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Effects of cyclic torsional prestraining and overstrain on fatigue life and damage behavior of brass alloy

机译:循环扭转预应变和过度应变对黄铜合金疲劳寿命和损伤行为的影响

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摘要

Many practical structural members and parts may be subjected to fluctuating plastic deformation by prestraining due to manufacturing and machining process (forming operation, straightening, etc.) and unintentional overstrains (misuse, accidents, under design, etc.). For this reason, the effect of the prestrain and periodic overstrains on fatigue life and damage behavior was being necessary considered for reasonable fatigue design. In this context, an experimental program was conducted to study the effects of overstrain and prestraining on fatigue life and damage behavior of brass alloy subjected to cyclic torsional loading. To establish baseline fatigue behavior, several virgin specimens were tested under fully-reversed strain control and constant amplitude fatigue torsional loading up to failure. The obtained experimental results showed that the fatigue life depends strongly on the strain amplitude and prestraining type (monotonic or cyclic). In addition, a beneficial effect in the fatigue life was observed for all tests with periodic overstrain. Cyclic fatigue fracture on a macroscopic scale revealed features reminiscent of locally ductile and brittle mechanisms. At the same time, microscopic analysis indicated a difference on fatigue fracture surface morphology between the conducted tests and those performed under constant amplitude loading.
机译:由于制造和机械加工过程(成形操作,矫直等)和无意的过度应变(滥用,事故,设计不良等),许多实际的结构构件和零件可能会因预应变而承受波动的塑性变形。因此,合理的疲劳设计必须考虑预应变和周期性过应变对疲劳寿命和损伤行为的影响。在这种情况下,进行了一个实验程序来研究过度应变和预应变对承受周期性扭转载荷的黄铜合金的疲劳寿命和损伤行为的影响。为了建立基线疲劳行为,在完全反向应变控制和恒定振幅疲劳扭转载荷直至失效的情况下测试了多个原始样本。获得的实验结果表明,疲劳寿命在很大程度上取决于应变幅度和预应变类型(单调或循环)。另外,对于所有周期性过度应变的测试,均观察到疲劳寿命的有益影响。宏观尺度上的周期性疲劳断裂揭示出让人联想到局部延性和脆性机制的特征。同时,显微分析表明,在进行的试验与在恒定振幅载荷下进行的试验之间,疲劳断裂表面的形态有所不同。

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  • 来源
    《Materials & design》 |2010年第8期|P.3742-3747|共6页
  • 作者单位

    Laboratoire des Systimes Electro-mecaniques (LASEM), Ecole Nationale d'Ingenieurs de Sfax, (ENIS) BP 599-3018, Tunisia;

    Laboratoire des Systimes Electro-mecaniques (LASEM), Ecole Nationale d'Ingenieurs de Sfax, (ENIS) BP 599-3018, Tunisia;

    Laboratoire des Systimes Electro-mecaniques (LASEM), Ecole Nationale d'Ingenieurs de Sfax, (ENIS) BP 599-3018, Tunisia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    brass; torsion; overstrain; prestraining; fatigue life; fracture surface;

    机译:黄铜;扭转过劳;预紧疲劳寿命断裂面;

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