...
首页> 外文期刊>International Journal of Solids and Structures >The influence of particle shape, volume fraction and distribution on post-necking deformation and fracture in uniaxial tension of AA5754 sheet materials
【24h】

The influence of particle shape, volume fraction and distribution on post-necking deformation and fracture in uniaxial tension of AA5754 sheet materials

机译:颗粒形状,体积分数和分布对AA5754片材单轴拉伸后颈缩变形和断裂的影响

获取原文
获取原文并翻译 | 示例

摘要

Finite element analysis was performed over a small particle field, edge constraint plane strain post-necking model. The aim is to understand the roles of particle shape, volume fraction and distribution over the post-necking deformation and fracture of AA5754-O sheet materials. For models containing one single particle, the post-necking deformation decreases when the particle varies from circular to elliptical. The inter-particle spacing, the major parameter of distribution to determine whether a pair of particles belongs to a stringer or not, was varied for models with two particles of circular or elliptical shape. The general trend is that the post-necking deformation and fracture strains decrease with decreasing spacing between particles. There is considerable difference in terms of both fracture topographies and strains for models containing 16 particles when distributions varied from random/uniform to stringer distributions. The post-necking deformation and fracture strains monotonically decrease with particle volume fractions for models with 4-64 particles of random or stringer distribution. This indicates that the post-necking behavior for AA5754-O alloys where the matrix material is rather ductile is not solely controlled by a single or pair of particles although they may become initiation places of damage. Multiple damaging sources such as stringers or large particles can act cooperatively and speed up the damaging propagation of the material, and therefore produce small post-necking deformation and early fracture. The center clustering of particles can be beneficial for post-necking behavior and bendability of sheet materials.
机译:在小颗粒场,边缘约束平面应变后颈缩模型上进行了有限元分析。目的是了解颗粒形状,体积分数和分布在AA5754-O板材的颈缩后变形和断裂中的作用。对于包含一个单个粒子的模型,当粒子从圆形变为椭圆形时,颈缩后变形会减小。对于具有两个圆形或椭圆形粒子的模型,粒子间间距(确定一对粒子是否属于纵梁的主要分布参数)已改变。总的趋势是,随着颗粒之间的间距减小,颈缩后变形和断裂应变减小。当分布从随机/均匀分布到桁条分布变化时,对于包含16个粒子的模型,无论是在断裂形貌还是应变方面都存在相当大的差异。对于具有4-64随机或拉丝分布颗粒的模型,颈缩后变形和断裂应变随颗粒体积分数而单调减小。这表明,基体材料相当易延展的AA5754-O合金的颈缩后行为,虽然可能成为破坏的起始点,但并不仅由单个或一对颗粒控制。诸如桁条或大颗粒之类的多种损坏源可以协同作用,并加速材料的损坏传播,因此产生较小的颈缩变形和早期断裂。颗粒的中心聚集对于片材的颈缩后行为和可弯曲性可能是有益的。

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