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Self-Assembled Monolayers of Alkanethiols on Nickel Insert: Characterization of Friction and Analysis on Demolding Quality in Microinjection Molding

机译:在镍插入刀片上的自组装单层烷醇:微注射成型中摩擦力分析的表征及分析

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摘要

When the part geometry scaling down from macro to microscale level, the size-induced surface effect becomes significant in the injection molding process. The adhesion between polymer and nickel (Ni) mold insert during the process can lead to defects in necking, warping and deformation of microstructure. In this study, the self-assembled monolayers (SAMs) with low surface energy were deposited on the Ni surface to reduce the adhesion and further improve the demolding quality of the microstructure. Results show that the alkyl mercaptan SAMs with chemical bonds and close alignment can be successfully deposited on the surface of Ni by the solution deposition method. The contact angle, surface free energy, and friction coefficient before and after anti-adhesion treatment on the surface of mold insert were measured. In addition, the anti-adhesion properties of different alkyl mercaptan materials and the correspondingly replication quality of microstructure parts after injection molding were analyzed. It is found that the Ni mold insert treated by the perfluorodecanethiol has the best wear resistance and still shows good reproducibility at the 100th demolding cycle.
机译:当零件几何形状从宏缩小到微观级别时,尺寸引起的表面效果在注塑过程中变得显着。在该过程期间聚合物和镍(Ni)模具插入物之间的粘附可以导致微观结构的缩颈,翘曲和变形中的缺陷。在该研究中,将具有低表面能的自组装单层(SAMS)沉积在Ni表面上,以降低粘附性并进一步提高微观结构的脱模质量。结果表明,通过溶液沉积方法可以成功地沉积具有化学键和近距离的烷基硫醇Sams。测量在模具插入件表面上的抗粘附处理之前和之后的接触角,表面自由能和摩擦系数。另外,分析了注射成型后的不同烷基硫醇材料的抗粘附性能和微观结构部件的相应复制质量。结果发现,通过全氟二癸硫醇处理的Ni模具插入物具有最佳的耐磨性,并且在第100次脱模循环中仍然显示出良好的再现性。

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