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Study of Reactive Melt Processing Behavior of Externally Plasticized Cellulose Acetate in Presence of Isocyanate

机译:异氰酸酯存在下外增塑纤维素乙酸酯的反应熔体加工行为研究

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Two types of externally plasticized cellulose acetate (CA) were chemically modified using 4,4'-methylene diphenyl diisocyanate (MDI) as crosslinking agent. Crosslinking was performed in the molten state by means of melt mixing in an internal mixer. The viscoelastic properties of the non-crosslinked, externally plasticized CA show typical temperature dependence, similar to conventional thermoplastics. A strong increase in storage modulus is observed with increasing crosslink density indicating that the crosslinked compounds exhibit predominately elastic response. The complex viscosity also increases considerably with increasing crosslink density and does not reach the typical Newtonian plateau at low radial frequencies any more. The viscoelastic properties correlate well with the data recorded online during reactive melt processing in the internal mixer. In comparison to the non-crosslinked CA, the crosslinked compounds show higher glass transition temperature, higher VICAT softening temperatures, improved thermal stability and lower plasticizer evaporation at evaluated temperatures.
机译:使用4,4'-亚甲基二苯基二异氰酸酯(MDI)作为交联剂对两种类型的外部增塑的醋酸纤维素(CA)进行了化学修饰。通过在内部混合器中熔融混合而在熔融状态下进行交联。与常规热塑性塑料相似,未交联的外部增塑CA的粘弹性表现出典型的温度依赖性。随着交联密度的增加,储能模量大大增加,表明交联的化合物表现出主要的弹性响应。随着交联密度的增加,复数粘度也显着增加,并且在低径向频率下不再达到典型的牛顿平台。粘弹性与内部混合器中反应性熔融加工过程中在线记录的数据密切相关。与未交联的CA相比,在评估温度下,交联的化合物显示出更高的玻璃化转变温度,更高的VICAT软化温度,更高的热稳定性和更低的增塑剂蒸发。

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