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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part E. Journal of Process Mechanical Engineering >Computational optimisation of the thermal fusion bonding process in porous fibrous media for improved product capacity and energy efficiency
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Computational optimisation of the thermal fusion bonding process in porous fibrous media for improved product capacity and energy efficiency

机译:多孔纤维介质中热熔合工艺的计算优化,以提高产品产能和能源效率

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摘要

A comprehensive parametric study to aid in optimising the thermal fusion bonding process in porous fibrous media is introduced. A systematic approach considering computational fluid dynamics, design of experiments and statistical process control is attempted. The effects of several operating and design parameters on the thermal bonding performance have been systematically investigated. An experimentally validated two-dimensional computational fluid dynamics model based on the theory of porous media has been used for the study. The air velocity and the conveyer belt porosity are determined to be showing the greatest optimisation potential for higher production rates. The optimum thermal fusion bonding process for the highest production rates and energy efficiency has been determined considering the thermal bonding time and percentage increase in total web energy absorption. Another outcome is the improved product quality associated with the improved temperature gradients within the fibrous web.
机译:介绍了有助于优化多孔纤维介质中热熔合过程的综合参数研究。尝试了一种考虑计算流体动力学,实验设计和统计过程控制的系统方法。系统地研究了几种操作和设计参数对热粘合性能的影响。基于多孔介质理论的经过实验验证的二维计算流体动力学模型已用于该研究。确定空气速度和输送带孔隙率显示出更高生产率的最大优化潜力。考虑到热粘合时间和总纸幅能量吸收百分比的增加,已经确定了用于最高生产率和能源效率的最佳热熔粘合工艺。另一个结果是与纤维网内改善的温度梯度相关的改善的产品质量。

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