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首页> 外文期刊>International Journal of Polymer Science >Effect of Polymerization Conditions on Thermal and Mechanical Properties of Ethylene/1-Butene Copolymer Made with Ziegler-Natta Catalysts
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Effect of Polymerization Conditions on Thermal and Mechanical Properties of Ethylene/1-Butene Copolymer Made with Ziegler-Natta Catalysts

机译:聚合条件对齐格勒-纳塔催化剂制备的乙烯/ 1-丁烯共聚物热力学性能的影响

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The effect of polymerization conditions on thermal and mechanical properties of ethylene/1-butene copolymers synthesized through titanium-magnesium-supported Ziegler-Natta catalysts was studied. The increase in hydrogen pressure leads to a decrease in molecular weight (MW), storage modulus, and melting temperature. However, it yields an increase in molecular weight distribution (MWD),tan⁡δ, % crystallinity, tensile modulus, yield stress, and strain at break. The effects of ethylene pressure and polymerization temperature on the copolymer MW, MWD and thermal and mechanical properties have been investigated. However, the impacts of ethylene pressure and polymerization temperature on copolymer modulus, tensile strength, % crystallinity, crystallization peak temperature, yield stress, strain at break, and yield strain are marginal. The hydrogen pressure plays a major role in controlling the copolymer properties because it acts as an efficient chain transfer agent during polymerization reaction. The MW is the key parameter that influences flow activation energy. However, the other mechanical, dynamic mechanical, and thermal properties not only depend on MW but are also influenced by other parameters.
机译:研究了聚合条件对钛-镁负载的齐格勒-纳塔催化剂合成的乙烯/ 1-丁烯共聚物热力学性能的影响。氢气压力的增加导致分子量(MW),储能模量和熔融温度的降低。但是,它会增加分子量分布(MWD),tanδ,%结晶度,拉伸模量,屈服应力和断裂应变。研究了乙烯压力和聚合温度对共聚物的MW,MWD和热力学性能的影响。然而,乙烯压力和聚合温度对共聚物模量,拉伸强度,%结晶度,结晶峰温度,屈服应力,断裂应变和屈服应变的影响很小。氢压在控制共聚物性能中起主要作用,因为它在聚合反应过程中起有效的链转移剂的作用。 MW是影响流动活化能的关键参数。但是,其他机械,动态机械和热性能不仅取决于MW,而且还受其他参数的影响。

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