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首页> 外文期刊>Journal of Engineered Fibers and Fabrics >A Combined Discrete Event, Agent - Based Approach to Modeling the Tensile Strength of One -Dimensional Fibrous Materials
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A Combined Discrete Event, Agent - Based Approach to Modeling the Tensile Strength of One -Dimensional Fibrous Materials

机译:一种组合的离散事件,基于代理的抗拉强度纤维材料的抗拉强度的方法

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This paper presents a new approach to predict the tensile strength of one-dimensional fibrous materials. The approach combines discrete-event simulation of the fiber flow with agent-based modelling of the fiber slippage. The ability of the elaborated model of the fiber flow to track every fiber separately enables the calculation and analysis of all contacts and forces between the fibers, and the prediction of the material’s tensile strength. The model is based on the phenomenon of the strength associated with the fiber slippage effect. Algorithms for modeling the cross-section and the segment tensile strength are developed. Implementation of this algorithm and the study of the behavior of the elaborated model by varying the basic parameters will be described in the Part 2 of the article.
机译:本文提出了一种预测一维纤维材料的拉伸强度的新方法。该方法将光纤流的离散事件模拟与基于试剂的光纤滑动的模型相结合。纤维流动的阐述模型追踪每个纤维的能力可以分别地实现纤维之间的所有接触和力的计算和分析,以及材料的拉伸强度的预测。该模型基于与纤维滑动效果相关的强度的现象。开发了用于建模横截面和分段拉伸强度的算法。该算法的实现和通过改变基本参数的制定模型的行为的研究将在本文的第2部分中描述。

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