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首页> 外文期刊>International Journal of Fatigue >Low-cycle fatigue in rotating cantilever under bending. Ill: Experimental investigations on notched specimens
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Low-cycle fatigue in rotating cantilever under bending. Ill: Experimental investigations on notched specimens

机译:旋转悬臂弯曲时的低周疲劳。病:带缺口样品的实验研究

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摘要

Low-cycle fatigue tests of rotating cantilevered notched beams under deflection controlled conditions are conducted on four grades of high strength medium alloy steel of hardness 280, 310, 350 and 380 HB. The cyclic stress-strain response and strain-life fatigue curves are determined. The effects of hardness, prestraining and machine allowance after heat treatment, on the fatigue life have also been studied. A numerical methodology derived from a recent theoretical analysis is utilised which permits the determination of cyclic stress-strain response (n' and k') and strain-life curve of any material from its measured rotating bending data, namely: the nominal bending stress and both the vertical and horizontal deflections. The cyclic strain-hardening exponent, fatigue strength exponent and fatigue ductility exponent were found to be almost constants, being 0.104, 0.074 and 0.68, respectively, on the average. In notch fatigue tests under conditions of rotating bending, the actual measured lives in notched specimens for the four investigated materials were five times greater, on the average, than the predicted lives based on crack initiation model. Furthermore, abolishing the machine allowance after heat treatment for the notched specimens was found to lower fatigue life, in general, under rotating bending. This fact has serious implications in practice for through-hardened materials.
机译:在挠度受控的条件下,对四种级别的硬度分别为280、310、350和380 HB的高强度中合金钢进行了旋转悬臂梁的低周疲劳测试。确定了循环应力-应变响应和应变寿命疲劳曲线。还研究了热处理后的硬度,预应变和机械余量对疲劳寿命的影响。利用了从最近的理论分析中得出的一种数值方法,该方法允许根据其测量的旋转弯曲数据确定任何材料的循环应力-应变响应(n'和k')和应变寿命曲线,即:标称弯曲应力和垂直和水平偏转。发现循环应变硬化指数,疲劳强度指数和疲劳延性指数几乎恒定,平均分别为0.104、0.074和0.68。在旋转弯曲条件下的缺口疲劳测试中,四种被调查材料的缺口试样的实际测量寿命平均比基于裂纹萌生模型的预期寿命平均高五倍。此外,发现取消带凹口试样的热处理后的机器余量通常会降低旋转弯曲时的疲劳寿命。这一事实在实践中对于硬化材料具有严重的意义。

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