Predictive Modelling and Optimization of the Mechanical Properties of Laser-Coated NB/SiC/Ni Welds Using an ANFIS

Metals Pub Date : 2024-05-16 DOI:10.3390/met14050585
Zhe Zou, Juan Chen, Ming-Der Jean
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Abstract

In the present work, predictive modelling and optimization with the adaptive network based fuzzy inference system (ANFIS) modelling of the mechanical properties of laser-coated NB/SiC/Ni welds was studied based on the Taguchi design by laser cladding. An ANFIS model based on a Sugeno type fuzzy inference system was developed for predicting the hardness properties of SiC/BN/Ni welds by laser cladding with experimental data required for network training and prediction. Based on analysis of variance, three important factors were taken as inputs for the fuzzy logic inferences, while the hardness properties were taken as the output of the ANFIS. The microstructure of welds was analysed using scanning electron microscopy with an energy-dispersive X-Ray spectrometer. Highly developed leaf-like dendrites and eutectic crystals were found in some areas of the melting zone for the BN/SiC/Ni weld, which was significantly hardened. The ANFIS model based on Taguchi’s design provides a better pattern of response because the predicted and experimental values were highly similar. As a result, a satisfactory result was achieved between the predicted and experimental values of hardness in laser-coated NB/SiC/Ni welds, whereby the success and validity of the method was verified.
使用 ANFIS 对激光涂层 NB/SiC/Ni 焊接的力学性能进行预测建模和优化
在本研究中,根据激光熔覆的田口设计,研究了基于自适应网络的模糊推理系统(ANFIS)模型对激光熔覆 NB/SiC/Ni 焊缝机械性能的预测建模和优化。利用网络训练和预测所需的实验数据,建立了一个基于 Sugeno 型模糊推理系统的 ANFIS 模型,用于预测激光熔覆 SiC/BN/Ni 焊缝的硬度特性。根据方差分析,将三个重要因素作为模糊逻辑推理的输入,而将硬度特性作为 ANFIS 的输出。使用扫描电子显微镜和能量色散 X 射线光谱仪分析了焊缝的微观结构。在 BN/SiC/Ni 焊缝的熔化区的某些区域发现了高度发达的叶状枝晶和共晶,并明显硬化。基于田口设计的 ANFIS 模型提供了更好的响应模式,因为预测值和实验值高度相似。因此,激光涂层 NB/SiC/Ni 焊缝硬度的预测值和实验值之间取得了令人满意的结果,从而验证了该方法的成功和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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