...
首页> 外文期刊>材料 >Inelastic Constitutive Equations of Ni-Based Superalloy IN738LC under Anisothermal Cyclic Deformation Conditions
【24h】

Inelastic Constitutive Equations of Ni-Based Superalloy IN738LC under Anisothermal Cyclic Deformation Conditions

机译:等温循环变形条件下镍基高温合金IN738LC的非本构方程

获取原文
获取原文并翻译 | 示例

摘要

A series of deformation tests was conducted on Ni-based superalloy IN738LC under isothermal and anisothermal conditions between 450 deg C and 950 deg C. Under the isothermal conditions, the material showed no rate/time-dependency below 700 deg C, while there was distinct rate/time-dependency above 800 deg C. Anomalous inelastic behavior was observed under the anisothermal conditions; with an increase of cycles, stress at higher temperatures became smaller in absolute value, and stress at lower temperatures became larger. Based on the experimental results, the previously proposed viscoplastic constitutive model for IN738LC at 850 deg C was extended to the anisothermal conditions. In the constitutive model, evolution of formally incorporated variable Y was assumed to be active under the higher temperatures and negligible under the lower temperatures. The extended constitutive model was applied to the anisothermal cyclic loading as well as monotonic tension, stress relaxation, creep and cyclic loading under the isothermal conditions. It was demonstrated that the present constitutive model was successful in describing the inelastic behavior of the material adequately, including the "anomalous inelastic behavior" observed under the anisothermal conditions.
机译:在450°C至950°C的等温和等温条件下,对Ni基高温合金IN738LC进行了一系列变形测试。在等温条件下,该材料在700°C以下没有任何速率/时间依赖性,但存在明显的差异。高于800摄氏度时的速度/时间依赖性。在等温条件下观察到异常的无弹性行为。随着循环次数的增加,高温下的应力绝对值变小,低温下的应力变大。根据实验结果,将先前提出的IN738LC在850摄氏度下的粘塑性本构模型扩展到等温条件。在本构模型中,假定形式合并变量Y的演化在较高温度下是活跃的,而在较低温度下则可忽略不计。将扩展的本构模型应用于等温条件下的等温循环荷载以及单调张力,应力松弛,蠕变和循环荷载。证明了本构模型成功地描述了材料的非弹性行为,包括在等温条件下观察到的“异常非弹性行为”。

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