...
首页> 外文期刊>Composite Structures >Investigation of elastic stresses in an adhesively bonded single lap joint with functionally graded adherends in tension
【24h】

Investigation of elastic stresses in an adhesively bonded single lap joint with functionally graded adherends in tension

机译:研究具有功能梯度被粘物的粘合单搭接接头中的弹性应力

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

In this study three-dimensional elastic stress state of an adhesively bonded single lap joint with functionally graded adherends in tension was investigated. The adherends compose of a functionally gradient layer between a pure ceramic (Al_2O_3) layer and a pure metal (Ni) layer. Stress concentrations are observed along the free edges of the adhesive layer and through the corresponding zones in the upper and lower adherends. The adhesive layer experiences stress concentrations along the left and right free edges in the horizontal plane, and the normal stresses and the shear stress σ_(xy) are critical. Whereas the middle overlap region has a uniform low stress distribution the zones in the upper adherend corresponding to the left free edge of the adhesive layer and the zones in the lower adherend corresponding to the right free edge of the adhesive layer are subjected to higher stresses. The normal stress σ_(xx) among the normal stresses and the shear stress σ_(xy) among the shear stresses are dominant in both upper and lower adherends. The normal stress σ_(xx) changes uniformly from compression in the ceramic layer to tension in the metal layer through the upper plate-thickness and from tension in the ceramic layer to compression in the metal layer through the lower plate-thickness. In the adhesive layer, the normal stress σ_(yy) becomes peak at the left free edge of the upper adherend-adhesive interface and at the right free edge of the lower adherend-adhesive interface and then decreases uniformly across the adhesive layer towards the other adherend-adhesive interface. The functionally gradient region across the adherend thickness was modelled using the layers with the mechanical properties calculated based on the power law. However, a layer number larger than 20 has a minor effect on the through-thickness profiles and magnitudes of von Mises and normal stresses in both the adherends and the adhesive. In addition, increasing the ceramic phase in the material composition (compositional gradient exponent n) of the functionally gradient region does not affect the through-thickness profiles of von Mises and normal stresses in the adherends and adhesive whereas their magnitudes in the ceramic rich layer of both adherends and along the adherend-adhesive interfaces increase considerably. On the contrary, the layer number and compositional gradient exponent have an evident effect on the through-thickness profiles and magnitudes of the critical stress components in the adherends and adhesive layer of the functionally graded adhesively bonded joints.
机译:在这项研究中,研究了具有功能梯度被粘物的粘合单搭接接头的三维弹性应力状态。被粘物由纯陶瓷(Al_2O_3)层和纯金属(Ni)层之间的功能梯度层组成。沿着粘合层的自由边缘并通过上层和下层被粘物的相应区域观察到应力集中。粘合层沿着水平面的左右自由边缘经历应力集中,并且法向应力和剪切应力σ_(xy)至关重要。而中间重叠区域具有均匀的低应力分布,而上粘附体中对应于粘合剂层左自由边缘的区域和下粘附体中对应于粘合剂层右自由边缘的区域承受较高的应力。正应力中的正应力σ_(xx)和剪切应力中的剪切应力σ_(xy)在上被粘物和下被粘物中均占主导地位。从陶瓷层的压缩到上层板厚的金属层的拉伸,从陶瓷层的拉伸到下层板厚金属层的压缩,法向应力σ_(xx)均匀地变化。在粘合层中,法向应力σ_(yy)在上层被粘物-粘合界面的左自由边缘和下层被粘物-粘合界面的右自由边缘处达到峰值,然后在整个粘合层上朝另一个方向均匀减小被粘物-粘合界面。使用具有根据幂定律计算的机械性能的层对横跨被粘物厚度的功能梯度区域进行建模。但是,大于20的层数对粘稠度和von Mises的贯穿厚度分布和大小以及被粘物和粘合剂中的法向应力影响较小。此外,增加功能梯度区域的材料成分(组成梯度指数n)中的陶瓷相不会影响von Mises的贯穿厚度分布以及被粘物和胶粘剂中的法向应力,而它们在陶瓷富集层中的大小却不受影响。被粘物和沿着被粘物-胶粘剂界面的两者都大大增加。相反,层数和组成梯度指数对功能梯度粘合接头的被粘物和粘合层中的贯穿厚度分布和临界应力分量的大小具有明显的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号