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Extrusion Foaming of thermoplastic Cellulose Acetate from Renewable Resources using a Two-component Physical Blowing Agent System

机译:使用双组分物理发泡剂系统从可再生资源的热塑性纤维素醋酸纤维素的挤出发泡

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Thermoplastic cellulose acetate (CA) is a bio-based polymer with optical, mechanical and thermal properties comparable to those of polystyrene (PS). The substitution of the predominant petrol-based PS in applications like foamed food trays can lead to a more sustainable economic practice. However, CA is also suitable for more durable applications as the biodegradability rate can be controlled by adjusting the degree of substitutions. The extrusion foaming of CA still has to overcome certain challenges. CA is highly hydrophilic and can suffer from hydrolytic degradation if not dried properly. Therefore, the influence of residual moisture on the melt viscosity is rather high. Beyond, the surface quality of foam CA sheets is below those of PS due to the particular foaming behaviour. This paper presents results of a recent study on extrusion foamed CA, using a two-component physical blowing agent system compromising HFO 1234ze as blowing agent and organic solvents as co-propellant. Samples with different co-propellants are processed on a laboratory single screw extruder at IKV. Morphology and surface topography are investigated with respect to the blowing agent composition and the die pressure. In addition, relationships between foam density, foam morphology and the propellants are analysed. The choice of the copropellant has a significant influence on melt-strength, foaming behaviour and the possible blow-up ratio of the sheet. Furthermore, a positive influence of the co-propellant on the surface quality can be observed. In addition, the focus is laid on the effect of external contact cooling of the foamed sheets after the die exit.
机译:热塑性纤维素乙酸盐(CA)是一种具有与聚苯乙烯(PS)相当的光学,机械和热性能的生物基聚合物。在泡沫食品托盘中取代主要的汽油基PS在泡沫食品托盘中的应用可能导致更可持续的经济实践。然而,CA也适用于更耐用的应用,因为可以通过调节替换程度来控制生物降解性率。 CA的挤出发泡仍然必须克服某些挑战。 Ca是高度亲水性的,如果不适当干燥,可以患水解降解。因此,残余水分对熔体粘度的影响相当高。除此之外,由于特定的发泡行为,泡沫Ca板的表面质量低于PS的下面。本文介绍了近期研究挤出发泡CA的结果,使用损伤HFO 1234的双组分物理发泡剂系统作为发泡剂和作为共同推进剂的有机溶剂。具有不同共推进剂的样品在IKV的实验室单螺杆挤出机上加工。对发泡剂组合物和模具压力研究了形态和表面形貌。另外,分析了泡沫密度,泡沫形态和推进剂之间的关系。共氟色化合物的选择对熔融强度,发泡行为和片材可能的爆破比具有显着影响。此外,可以观察到共转移剂对表面质量的积极影响。另外,在模具出口之后,焦点铺设了泡沫片的外部接触冷却的效果。

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