首页> 外文会议>MRS fall meeting >Analysis of Indentation Creep
【24h】

Analysis of Indentation Creep

机译:压痕蠕变分析

获取原文

摘要

Increasingly, indentation creep experiments are being used to characterize rate-sensitive deformation in specimens that, due to small size or high hardness, are difficult to characterize by more conventional methods like uniaxial loading. In the present work we use finite element analysis to simulate indentation creep in a collection of materials whose properties vary across a wide range of hardness, strain rate sensitivities, and work hardening exponents. Our studies reveal that the commonly held assumption that the strain rate sensitivity of the hardness equals that of the flow stress is violated except for materials with low hardness/modulus ratios like soft metals. Another commonly held assumption is that the area of the indent increases with the square of depth during constant load creep. This latter assumption is used in an analysis where the experimenter estimates the increase in indent area (decrease in hardness) during creep based on the change in depth. This assumption is also strongly violated. Fortunately, both violations are easily explained by noting that the "constants" of proportionality relating 1) hardness to flow stress and 2) area to (depth)~2 are actually functions of the hardness/modulus ratio. Based upon knowledge of these functions it is possible to accurately calculate 1) the strain rate sensitivity of the flow stress from a measurement of the strain rate sensitivity of the hardness and 2) the power law exponent relating area to depth during constant load creep.
机译:压痕蠕变实验越来越多地用于表征样品中的速率敏感变形,这些样品由于尺寸小或硬度高而难以通过更常规的方法(如单轴加载)来表征。在目前的工作中,我们使用有限元分析来模拟一系列材料的压痕蠕变,这些材料的性能在很大的硬度,应变速率敏感性和加工硬化指数范围内变化。我们的研究表明,除了硬度/模数比低的材料(如软金属)外,违反了通常认为硬度的应变速率敏感性等于流动应力的假设。另一个普遍持有的假设是,在恒定载荷蠕变过程中,凹痕的面积随深度的平方而增加。后一个假设用于分析中,在该分析中,实验人员根据深度的变化估算蠕变过程中压痕面积的增加(硬度的降低)。也强烈违反了这一假设。幸运的是,通过指出与1)硬度与流动应力和2)面积与(深度)〜2相关的比例“常数”实际上是硬度/模量比的函数,可以轻松地解释这两种违规情况。基于这些功能的知识,可以精确地计算出1)流动应力的应变率灵敏度,这是通过测量硬度的应变率灵敏度而得出的,以及2)在恒定载荷蠕变期间将面积与深度相关的幂律指数。

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