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Influence of hybrid mould on moulded parts properties

机译:混合模具对成型零件性能的影响

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Purpose - This paper aims to emphasize compared experimental analysis of influence of hybrid and classic moulds on the properties of moulded parts and the processing parameters. Such analysis enables optimization of processing parameters in case of the hybrid mould. Design/methodology/approach - Representative moulded part and appropriate hybrid and classic moulds have been designed and manufactured. The experimental work contains a screening design and the main central composite design for analysing the performance of both moulds and moulded parts properties. In case of hybrid mould a numerical optimization of processing parameters was used. Findings - It was found that hybrid moulds can be successfully applied for production of thin-wall moulded parts with some limitations. The compressibility of prototype mould inserts was higher compared to classic inserts. The differences in thermal properties of mould inserts materials result in different moulded part properties and mould cavity wall temperature fields. These differences can be reduced by optimizing the processing parameters. Practical implications - RT technologies can be usefully applied for fast production of moulds for injection moulding. The potential user of hybrid moulds should be aware of the influence of prototype inserts on the moulded part properties. Guidelines for optimization can be used for fast achieving of parameters from optimal processing window. Originality/value - This paper shows a detailed analysis of influence of hybrid and classic moulds on the thermoplastic moulded part properties. Some of these influences are explained in detail, which was not found in the related papers. In this paper, a further step was made by optimizing the processing parameters in case of hybrid mould.
机译:目的-本文旨在强调对混合模具和经典模具对成型零件性能和加工参数的影响进行比较实验分析。这种分析使得在混合模具的情况下能够优化加工参数。设计/方法/方法-已设计和制造出具有代表性的成型零件以及适当的混合模具和经典模具。实验工作包括筛选设计和主要的中央复合设计,用于分析模具的性能和模制零件的性能。在混合模具的情况下,使用了加工参数的数值优化。发现-发现混合模具可以成功地用于薄壁成型零件的生产,但有一定的局限性。与经典嵌件相比,原型模具嵌件的可压缩性更高。模具嵌件材料的热性能差异导致不同的成型零件性能和模具型腔壁温度场。这些差异可以通过优化处理参数来减小。实际意义-RT技术可以有效地用于快速生产注塑模具。混合模具的潜在用户应该意识到原型嵌件对成型零件性能的影响。优化准则可用于从最佳处理窗口快速实现参数。原创性/价值-本文详细分析了混合模具和经典模具对热塑性成型零件性能的影响。其中一些影响已进行了详细说明,而相关论文中并未找到这些影响。在本文中,通过在混合模具的情况下优化工艺参数,进一步采取了措施。

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