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Creating detailed shapes on the moulding tool surfaces with different manufacturing techniques

机译:用不同的制造技术在成型工具表面上创建详细形状

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Environmentally friendly paperboard packaging is rapidly increasing its market share. The growth has been driven by consumers' knowledge of ecological materials and consequent change in their consumption behaviour. Substitution of oil-based materials in the packages with sustainable alternatives, such as paperboard, has major effects on package manufacturing processes. With the advancements in digitalization and automation, the importance of identification and product safety markings has been emphasized and the integration of markings directly into packaging materials is desirable. The object of the study was to investigate manufacturing of small and detailed shapes on surface of the forming tools using these methods and how deviations on the mould surface are transferred (i.e. embossed) to the created pattern. Simultaneously, the impact of manufacturing technology on the process and parameter selection was investigated. A set of small patterned forming tools were manufactured from pre-hardened engineering and tool steel with three different manufacturing methods: precision machining, electro-erosion and laser engraving. Patterns were formed on the surfaces of the uncoated and plastic coated SBS -paperboard samples using a pressing jig designed for the purpose. Trials showed that shape of the pattern edge is essential for the preservation of the surface layer of the material. Similarly, the usable pressing force depends on the pattern edge properties. The results of the study indicate that tested simple geometry marking patterns can be created on the forming tool surfaces with commonly used manufacturing techniques.
机译:环保纸板包装正在迅速增加其市场份额。增长是消费者对生态材料知识的推动,并因此的消费行为变化。使用可持续替代品(如纸板)的封装中的油基材料对包装制造过程具有重大影响。随着数字化和自动化的进步,强调了识别和产品安全标记的重要性,并将标记的整合直接与包装材料的整合。该研究的目的是使用这些方法研究成形工具表面上的小型和详细形状的制造,以及模具表面上的偏差如何将(即压花)转移到所产生的图案。同时,研究了制造技术对过程和参数选择的影响。一套小型图案化成型工具由预先硬化的工程和工具钢制成,具有三种不同的制造方法:精密加工,电腐蚀和激光雕刻。使用为目的设计的压制夹具在未涂覆的和塑料涂覆的SBS纸板样品的表面上形成图案。试验表明,图案边缘的形状对于保存材料的表面层是必不可少的。类似地,可用的压力取决于图案边缘属性。该研究的结果表明,可以在具有常用制造技术的成形工具表面上产生测试的简单几何标记图案。

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