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Understanding the Connection between the Mechanical Properties of Cold Spray Aggregates and the Morphology and Strength of Its Interfaces

机译:了解冷喷涂骨料的机械性能与其界面的形态和强度之间的联系

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摘要

Cold spray is a process in which a metal substrate is exposed to a high- velocity (300- 1200 m/s) jet of feedstock particles (5-40 microm). The particles from a layer of coating on the substrate. The deposited particles deform plastically and form bonded interfaces with each other. We present results from a simple particle-based model to study the mechanical response of the aggregate. The model takes the geometry of bonded interfaces directly from electron micrographs of sectioned aggregates, and the only tunable parameter, a, represents the cohesive strength of the bonded interfaces, and we perform a parametric study in which we vary this parameter. We study i) the linear elastic response to homogeneous strain, ii) the ultimate strength under various types of homogeneous loading, iii) micro-indentation. The shear modulus, micro, is reduced by 40% and the compression modulus, K, is reduced by 15% as a is tuned from 1 (monolithic material with perfectly bonded interfaces) to 0 (perfectly weak interfaces with no cohesive strength). For failure under uniaxial compression, the samples remain surprisingly strong even for completely weak interfaces with no cohesive strength. In all cases except for perfect interfaces (monolithic material), the shear becomes strongly localized along a single path connecting weak interfaces along the surface of maximum shear stress 45 degrees from the loading axes, and the residual strength comes, effectively, from frictional sliding at the interfaces under compressive normal stress. For failure under uniaxial tension, the samples fail catastrophically with the percolation of a mode-1 type fracture for all cases except the monolithic material, with the ultimate strength depending monotonically on the strength of the interfaces. For indentation, we see a large site-to-site variance in the loading curves. The site-to-site variation increases when the interfaces are weaker and decreases when the indenter is flatter or the indentation depth is deeper. These results should provide useful guidance for interpreting various mechanical tests performed on cold spray aggregates.
机译:冷喷涂是将金属基材暴露于原料颗粒(5-40微米)的高速(300-1200 m / s)射流的过程。颗粒来自基材上的一层涂层。沉积的颗粒发生塑性变形,并彼此形成粘结界面。我们目前从一个简单的基于粒子的模型的结果来研究骨料的机械响应。该模型直接从截面聚集体的电子显微照片中获取键合界面的几何形状,唯一的可调参数a表示键合界面的内聚强度,我们进行了参数研究,我们在其中进行了改变。我们研究i)对均匀应变的线性弹性响应,ii)在各种类型的均匀载荷下的极限强度,iii)微观压痕。当将a从1(具有完美粘合界面的整体材料)调整为0(完全无粘合强度的完全弱界面)时,剪切模量micro降低了40%,压缩模量K降低了15%。对于在单轴压缩下的破坏,即使对于没有粘结强度的完全薄弱的界面,样品也保持惊人的强度。在所有情况下,除了理想的界面(整体材料)外,剪切力都沿着一条单一路径强烈地局限,该路径沿着距载荷轴45度的最大剪切应力的表面连接薄弱的界面,并且残余强度有效地来自于摩擦滑动界面处于压缩正应力下。对于在单轴拉伸下的破坏,对于所有情况(整体材料除外),样品都会发生模式1型断裂的渗漏,从而导致灾难性破坏,其极限强度单调取决于界面强度。对于压痕,我们在加载曲线中看到了较大的站点间差异。当界面较弱时,点到点的变化会增加;当压头更平或压痕深度更深时,点到点的变化会减少。这些结果应为解释对冷喷涂骨料进行的各种机械测试提供有用的指导。

著录项

  • 作者

    Elgailani, Ahmed A.;

  • 作者单位

    Northeastern University.;

  • 授予单位 Northeastern University.;
  • 学科 Mechanical engineering.;Materials science.
  • 学位 M.S.
  • 年度 2018
  • 页码 45 p.
  • 总页数 45
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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