标题: 射出成形的冷却策略对成形品的收缩特性的影响及其在成形精度控制上的应用
Effects of cooling strategy on the shrinkage characteristics and its applications to the accuracy control of injection molding
作者: 陈鼎翰
陈仁浩
Chen, Ding-Han
Chen, Ren-Haw
机械工程系所
关键字: 射出成形;结晶;收缩;Injection Molding;Crystallization;Shrinkage
公开日期: 2016
摘要: 高分子材料在各种加热制程多少都会造成材料收缩,对于制品的精度有很大的影响,尤其射出成形制程更为明显,随着现代工业发展的进步,各种精密产品推陈出新,控制成形精度也成了一大课题。
本研究目的为探讨冷却速度差异对于成形品内部结构状态以及收缩特性的影响。研究方法为透过低温固定模温冷却、高温固定模温冷却、区域差别速率冷却等三种的冷却方法,以射出成形制程取得圆筒状成形品,再来探讨其收缩性与结晶度之间的关系,使用的材料为玻璃转移温度T_g大于室温的PA66及T_g小于室温的PP。
研究结果显示,PP材料之圆筒与PA66材料之圆筒,其结晶度均呈现高温冷却(80℃)高于低温冷却(10℃)之现象,并且愈靠近圆筒肉厚中心,结晶度愈高。而差别冷却(内部10℃外部80℃)之结晶度则是介于高温与低温之间。另外收缩性比较,低温冷却之PP圆筒收缩率为8.78%低于高温冷却的10.17%;低温冷却之PA66圆筒收缩率5.39%高于高温冷却的4.96%,整体内径均匀性均是低温冷却优于高温冷却。
Polymer materials would have shrinkage problem in heating processes, particularly in injection molding process. With the development of modern industry, the needs of high-precision product are increasing. As the result, the accuracy control has become an important issue.
This study has investigated the effects of cooling rate on the internal structure and shrinkage characteristics of polymer products. Three kinds of cooling strategy, low temperature cooling, high temperature cooling and reginal different rate of cooling, are used during the injection molding of cylinder product. Products with different cooling strategy are investigated for finding the relationship between shrinkage characteristics and the crystalline structure of the products. The experimental materials are PA66 (T_g>T_r) and PP (T_g<T_r).
Experimental results show that the crystallinities of both PP and PA66 cylinder products with high temperature cooling(80℃) are higher than that with low temperature cooling(10℃). As closer to the middle zone of cylinder wall, the crystallinity becomes higher. And the crystallinity of product with reginal different rate cooling(inside 10℃ outside 80℃) is between product with high temperature cooling and low temperature cooling. For the comparison of shrinkage, the shrinkage of PP cylinder with low temperature cooling is 8.78%, which is lower than the10.17% of high temperature cooling. The shrinkage of PA66 cylinder with low temperature cooling is 5.39%, which is higher than the high temperature cooling’s 4.96%. About uniformity of whole inside radius, low temperature cooling is better than high temperature cooling.
URI: http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070351017
http://hdl.handle.net/11536/138663
显示于类别:Thesis