首页> 外文OA文献 >Tensile and fracture behaviour of isotropic and die-drawn polypropylene-clay nanocomposites. Compounding, processing, characterization and mechanical properties of isotropic and die-drawn polypropylene/clay/polypropylene maleic anhydride composites
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Tensile and fracture behaviour of isotropic and die-drawn polypropylene-clay nanocomposites. Compounding, processing, characterization and mechanical properties of isotropic and die-drawn polypropylene/clay/polypropylene maleic anhydride composites

机译:各向同性和模压聚丙烯-粘土纳米复合材料的拉伸和断裂行为。各向同性和模压聚丙烯/粘土/聚丙烯马来酸酐复合材料的复合,加工,表征和机械性能

摘要

As a preliminary starting point for the present study, physical and mechanical properties of polypropylene nanocomposites (PPNCs) for samples received from Queen's University Belfast have been evaluated. Subsequently, polymer/clay nanocomposite material has been produced at Bradford. Mixing and processing routes have been explored, and mechanical properties for the different compounded samples have been studied. Clay intercalation structure has received particular attention to support the ultimate objective of optimising tensile and fracture behaviour of isotropic and die-drawn PPNCs. Solid-state molecular orientation has been introduced to PPNCs by the die-drawing process. Tensile stress-strain measurements with video-extensometry and tensile fracture of double edge-notched tensile specimens have been used to evaluate the Young¿s modulus at three different strain rates and the total work of fracture toughness at three different notch lengths. The polymer composite was analyzed by differential scanning calorimetry, thermogravimetric analysis, polarizing optical microscopy, wide angle x-ray diffraction, and transmission electron microscopy.ud3% and 5% clay systems at various compatibilizer (PPMA) loadings were prepared by three different mixing routes for the isotropic sheets, produced by compression moulding, and tensile bars, produced by injection moulding process. Die-drawn oriented tensile bars were drawn to draw ratio of 2, 3 and 4.udThe results from the Queen's University Belfast samples showed a decrement in tensile strength at yield. This might be explained by poor bonding, which refers to poor dispersion. Voids that can be supported by intercalated PP/clay phases might be responsible for improvement of elongation at break.udThe use of PPMA and an intensive mixing regime with a two-step master batch process overcame the compatibility issue and achieved around 40% and 50% increase in modulus for 3% and 5% clay systems respectively. This improvement of the two systems was reduced after drawing to around 15% and 25% compared with drawn PP.udThe work of fracture is increased either by adding nanoclay or by drawing to low draw ratio, or both. At moderate and high draw ratios, PPNCs may undergo either an increase in the size of microvoids at low clay loading or coalescence of microvoids at high clay loading, eventually leading to an earlier failure than with neat PP.udThe adoption of PPMA loading using an appropriate mixing route and clay loading can create a balance between the PPMA stiffness effect and the degree of bonding between clay particles and isotropic or oriented polymer molecules. Spherulites size, d-spacing of silicate layers, and nanoparticles distribution of intercalated microtactoids with possible semi-exfoliated particles have been suggested to optimize the final PPNCs property.
机译:作为本研究的初步出发点,已经对从贝尔法斯特女王大学接收的样品的聚丙烯纳米复合材料(PPNC)的物理和机械性能进行了评估。随后,在布拉德福德生产了聚合物/粘土纳米复合材料。探索了混合和加工路线,并研究了不同混合样品的机械性能。粘土插层结构已受到特别关注,以支持优化各向同性和冲模PPNC的拉伸和断裂行为的最终目标。固态分子取向已通过冲模工艺引入PPNC。通过视频引伸和双边缘缺口拉伸试样的拉伸断裂的拉伸应力应变测量已用于评估三种不同应变速率下的杨氏模量以及三种不同缺口长度下的断裂韧性总功。通过差示扫描量热法,热重分析,偏振光学显微镜,广角X射线衍射和透射电子显微镜对聚合物复合材料进行了分析。通过三种不同的混合,分别制备了ud3%和5%粘土体系(在各种相容剂(PPMA)下)压缩成型生产的各向同性片材的路线以及注塑成型生产的拉伸棒的路线。拉伸模具拉伸的拉伸棒,拉伸比分别为2、3和4。 ud贝尔法斯特女王大学样品的结果表明,屈服时拉伸强度有所降低。这可能是由于不良的粘合性所解释的,不良的粘合是指不良的分散性。插层PP /粘土相可以支撑的空隙可能是断裂伸长率提高的原因。 ud使用PPMA和采用两步母料工艺的强力混合方案克服了相容性问题,达到了40%和50对于3%和5%的粘土体系,模量分别增加%。拉伸后,与拉伸后的PP相比,两种体系的改进程度分别降低了约15%和25%。 ud通过添加纳米粘土或通过拉伸至低拉伸比,或两者并用,可增加断裂功。在中等和高拉伸比下,PPNC可能会在低粘土含量下增加微孔的尺寸,或者在高粘土含量下合并微孔的聚结,最终导致比纯PP失效更早。 ud适当的混合路线和黏土加载量可以在PPMA刚度效果和黏土颗粒与各向同性或取向聚合物分子之间的键合度之间取得平衡。已提出球晶尺寸,硅酸盐层的d间距以及可能带有半剥落颗粒的插层微触针的纳米颗粒分布,以优化最终的PPNCs性能。

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    Al-Shehri Abdulhadi S.;

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  • 年度 2010
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