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首页> 外文期刊>Waste management & research >Adaptive harmony search algorithm for mechanical performance optimization of properties of particleboard from cotton stalk
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Adaptive harmony search algorithm for mechanical performance optimization of properties of particleboard from cotton stalk

机译:自适应和声搜索算法,用于棉秸秆刨花板性能的机械性能优化

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摘要

In this study, the optimum conditions for manufacturing particleboard-based waste cotton stalks were evaluated to achieve a good performance of mechanical properties. The response surface methodology (RSM) is used to calibrate the experiment results based on input variables consisting of the weight ratio of melamine formaldehyde to urea-formaldehyde (MU) resins, shelling ratio (SR), and the proportion of cotton particles to poplar particle (CP) in the core layer. An adaptive harmony search (AHS) algorithm is offered to search the optimum constructing conditions of mechanical properties for the composite particleboard using two optimization models. The optimum conditions are evaluated using maximum performance of mechanical properties. Besides, the optimum conditions are searched based on the material cost of the mechanical properties of composite particleboard that are utilized in its constraints. The results showed that the RSM can provide a perfect prediction for the mechanical properties of particleboard. The AHS is successfully applied to optimize the composite conditions. In the first optimization application, the optimal point is obtained for input variables in composite as 21.91% MU, 37.10% SR, and 13.54% CP. However, in the second condition, the optimum conditions are obtained for a good level as 18.32% MU, 51.71% SR, and 8.37% CP in the core layer.
机译:在本研究中,评估了制造基于刨花板的废棉秸秆的最佳条件,以实现机械性能的良好性能。响应表面方法(RSM)用于基于将基于三聚氰胺甲醛与尿素 - 甲醛(MU)树脂,轰击比(SR)的重量比组成的输入变量来校准实验结果,以及棉颗粒对杨树颗粒的比例(CP)在核心层中。提供了一种自适应和声搜索(AHS)算法,用于使用两个优化模型来搜索复合刨花板的最佳构造条件。使用最大机械性能进行评估最佳条件。此外,基于在其约束中使用的复合刨花板的机械性能的材料成本来搜索最佳条件。结果表明,RSM可以为刨花板的机械性能提供完美的预测。 AHS成功应用于优化复合条件。在第一优化应用中,获得最佳点,用于复合材料中的输入变量为21.91%亩,37.10%SR和13.54%CP。然而,在第二个条件下,获得最佳条件在核心层中为18.32%亩,51.71%Sr和8.37%Cp的良好水平获得。

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