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首页> 外文期刊>Journal of Applied Polymer Science >INTERFACIAL DESIGN OF THE NONPOLAR POLYOLEFIN TERNARY COMPOSITE WITH HIGH STRENGTH, HIGH TOUGHNESS, AND HIGH MODULUS
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INTERFACIAL DESIGN OF THE NONPOLAR POLYOLEFIN TERNARY COMPOSITE WITH HIGH STRENGTH, HIGH TOUGHNESS, AND HIGH MODULUS

机译:高强度,高韧性,高模量的非极性聚烯烃三元复合材料的界面设计

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An interfacial model was proposed for the ternary thermoplastics (matrix)/elastomer/rigid-particle filler composite with high strength, high toughness, and high modulus. A dispersed phase of rigid particle as a core and elastomer as a shell that has a good interfacial adhesion with the matrix is the key point of the model. A composite with high strength, high toughness, and high modulus was obtained in the styrene (ST) and maleic anhydride (MAH) modified high-density polyethylene (HDPE)/ethylene-propylene-diene monomer (EPDM) rubber/carbon black (CB) with ditertiary butyl peroxide (DTBP) as the initiator through the reactive extrusion. The electrical resistivity measurement showed that CB of the unmodified composites distributed at the interface of the HDPE and EPDM, while that of the modified composites distributed mainly in the EPDM phase. The morphology of the ternary composite was consistent with the wetting coefficient analysis. That the mechanical properties of the gamma-ray-irradiated unmodified composites were not as good as those of the modified composites further indicated that the mechanical properties of the composite could not be improved significantly purely by introducing the interfacial adhesion and matrix crosslinking without forming the proposed dispersed phase structure. SEM observation supported the conclusion that the different phase structures are the major reason that leads to the different toughness. (C) 1996 John Wiley & Sons, Inc. [References: 59]
机译:提出了一种具有高强度,高韧性和高模量的三元热塑性塑料(基质)/弹性体/刚性颗粒填料复合材料的界面模型。该模型的重点是刚性颗粒的分散相作为核,弹性体作为壳,与基质具有良好的界面粘合性。在苯乙烯(ST)和马来酸酐(MAH)改性的高密度聚乙烯(HDPE)/乙烯-丙烯-二烯单体(EPDM)橡胶/炭黑(CB)中获得了具有高强度,高韧性和高模量的复合材料),并通过反应挤出,以二叔丁基过氧化物(DTBP)为引发剂。电阻率测量表明,未改性的复合材料的CB分布在HDPE和EPDM的界面,而改性的复合材料的CB主要分布在EPDM相。三元复合材料的形貌与润湿系数分析一致。 γ射线辐照的未改性复合材料的机械性能不如改性复合材料的机械性能进一步表明,仅通过引入界面粘合力和基体交联而不形成所提出的方法,就不能显着改善复合材料的机械性能。分散相结构。 SEM观察结果支持不同相结构是导致不同韧性的主要原因。 (C)1996 John Wiley&Sons,Inc. [参考:59]

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