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Effects of Microstructure on the Fatigue Resistance of Steel Tire Cords

机译:显微组织对钢丝轮胎帘线疲劳强度的影响

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Effects of microstructural parameters on fatigue resistance (σ_(FL)) of the steel tire cords have been investigated experimentally from microscopic points of view. At first, microstructural parameters depending on carbon content have been identified by using transmission electron microscopy (TEM). The fatigue resistance of the steel tire cords depending on carbon content has been measured by using the Hunter rotating beam tester under the bending stress of 900 to 1500 MPa. The fatigue resistance was improved with increasing the carbon content from 0.7, 0.8 to 0.9 wt. % C, due to variations of microstructural parameters, such as lamellar spacing (λ_p), cementite thickness (t_c), and volume fraction (V_c) of cementite. As the carbon content increased, the lamellar spacing and the cementite thickness decreased, while the volume fraction of cementites increased. The effects of microstructure on fatigue resistance have been discussed in terms of the microstructural parameters mentioned above.
机译:从微观的角度,已经通过实验研究了微观结构参数对钢帘线疲劳强度(σ_(FL))的影响。首先,已经通过使用透射电子显微镜(TEM)识别了取决于碳含量的微结构参数。已经通过使用Hunter旋转梁测试仪在900至1500MPa的弯曲应力下测量了取决于碳含量的钢帘线的耐疲劳性。耐疲劳性随着碳含量从0.7、0.8到0.9 wt%的增加而提高。由于微结构参数的变化,例如层间距(λ_p),渗碳体厚度(t_c)和渗碳体的体积分数(V_c),C %% C。随着碳含量的增加,层状间距和渗碳体厚度减小,而渗碳体的体积分数增加。已经根据上述微观结构参数讨论了微观结构对抗疲劳性的影响。

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