上的接枝率亦随碾磨次数增加而增加 ,即与聚丙烯粒度分布的分维值相关 .因此 ,可用分数维定量描述聚丙烯粒子在磨盘碾磨中的粉碎规律 ,揭示了N 羟甲基丙烯酰胺在聚丙烯表面固相力化学接枝反应的本质 .  相似文献   

7.
采用静电纺丝技术, 结合正硅酸乙酯(TEOS)的溶胶-凝胶反应制备出了直径为500 nm的SiO2短纤维(n-SF). 纤维经过硅烷偶联剂KH570表面处理后, 与聚丙烯(PP)通过螺杆混合制得复合材料. 通过SEM观察, KH570处理过的SiO2短纤维(n-MSF)在PP基体中分散均匀, 界面结合良好. DSC和XRD测试结果表明, n-SF和n-MSF的加入均可提高PP的结晶速率, 同时改变PP中β晶含量, 进而影响冲击强度; 冲击实验结果表明, n-MSF添加量为3%(质量分数)时, 复合材料冲击性能比纯PP提高了40.3%.  相似文献   

8.
聚丙烯/凹凸棒土纳米复合材料结晶形态和形貌研究   总被引:14,自引:0,他引:14  
采用熔融共混的方法 ,制备聚丙烯 凹凸棒土纳米复合材料 .通过X射线衍射 (XRD)分析凹凸棒土在聚丙烯复合材料中晶面间距的变化以及对聚丙烯晶型的影响 ,结果表明凹凸棒土在复合材料中晶面间距没有变化 ;聚丙烯晶型没有发生变化但晶粒尺寸增加了 .用示差扫描量热法 (DSC)分析聚丙烯复合材料的结晶度的变化 ,发现凹凸棒土的加入使复合材料的结晶温度提高 ,结晶速率增大 ,结晶度增加 .用偏光显微镜(POM)观察凹凸棒土对聚丙烯球晶的影响 ,结果表明凹凸棒土的加入起到了成核剂的作用 ,使得聚丙烯球晶尺寸减小 ,当凹凸棒土的加入量到 10 %左右时 ,观察不到完整的球晶 .利用扫描电子显微镜 (SEM)和原子力显微镜 (AFM)观察凹凸棒土在聚丙烯中的分散 ,发现凹凸棒土在聚丙烯基体中分散比较均匀 ,但呈无序分布 .  相似文献   

9.
采用熔融共混法制备了多壁碳纳米管/聚丙烯(MWNT/PP)复合材料,利用X射线衍射法(XRD)、差示扫描量热法(DSC)分别研究了纯聚丙烯(PP)及MWNT/PP复合材料的晶型和非等温结晶动力学行为,并运用Mo法研究了纯PP及MWNT/PP复合材料的非等温结晶动力学行为。结果表明,多壁碳纳米管(MWNT)的加入使PP发生了由β晶型向α晶型的转变。MWNT在结晶过程中具有异相成核效应,提高了PP的结晶温度和结晶速率。MWNT/PP复合材料的结晶活化能均明显高于纯PP。MWNT的加入使PP在单位时间内达到一定结晶度所需的降温速率减小。  相似文献   

10.
PP/SiO2杂化复合材料的制备与性能研究   总被引:1,自引:0,他引:1  
以正硅酸乙酯(TEOS),甲基丙烯酸甲酯(MMA)为主要原料,甲基丙烯酸一口一羟丙酯为活性单体,溶胶一凝胶法制备PMMA/SiO2杂化准凝胶,并以其为填充物对PP进行复合改性。采用FT-IR、XRD、SEM、PLM等对材料的结构进行分析,同时对其力学性能进行测试,研究了复合材料力学性能与组成、结构间的关系。研究发现,PMMA/SiO2杂化材料能诱导PP基体中口晶型的生成,并使PP球晶细化。PP/SiO2杂化复合材料(PSH)中siO2含量为2%(wt)时,缺口冲击强度较纯PP提高81%。  相似文献   

11.
采用磨盘形力化学反应器,在室温下制备了PA6/PP超细混合粉体,与SBS共混制得PA6/PP/SBS共混物,测定了材料的力学性能并用TEM研究了材料在不同加工温度下相结构的变化.结果表明,通过固相力化学粉碎制备的PA6/PP混合微粉,改善了PA6与PP和SBS的相容性,促进了PA6及PP的分散和与SBS的相界面结合.在微粉填充量为4%~8%(质量分数)时,材料的拉伸强度大幅度提高,扯断伸长率保持不变.加工温度变化引起材料相结构的变化对材料性能产生显著影响.在PP熔融温度下加工,PP粒子产生粘连形成链状结构,可提高材料的力学性能.  相似文献   

12.
采用固相剪切碾磨方法(S3M)制备高介电常数聚丙烯/钛酸钡复合材料。当钛酸钡体积分数φBaTiO3=0.50时,体系的介电常数由纯聚丙烯的2.3增加到108.7(1 kHz)。复合材料断面的SEM照片显示,粒径约100 nm的钛酸钡粒子均匀分散在聚丙烯基体中。复合粉体的SEM、TGA和FT-IR分析表明固相剪切碾磨产生的强大剪切、挤压、摩擦等作用在聚合物相引起多种复杂的物理及化学变化,聚合物粒径变小,粒子比表面积增大,表面能大幅增加,与具有较高表面活性的钛酸钡粒子形成较强的界面相互作用。  相似文献   

13.
Polystyrene (PS) was compounded with graphite that possesses high thermal conductivity and layer structures, and the PS/graphite thermal conductive nano‐composites were prepared. Thermal conductivity of PS improved remarkably in the presence of the graphite, and a much higher thermal conductivity of 1.95 W/m K can be achieved for the composite with 34 vol% of colloidal graphite. The Maxwell‐Eucken model and the Agari model were used to evaluate the thermal conductivity of the composites. For the purpose of improving the interfacial compatibility of PS/graphite, realizing the exfoliation and nano‐dispersion of graphite in the PS matrix, three intercalation methods, including rolling intercalation, solvent intercalation, and pan milling intercalation, were applied to prepare the composites, and the morphologies, thermal conductivities, and mechanical properties of the composites were investigated. It should be noted that the one prepared by pan milling intercalation not only had excellent thermal conductivity but also much higher mechanical properties, resulting from a high degree of layer exfoliation of the graphite, the formation of the chain structure agglomerates of the graphite, and the creation of more conductive paths under the strong shear stress of pan milling. Copyright © 2008 John Wiley & Sons, Ltd.  相似文献   

14.
PP/EPDM共混物热氧稳定性研究   总被引:2,自引:0,他引:2  
通过热氧加速老化的方法研究了不同的EPDM含量和抗氧剂对聚丙烯和三元乙丙橡胶共混物(PP/EPDM)热氧稳定性的影响.通过对老化前后试样的力学性能变化分析,热失重(TG)分析和扫描电镜(SEM)分析,结果表明:在热氧加速老化的初期,PP/EPDM共混物的拉伸强度随着时间的增长呈逐渐上升的趋势;在老化中期,共混物的拉伸强度变化不大;在老化后期,共混物的拉伸强度逐渐下降.在整个老化过程中,断裂伸长率都呈逐渐下降的趋势.而随着EPDM含量的增加,相应共混物的拉伸强度和断裂伸长率的下降减缓;相应共混物的分解温度得到较大的提高;抗氧剂的加入,能进一步提高共混物的热氧稳定性.  相似文献   

15.
Electrically conductive polypropylene/graphite (PP/graphite) composites were prepared via blending granulated PP with maleic anhydride grafted PP and natural graphite. Electrical conductivity of prepared samples containing either 65, 70, or 75 wt% of graphite was measured and the most conductive sample containing 75 wt% of graphite was exposed to UV irradiation for 1 and 24 h or thermally treated at 170 °C for 1 h. The influence of thermal and UV exposure on the structural and electrical changes in such treated samples was studied. Local current measurements on the surface were made using scanning spreading resistance microscopy and morphology of the surface was studied by atomic force microscopy. X-ray diffraction analysis, infrared and Raman spectroscopy were also used for the structural characterization. Properties of treated and untreated samples are compared and differences are discussed.  相似文献   

16.
从加工方式对制备简单机械共混PP/PC共混物性能的影响,增容体系中增容剂的种类、增容效果和不同填充物对共混体系的增强效果三方面综述了近年来国内外对PP/PC共混材料的研究概况,指出了其研究方向和发展前景。  相似文献   

17.
In this study, relatively large amounts of polypropylene (PP), ethylene‐propylene‐diene (EPDM), and multi‐walled carbon nanotube (MWCNT) were melt‐mixed with and without DCP. Dynamically vulcanized PP/EPDM (TPV)/MWCNT nanocomposites were prepared by two methods: the MWCNTs were added either before or after the dynamic vulcanization of the blends. The effects of composition, rotor speed, and dynamic vulcanization on their surface resistivity were investigated. The surface resistivity of uncross‐linked PP/EPDM/MWCNT nanocomposites increases with increasing the content of EPDM. At PP/EPDM (70/30 wt%) nanocomposite with 1.5 phr MWCNT, slightly lower surface resistivity is obtained by increasing the rotor speed during mixing. However, for PP/EPDM (50/50 wt%) and PP/EPDM (30/70 wt%) nanocomposites, surface resistivity decreases with increasing the rotor speed from 30 to 60 rpm. But further increase in rotor speed (90 rpm) leads to an increase of surface resistivity. When the MWCNTs were added after the dynamic vulcanization of the blends, the surface resistivity of TPV70/MWCNTnanocomposite is lower than that of uncross‐linked PP/EPDM/MWCNT nanocomposite. However, when the MWCNTs were added before the dynamic vulcanization of the blends, the surface resistivity of TPV70/MWCNT nanocomposite is >1012 Ω/square. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   

18.
Migration study in aqueous and olive oil food simulants was carried out on PP and its blend with oil mixture. It was found that after 10 days at 44 °C PP with oil content up to 0.83% had overall migration into olive oil less than 10 mg/dm2. However, under high temperature migration test (at 110–138 C for 4 hours), the overall migration into olive oil was large for both the virgin PP and all its blends. The overall migration in water, 10% ethanol, and 3% acetic acid was smaller than those in olive oil under both migration test conditions. DSC and density measurement showed that addition of oil in PP led to smaller spherulite size and increased degree of crystallinity in the pure PP part. Small decrease in tensile strength in the oil blends was also observed but there was no significant change in tensile strength after migration test.  相似文献   

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