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Experimental parameter sensitivity analysis of residual stresses induced by deep rolling on 7075-T6 aluminium alloy

机译:7075-T6铝合金深轧残余应力实验参数敏感性分析。

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摘要

The residual stress distribution induced by deep rolling depends on several factors: the material elasto-plastic curve, roller shape, indentation force and rolling feed. Among these, the force and the feed are those parameters that can be easily handled without cost or layoutmodifications. This paper shows an experimental investigation about these two parameters and a comparative analysis on the obtained residual stress profiles. The deep rolling treatment was performed on aluminium alloy 7075-T6 samples and the used tool was a carbide roller with conical and rounded contact. The residual stresses were measured by combining the hole drilling method and the X-ray diffraction technique. A first evident resultwas the large difference between the two principal residual stress components. The feed direction residual stress was almost a factor of two larger than the rolling direction residual stress. Parameter trends on residual stress distributionswere investigated. The depth of the compressive region increased with the rolling force and the maximum stress position also tended to be subsurface, while for lower loads themaximawere at the surface. On the other hand, the feed parameter did not produce any effect at large depth, and just the initial subsurface distribution was slightly influenced. However, the surface hardness was noticeably affected by the feed, while the rolling force had a less predominant role. Finite element simulations were also carried out and reported in the paper, mainly to obtain information on induced work hardening. The plasticity depth was only affected by the load, indeed it was very similar to the compressive residual stress depth, while the maximum accumulated plasticity was significantly increased by the feed.
机译:深轧产生的残余应力分布取决于几个因素:材料的弹塑性曲线,轧辊形状,压入力和轧制进给。其中,力和进给是那些无需成本或布局修改即可轻松处理的参数。本文对这两个参数进行了实验研究,并对获得的残余应力曲线进行了比较分析。对铝合金7075-T6样品进行了深轧处理,使用的工具是带有圆锥形和圆形接触的硬质合金辊。通过结合钻孔方法和X射线衍射技术来测量残余应力。第一个明显的结果是两个主要残余应力分量之间的巨大差异。进给方向残余应力几乎是轧制方向残余应力的两倍。研究了残余应力分布的参数趋势。压缩区域的深度随着轧制力的增加而增加,最大应力位置也趋于在表面以下,而对于较低的载荷,最大应力在表面上。另一方面,进给参数在大深度下不会产生任何影响,仅对初始地下分布有轻微影响。但是,表面硬度明显受进给的影响,而轧制力的作用则较小。本文还进行了有限元模拟,并进行了报道,主要是为了获得有关诱导加工硬化的信息。可塑性深度仅受载荷的影响,实际上与压缩残余应力深度非常相似,而进料最大积累的可塑性却显着增加。

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