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Multiresponse Optimization for a Novel Compliant Z-Stage by a Hybridization of Response Surface Method and Whale Optimization Algorithm

机译:通过响应面法和鲸井优化算法的杂交来实现新型柔顺Z-阶段的多孔优化

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摘要

A novel compliant z-stage is applied for positioning and indenting a specimen in nano/microindentation testing system. For an excellent operation, the proposed z-stage can concurrently satisfy multicriteria comprising high safety factor, small parasitic motion, and large output displacement. The key aims of this article are to present a novel design of the compliant z-stage as well as an effective integration methodology of Taguchi method, response surface method, weight factor calculation based on signal to noise, and the whale optimization algorithm to resolve a design optimal problem so as to enrich the quality performances of the proposed stage. Primarily, the z-stage is designed based on four-lever amplifier, compliant hinge shifted arrangement mechanism, zigzag-based flexure spring guiding mechanism, and symmetric six leaf hinges-based parallel guiding mechanism. Secondly, the number experiment data are achieved by the Taguchi method and finite element analysis. Subsequently, the regression functions among input variables and quality characteristics are formed by exploiting response surface method. In addition, the weight factors for every characteristic are defined. Additionally, the sensitivity analysis is accomplished for determining influences of input variables on quality responses. Ultimately, based on regression equations, the whale optimization algorithm is executed to define the optimal factors. The consequences indicated that the output deformation is about 454.55 μm and the safety factor is around 2.38. Furthermore, the errors among the optimal consequences and the confirmations for the safety factor and output deformation are 7.12% and 4.25%, correspondingly. By using Wilcoxon and Friedman methods, the results revealed that the proposed algorithm is better than the cuckoo search algorithm. Based on the quality convergence characteristics of hybrid approach, the proposed method is proficient for resolving complicated multiobjective optimization.
机译:施用新的柔顺Z-阶段用于定位和缩进纳米/微endentation测试系统中的样品。对于出色的操作,所提出的Z-阶段可以同时满足包括高安全系数,小寄生运动和大输出位移的多标准。本文的关键目标是呈现符合符合Z-阶段的新颖设计,以及基于信号到噪声的信号,响应面方法,权重因子计算的有效的整合方法,以及解决A的鲸鱼优化算法设计最佳问题,以丰富提出阶段的质量表现。主要是,Z级是基于四杆放大器,柔顺铰链偏移的布置机构,基于曲折的挠性弹簧引导机构的Z级设计,以及基于对称的六叶铰链的平行引导机构。其次,通过TAGUCHI方法和有限元分析来实现数量实验数据。随后,通过利用响应表面方法形成输入变量和质量特征之间的回归函数。此外,定义了每个特征的权重因子。另外,实现了灵敏度分析,以确定输入变量对质量响应的影响。最终,基于回归方程,执行鲸鱼优化算法来定义最佳因素。后果表明,输出变形约为454.55μm,安全系数约为2.38。此外,相应地,最佳后果和安全因子和输出变形的确认的误差是相应的7.12%和4.25%。通过使用Wilcoxon和Friedman方法,结果表明,所提出的算法优于Cuckoo搜索算法。基于混合方法的质量收敛特性,所提出的方法精通解决复杂的多目标优化。

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