Huang Derek E, Kotula Anthony P, Snyder Chad R, Migler Kalman B
Materials Science and Engineering Division, National Institute of Standards and Technology, Gaithersburg, Maryland 20899, United States.
Macromolecules. 2022;55(24). doi: 10.1021/acs.macromol.2c01691.
Motivated by the problem of brittle mechanical behavior in recycled blends of high density polyethylene (HDPE) and isotactic polypropylene (iPP), we employ optical microscopy, rheo-Raman, and differential scanning calorimetry (DSC) to measure the composition dependence of their crystallization kinetics. Raman spectra are analyzed via multivariate curve resolution with alternating least-squares (MCR-ALS) to provide component crystallization values. We find that iPP crystallization behavior varies strongly with blend composition. Optical microscopy shows that three crystallization kinetic regimes correspond to three underlying two-phase morphologies: HDPE droplets in iPP, the inverse, and cocontinuous structures. In the HDPE droplet regime, iPP crystallization temperature decreases sharply with increasing HDPE composition. For cocontinuous morphologies, iPP crystallization is delayed, but the onset temperature changes little with the exact blend composition. In the iPP droplet regime, the two components crystallize nearly concurrently. Rheological measurements are consistent with these observations. DSC indicates that the enthalpy of crystallization of the blends is less than the weighted values of the individual components, providing a possible clue for the decreased iPP crystallization temperatures.
受高密度聚乙烯(HDPE)和等规聚丙烯(iPP)回收共混物中脆性机械行为问题的启发,我们采用光学显微镜、流变拉曼光谱和差示扫描量热法(DSC)来测量其结晶动力学的组成依赖性。通过交替最小二乘法的多元曲线分辨(MCR-ALS)分析拉曼光谱,以提供组分结晶值。我们发现iPP的结晶行为随共混物组成的变化很大。光学显微镜显示,三种结晶动力学状态对应于三种潜在的两相形态:iPP中的HDPE液滴、相反形态以及共连续结构。在HDPE液滴状态下,iPP的结晶温度随着HDPE组成的增加而急剧下降。对于共连续形态,iPP的结晶被延迟,但起始温度随共混物的确切组成变化不大。在iPP液滴状态下,两种组分几乎同时结晶。流变学测量结果与这些观察结果一致。DSC表明,共混物的结晶焓小于各组分的加权值,这为iPP结晶温度降低提供了一个可能的线索。