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Critical processing temperature in the manufacture of fine-celled plastic/wood-fiber composite foams

机译:细孔塑料/木纤维复合泡沫塑料生产中的关键加工温度

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摘要

The main benefits of incorporating wood fibers (WF) in plastics are the increased stiffness and lowered cost of the resulting composites. However, these improvements are usually accompanied by a reduction in the ductility and impact resistance. These shortcomings can be removed by effectively foaming and incorporating a fine-celled structure in these composites. The volatiles released from WF during processing are known to deteriorate the cell structure. The maximum processing temperature, which affects the amount of volatiles released by the WF during extrusion of fine-celled plastic/WF composite, affects the cell morphology. This study was undertaken to identify the critical temperature above which the cellular structure of WF composite foams is significantly deteriorated. To clearly identify the effects of the volatiles generated from WF on the cellular morphology, neither a chemical blowing agent nor a physical blowing agent was used in the foam processing. The experimental results show that regardless of the drying method, the highest processing temperature of plastic/WF composites should be minimized, preferably below 170degreesC, to avoid the adverse effects of the volatiles generated from the WF during processing. A method of estimating the emissions from WF during extrusion processing by using the TGA data is also proposed. (C) 2003 Wiley Periodicals, Inc. [References: 31]
机译:在塑料中掺入木纤维(WF)的主要好处是提高了复合材料的刚度并降低了其成本。但是,这些改进通常伴随着延展性和抗冲击性的降低。这些缺点可以通过有效发泡并在这些复合材料中引入细孔结构来消除。已知在加工过程中从WF释放的挥发物会破坏细胞结构。最高加工温度会影响WF在细孔塑料/ WF复合材料挤出过程中释放的挥发物数量,从而影响细胞形态。进行该研究以鉴定临界温度,高于该临界温度,WF复合泡沫的孔结构显着劣化。为了清楚地确定由WF产生的挥发物对细胞形态的影响,在泡沫加工中未使用化学发泡剂或物理发泡剂。实验结果表明,无论采用哪种干燥方法,都应将塑料/ WF复合材料的最高加工温度降至最低,最好低于170摄氏度,以避免WF加工过程中产生的挥发物的不利影响。还提出了一种使用TGA数据估算挤压加工过程中WF排放的方法。 (C)2003 Wiley Periodicals,Inc. [参考:31]

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