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Phase Transition and Degradation Characteristics of Poly(urethane-Siloxane)Copolymers

机译:聚(氨基甲酸酯-硅氧烷)共聚物的相变和降解特性

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Poly(urethane-siloxane)(PU-Si)copolymers consisting of soft and hard phases presented a two-phase structure when analysed by differential scanning calorimetry.The copolymers showed a narrow glass transition region of soft segment between-116 deg C and-119 deg C and a narrow breadth of this transition within 3 deg C.Both results indicated that the copolymers had a high degree of phase separation.The stress-strain curves showed that the copolymer with high phase separation exhibited low tensile strength.The hard phase presented several endothermic regions above room temperature.The first and second endothermic regions,which can be regarded as a short-range ordering and a long-range ordering respectively,appeared at about 60 approx 120 deg C and 160 approx 200 deg C.An endothermic peak appeared at around 200 deg C which was attributable to a crystalline region.Two-stage degradation of copolymers was clearly observable in thermogravimetric analysis(TGA).Although the degradation of the copolymers was similar to that of typical polyurethane(PU),the shoulder of the derivative thermogram(DTG)curve was different.To examine this unique shoulder,the copolymers were examined using a slower heating rate.There were four stages of degradation,which was again different from the behaviour of PU.Degradation of the hard phase occurred between 200 approx 400 deg C in two stages,resulting from two distinct hard-segment types.Degradation of the soft phase occurred between 400 approx 600 deg C and there were also two stages related to the decomposition of PDMS soft segments and macroclics.
机译:用差示扫描量热法分析时,由软相和硬相组成的聚(氨基甲酸酯-硅氧烷)(PU-Si)共聚物呈现两相结构,该共聚物在-116℃至-119的软段中显示出狭窄的玻璃化转变区域。 ℃和此转变的狭窄幅度在3℃之内。这两个结果均表明该共聚物具有较高的相分离度。应力-应变曲线表明,具有高相分离的共聚物显示出较低的拉伸强度。室温下有几个吸热区。第一和第二吸热区分别出现在短程有序和长程有序,分别出现在大约60摄氏度约120摄氏度和160摄氏度约200摄氏度。在200℃左右出现了结晶区。在热重分析(TGA)中可以明显观察到共聚物的两步降解。 lymers与典型的聚氨酯(PU)相似,衍生热分析图(DTG)曲线的肩部不同。要检查这种独特的肩部,需要用较慢的加热速率检查共聚物。降解分为四个阶段,分别是同样有别于PU的行为。硬相的降解在两个阶段分别发生在200到400摄氏度之间,这是由两种不同的硬段类型导致的。软相的降解在400到600摄氏度之间发生了,还有两个与PDMS软段和大类分解有关的阶段。

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