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Properties of Thermoplastic Polyurethane Elastomers Chemically Modified by Rosin

机译:松香化学改性的热塑性聚氨酯弹性体的性能

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摘要

Thermoplastic polyurethane elastomers (TPUs) are prepared including different amounts of rosin in their composition. Rosin is used either as an additive, mixed in the TPU solutions, or as a reactant in the chain-extension step of polymer synthesis. The properties of the materials are studied using solution viscosity measurements, size-exclusion chromatography, stress-controlled rheometry, differential scanning calorimetry, wide-angle X-ray diffraction, and contact angle determinations. Rosin as an aditive does not markedly change the polymer properties. On the contrary, the use of rosin in the chain-extension step leads to sharp increases of viscosity and molar mass as well as improvements of rheological properties and changes in morphology: the crystalline regions are more affected (variations in the solftening temperature and enthalpy) than the amorphous ones (quite constant glass-transition temperaure). The conclusion is that rosin acts as an actual chain extender and that it modifies the organization of both the hard and the soft segments of the polymers. Furthermore, the TPUs are used as raw materials of solvent-based adhesives, which adhesion properties are characterized by T-peel tests of PVC/TPU adhesive joints. Rosin as an additive cannot improve the low tack (initial adhesive strength) or TPU, although as a chain extender or cochain extender (together with butane diol) rosin allows development of significant initial adhesive strengths, while keeping a high level of actual (maximal) adhesive strength.
机译:制备热塑性聚氨酯弹性体(TPU),其组成中包含不同数量的松香。松香既可以用作添加剂,也可以在TPU溶液中混合使用,也可以在聚合物合成的扩链步骤中用作反应物。使用溶液粘度测量,尺寸排阻色谱法,应力控制流变法,差示扫描量热法,广角X射线衍射和接触角测定法研究了材料的性能。松香作为添加剂不会明显改变聚合物的性能。相反,在链增长步骤中使用松香会导致粘度和摩尔质量的急剧增加,以及流变特性和形态变化的改善:结晶区域受到的影响更大(溶化温度和焓的变化)比无定形的(相当恒定的玻璃化转变温度)。结论是,松香充当了实际的扩链剂,并且改变了聚合物硬链段和软链段的组织。此外,TPU用作溶剂型粘合剂的原材料,其粘合性能通过PVC / TPU粘合接头的T剥离试验来表征。松香作为添加剂不能改善低粘性(初始粘合强度)或TPU,尽管作为增链剂或共扩链剂(与丁二醇一起使用),松香可以显着提高初始粘合强度,同时保持较高的实际(最大)粘合强度。粘合强度。

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