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Characterization of Residual Stresses on Steel Coil Springs via X-Ray Diffraction Techniques

机译:X射线衍射技术表征钢制螺旋弹簧上的残余应力

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摘要

It is well known that manufacturing operations produce material conditions that can either enhance or debit the fatigue life of production components. One of the most critical aspects of material condition that can have a significant impact on fatigue life is residual stress (RS) [1, 2]. When springs are manufactured, the spring stock may undergo several operations during production. Additional operations may also be introduced for the purpose of imparting the spring with beneficial surface RS to extend its fatigue life and increase its ability to execute the task it was designed to perform. The resultant RS present in production springs as a result of the various fabrication and processing operations applied can be predicted and modeled, however, RS measurements must be performed in order to quantify the RS state with precision. X-ray diffraction (XRD) techniques can be used to determine the RS state of such components precisely, thus enabling manufacturers the ability to accurately and quantitatively characterize and control the effects of their production processes [3].
机译:众所周知,制造操作会产生可延长或降低生产部件疲劳寿命的材料条件。可能对疲劳寿命产生重大影响的材料条件最关键的方面之一是残余应力(RS)[1,2]。在制造弹簧时,弹簧坯料在生产过程中可能会进行几次操作。为了使弹簧具有有益的表面RS以延长弹簧的疲劳寿命并增加其执行设计要执行的任务的能力,还可以引入附加的操作。由于所施加的各种制造和加工操作而导致的生产弹簧中存在的合成RS可以进行预测和建模,但是,必须执行RS测量以精确量化RS状态。 X射线衍射(XRD)技术可用于精确确定此类组件的RS状态,从而使制造商能够准确,定量地表征和控制其生产过程的效果[3]。

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