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Mode I crack growth rate of a ferromagnetic elastic strip in a uniform magnetic field

机译:模式I均匀磁场中铁磁弹性带的裂纹增长率

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The theory of ferromagnetic elastic materials of multidomain structure is applied to develop a crack growth rate equation of a finite crack in a soft ferromagnetic material under Mode I tensile loading and uniform magnetic field. The plane strain and plane stress problems are considered. Dugdale's assumption regarding the plastic zone in metals is applied to estimate the effect of yield around the crack tip. The accumulated plastic displacement criterion is used for developing a solution for the crack growth rate. Numerical values of crack growth rate are obtained for a soft ferromagnetic strip with a single-edge crack and the results are displayed graphically. Crack growth rate tests are also conducted on nickel-iron soft magnetic materials with a single-edge cracked plate specimen geometry in the bore of a superconducting magnet, and a comparison is made between numerical results and experimental data.
机译:应用多畴结构的铁磁弹性材料理论,在模态I拉伸载荷和均匀磁场下发育柔软铁磁材料中有限裂纹的裂纹生长速率方程。考虑平面应变和平面应力问题。 Dugdale关于金属塑料区的假设应用于估计产量周围的裂纹尖端的效果。累积的塑料位移标准用于开发裂缝生长速率的溶液。用单边缘裂缝的软铁磁性条带获得裂纹生长速率的数值,结果以图形方式显示。裂纹生长速率测试也在镍 - 铁软磁材料上进行,在超导磁体的孔中具有单边缘裂纹板试样几何形状,并且在数值结果和实验数据之间进行比较。

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