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Increased fatigue strength of powder-forged connecting rods by optimized shot peening

机译:通过优化的射击喷丸,增加了粉末锻造连杆的疲劳强度

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Shot peening is a commonly used surface treatment process used to improve the fatigue life of aircraft, automotive and other highly stressed structural components. This improvement is attributed to the formation of compressive residual stress on the surface layer of the material by the impingement of spherical media (shot). The compressive residual stress usually decreases the tensile stress created in the component by "in service" external forces and therefore increases the fatigue strength of the part. To quantify the improvement resulting from shot peening, the fatigue behavior of powder-forged connecting rods and laboratory test bars from the base material (2% copper steel), both in the stress-free (unpeened) and surface treated (shot peened) condition were compared. The fatigue data were correlated with the residual stress generated at the surface. The stress magnitude and depth were determined using x-ray diffraction analysis. Optimum processing parameters for shot peening were also determined. Results show a significant increase in the fatigue strength of shot peened laboratory test specimens and connecting rods when compared to unpeened bars and rods.
机译:喷丸硬化是用来改善飞机的疲劳寿命通常使用的表面处理过程中,汽车和其它高应力的结构部件。这种改善是由于压缩残余应力的材料的表面层上,通过球介质(射击)的冲击形成。压缩残余应力通常由“服务”外力降低了组件创建的拉伸应力,因此增加了零件的疲劳强度。为了量化由喷丸硬化引起的改善,粉末锻造从基材连接杆和实验室测试棒(2%的铜钢)的疲劳性能,无论是在(unpeened)和表面自由应力处理(喷丸硬化)状态进行比较。疲劳数据用在表面处产生的残余应力相关。应力的大小和深度,使用X射线衍射分析来确定。喷丸最佳工艺参数,也就确定了。结果表明:在喷丸实验室试验样品,并与unpeened条,杆,当连杆的疲劳强度显著上升。

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