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Adhesion and Energy Characteristics of Rigid-Chain Polymer Surface: Polyamidoimides

机译:刚性链聚合物表面的粘附性和能量特性:聚酰胺酰亚胺

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摘要

The adhesion characteristics and surface energies of two series of polyamidoimides (PAI) with different molecular weights, monomer unit structures, hinge groups in the main chain of the macromolecules, and thermal prehistory were determined via delamination at 180° and test fluids contact angles. We found that PAI are high-energy polymers, the surface energy of which varies in the range from 32 to 45 mJ/m2. In contrast to flexible-chain polymers, the exponent in the McLeod equation is two, which is due to the flat parallel orientation of the macromolecular chains in the surface layers. The main contribution to the change in surface characteristics of these polymers is the change in the packing density of PAI macromolecules, which is reflected mainly in the change in the polymers’ dispersion component. We found that the adhesion properties of PAI with respect to high- and low-energy substrates are determined mainly by the macromolecules packing density in the surface layers with their conformation state unchanged.
机译:两系列聚酰胺酰亚胺(PAI)具有不同分子量,单体单元结构,大分子主链中的铰链组的粘附特性和表面能,并通过分层在180°的分层测定热预析率,并测试流体接触角。我们发现PAI是高能聚合物,其表面能在32至45mJ / m 2的范围内变化。与柔性链聚合物相比,McLeod等式中的指数是两个,这是由于表面层中的大分子链的平行平行取向。这些聚合物的表面特征变化的主要贡献是PAI大分子的填充密度变化,其主要在聚合物分散组分的变化中反射。我们发现,PAI相对于高能和低能量基板的粘附性质主要由表面层中的大分子填充密度,其构象状态不变。

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