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首页> 外文期刊>Journal of Applied Polymer Science >Quasi-isothermal DSC testing of epoxy adhesives using initial fast heating rates
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Quasi-isothermal DSC testing of epoxy adhesives using initial fast heating rates

机译:使用初始快速加热速率的准等温DSC测试环氧粘合剂

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Three major factors decrease the accuracy of the cure measurement in standard-isothermal testing using differential scanning calorimetry (DSC). First, cure occurs during the heating step. Second, data are lost during the stabilization period between the dynamic and isothermal step. Third, the baseline selection requires a modification to the protocol. An alternative, which is explored in this study, is the use of fast ramps, which decrease the heating time, but this has been avoided due to overshoot that occurs between the dynamic and isothermal step, which is troublesome for systems with autocatalytic kinetics. By mitigating these factors, a quasi-isothermal protocol was developed. Therefore, more complete cure kinetics were captured with the implementation of fast DSC to decrease the ramp time and through the optimization of furnace parameters to decrease stabilization time and temperature overshoot. The data suggested this quasi-isothermal analysis more accurately measured the isothermal curing kinetics of a commercial epoxy adhesive at 110, 115, and 120 degrees C for fast ramps of 175, 350, and 500 K/min compared to the traditional ramp of 5 K/min. The enthalpy spike at the dynamic to isothermal transition remains an issue; however, an empirical shift can be used to compensate for the enthalpy signal lag. (c) 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2017, 134, 45425.
机译:使用差示扫描量热法(DSC),三个主要因素降低了标准等温测试中的固化测量的准确性。首先,在加热步骤期间固化。其次,在动态和等温步骤之间的稳定期间丢失数据。第三,基线选择需要修改协议。替代地,这是在这个研究探讨,是利用快速斜坡,这降低了加热时间的,但是这已经避免由于该动态和等温步骤,这是麻烦的用于与自催化动力学系统之间发生过冲。通过减轻这些因素,开发了一种准等温方案。因此,利用快速DSC捕获更完整的固化动力学以减少斜坡时间并通过炉子参数的优化来降低稳定时间和温度过冲。数据表明这种准等温分析更准确地测量等温在110固化市售的环氧粘合剂的动力学,115和120摄氏度的温度的175快速斜坡,350,和500 K /分钟相比5 K的传统斜坡/分钟。动态到等温转换的焓穗仍然存在问题;然而,可以使用经验转变来补偿焓信号滞后。 (c)2017 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2017,134,45425。

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