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Study on Impact Property and Fracture Morphology of Injection-molded Optical-grade Polycarbonate

机译:注射成型光学级聚碳酸酯的冲击性能和断裂形态研究

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The low-velocity, low-energy impact response of optical-grade polycarbonate (PC) was characterized by the Izod impact testing at ambient temperature. The following factors affecting impact response were investigated: mold temperatures (80, 90, 100, 110, and 120℃) and annealing treatment (120℃ for 12 h). The results showed that the annealing treatment remarkably reduced the impact strength. The maximum impact strength was obtained when the mold temperature was 100℃ for both unannealed samples and annealed ones. Moreover, the annealing treatment changed the failure mode of specimens fromductile failure to brittle failure, which was confirmed by fracture morphology analysis using scanning electron microscopy (SEM). The ductile failure was attributed to shearing behavior, and the fracture surfaces were rough and irregular with many river-shaped striations. The brittle fracture was caused by a craze failure mechanism. The brittle fracture sections could be divided into three regions: fracture origin, mist region, and end-wall banded region.
机译:光学级聚碳酸酯(PC)的低速,低能量冲击响应是通过在环境温度下的艾佐德冲击试验来表征的。研究了影响冲击响应的以下因素:模具温度(80、90、100、110和120℃)和退火处理(120℃持续12 h)。结果表明,退火处理显着降低了冲击强度。当模具温度为100℃时,未退火样品和退火样品均获得最大冲击强度。此外,退火处理将试样的破坏模式从韧性破坏转变为脆性破坏,这通过使用扫描电子显微镜(SEM)的断裂形态分析得以证实。韧性破坏归因于剪切行为,并且断裂表面粗糙且不规则,具有许多河形条纹。脆性断裂是由裂纹破坏机理引起的。脆性断裂区域可分为三个区域:断裂起点,薄雾区域和端壁带状区域。

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