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首页> 外文期刊>Composites Science and Technology >Green composites of polypropylene and eggshell: Effective biofiller size reduction and dispersion by single-step processing with solid-state shear pulverization
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Green composites of polypropylene and eggshell: Effective biofiller size reduction and dispersion by single-step processing with solid-state shear pulverization

机译:聚丙烯和蛋壳的绿色复合材料:采用固态剪切粉碎的单步处理,有效降低了生物填料的尺寸并使其分散

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摘要

Eggshell (ES), a waste byproduct from food processing and hatcheries, contains ~95% calcium carbonate (CC), making it a potentially attractive, less expensive substitute for commercial CC. Past work used complex grinding-sieving and/or chemical modification steps to aid in dispersing ES in polymers such as polypropylene (PP). Both steps add to the cost and reduce the green aspect of the composite. Here, green composite materials of PP with 5-40 wt% unmodified ES shards of several centimeters in size are directly processed using continuous, single-step solid-state shear pulverization (SSSP). Electron microscopy and particle size analysis show very good dispersion with some ES particles near the nanoscale in the composite. Well-dispersed ES particles dramatically increase PP crystallization rates with a 5-7% increase in PP crystallinity. The very good dispersion leads to a major increase in Young's modulus (87% increase relative to neat PP for 40 wt% ES) and a modest increase in hardness; composites exhibit reductions in yield strength, elongation at break, and impact properties. Mechanical and crystallization properties are equal to or better than the best literature data for PP/ES composites without chemical modification made by multi-step approaches involving melt processing. In addition, the composites exhibit high thermal degradation temperatures compared to neat PP, indicating the potential for ES to improve processing stability. Composites with 20-40 wt% ES exhibit solid-like rheological response with no crossover of shear storage and loss moduli. Nevertheless, PP/ES composites retain viscosities close to that of neat PP at shear rates experienced in melt processing. Overall, property enhancements resulting from superior dispersion of ES in PP achieved by SSSP reveal ES to be a promising green filler for thermoplastics.
机译:蛋壳(ES)是食品加工和孵化场的副产品,含有约95%的碳酸钙(CC),使其成为商业CC的潜在诱人且便宜的替代品。过去的工作使用复杂的研磨筛分和/或化学改性步骤,以帮助将ES分散在聚合物(如聚丙烯(PP))中。这两个步骤都增加了成本,并降低了复合材料的绿色外观。在此,使用连续的一步式固态剪切粉碎(SSSP)直接处理5到40重量%的未改性ES碎片(几厘米大小)的PP绿色复合材料。电子显微镜和粒度分析显示,复合物中纳米级附近有一些ES粒子具有很好的分散性。分散良好的ES颗粒可显着提高PP结晶速率,PP结晶度提高5-7%。很好的分散性会导致杨氏模量的大幅增加(对于40 wt%ES的纯聚丙烯而言,增加了87%)和硬度适度的增加;复合材料的屈服强度,断裂伸长率和冲击性能降低。机械和结晶性能等于或优于PP / ES复合材料的最佳文献数据,而无需通过涉及熔融加工的多步方法进行化学改性。此外,与纯PP相比,该复合材料显示出高的热降解温度,这表明ES具有改善加工稳定性的潜力。具有20-40%(重量)ES的复合材料表现出类似固体的流变响应,没有剪切存储的交叉和损耗模量。然而,PP / ES复合材料在熔体加工中经历的剪切速率下仍保持接近纯PP的粘度。总体而言,由SSSP实现的ES在PP中优异的分散性导致的性能增强表明ES是热塑性塑料的有希望的绿色填料。

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