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Development of a smart, anti-water polyurethane polymer hair coating for style setting

机译:开发用于样式设置的智能,抗水性聚氨酯聚合物发胶

摘要

Objective The goal of this work was to develop a novel polyurethane polymer coating for the surface of the hair that could be used for style setting via the shape memory effect (SME). The features of the films are in accordance with conventional hair styling methods used in the laboratory. Methods In this study, a new polyurethane polymer was synthesized; the morphology and mechanical behaviour of the coated hair were systematically investigated using a scanning electron microscope (SEM) and an Instron 5566 (with a temperature oven). The SME of the hair was tested using a 35-g weight and over five washing and drying cycles. Results The experimental result shows that the polyurethane polymer has effects on the mechanical behaviour of the hair. It indicates that the fixed shape (at 22°C) and recover rate (at 60°C) of different casted thickness films are similar. And the stress of the film becomes larger with increasing film thickness. Furthermore, the shape memory ability could be endowed with the hair styling using this polymer; the hair fibre could recover to the 65% of its original shape after five cycle deformation by 35 g mass under the heat-treated condition; it could recover its original setting styling even after 5th water washing and drying. The SEM results indicated that the microsurface of the hair is coated with the polymer membrane; it contributes to the shape memory ability of the coated hair to keep and recover to the original setting styling. The styling hair can return to the original hair because the polyurethane polymer can be washed out by water with suitable strength and shampoo totally which does not leave any flake. Conclusion The polyurethane polymer-based hair setting agent has been developed successfully, and it could be coated evenly on the human hair with good hand feeling and SMEs. The SME is highly related to the quantity of polyurethane polymer solution, and the effect could be improved by increasing the solution quantity. The maximum deformation of the coated hair could be recovered 94% at 75°C, once its shape is changed by an external force. The treated hair can withstand warm water rinsing for at least five cycles, and it can keep 65% of its original setting style after water rinsing. The polyurethane polymer could be totally removed by shampooing the hair and hot towel covering for 5-10 min. This research provides an effective way for the development of new intelligent shaping agents.
机译:目的这项工作的目的是开发一种用于头发表面的新型聚氨酯聚合物涂料,该涂料可通过形状记忆效应(SME)用于定型。膜的特征与实验室中使用的常规头发定型方法一致。方法本研究合成了一种新型聚氨酯聚合物。使用扫描电子显微镜(SEM)和Instron 5566(带有恒温炉)系统地研究了包覆头发的形态和机械性能。使用35克重的头发并经过五个洗涤和干燥周期测试了头发的SME。结果实验结果表明,聚氨酯聚合物对头发的机械性能有影响。这表明不同流延厚度薄膜的固定形状(在22°C下)和恢复率(在60°C下)相似。并且,随着膜厚的增加,膜的应力变大。此外,使用该聚合物可以赋予头发造型的形状记忆能力。在热处理条件下,经过5次循环变形后,头发纤维的质量为35 g,可以恢复到其原始形状的65%。即使经过第五次水洗和干燥,它也可以恢复其原始设置样式。 SEM结果表明,头发的微表面被聚合物膜所覆盖。它有助于涂层头发的形状记忆能力,以保持并恢复到原始的定型造型。定型的头发可以恢复到原来的头发,因为聚氨酯聚合物可以用水以适当的强度和洗发水洗净,而不会留下任何薄片。结论成功开发出了基于聚氨酯聚合物的头发定型剂,它可以均匀地涂在人的头发上,具有良好的手感和SMEs。 SME与聚氨酯聚合物溶液的量高度相关,可以通过增加溶液量来提高效果。一旦其外力改变了其形状,被覆毛发的最大变形可在75°C下恢复94%。经过处理的头发可以经受至少5个周期的温水漂洗,漂洗后可以保持其原始定型的65%。通过将头发和热毛巾覆盖物洗发5-10分钟,可以完全去除聚氨酯聚合物。该研究为新型智能成型剂的开发提供了有效途径。

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