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An instrumented mixer setup for making tackifier dispersions used to make pressure-sensitive adhesives

机译:一种用于制造增粘剂分散体的仪器混合器,用于制造压敏胶

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摘要

Water-based pressure-sensitive adhesives (PSAs) are made by combining a tackifier dispersion and a polymer latex. During the process of making the tackifier dispersion, the system initially forms a water-in-oil emulsion, and then inverts to an oil-in-water one as more water is continuously added with constant agitation. To better understand the process, an instrumented mixer setup was constructed to simulate the manufacturing process, and agitation was provided by an inner impeller and an outer impeller. Several variables were monitored in situ. They are the electrical resistance of the emulsion, torque exerted on the inner impeller, agitation speeds of both impellers, power consumption of both impellers and the flow rate of feeding water. Our measurements showed that torque reached a maximum at phase inversion, and this was verified by direct measurements of viscosity during the process. Simultaneously electrical resistance measurements monitored the chemical changes as well as phase inversion. Experiments showed that under a certain low water feeding flow rate, there appeared to be an intermediate agitation speed at which the phase inversion occurred the earliest. This, from the industrial standpoint, is really favorable due to both time and energy efficiency. Furthermore, this intermediate agitation speed also corresponded to a better quality product. All this information may be used for optimizing this process in the future.
机译:水性压敏胶粘剂(PSA)是通过将增粘剂分散体和聚合物胶乳组合而成的。在制备增粘剂分散体的过程中,系统首先形成油包水型乳液,然后随着不断搅拌不断添加更多的水而转化为水包油型乳液。为了更好地理解该过程,构造了仪器混合器设置以模拟制造过程,并通过内部叶轮和外部叶轮进行搅拌。现场监控了几个变量。它们是乳剂的电阻,施加在内部叶轮上的扭矩,两个叶轮的搅拌速度,两个叶轮的功耗以及给水流量。我们的测量结果表明,在相转化时扭矩达到了最大值,这一点已通过在过程中直接测量粘度得到了验证。同时,电阻测量监测化学变化以及相转化。实验表明,在一定的低给水流量下,出现了最早出现相变的中间搅拌速度。从工业的角度来看,由于时间和能源效率,这确实是有利的。此外,该中间搅拌速度也对应于更好质量的产品。所有这些信息将来都可以用于优化此过程。

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