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由环境源材料制备绿色Al 6061的建模与优化。

Modeling and optimization of green-Al 6061 prepared from environmentally source materials.

作者信息

Adediran Adeolu Adesoji, Akinwande Abayomi Adewale, Adesina Olanrewaju S, Agbaso Victor, Balogun Oluwatosin Abiodun, Kumar B Ravi

机构信息

Department of Mechanical Engineering, Landmark University, Omu-Aran, Kwara State, Nigeria.

MTE Division, CSIR-National Metallurgical Laboratory, Jamshedpur, India.

出版信息

Heliyon. 2023 Jul 20;9(8):e18474. doi: 10.1016/j.heliyon.2023.e18474. eCollection 2023 Aug.

Abstract

Recent studies are evaluating the use of particulates fabricated from agro-based residues as reinforcement for enhancing the properties of aluminium alloys. This report focuses on the optimization approach and modeling of responses for future prediction, which are absent from the majority of studies involving particle reinforcement of an aluminum matrix. Herein, palm kernel shell ash (PKA) and rice husk ash (RHA) were incorporated with 4 wt% of WSD and used as fillers in the Aluminium-6061 matrix at variable proportions. The response surface approach was utilized in the experiment design, modeling, and outcome optimization. The independent variables are the proportions of PKA and RHA and stir casting temperature. Yield, ultimate tensile, impact strength, elastic modulus, and fracture toughness are examined as response parameters. The results demonstrated that the microstructural property played a significant role in the responses. Incorporating PKA and RHA into the Al-6061 matrix improved the response parameters. Temperatures in the range of 700 and 800 °C enhanced the property parameters, even though temperatures within 800 and 900 °C caused a decline in response. The dependence of the responses on the pattern between property variables was revealed by surface and contour plots. The development of models for predicting responses. Optimal conditions were reached at 4.03% PKA, 5.12% RHA, and 787 °C, with an error <5% when compared to the forecast responses, thus validating the model.

摘要

最近的研究正在评估使用由农业废弃物制成的颗粒作为增强材料来提高铝合金性能的情况。本报告重点关注优化方法和响应建模以用于未来预测,而在大多数涉及铝基颗粒增强的研究中都没有这些内容。在此,将棕榈壳灰(PKA)和稻壳灰(RHA)与4 wt%的WSD混合,并以不同比例用作6061铝合金基体中的填料。在实验设计、建模和结果优化中采用了响应面法。自变量是PKA和RHA的比例以及搅拌铸造温度。将屈服强度、极限抗拉强度、冲击强度、弹性模量和断裂韧性作为响应参数进行研究。结果表明,微观结构性能在响应中起重要作用。将PKA和RHA加入到6061铝合金基体中改善了响应参数。700至800°C范围内的温度提高了性能参数,尽管800至900°C范围内的温度导致响应下降。表面图和等高线图揭示了响应与性能变量之间模式的依赖性。开发了用于预测响应的模型。在PKA为4.03%、RHA为5.12%和温度为787°C时达到了最佳条件,与预测响应相比误差<5%,从而验证了该模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8b4/10412880/b6115d40eca3/gr1.jpg

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