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SEQUENTIAL INJECTION MOLDING USING FAST-RESPONSE VALVE GATE SYSTEM

机译:快速响应阀门系统的顺序注射成型

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摘要

Due to the complication in operation mechanisms, commercial valve gate usually delays for about 0.3 to 0.5 seconds once the valve-opening command is given. This signal to operation delay limits its application to 3C thin-wall injection molded parts. In this study, a fast-response gas-driven unit developed for thin-wall gas-assisted injection molding was adopted to perform valve gate control. Verifications of valve-gate opening were monitored using CCD camera, cavity pressure transducers and accelerometer, respectively. All design parameters including gas-valve response characteristics, tolerance between inner piston and cylinder, gas pressure, melt temperature, etc., that would affect valve-gate opening were investigated. The delay time for vale-gate shaft movement in a non-melt environment can be reduced to about 50 milliseconds whereas it increases to about 80 milliseconds in a melt-filled environment. The improved system results in injection molded parts without weld line and good cosmetic quality.
机译:由于操作机构的复杂性,一旦给出开阀命令,商用阀门的闸门通常会延迟约0.3至0.5秒。该操作延迟信号限制了其在3C薄壁注塑件中的应用。在这项研究中,采用为薄壁气体辅助注射成型开发的快速响应气体驱动单元来执行阀浇口控制。分别使用CCD摄像头,型腔压力传感器和加速度计监测阀闸的打开情况。研究了所有会影响气门开度的设计参数,包括气门响应特性,内活塞与气缸之间的公差,气压,熔体温度等。在非熔融环境中,阀门轴运动的延迟时间可以减少到约50毫秒,而在熔融填充环境中,延迟时间可以增加到约80毫秒。改进后的系统使注塑件没有熔合线,并具有良好的外观质量。

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