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Effect of notch depth on strain-concentration factor of notched cylindrical bars under static tension

机译:切口深度对静态拉伸下切口圆柱杆应变集中系数的影响

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摘要

The effect of the notch depth on the strain-concentration factor (SNCF) is studied for circumferentially notched cylindrical bars under static tension. The employed new SNCF is defined under the triaxial stress state at the net section. The elastic SNCF increases as the net-to-gross diameter ratio d_0/D_0 increases and reaches a maximum at the depth of d_0/D_0 ≈ 0.7. Beyond this value of d_0/D_0 it rapidly decreases to the unity with d_0/D_0. The elastic SNCF of the extremely deep notch of d_0/D_0 = 0.2 is almost equal to that of the shallow notch of d_0/D_0 = 0.95. Nevertheless, the SNCF of the shallow notch sharply increases with plastic deformation at the notch root, while the SNCF of d_0/D_0 = 0.2 increases only slightly. The SNCF of the deep notch of d_0/D_0 = 0.6 also increases with plastic deformation and reaches a peak value. This peak value is nearly equal to or slightly lower than that of the shallow notch and hence the plastic SNCF of shallow notches cannot be neglected. The variations of the SNCF with P/P_Y, the ratio of tensile load to that at yielding at the notch root, depends only on the notch geometry up to general yielding.
机译:研究了在静态拉伸下,切口深度对周向切口圆柱棒的应变集中系数(SNCF)的影响。所使用的新SNCF定义为净截面处在三轴应力状态下。弹性SNCF随着净毛径比d_0 / D_0的增加而增加,并在d_0 / D_0≈0.7的深度处达到最大值。超过此值d_0 / D_0,它迅速减小到与d_0 / D_0的单位。 d_0 / D_0 = 0.2的极深切口的弹性SNCF几乎等于d_0 / D_0 = 0.95的浅切口的弹性SNCF。尽管如此,浅槽口的SNCF随槽根处的塑性变形而急剧增加,而d_0 / D_0 = 0.2的SNCF仅略有增加。 d_0 / D_0 = 0.6的深切口的SNCF也随着塑性变形而增加,并达到峰值。该峰值几乎等于或小于浅槽口的峰值,因此浅槽口的塑料SNCF不能忽略。 SNCF随P / P_Y的变化(拉伸载荷与切口根部屈服强度的比)仅取决于直至一般屈服的切口几何形状。

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