FEM based mathematical modelling of thrust force during drilling of Al7075-T6

IF 1.2 4区 工程技术 Q3 ENGINEERING, MECHANICAL
A. Tzotzis, C. García-Hernández, José-Luis Huertas-Talón, P. Kyratsis
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引用次数: 7

Abstract

Like most machining processes, drilling is affected by many parameters such as the tool diameter, the cutting speed and feed. The current research investigates the possibility of developing a finite element modelling based prediction model for the generated thrust force during drilling of Al7075-T6 with solid carbide tools. A total of 27 drilling experiments were carried out in order to examine the interaction between three key parameters and their effect on thrust force. In addition, simulations of the experiments were realized with the use of DEFORM3D™ software in order to obtain the necessary numerical data. Finally, a comparison was made between the experimental and the numerical results to verify that reliable modelling is feasible. The mathematical model was acquired with the use of response surface methodology and the verification of the adequacy of the model was performed through an analysis of variance. The majority of the simulations yielded results in agreement with the experimental results at around 95% and the derived model offered an accuracy of 5.9%.
基于有限元的Al7075-T6钻削推力数学模型
像大多数加工过程一样,钻孔受许多参数的影响,如刀具直径、切削速度和进给量。本研究探讨了建立基于有限元模型的整体硬质合金刀具在Al7075-T6钻削过程中产生推力预测模型的可能性。为了研究三个关键参数之间的相互作用及其对推力的影响,共进行了27次钻孔试验。此外,利用DEFORM3D™软件对实验进行了仿真,以获得必要的数值数据。最后,将实验结果与数值结果进行了比较,验证了可靠的建模是可行的。利用响应面法建立数学模型,并通过方差分析对模型的充分性进行验证。大多数模拟结果与实验结果的一致性在95%左右,推导模型的准确性为5.9%。
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来源期刊
Mechanics & Industry
Mechanics & Industry ENGINEERING, MECHANICAL-MECHANICS
CiteScore
2.80
自引率
0.00%
发文量
25
审稿时长
>12 weeks
期刊介绍: An International Journal on Mechanical Sciences and Engineering Applications With papers from industry, Research and Development departments and academic institutions, this journal acts as an interface between research and industry, coordinating and disseminating scientific and technical mechanical research in relation to industrial activities. Targeted readers are technicians, engineers, executives, researchers, and teachers who are working in industrial companies as managers or in Research and Development departments, technical centres, laboratories, universities, technical and engineering schools. The journal is an AFM (Association Française de Mécanique) publication.
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