• The crack growth process is a continuous process of alternating crack-tip stretching and ductile crack cracking.

    裂纹增长过程一个裂纹尖端延伸延性裂纹启裂持续地交替出现的过程。

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  • As a consequence, the viscosity of material is an important factor in the study of singular field of the crack-tip.

    因此研究裂纹尖端奇异时,材料粘性效应一个重要因素

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  • Special crack-tip SNQE includes the second term of the asymptotic series expansion of the displacement fields near the crack-tip.

    特殊裂纹尖端单节点次单元包括裂纹尖端位移近似级数展开第二

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  • The analytical and computational results indicate that the viscosity effect is an important factor in propagating crack-tip fields.

    分析计算结果表明黏性效应扩展裂纹尖端场的一个重要因素

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  • It is illustrated that they are essentially the isotropic, incompressible, power law type nonlinear elastic crack-tip fields, illustrated.

    论证了它们实质上向同性、不可压缩非线性弹性裂纹尖端场。

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  • This paper contains an asymptotic finite-deformation analysis about the elastostatic field near the crack-tip in an incompress rubber-like material.

    本文平面应变情况下不可压缩橡胶类材料裂纹尖端弹性场进行了有限变形分析

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  • The crack-tip dynamic stress intensity factors decrease with the decrease of the crack length and the increase of the functionally gradient parameter.

    无论什么时刻,尖处动态应力强度因子裂纹长度减小而减小,随板材料的功能梯度参数增大而减小。

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  • The solution of the crack-tip stress, strain fields for the power law type nonlinear viscoelastic materials, especially for the modified polypropylene, is obtained.

    得到非线性粘弹性材料特别是改性聚丙稀裂纹尖端应力应变和位移解答

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  • It is found that opposite sign dislocations appear on the slip plane immediately ahead of the crack tip.

    结果指出紧靠裂纹顶端的滑移面上出现和裂纹位错异号

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  • The ground area was also checked with dye-penetrant to ensure that no crack tip remained.

    打磨着色渗透剂进行了检查以便确保裂纹尖端留存。

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  • These negative dislocations seem to enter the crack tip and blunt it, resulting in a dislocation-free zone at the crack tip.

    这些负号位错将移裂纹顶端使之钝化而留下一个无位错或低位错密度区。

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  • The research methods and main conclusions of FGMS fracture analysis are reviewed from the aspects of asymptotic fields near the crack tip and crack expansibility.

    裂纹尖端应力场裂纹扩展个方面阐述了功能梯度材料弹性断裂分析研究方法主要结论

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  • The relative equation between stress intensity factor and displacement field near interface crack tip of bimaterials was derived firstly.

    首先推导了双材料界面裂纹尖端位移应力强度因子之间的关系式。

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  • Crack propagation is affected by many factors, among which, the crack tip plastic zone attracts a lot of attention.

    影响裂纹扩展因素有许多其中,裂纹尖端塑性引起众多研究者的兴趣。

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  • Numerical solution of these equations yields the intensity factors and the energy release rate at the crack tip.

    求解这些方程组获得裂纹尖端强度因子能量释放

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  • The results show that the accuracy for crack tip stress intensity factor using ANSYS software is enough for engineering designs and analysis.

    研究结果表明ANSYS程序裂纹尖端应力强度因子计算方法的计算精度可以满足工程设计分析需要。

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  • By comparing fatigue crack with electrosparking crack, the effects of crack tip on fracture toughness of ductile iron have been studied.

    通过疲劳裂纹线切割裂纹对比试验,研究裂纹尖端尖锐程度球墨铸铁断裂韧性的影响;

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  • On the theory of dislocation free zone, crack tip emitted the dislocations , which piled up the tangled in ahead of the intermetallic compounds.

    根据错贫化理论裂纹尖端发射沉淀析出金属间化合物和缠结

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  • The analysis shows that the compressive loading has a significant contribution towards the crack tip plasticity and the fatigue crack growth.

    通过分析表明应力裂纹尖端塑性区疲劳裂纹的扩展显著影响

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  • The influence of cold expansion on the stress intensity factor distribution in crack tip was also analyzed.

    分析了扩张疲劳裂纹尖端应力强度因子分布影响

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  • The transient displacement field and the dynamic stress intensity factor at the moving crack tip are obtained.

    给出瞬态位移运动裂纹尖端动态应力强度因子

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  • The elastostatic field near the interface crack tip between two incompressible materials is analyzed with the fully nonlinear theory.

    采用完全非线性弹性理论研究类不可压缩材料形成界面裂纹尖端

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  • The temperature field and thermal stress field on the crack tip in a metal was studied by numerical simulation method.

    数值模拟方法研究了金属裂纹尖端温度应力场的分布情况

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  • The magnetic flux density on the crack tip in a metal pipeline was studied by numerical simulation method.

    数值模拟方法研究了金属管道裂纹尖端磁通量密度分布情况。

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  • Carbon fibers restrained the matrix cracks growth and diminished the crack tip stress intensity factor.

    纤维基体开裂起抑制作用降低裂纹尖端的应力集中。

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  • The outlined models for estimation of crack extension angles rely purely on the stress intensity factors at the crack tip which can be determined by finite element procedures.

    用这些模型预测裂纹扩展时,参数都归结尖处应力强度因子应力强度因子可以有限元方法求得的。

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  • After defining a logarithm damage variable and effective stress, we introduce a damage evolution equation at crack tip bytaking into account the physical mechanism of the development ofcavities.

    本文在定义对数损伤变量相应的有效应力之后,引入一种考虑材料内部空穴演变损伤演变方程

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  • If a current with proper intensity has been switched on, the goal of controlling the melting and welding dimension effectively around the crack tip can be obtained.

    文中给出算例表明,适当控制入的电流强度可以达到有效控制熔化尺寸以及形成焊口目的

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  • If a current with proper intensity has been switched on, the goal of controlling the melting and welding dimension effectively around the crack tip can be obtained.

    文中给出算例表明,适当控制入的电流强度可以达到有效控制熔化尺寸以及形成焊口目的

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