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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part E. Journal of Process Mechanical Engineering >Modeling and optimization of furan molding sand system using design of experiments and particle swarm optimization
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Modeling and optimization of furan molding sand system using design of experiments and particle swarm optimization

机译:使用实验设计和粒子群优化设计呋喃成型砂系统的建模与优化

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摘要

The present research work is focussed on establishing the complex nonlinear input-output relations of a furan resin-based molding sand system. Further, a set of input parameters, which will result in optimized mold properties, is determined. Grain fineness number, setting time, percentage of resin, and hardener are considered as process variables. Mold properties, such as green compression strength, shear strength, mold hardness, gas evolution, permeability, and collapsibility are treated as the process outputs. Nonlinear input-output relations have been developed and statistical analysis has been carried out by utilizing design of experiments, central composite design. Surface plots are developed to study and analyze the input-output relations. The input parameters that will result in best molding conditions and improve casting quality characteristics are determined by utilizing desirability function approach and multiple particle swarm optimization-based crowding distance (MOPSO-CD) techniques. The optimum value for the process variables namely grain fineness number, furan resin, hardener, and setting time are found to be equal to 55, 1.85, 1.2, and 60, respectively. The quality characteristics of the castings namely yield strength, ultimate tensile strength, hardness, density, and secondary dendrite arm spacing are found to improve by 14.03%, 15.08%, 14.14%, 12%, 2.22%, and 12.24%, respectively for the castings made in optimized molding sand conditions.
机译:本研究工作侧重于建立呋喃树脂基成型砂系统的复杂非线性输入 - 产出关系。此外,确定将导致优化的模具属性的一组输入参数。粒细度数,设定时间,树脂百分比和硬化剂被认为是过程变量。将模具性能,例如绿色压缩强度,剪切强度,模具硬度,气体进化,渗透性和耐磨性被处理为过程输出。非线性输入 - 输出关系已经开发,通过使用实验设计,中央复合设计来进行统计分析。开发表面图以研究和分析输入产出关系。通过利用期望函数方法和基于多种粒子群优化的拥挤距离(MOPSO-CD)技术,确定将产生最佳成型条件和改善铸造质量特性的输入参数。该过程变量的最佳值是晶粒细度数,呋喃树脂,硬化剂和设定时间分别等于55,1.85,1.2和60。铸件的质量特性即屈服强度,最终拉伸强度,硬度,密度和次级树枝状臂间距,分别提高14.03%,15.08%,14.14%,12%,2.22%和12.24%优化成型砂条件制造的铸件。

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