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单点渐进成形对AA1100铝合金板材硬度的参数影响

Parametric Effects of Single Point Incremental Forming on Hardness of AA1100 Aluminium Alloy Sheets.

作者信息

Najm Sherwan Mohammed, Paniti Imre, Trzepieciński Tomasz, Nama Sami Ali, Viharos Zsolt János, Jacso Adam

机构信息

Department of Manufacturing Science and Engineering, Budapest University of Technology and Economics, Műegyetem rkp 3, H-1111 Budapest, Hungary.

Kirkuk Technical Institute, Northern Technical University, Kirkuk 41001, Iraq.

出版信息

Materials (Basel). 2021 Nov 27;14(23):7263. doi: 10.3390/ma14237263.

Abstract

When using a unique tool with different controlled path strategies in the absence of a punch and die, the local plastic deformation of a sheet is called Single Point Incremental Forming (SPIF). The lack of available knowledge regarding SPIF parameters and their effects on components has made the industry reluctant to embrace this technology. To make SPIF a significant industrial application and to convince the industry to use this technology, it is important to study mechanical properties and effective parameters prior to and after the forming process. Moreover, in order to produce a SPIF component with sufficient quality without defects, optimal process parameters should be selected. In this context, this paper offers insight into the effects of the forming tool diameter, coolant type, tool speed, and feed rates on the hardness of AA1100 aluminium alloy sheet material. Based on the research parameters, different regression equations were generated to calculate hardness. As opposed to the experimental approach, regression equations enable researchers to estimate hardness values relatively quickly and in a practicable way. The Relative Importance (RI) of SPIF parameters for expected hardness, determined with the partitioning weight method of an Artificial Neural Network (ANN), is also presented in the study. The analysis of the test results showed that hardness noticeably increased when tool speed increased. An increase in feed rate also led to an increase in hardness. In addition, the effects of various greases and coolant oil were studied using the same feed rates; when coolant oil was used, hardness increased, and when grease was applied, hardness decreased.

摘要

在没有冲头和模具的情况下,当使用具有不同控制路径策略的独特工具时,板材的局部塑性变形称为单点增量成形(SPIF)。由于缺乏关于SPIF参数及其对零件影响的可用知识,该行业一直不愿采用这项技术。为了使SPIF成为一项重要的工业应用并说服行业使用这项技术,在成形过程前后研究机械性能和有效参数非常重要。此外,为了生产出质量足够且无缺陷的SPIF零件,应选择最佳工艺参数。在此背景下,本文深入探讨了成形工具直径、冷却液类型、工具速度和进给速率对AA1100铝合金板材硬度的影响。基于研究参数,生成了不同的回归方程来计算硬度。与实验方法不同,回归方程使研究人员能够相对快速且切实可行地估计硬度值。研究中还给出了用人工神经网络(ANN)的划分权重法确定的SPIF参数对预期硬度的相对重要性(RI)。试验结果分析表明,工具速度增加时硬度显著提高。进给速率增加也会导致硬度增加。此外,使用相同的进给速率研究了各种润滑脂和冷却油的影响;使用冷却油时,硬度增加,而使用润滑脂时,硬度降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b835/8658562/11d6e6a41933/materials-14-07263-g001.jpg

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