首页> 外文会议>The 2nd international conference on nanomechanics amp; nanocomposites: program amp; abstracts. >A Practical Ziegler-Natta Catalyst System for In Situ Preparation of Polyolefin/Clay Nanocomposites
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A Practical Ziegler-Natta Catalyst System for In Situ Preparation of Polyolefin/Clay Nanocomposites

机译:一种实用的齐格勒-纳塔催化剂体系,用于原位制备聚烯烃/粘土纳米复合材料

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@@INTRODUCTION Polyolefins (PO) are the biggest family of commodity polymers which find widespread applications due to the extremely high performance/cost ratios. Recently, modification of POs using nano-particles (clay, silica, carbon nanotube, graphene, etc) has become a highly appreciated way for further boosting POs in many property aspects such as mechanical strength, stiffness, and melt processing readiness.1 Among the versatile choices of nanoparticles, montmorillonite (MMT)-dominated clay has enjoyed a long-standing, particular attention from both academia and industry due to the combination of low cost and excellent abilities to remedy much of POs' property shortcomings such as low stiffness, low thermal distortion resistance, and melt sagging during processing. In addition, clay dispersed in POs at nano scale also helps promote many of other properties including gas permeation-resistance and flame-retardant properties that are very important in such common PO applications as packaging.
机译:引言聚烯烃(PO)是最大的商品聚合物家族,由于其极高的性能/成本比而得到广泛的应用。近年来,使用纳米粒子(粘土,二氧化硅,碳纳米管,石墨烯等)对PO进行改性已成为在机械强度,刚度和熔体加工就绪等许多特性方面进一步提高PO的高度赞赏的方法。1蒙脱土(MMT)为主的纳米颗粒具有多种选择,长期以来受到学术界和工业界的特别关注,这是由于低成本和出色的弥补许多PO的特性缺点(例如低刚度,耐热变形性,以及加工过程中的熔体流挂。此外,以纳米级分散在POs中的粘土还有助于促进许多其他性能,包括耐气体渗透性和阻燃性,这些特性在诸如包装等常见PO应用中非常重要。

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