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首页> 外文期刊>International Polymer Science and Technology >Targeted solidification through self-optimising, highly segmented mould temperature control in injection moulding
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Targeted solidification through self-optimising, highly segmented mould temperature control in injection moulding

机译:通过自我优化,高度分段模具温度控制进行了针对性凝固

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摘要

The precision of manufactured parts is one of the most important quality criteria in mass production processes. While for mechanical machining processes high-precision parts can be achieved by using CNC techniques and high-precision machining, melt-based production processes still have large precision drawbacks, which can only be compensated by time-consuming mould trial iterations or post-processing. The following article discusses a new approach to incorporating a segmented temperature control system in an injection mould, leading to a processing technique which is capable of local adjustment of the part temperature. This segmented local temperature control, which is based on appropriate heating and cooling techniques and a novel control approach, is designed to have a positive effect on the solidification of the melt and shrinkage of the plastics part in order to achieve minimal part warpage. This process control is extremely demanding in terms of temperature control techniques, process measurements and control strategies, which are discussed below. Firstly, temperature control techniques that are able to deliver high performance and allow the most dynamic control of the part's surface temperature are discussed and evaluated. To control this process effectively, various sensors are analysed which are capable of measuring real part temperatures within the process runtime. Finally, the requirements for a control concept that allows efficient control of mould temperature are discussed, taking account of high dead times.
机译:制造部件的精度是大规模生产过程中最重要的质量标准之一。在机械加工过程中,通过使用CNC技术和高精度加工可以实现高精度部件,基于熔体的生产过程仍然具有大的精度缺点,这只能通过耗时的模具试验迭代或后处理来补偿。下面的文章讨论了一种在注射模具中掺入分段温控系统的新方法,导致能够局部温度调节的加工技术。这种基于适当的加热和冷却技术和新型控制方法的该分段局部温度控制被设计为对塑料部分的熔体和收缩的凝固具有积极影响,以实现最小的翘曲。该过程控制在温度控制技术方面非常苛刻,过程测量和控制策略如下所述。首先,讨论能够提供高性能并允许对部件温度最大控制的温度控制技术进行评估。为了有效地控制该过程,分析了各种传感器,其能够在过程运行时测量实际部分温度。最后,讨论了对控制概念的要求,以考虑到高死时间。

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