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首页> 外文期刊>The Canadian Journal of Chemical Engineering >Application of Single Site Catalyst Metallocene polyethylenes in EXTRUDED FILMS: EFFECT OF MOLECULAR STRUCTURE ON SEALABILITY, Flexural Cracking and Mechanical Properties
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Application of Single Site Catalyst Metallocene polyethylenes in EXTRUDED FILMS: EFFECT OF MOLECULAR STRUCTURE ON SEALABILITY, Flexural Cracking and Mechanical Properties

机译:单中心催化剂茂金属聚乙烯在挤出膜中的应用:分子结构对密封性,挠曲开裂和力学性能的影响

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摘要

Three single site catalysts metallocene polyethylenes (mPE) different in molecular structure were selected and films from them were produced using a semi-industrial cast film extrusion line. Rheological and gel permeation chromatography tests were performed on the mPE resins to assess their molecular structure. Mechanical, physical and sealability properties of the films were evaluated as well as flexural cracking and particles encapsulation (caulkability) and the results are discussed in relation to the molecular structures of the resins. It was found that molecular weight and distribution of short chain branching (comonomer) on the backbone of the polyethylene chains are the main factors that control sealability, flexural cracking and mechanical properties. The placement of comomoner on medium length chains generated crystals with smaller size that show a lower melting peak. Sealing was controlled by crystal distribution, chain diffusion and entanglement formation at the interface. mPE with lower melting point and linear molecular structure showed greater hot tack and seal strength. Polydispersity along with molecular weight contributed to toughness and puncture resistance. Flexural cracking resistance was revealed to be related to crystallinity, tie chain density and more importantly to fraction of amorphous phase. The amorphous part could absorb flexural energy and hinders crack initiation and propagation. Seal through contamination (caulkability) was found to be related to f lowability of the melt. The resin with stronger shear thinning in melt state and lower heat seal initiation temperature showed an improved caulkability.
机译:选择了三种分子结构不同的单中心催化剂茂金属聚乙烯(mPE),并使用半工业流延膜挤出生产线从中制备了膜。在mPE树脂上进行了流变和凝胶渗透色谱测试,以评估其分子结构。评估了薄膜的机械,物理和密封性能,以及挠曲裂纹和颗粒封装(可灌浆性),并讨论了与树脂分子结构有关的结果。发现在聚乙烯链主链上的分子量和短链支化(共聚单体)的分布是控制密封性,挠曲裂纹和机械性能的主要因素。中等长度链上共聚体的位置产生的晶体尺寸较小,显示出较低的熔融峰。通过界面处的晶体分布,链扩散和缠结来控制密封。具有较低熔点和线性分子结构的mPE具有较高的热粘性和密封强度。多分散性以及分子量有助于韧性和抗穿刺性。耐弯曲龟裂性与结晶度,连接链密度有关,更重要的是与非晶相的分数有关。无定形部分可以吸收弯曲能并阻碍裂纹的产生和扩展。发现通过污染的密封(可锻性)与熔体的易熔性有关。熔融状态下剪切稀化更强且热封起始温度较低的树脂表现出改进的可锻性。

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