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Extrusion Foaming of Protein-Based Thermoplastic and Polyethylene Blends

机译:蛋白质的热塑性和聚乙烯共混物的挤出发泡

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Currently the extrusion foamability of Novatein~?Thermoplastic Protein (NTP) is being investigated at the University of Waikato in collaboration with the Biopolymer Network Ltd (NZ). NTP has been developed from bloodmeal (>86 wt% protein), a co-product of the meat industry, by adding denaturants and plasticisers (tri-ethylene glycol and water) allowing it to be extruded and injection moulded. NTP alone does not readily foam when sodium bicarbonate is used as a chemical blowing agent as its extensional viscosity is too high. The thermoplastic properties of NTP were modified by blending it with different weight fractions of linear low density polyethylene (LLDPE) and polyethylene grafted maleic anhydride (PE-g-MAH) compatibiliser. Extrusion foaming was conducted in two ways, firstly using the existing water content in the material as the blowing agent and secondly by adding sodium bicarbonate. When processed in a twin screw extruder (L/D 25 and 10 mm die) the material readily expanded due to the internal moisture content alone, with a conditioned expansion ratio of up to 1.85± 0.13. Cell structure was non-uniform exhibiting a broad range cell sizes at various stages of formation with some coalescence. The cell size reduced through the addition of sodium bicarbonate, overall more cells were observed and the structure was more uniform, however ruptured cells were also visible on the extrudate skin. Increasing die temperature and introducing water cooling reduced cell size, but the increased die temperature resulted in surface degradation.
机译:目前,新生蛋白的挤出可发泡性〜?热塑性蛋白(NTP)正在与生物聚合物网络有限公司(NZ)合作在Waikato大学进行调查。通过添加变性剂和增塑剂(三乙二醇和水),从血液膜(> 86wt%蛋白),肉类工业的共同产物(> 86wt%蛋白)开发了NTP,允许其挤出和注塑成型。当碳酸氢钠用作化学发泡剂时,单独的NTP不容易泡沫,因为其延长粘度太高。通过将其与线性低密度聚乙烯(LLDPE)和聚乙烯接枝马来酸酐(PE-G-MAH)的相容剂混合来改变NTP的热塑性性质。挤出发泡以两种方式进行,首先使用材料中的现有水含量作为发泡剂,其次通过加入碳酸氢钠。当在双螺杆挤出机(L / D 25和10mm管芯)中加工时,材料由于单独的内部水分含量而容易地膨胀,条件膨胀率高达1.85±0.13。细胞结构是不均匀的,其在具有一些聚结的各个形成阶段的宽范围电池尺寸。通过加入碳酸氢钠减少细胞尺寸,观察到更多细胞,并且结构更均匀,但在挤出物皮肤上也可见破裂的细胞。增加模具温度并引入水冷却降低电池尺寸,但增加的模具温度导致表面降解。

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