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dc.contributor.author林宜正zh_TW
dc.contributor.author陈仁浩zh_TW
dc.contributor.authorLin, Yi-Zhengen_US
dc.contributor.authorChen, Ren-Hawen_US
dc.date.accessioned2018-01-24T07:37:01Z-
dc.date.available2018-01-24T07:37:01Z-
dc.date.issued2015en_US
dc.identifier.urihttp://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070251009en_US
dc.identifier.urihttp://hdl.handle.net/11536/138873-
dc.description.abstract  近年来随着科技快速发展,智慧型手机等科技产品已经相当普及,现行的智慧型手机都已经配备照相功能,再加上数位相机、扫描机、望远镜与显微镜等影像相关产品,光学元件的用量正在逐年提升。而现在有越来越多产品使用塑胶制光学元件,为了使成品有良好的镜面,并缩短成型所需时间,需要在成品尚未完全固化时开模顶出,此时的顶出力可能使成品损坏。本研究旨在探讨射出成形参数的变化对顶出力的影响,试图找出使顶出力最小化的参数条件,缩短成形时间与提高成品品质。
  本研究实际使用射出成形机台进行实验,以具有导光板形状之成形品为载具,实验时量测顶出过程中的顶出力并计算其做功。顶出力由安装在两块顶出板中的荷重计测量,将测得之顶出力波形积分可得到功。
  研究结果显示,顶出力会随着保压压力和保压时间增加而明显提升,且保压时间的影响大于保压压力。冷却时间缩短则顶出力下降,这里主要是受成品固化程度影响,成品完全固化后顶出力不再变动。
  由于光学元件多使用PMMA之类的非结晶性材料,因此顶出力受模温的影响较小,但在模温高达90℃时观察到的顶出力突升则需要进一步分析。而顶出力做功虽然随着顶出速度增加,但在顶出速度较低时会出现额外的波峰,使得顶出力的趋势和做功不同,这方面也需要进一步分析。
  本研究找出了能够减少顶出力的参数设定方向,有助于缩短生产时间和提高产品的良率,对于容易在顶出阶段损坏的产品具有重要的参考价值。
zh_TW
dc.description.abstractIn recent years, optical components are widely used in smartphones, scanner, telescope, microscope, and other imaging devices. Given the diversity of imaging products, the number of requirements for optical components is increasing annually, and increasingly more products have optical components composed of plastic. To achieve an adequately mirrored surface and shortened manufacturing times, molds must be opened and the component ejected before it solidifies completely. The ejection force at this moment can damage some components. This study investigated the relationship between the ejection force and various injection molding parameters, to identify parameters for minimizing the ejection force, shortening manufacturing times, and improving the quality of products.
In this study, we used an injection molding machine and designed a component like light guide plate, to measure the ejection force and the ejection work during manufacturing. The ejection force was measured by a load cell which had been installed between the ejection plates, and determined the ejection work by integrating the waveform of the ejection force.
The results show that the ejection force increases with the holding pressure and holding time, and that the holding time has stronger effect compared with the holdind pressure. The ejection force decreases with cooling time. Here, the ejection force is influenced by the curing degree. After the component fully solidified, the ejection force would remain constant.
Optical components are typically made from amorphous materials such as PMMA, therefore, the effect of mold temperature on the ejection force is smaller than other parameter’s influence. However, we observed a substantial increase in the ejection force at a mold temperature of 90℃.
Although the ejection work increases with the ejection speed, the waveform of ejection force has an extra peak at low ejection speeds. This phenomenon causes that the ejection force has different trend from the ejection work.
This study provides setting suggestions which can reduce the ejection force. The suggestion is helpful for shortening manufacturing times and enhancing product yield rate. This study offers crucial insights on fragile components in the ejection phase, such as lenses.
en_US
dc.language.isozh_TWen_US
dc.subject射出成形zh_TW
dc.subject射出成型zh_TW
dc.subject顶出力zh_TW
dc.subjectinjection moldingen_US
dc.subjectejection forceen_US
dc.subjectdemolding forceen_US
dc.title射出成形参数对顶出力影响之分析zh_TW
dc.titleEffects of Injection Molding Parameters on Ejection Forceen_US
dc.typeThesisen_US
dc.contributor.department机械工程系所zh_TW
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