9 resultados para H.I.J.O.S

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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The effects of electron beam surface hardening treatment on the microstructure and hardness of AISI D3 tool steel have been investigated in this paper. The results showed that the microstructure of the hardened layer consisted of martensite, a dispersion

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An elastoplastic constitutive relation is developed for meso damage of whisker-reinforced composites. A model is constructed that includes orientation distribution of whiskers and slip systems as well as interface and crystal sliding. Evolution of damage will be addressed. Given in Part I is the formulation while examples will be illustrated in Part II.

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坡面流是坡面土壤侵蚀的根本动力,是研究土壤侵蚀动力学过程的基础。简要介绍了坡面流的基本特征和水力学特性,综述了坡面入渗产流过程、坡面流阻力,以及坡面流运动的数学描述和预报模型等方面的研究进展。指出复杂坡面条件下的坡面流运动,以及从小尺度过渡到大尺度将是今后坡面流研究的重要发展方向。

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介绍了玻璃纤维增强复合材料Ⅰ型层间断裂韧性“Round Robin Test”的结果。随着偶联剂浓度的改变,I型裂纹的扩展方式从稳态向非稳态转变。这类断裂韧性强烈地依赖界面性能。

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The phase diagram of the dodecyl dimethyl ammonium hydroxyl propyl sulfonate(DDAHPS)/1-pentanol(C5H11OH)/water ternary system has been established. It contains two isotropic monophase regions (L-1 and L-2) and a liquid crystalline region (L.C.). The isotropic phase regions have been investigated by means of Raman spectroscopy and conductivity.

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在采用冻结湍流假设和几何光学近似的条件下,得到了经自适应光学系统校正后的剩余波前相位扰动的结构函数,进而根据剩余相位结构函数与系统Strehl比的关系,求出自适应光学系统的补偿效果受系统的时空传递函数,大气湍流,光波传播路径上的横向风,观察目标的旋转角速度以及系统时间延迟影响情况的解析表达式。

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对生物模式的形成机制的探讨一直是生命科学特别是发育生物学的重要课题.目前已经积累了大量的多学科的研究数据并提出了一些的理论,但生物模式形成的真正机制仍然很不清楚而需更深入的探索.本文试图运用元胞自动机方法建立一个从单细胞及其行为到细胞与细胞、细胞与胞外环境相互作用下生物模式形成的模型.并应用此模型,基于"诱导开关"概念,提出一种新的离散模型来模拟盘基网柄菌(Dictyostelium discoideum)的聚集模式.

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In this paper, a new phenomenological theory with strain gradient effects is proposed to account for the size dependence of plastic deformation at micro- and submicro-length scales. The theory fits within the framework of general couple stress theory and three rotational degrees of freedom omega(i) are introduced in addition to the conventional three translational degrees of freedom mu(i). omega(i) is called micro-rotation and is the sum of material rotation plus the particles' relative rotation. While the new theory is used to analyze the crack tip field or the indentation problems, the stretch gradient is considered through a new hardening law. The key features of the theory are that the rotation gradient influences the material character through the interaction between the Cauchy stresses and the couple stresses; the term of stretch gradient is represented as an internal variable to increase the tangent modulus. In fact the present new strain gradient theory is the combination of the strain gradient theory proposed by Chen and Wang (Int. J. Plast., in press) and the hardening law given by Chen and Wang (Acta Mater. 48 (2000a) 3997). In this paper we focus on the finite element method to investigate material fracture for an elastic-power law hardening solid. With remotely imposed classical K fields, the full field solutions are obtained numerically. It is found that the size of the strain gradient dominance zone is characterized by the intrinsic material length l(1). Outside the strain gradient dominance zone, the computed stress field tends to be a classical plasticity field and then K field. The singularity of stresses ahead of the crack tip is higher than that of the classical field and tends to the square root singularity, which has important consequences for crack growth in materials by decohesion at the atomic scale. (C) 2002 Elsevier Science Ltd. All rights reserved.