...
首页> 外文期刊>Modern Mechanical Engineering >Quasi-Relaxation Transforms, Meromorphic Curves and Hereditary Integrals of the Stress-Deformation Tensor to Metallic Specimens
【24h】

Quasi-Relaxation Transforms, Meromorphic Curves and Hereditary Integrals of the Stress-Deformation Tensor to Metallic Specimens

机译:应力-变形张量到金属试样的准松弛变换,亚纯曲线和遗传积分

获取原文
           

摘要

Into the study of quasi-relaxation, in the past researches it has been concluded that the condition of meta-stability in the metallic specimen is given by the plasticity explained by the plastic energy in the process of the quasi-relaxation. It is calculated through quasi-relaxation functional of this energy to obtain a spectra in the space D(σ – ε; t), that induces the existence of functions φ(t), and Ψ(t), related with the fundamental curves of quasi-relaxation given by σ(t), with their poles in , which is got in the maximum of stress given by σ0 = σ1. Also the tensor of plastic deformation that represents the plastic load during the application of specimen machine, cannot be obtained without poles in the space D(σ; t), corresponding the curves calculated into the space D(σ – ε; t), by curves that in the kinetic process of quasi-relaxation are represented by experimental curves in coordinates log σ – t. This situation cannot be eluded, since in this phenomena exist dislocations that go conform fatigue in the nano-crystalline structure of metals. From this point of view, is necessary to obtain a spectral study related to the energy using functions that permits the modeling and compute the states of quasi-relaxation included in the poles in the deformation problem to complete the solutions in the space D(σ – ε; t), and try a new method of solution of the differential equations of the quasi-relaxation analysis. In a nearly future development, the information obtained by this spectral study (by our integral transforms), will be able to give place to the programming through the spectral encoding of the materials in the meta-stability state, which is propitious to a nano-technological transformation of materials, concrete case, some metals.
机译:在准松弛的研究中,过去的研究得出的结论是,金属样品中的亚稳态条件是由准松弛过程中由塑性能解释的可塑性给出的。通过对该能量的拟弛豫函数进行计算,以获得空间D(σ–ε; t)中的光谱,该光谱诱发了函数φ(t)和Ψ(t)的存在,与函数的基本曲线有关。由σ(t)给出的准松弛,其极点位于,得到的最大应力为σ0=σ1。同样,如果在没有空间D(σ; t)的极点的情况下获得对应于计算到空间D(σ–ε; t)中的曲线的塑性变形张量,也就无法获得标本机使用过程中的塑性载荷。在准松弛动力学过程中的曲线由坐标为logσ– t的实验曲线表示。这种情况无法避免,因为在这种现象中,在金属的纳米晶体结构中存在与疲劳相符的位错。从这一观点出发,有必要使用函数进行有关能量的光谱研究,该函数允许建模和计算变形问题中两极所包含的拟松弛状态,以完成空间D(σ– ε; t),并尝试一种新的拟松弛分析微分方程的求解方法。在不久的将来,通过这种光谱研究(通过我们的积分变换)获得的信息将能够通过对处于亚稳态状态的材料进行光谱编码而放到程序设计中,这对于纳米级的研究非常有利。材料,混凝土外壳,某些金属的技术改造。

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