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首页> 外文期刊>Journal of Applied Polymer Science >Development of polymer-molding-releasing metal mold surfaces with perfluorinated-group-containing polymer plating
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Development of polymer-molding-releasing metal mold surfaces with perfluorinated-group-containing polymer plating

机译:含全氟基团的聚合物镀覆的可释放聚合物的金属模具表面的开发

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The polymer-molding-releasing properties of metal molds were found to be related to the following factors: (1) interfacial chemical bonding between the surfaces of polymers and metal molds and (2) a friction force or friction coefficient between polar substances and/or low-molecular-weight components in the polymers and physical factors on mold surfaces. We theoretically and experimentally confirmed that metal molds with good polymer-molding-releasing properties had very small surface free energies. We also proved that the surface free energies in the resulting polymer moldings were lower than before shaping. The molding releasing properties improved with decreasing friction force and friction coefficient between the surface of polymers and metal molds and with decreasing surface free energy. To obtain metal molds with lower surface free energies, we developed a polymer plating method with perfluorinated-group-containing triazine dithiol. The Metal mold treated by polymer plating had lower critical surface tension (7.5 mJ/m(2)) than Teflon (18 mJ/m(2)), indicating that the surface consisted of CF3 - groups. The treated mold showed excellent durability in its releasing properties, which was better than that of the untreated mold. This technique was developed for the production of molds for the Ftheta lens and the naturally bright focusing screen. (C) 2003 Wiley Periodicals, Inc. [References: 16]
机译:发现金属模具的聚合物成型释放特性与以下因素有关:(1)聚合物和金属模具表面之间的界面化学键合;(2)极性物质和/或之间的摩擦力或摩擦系数聚合物中的低分子量成分以及模具表面的物理因素。我们在理论上和实验上证实具有良好的聚合物成型释放特性的金属模具具有非常小的表面自由能。我们还证明了所得聚合物成型物中的表面自由能比成型前要低。脱模性能随着聚合物和金属模具表面之间的摩擦力和摩擦系数的降低以及表面自由能的降低而提高。为了获得具有较低表面自由能的金属模具,我们开发了一种含全氟基团的三嗪二硫醇的聚合物镀覆方法。通过聚合物电镀处理的金属模具的临界表面张力(7.5 mJ / m(2))比聚四氟乙烯(18 mJ / m(2))低,表明表面由CF3-基组成。经处理的模具在脱模性能方面显示出优异的耐久性,这优于未处理的模具。这项技术是为生产Ftheta透镜和自然明亮的对焦屏而开发的。 (C)2003 Wiley Periodicals,Inc. [参考:16]

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