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首页> 外文期刊>Macromolecular materials and engineering >Processing-Nanostructure-Property Relationships of All-Polyethylene Composites Reinforced by Flow-Induced Oriented Crystallization of UHMWPE
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Processing-Nanostructure-Property Relationships of All-Polyethylene Composites Reinforced by Flow-Induced Oriented Crystallization of UHMWPE

机译:Processing-Nanostructure-Property的关系All-Polyethylene复合材料强化了地面向流的结晶

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摘要

All-polyethylene composites exhibiting substantially improved toughness/stiffness balance are readily produced during conventional injection molding of high density polyethylene (HDPE) in the presence of bimodal polyethylene reactor blends (RB40) containing 40 wt% ultrahigh molar mass polyethylene (UHMWPE) dispersed in HDPE wax. Scanning electron microscopy (SEM) and differential scanning calorimetry (DSC) analyses shows that flow-induced crystallization affords extended-chain UHMWPE nanofibers forming shish which nucleates HDPE crystallization producing shish-kebab structures as reinforcing phases. This is unparalleled by melt compounding micron-sized UHMWPE. Injection molding of HDPE with 30 wt% RB40 at 165 degrees C affords thermoplastic all-PE composites (12 wt% UHMWPE), improved Young's modulus of 3400 MPa, tensile strength of 140 MPa, and impact resistance of 22.0 kJ/m(2). According to fracture surface analysis, the formation of skin-intermediate-core structures accounts for significantly improved impact resistance. At constant RB40 content both morphology and mechanical properties strongly depend upon processing temperature. Upon increasing processing temperature from 165 degrees C to 250 degrees C the average shish-kebab diameter increases from the nanometer to micron range, paralleled by massive loss of self-reinforcement above 200 degrees C. The absence of shish-kebab structure at 250 degrees C is attributed to relaxation of polymer chains and stretch-coil transition impairing shish formation.
机译:All-polyethylene复合材料表现出大幅提高韧性/刚度在传统的平衡很容易产生高密度聚乙烯注塑在双峰聚乙烯(HDPE)反应器混合(RB40)包含40 wt %超高摩尔质量聚乙烯(UHMWPE)分散HDPE蜡。差示扫描量热法(DSC)分析表明,水结晶提供希什伸展链UHMWPE纳米纤维形成结晶成核HDPE生产羊肉串的结构强化阶段。这是无与伦比的复合融化微米大小的UHMWPE。与30 wt % RB40 165摄氏度提供热塑性复合材料各项体育(12 wt % UHMWPE),改进的3400 MPa的杨氏模量,拉伸强度140 MPa,耐冲击22.0 kJ / m(2)。分析,skin-intermediate-core的形成结构占显著提高耐冲击。形态和力学性能强劲取决于加工温度。从165年开始增加加工温度摄氏度到250摄氏度的平均水平从纳米羊肉串直径增加微米范围内,平行的巨大的损失自我强化高于200度c缺乏羊肉串结构在250摄氏度是由于聚合物链和放松stretch-coil过渡损害希什形成。

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