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1.
协同式专家系统及其在三轴转台故障诊断中的应用   总被引:1,自引:0,他引:1  
针对传统的专家系统在处理多领域知识方面的缺陷,作提出了一种协同式专家系统,给出了相应的模型和结构,并提出一种裁决算法,将多个涉及不同领域的子专家系统融合起来,共同实现专家系统的多领域问题求解。以此方法构建的TRDES目前已应用于高精密三轴转台的故障诊断中,效果良好。  相似文献   

2.
Preliminary results toward the analysis of the Hamiltonian structure of multifield theories describing complex materials are reported: we invoke the invariance under the action of a general Lie group of the balance of substructural interactions. Poisson brackets are also introduced in the material representation to account for general material substructures. A Hamilton-Jacobi equation suitable for multifield models is presented. Finally, a spatial version of all these topics is discussed without making use of the notion of paragon setting.  相似文献   

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对广义连续统场论的发展过程加以回顾,对其发展现状加以综述,并对包括其目标、非线性理论、多场问题、计算机化趋势、物理参数和应用等今后的研究方向提出了若干建议.  相似文献   

5.
Some minimum theorems potentially useful to construct numerical schemes related to quasi-static evolution of damage in brittle elastic solids are proposed. The approach is that of multifield theories, with a second-order damage tensor describing the microcrack density. The use of damage entropy flux and damage pseudo-potential are both investigated.  相似文献   

6.
移动接触线,指两种互不相溶的流体在固体表面形成移动的三相接触区域。移动接触区域跨越多个尺度,其中三相物质之间的相互作用影响着整个流场的动力学特征。由于在能源、航天、生物等领域中的重要应用和迅速发展,移动接触线在新的应用背景下发展了新的难题。标度分析是度量接触线自相似扩展的重要手段。本文以移动接触线的标度关系为主线,介绍了“力–电–热–化学”多场耦合环境下,亲水内角、微柱阵列、可溶解固体、水力压裂滞后区等复杂几何结构的刚性/柔性固体表面,采用物理力学方法对于移动接触线动力学属性研究的进展。通过跨尺度实验研究、大规模分子动力学模拟和分子动理论/水动力学理论相结合的方法,发现了类固体前驱膜、单分子前驱水链、锯齿形接触线等新现象。从原子尺度的界面结构到连续尺度的流动特性,讨论了移动接触线自相似扩展的标度关系,以及其驱动来源、能量耗散、边界条件等物理机制和规律,为多物理场中的“Huh-Scriven佯谬”探索了解答,为移动接触线的前景和应用提出了展望。  相似文献   

7.
Summary A fully saturated two-phase solid or structure subjected to variable, in particular cyclic, external actions is described as a nonhardening poroelastoplastic material with piecewise linearized yield loci. With reference to a multifield finite element model, sufficient and necessary conditions for shakedown are established by the static Melan's approach. Shakedown analysis by linear programming is briefly discussed. Received 29 December 1997, accepted for publications 25 June 1998  相似文献   

8.
移动接触线,指两种互不相溶的流体在固体表面形成移动的三相接触区域.移动接触区域跨越多个尺度,其中三相物质之间的相互作用影响着整个流场的动力学特征.由于在能源、航天、生物等领域中的重要应用和迅速发展,移动接触线在新的应用背景下发展了新的难题.标度分析是度量接触线自相似扩展的重要手段.本文以移动接触线的标度关系为主线,介绍了"力-电-热-化学"多场耦合环境下,亲水内角、微柱阵列、可溶解固体、水力压裂滞后区等复杂几何结构的刚性/柔性固体表面,采用物理力学方法对于移动接触线动力学属性研究的进展.通过跨尺度实验研究、大规模分子动力学模拟和分子动理论/水动力学理论相结合的方法,发现了类固体前驱膜、单分子前驱水链、锯齿形接触线等新现象.从原子尺度的界面结构到连续尺度的流动特性,讨论了移动接触线自相似扩展的标度关系,以及其驱动来源、能量耗散、边界条件等物理机制和规律,为多物理场中的"Huh-Scriven佯谬"探索了解答,为移动接触线的前景和应用提出了展望.  相似文献   

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This paper provides a continuum mechanical model for the curing of polymers, including the incompressibility effects arising at the late stages of the process. For this purpose, the free energy density functional is split into a deviatoric and a volumetric part, and a multifield formulation is inserted. An integral formulation of the functional is used to depict the time-dependent material behavior. The model is also coupled with the multiscale finite element method, a numerical approach serving for the modeling of heterogeneous materials with a highly oscillatory microstructure. The effects of the proposed extensions are illustrated on the basis of several numerical examples concerned with the study of the influence of Poisson’s ratio on the curing process and the behavior of the microheterogeneous polymers.  相似文献   

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