首页> 外文期刊>Packaging Technology and Science >PAPER PRESENTED AT IAPRI SYMPOSIUM 2011, BERLIN New Quality Level of Packaging Components from Paperboard through Technology Improvement in 3D Forming
【24h】

PAPER PRESENTED AT IAPRI SYMPOSIUM 2011, BERLIN New Quality Level of Packaging Components from Paperboard through Technology Improvement in 3D Forming

机译:柏林在2011年IAPRI研讨会上提交的论文通过提高3D成型技术来提高纸板包装组件的质量水平

获取原文
获取原文并翻译 | 示例
       

摘要

Three-dimensional forming is a key technology for the application of sustainable materials, like paperboard, in packaging technology. Until now, deep drawing is not considered as a suitable process for manufacturing of packaging components with advanced geometrical design because of the sensitive process and a large number of failure mechanisms. To better understand and apply the physics of deep drawing, the process was studied by experimental investigations. Therefore, an evaluation strategy for formed parts was developed to describe their quality by measurable values. The influence of the technological parameters temperature configuration, moisture content of material and blank holder force on the quality of formed parts was described by a statistic regression model. This model gives an indication of the quantity and the direction of effects that parameter changes have on the quality of 3D-formed parts. An optimization of the process according to quality criteria showed that, in a first step, the quality of cylindrically drawn paperboard parts was increased drastically compared with that of the state of the art. Furthermore, the existing limits in the height of formed parts were exceeded, and the geometrical shape of the base offered far more opportunities for packaging design than expected. The process turned out to be suitable for a flexible manufacturing of packaging components for multipart packages from paperboard, which are highly sustainable in terms of recycling and reuse of fibres and thereby able to compete in the marketing-oriented packaging sector. Copyright
机译:三维成型是在包装技术中应用可持续材料(如纸板)的关键技术。到目前为止,由于敏感的过程和大量的故障机制,深冲压还不被认为是用于制造具有先进几何设计的包装部件的合适过程。为了更好地理解和应用深拉伸的物理原理,通过实验研究了该过程。因此,开发了一种成型零件的评估策略,以可测量的值描述其质量。通过统计回归模型描述了工艺参数温度配置,材料的水分含量和坯料夹持力对成形零件质量的影响。该模型可以指示参数更改对3D成型零件的质量产生的影响的数量和方向。根据质量标准对工艺进行的优化表明,与现有技术相比,第一步是大幅提高了圆柱形拉制纸板零件的质量。此外,超出了成型零件高度的现有限制,并且底座的几何形状为包装设计提供了比预期更多的机会。事实证明,该方法适用于由纸板制成的用于多部分包装的包装组件的柔性制造,该包装组件在纤维的回收和再利用方面具有高度可持续性,因此能够在面向市场的包装领域中竞争。版权

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号