首页> 外文会议>Regional Conference of the Polymer Processing Society >Effect of Processing Sequence on the Dynamic Viscoelastic Properties of Ternary Biomass Composites (Hemp Fiber/PA1010/PA11E) in the Molten State
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Effect of Processing Sequence on the Dynamic Viscoelastic Properties of Ternary Biomass Composites (Hemp Fiber/PA1010/PA11E) in the Molten State

机译:加工序列对熔融状态下三元生物质复合材料(HEMP光纤/ PA1010 / PA11e)动态粘弹性的影响

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For developing the new engineering materials such as structural materials and tribomaterials based on all plantsderived materials, we investigated the effect of processing sequence on the dynamic viscoelastic properties of the ternary biomass composites: 5mm cut hemp fiber (HF) filled polymer blend of plants-derived polyamide 1010 (PA1010) and polyamide 11 elastomer (PA1 1E) composites in the molten state. PA1010 and PA1 1E, which contain the polyether groups as soft segment, were made from plant-derived castor oil. The composition of the polymer blend of PA1010 and PA1 1E was fixed with 60/40 weight fraction. HF was surface-treated by two types of treatment: alkali treatment by NaOH solution and surface treatment by ureido silane coupling agent. The volume fraction of HF in the composites was fixed with 20vol.%. Five different processing sequences: (1) HF, PA1010 andPA11E were mixed simultaneously (Process A), (2) Re-mixing (second compounding) of the materials prepared by Process A (Process AR), (3) PA11E was blended with PA1010 (PA1010/PA11E blends) and then these blends were mixed with HF (Process B), (4) HF was mixed with PA1010 (HF/PA1010 composites) and then these composites were blended with PA11E (Process C), and (5) HF were mixed with PA11E (HF/PA11E composites) and then these composites were blended with PA1010 (Process D) were attempted for preparing the ternary biomass composites (HF/PA1010/PA11E) composites. These ternary biomass composites were extruded by a twin screw extruder and compression-molded. Their dynamic viscoelastic properties in the molten state were evaluated by oscillatory flow testing using a parallel plate type rheometer. It was found that those properties of the ternary biomass composites in the molten state are influenced so much by processing sequence. This is attributed to the change of internal micro structure of these composites such as the distribution and dispersion of HF.
机译:基于所有Plansdered材料的制定新的工程材料如结构材料和摩擦,我们研究了加工序列对三元生物量复合材料的动态粘弹性的影响:5mm Cut Hemp纤维(HF)填充植物的聚合物混合物聚酰胺1010(PA1010)和聚酰胺11弹性体(PA11E)复合材料在熔融状态。 PA1010和PA1 1E含有作为软段的聚醚基团,由植物衍生的蓖麻油制成。 PA1010和PA1 1E的聚合物共混物的组成用60/40重量级分固定。通过两种类型的治疗方法处理HF:NaOH溶液处理和Ureido硅烷偶联剂的表面处理。复合材料中HF的体积分数用20Vol.%固定。五种不同的处理序列:(1)HF,同时混合PA1010和PA11e(方法a),(2)通过工艺A(工艺Ar)制备的材料的重新混合(第二配混),(3)PA11e与PA1010混合(PA1010 / PA11e共混物),然后将这些共混物与HF(方法B)混合,(4)将HF与PA1010(HF / PA1010复合材料)混合,然后将这些复合材料与PA11e(方法C)混合,(5)将HF与PA11e(HF / PA11e复合材料)混合,然后将这些复合材料与PA1010混合(方法D),试图制备三元生物质复合材料(HF / PA1010 / PA11e)复合材料。这些三元生物量复合材料通过双螺杆挤出机和压缩模塑挤出。通过使用平行板型流变仪通过振荡流动测试评估熔融状态中的动态粘弹性。发现熔融状态中的三元生物质复合材料的那些性质受到加工序列的影响。这归因于这些复合材料的内部微结构的变化,例如HF的分布和分散。

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