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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Analysis of Large Deformation Wound Roll Models
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Analysis of Large Deformation Wound Roll Models

机译:大型变形绕辊模型分析

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Almost all winding models incorporate the assumption of small linear deformations and strain in their development. These models treat the addition of a layer of web to a winding roll with linear analysis using linear strain theory. Very few winding models have been developed that incorporate large deformation theory although many models treat material nonlinearity. Tissue and nonwoven webs are highly extensible in-plane and highly compressible in the thickness dimension when compared to paper, plastic film, and metal foil webs. Winding models that embody large deformation theory should apply to all web materials. Such models may be wasteful in computation time for web materials such as paper, film, and foils where models that employ small deformation theory may provide sufficient accuracy. This would appear deterministic based upon the extensibility and compressibility of a web material, but the issue becomes more complex due to limitations in tension that can be exerted on the webs. Herein, a large deformation winding model will be developed. Results from this model will be used to benchmark results from other small and large deformation models, and with laboratory test data, a review of all results will be used to determine when or if large deformation winding models are required.
机译:几乎所有绕组模型在开发中都考虑了线性变形和应变小的假设。这些模型使用线性应​​变理论进行线性分析,以处理在卷筒纸上添加一层纤维网的问题。尽管许多模型都处理材料非线性问题,但很少有人开发出包含大变形理论的绕组模型。与纸,塑料薄膜和金属箔网相比,薄纸和非织造纤网在面内高度可扩展,在厚度方向上高度可压缩。体现大变形理论的绕线模型应适用于所有腹板材料。这样的模型在诸如纸,膜和箔的幅材材料的计算时间上可能是浪费的,其中采用小变形理论的模型可以提供足够的精度。基于网状材料的可延展性和可压缩性,这似乎是确定性的,但是由于可以施加在网状材料上的张力的限制,问题变得更加复杂。在此,将开发大变形绕组模型。该模型的结果将用于基准其他大小变形模型的结果,并结合实验室测试数据,对所有结果进行回顾,以确定何时或是否需要大变形绕组模型。

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