首页> 外文会议>Annual International Waterborne, High-Solids, and Powder Coatings Symposium; 20060222-24; New Orleans,LA(US) >SYNTHESIS AND CHARACTERIZATION OF WATERBORNE POLYURETHANE ADHESIVES: INFLUENCE OF THE METHOD OF SYNTHESIS AND THE HARD SEGMENT CONTENT ON PROPERTIES
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SYNTHESIS AND CHARACTERIZATION OF WATERBORNE POLYURETHANE ADHESIVES: INFLUENCE OF THE METHOD OF SYNTHESIS AND THE HARD SEGMENT CONTENT ON PROPERTIES

机译:水性聚氨酯胶粘剂的合成与表征:合成方法及硬质含量对性能的影响

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摘要

Solvent-based adhesives are still the most currently used in the footwear industry to produce upper to sole bonding. Although their effectiveness has been widely proved, due to legislative and safety issues nowadays a great interest has come out in the use of waterborne polyurethane adhesives. The properties of aqueous polyurethane dispersions synthesised by two different methods, the acetone process and the prepolymer mixing process, were studied. The use of acetone during the synthesis allowed low prepolymer viscosity and polyurethane dispersion with narrow particle size distribution was obtained. Furthermore, this polyurethane showed a more linear structure facilitating the crystallinization of soft the segments, although the kinetic of crystallization was slow. The decrease in hard segment content by decreasing the DMPA content and the NCO/OH ratio produced an increase in mean particle size and an increase in polyurethane molecular weight. The lower the hard segment content the lower the resistance to flow under temperature but higher resistance to thermal degradation. The crystallization temperature moved toward lower temperature and the crystallization enthalpy increased. Immediate adhesion of the polyurethanes to PVC was mainly determined by their rheological properties and not by their crystallinity.
机译:溶剂型粘合剂仍然是制鞋业目前最常用于生产鞋帮与鞋底粘合的粘合剂。尽管其有效性已得到广泛证明,但由于立法和安全问题,如今对使用水性聚氨酯胶粘剂引起了极大兴趣。研究了通过两种不同的方法(丙酮法和预聚物混合法)合成的聚氨酯水分散体的性能。在合成过程中使用丙酮可实现低预聚物粘度,并获得窄粒度分布的聚氨酯分散体。此外,尽管结晶动力学较慢,但该聚氨酯显示出更线性的结构,有助于软链段的结晶。通过降低DMPA含量和NCO / OH比来降低硬链段含量会导致平均粒径的增加和聚氨酯分子量的增加。硬链段含量越低,在温度下的流动阻力越低,但对热降解的抵抗力越高。结晶温度向较低温度移动,结晶焓增加。聚氨酯与PVC的即时粘合力主要取决于其流变性,而不取决于其结晶度。

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