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Characterization a polyurethane-based reactive hot melt adhesive for applications in materials

机译:表征用于材料中的应用的聚氨酯基反应热熔粘合剂

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摘要

In the present study, we used tensile shear tests, Shore hardness tests, differential scanning calorimetry (DSC), and thermogravimetry (TGA) to characterize a reactive polyurethane-based hot melt adhesive. We also measured contact angles at various temperatures to evaluate the wettability of the adhesive and to determine the optimum temperature range for applications. The adhesive was tested following curing for various times, and the bonding of the adhesive with several materials was investigated to determine whether it has the potential for greater versatility of application. Therefore, we explored new uses of the adhesive, such as in the matrix of a composite with fiberglass. Reactive hot melt adhesives are useful because they provide a certain degree of flexibility to joints, and have high processing speeds, high initial rigidity, and high working temperatures.
机译:在本研究中,我们使用拉伸剪切试验,肖氏硬度试验,差示扫描量热法(DSC)和热重试验(TGA),以表征反应性聚氨酯的热熔粘合剂。我们还测量各种温度的接触角,以评估粘合剂的润湿性并确定应用的最佳温度范围。在固化后测试粘合剂各个时间,并研究了粘合剂与几种材料的粘合,以确定它是否具有更大的应用效果的可能性。因此,我们探讨了粘合剂的新用途,例如在具有玻璃纤维的复合材料的基质中。反应性热熔粘合剂是有用的,因为它们为关节提供一定程度的柔韧性,并且具有高处理速度,高初始刚度和高工作温度。

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