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The case against oxidation as a primary factor for bonding acid copolymers to foil

机译:抗氧化的情况作为将酸共聚物粘合到箔的主要因素

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Oxidation is often used in the extrusion-coating industry to enhance the adhesion of LDPE to polar substrates such as aluminum foil. Previous investigators have suggested that oxidation plays a key role in the adhesion of acid copolymers to foil; the most direct evidence for this is the observed increase in peel strength with increasing time in the air gap (TIAG). The results of new experiments, however, suggest that oxidation may not be responsible for this behavior. Acid copolymers that have been ozone treated, loaded with antioxidants or processed at temperatures well below the expected onset of oxidation still show the characteristic increase in adhesion with increasing TIAG. Measurement of peel strength in the MD and TD show that the TD peel strength is not influenced by TIAG and peel strength correlates with percent elongation of the coating. This suggests that stress and orientation may play a role in the observed behavior. A practical implication of this work is that acid copolymers will generally adhere more strongly to foil than LDPE, even when the acid copolymer is processed at lower temperatures. This reduces the potential for taste/odor, processing and other problems associated with high-temperature processing.
机译:氧化涂覆工业通常用于挤出涂料工业中,以增强LDPE对极性衬底的粘附等铝箔。以前的研究人员表明氧化在酸共聚物与箔的粘附中起着关键作用;最直接的证据是观察到剥离强度的增加随着气隙(TIAG)的增加。然而,新实验的结果表明氧化可能不对这种行为负责。已经处理过臭氧的酸共聚物,用抗氧化剂负载或在低于预期氧化开始的温度下加工仍然表现出与增加的TIAG的粘附性的特征增加。 MD和Td中的剥离强度的测量表明,Td剥离强度不受TIAG的影响,并且剥离强度与涂层伸长率的百分比相关。这表明压力和方向可能在观察到的行为中发挥作用。这种作品的实际意义是酸共聚物通常比在较低温度下加工酸共聚物时比LDPE更强烈地粘附到箔。这减少了味道/气味,加工等与高温处理相关的可能性。

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