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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 modelling and experimental validation of the thermal fusion bonding process in porous fibrous media
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Computational modelling and experimental validation of the thermal fusion bonding process in porous fibrous media

机译:多孔纤维介质中热熔合过程的计算模型和实验验证

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摘要

This article presents a computational model of the thermal bonding of nonwovens using convective hot air and its experimental validation. A computational fluid dynamics model based on the continuum modelling approach and the theory of porous media is developed to treat the flow behaviour and heat transfer within the thermal bonding system. The model includes several components of a typical industrial machine including the conveyer belt, drum cover, drum, and the nonwoven web. Experimental measurements are used to supply appropriate boundary conditions for the simulations and to provide data for the validation of the numerically computed results. The model is concluded to be an accurate computational tool that could potentially replace the costly experiments and be employed in product development, process optimization, and machine design.
机译:本文介绍了使用对流热空气的非织造布热粘合的计算模型及其实验验证。建立了基于连续介质建模方法和多孔介质理论的计算流体动力学模型,以处理热粘合系统中的流动行为和传热问题。该模型包括典型工业机械的几个组件,包括传送带,滚筒盖,滚筒和非织造纤网。实验测量用于为模拟提供适当的边界条件,并为验证数值计算的结果提供数据。该模型被认为是一种精确的计算工具,可以潜在地取代昂贵的实验,并被用于产品开发,过程优化和机器设计中。

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