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An Effect of Water Presence on Surface Exfoliation of Polypropylene Film Initiated by Photodegradation

机译:水存在对光降解引发的聚丙烯薄膜表面剥离的影响

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A polypropylene (PP) film photodegradation test was performed in water at 60 degrees C with a specific photocatalyst under visible light irradiation to identify its fragmentation mechanism. The photodegradation degree reached a maximum at the 144 h photodegradation time and showed the decreases at the 288 h. The surface being uneven was observed at the 288 h in the SEM photograph. These results showed that the surface exfoliation was provoked by the test. The spherulite structure contributed to the surface microcrack location and growth. The microcrack allowed entrance of water into the inner amorphous part. The water caused an internal stress by expanding itself due to radiant heat from the visible light irradiation and induced a microcraze in the interlamellar amorphous region. The microcraze developed into an internal microcrack, and surface microcracks finally coalesced together, producing a planar exfoliation. The major long side length of the exfoliation part was below 100 mu m at both the 144 h and 288 h. The weight change ratio and rate of the photodegraded PP film showed multi-stages with the increase of photodegradation time. The increment of positive rate was small, showing that the exfoliation caused suppression of the autoxidation rate. The negative rate was due to the exfoliation behavior and was nonlinear to the photodegradation time.
机译:在可见光辐照下,在60℃下在水中在水中在水中进行聚丙烯(PP)膜光学降解试验,以鉴定其破碎机制。光降解程度在144h光降解时间达到最大值,并在288小时下显示降低。在SEM照片中的288小时观察到不均匀的表面。这些结果表明,测试引发了表面剥离。球晶结构有助于表面微裂纹位置和生长。微裂纹允许水进入内部无定形部分。由于来自可见光照射的辐射和诱导了层间无定形区域的微焦度,通过辐射热引起内部应力。分泌物发育成内部微裂纹,表面微裂纹最终结合在一起,产生平面剥离。剥离部分的主要长边长度在144小时和288小时下低于100μm。随着光降解时间的增加,光降解PP膜的重量变化比率和速率显示多阶段。阳性率的增量很小,表明剥离引起了自动氧化率的抑制。负速率是由于剥离行为并且是光电降解时间的非线性。

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