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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Influence of process parameters on forming quality of Cu-Fe joints by laser shock hole-clinching
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Influence of process parameters on forming quality of Cu-Fe joints by laser shock hole-clinching

机译:工艺参数对激光冲击孔夹紧Cu-Fe关节质量的影响

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摘要

Laser shock hole-clinching is a novel mechanical joining process in which the shock wave pressure induced by a high-energy pulsed laser is employed as a punch. This process is quite suitable for the joining of two dissimilar materials with significant differences in plasticity and strength. However, the effect of key process parameters on the forming quality of joints by laser shock hole-clinching is less concerned. In this study, the influence of laser power density, spacer height, number of laser pulse, and initial grain size of metal foils on the forming quality of Cu-Fe joints was experimentally investigated. The characteristics of interlock value and thinning rate distribution under various process parameters were systematically examined. It is revealed that laser shock hole-clinching process can be divided into the confined bulging and interlock formation stages. Based upon the examination of substandard joints, the defects in laser shock hole-clinching process are classified which contains no interlock, nonuniform interlock, bottom and neck fracture. It is found that the thinnest position of joints locates at the region in contact with the upper corner of the joining partner II in which extensive plastic deformation occurs related to the force acting during clinching process. The interlock value increases significantly as the enlargement of initial grain size, whereas the deviation also becomes larger due to the inhomogeneous plastic deformation for the metal foil with coarse grains. Moreover, the ratio of spacer height to the thickness of the joining partner II affects the thinning rate distribution and interlock value of joints. The spacer height equaling to the thickness of the joining partner II is recommended within the given parameters.
机译:激光冲击孔铆接是一种新的机械连接过程,其中由高能脉冲激光引起的冲击波压力用作冲头。该过程非常适合加入两种不同材料,具有显着差异的可塑性和强度。然而,关键过程参数对激光冲击孔铆接的关节形成质量的影响不太关注。在该研究中,实验研究了激光功率密度,弹性密度,激光脉冲的数量和初始晶粒的初始粒度的影响,对Cu-Fe关节的形成质量进行了实验研究。系统地检查了各种过程参数下互锁值和稀释率分布的特性。据透露,激光冲击孔铆接工艺可分为狭窄的凸出和互锁形成阶段。基于对不合标接接头的检查,激光冲击夹紧过程中的缺陷分类,其不含互锁,不均匀的互锁,底部和颈部骨折。结果发现,接头的最薄位置位于与加入合作伙伴II的上拐点接触的区域中,其中发生了广泛的塑性变形,与在铆接过程中的力作用。互锁值随着初始晶粒的扩大而显着增加,而偏差也变大,因为金属箔具有粗粒的金属箔的不均匀塑性变形。此外,间隔高度与连接合作伙伴II的厚度的比率影响了关节的稀释率分布和互锁值。建议在给定参数内建议平等到加入合作伙伴II的厚度的间隔高度。

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