首页> 外文会议>ASME biennial conference on engineering systems design and analysis >MIXED-MODE HYGROTHERMAL FRACTURE ANALYSIS OF ORTHOTROPIC FUNCTIONALLY GRADED MATERIALS USING J-INTEGRAL
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MIXED-MODE HYGROTHERMAL FRACTURE ANALYSIS OF ORTHOTROPIC FUNCTIONALLY GRADED MATERIALS USING J-INTEGRAL

机译:基于J积分的正交各向异性功能梯度材料混合模式的热力学断裂分析。

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Functionally graded materials (FGMs) are multi-phase inhomogeneous composites, possessing smooth spatial variations in certain physical properties of the constituents. Depending on the types of the constituent materials used in the processing of orthotropic FGMs, the influences of thermal and hygroscopic loadings could be rather significant. This study is directed towards developing a new computational fracture analysis technique for orthotropic FGMs that are under mixed-mode hygrothermal loading. The method is based on the use of the J-integral in conjunction with the asymptotic crack tip displacement fields. Developed computational technique is integrated into a finite element analysis software. Parametric analyses are carried out by considering an inclined edge crack in an orthotropic FGM layer that is subjected to the influence of hygrothermal loading. In order to be able to verify the proposed method, obtained results are compared to those computed via displacement correlation technique (DCT). Comparisons demonstrate that proposed technique leads to numerical results of high accuracy. Further results are provided to illustrate the influences of crack inclination angle and geometry on the temperature and the specific moisture concentration fields; and the modes Ⅰ and Ⅱ stress intensity factors.
机译:功能梯度材料(FGM)是多相不均匀复合材料,在某些成分的某些物理性质上具有平滑的空间变化。根据正交异型FGM加工中使用的组成材料的类型,热负荷和吸湿负荷的影响可能会非常显着。这项研究的目的是为混合模式湿热载荷下的正交各向异性FGMs开发一种新的计算裂缝分析技术。该方法基于J积分与渐近裂纹尖端位移场的结合使用。先进的计算技术已集成到有限元分析软件中。参数分析是通过考虑受湿热载荷影响的正交各向异性FGM层中的倾斜边缘裂缝来进行的。为了能够验证所提出的方法,将获得的结果与通过位移相关技术(DCT)计算的结果进行比较。比较表明,所提出的技术可以得到高精度的数值结果。提供了进一步的结果来说明裂纹倾角和几何形状对温度和特定水分浓度场的影响;以及模式Ⅰ和Ⅱ应力强度因子。

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