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首页> 外文期刊>Nordic Pulp & Paper Research Journal >Heat-Induced changes in oil and grease resistant hydroxypropylated-starch-based barrier coatings
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Heat-Induced changes in oil and grease resistant hydroxypropylated-starch-based barrier coatings

机译:耐油脂的羟丙基淀粉基阻隔涂料的热诱导变化

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摘要

The effects of thermal treatment on the stability of the dispersion barrier coating layer and on the mechanical rigidity of the packaging material were studied via oil resistance measurements, microscopic and topographical analyses, and determinations of liquid spreading and absorption. The barrier coatings consisted of hydroxypropylated starch and talc, with and without latex. The coatings showed mainly excellent oil resistance at 23 degrees C and 60 degrees C, but at 100 degrees C the coatings lost their oil resistance, which was considered to be due to the lower oil viscosity and segregation of coating components due to heat. It was found that two consecutive heat treatments at 100 degrees C significantly increased the contact angle of rapeseed oil on coatings containing talc, making the coating more oleophobic. Without talc, the effect of heat treatment on the contact angle was weak. X-ray Photoelectron Spectroscopy data indicated that heat caused latex movement towards the surface. According to Atomic Force Microscopy adhesion images, poor miscibility of latex and starch resulted in local depletion and the agglomeration of latex particles, and reduced the diffusion. The changes in adhesion forces between the tip and coated surfaces were mostly reversible, whereas topographical changes were partly irreversible as an effect of in-situ thermal treatment. Scanning Electron Microscopy indicated that heat treatment of coatings containing latex may also induce self-healing and thus reduce the number of pinholes.
机译:通过耐油性测量,显微和形貌分析以及液体散布和吸收的测定,研究了热处理对分散阻挡涂层稳定性和包装材料机械刚度的影响。隔离涂层由羟丙基化淀粉和滑石粉组成,有或没有乳胶。该涂料在23℃和60℃下主要表现出优异的耐油性,但是在100℃下该涂料失去了耐油性,这被认为是由于较低的油粘度和由于热引起的涂料组分的离析。发现在100℃下连续两次热处理显着增加了菜籽油在含有滑石的涂层上的接触角,使得该涂层更疏油。没有滑石粉,热处理对接触角的影响很弱。 X射线光电子能谱数据表明热量导致胶乳向表面移动。根据原子力显微镜粘附图像,乳胶和淀粉的混溶性差会导致局部耗竭和乳胶颗粒的团聚,并减少扩散。尖端和涂层表面之间的附着力变化大部分是可逆的,而形貌变化由于原位热处理的影响部分不可逆。扫描电子显微镜表明,含有乳胶的涂层的热处理也可能引起自愈,从而减少了针孔的数量。

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