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The Effect of Controlled Shot Peening on the Microstructure and Fatigue Behavior of Wet Copper-Based Powder Metallurgy Friction Plates

机译:受控喷丸处理对湿式铜基粉末冶金摩擦板组织和疲劳行为的影响

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The effects of shot peening treatments on the microstructure and fatigue behavior of the teeth root in wet copper-based powder metallurgy friction plates were investigated and an efficient method for selecting optimal shot peening parameters for friction plates was proposed. Different experimental processes including microscopy observation, microhardness, roughness and X-ray diffraction measurements have been performed to characterize the treated surface of specimens. It is found that fatigue life of friction plates firstly increases and then decreases with the increase of Almen intensity, and the optimal fatigue life has improved over 55%. It is considered that both surface grain refinement and high residual compressive stress are the main ingredients responsible for the improved fatigue life. With further increase of Almen intensity, surface roughness of the teeth root gradually increases to a critical point, where rough peened surface may induce crack initiation due to stress concentration, and finally lead fatigue deteriorate.
机译:研究了喷丸处理对湿式铜基粉末冶金摩擦片齿根组织和疲劳行为的影响,提出了一种选择摩擦片最佳喷丸参数的有效方法。已经进行了包括显微镜观察,显微硬度,粗糙度和X射线衍射测量在内的不同实验过程,以表征样品的处理表面。研究发现,随着Almen强度的增加,摩擦片的疲劳寿命先增加后减小,而最佳疲劳寿命提高了55%以上。认为表面晶粒细化和高残余压应力都是导致疲劳寿命提高的主要因素。随着Almen强度的进一步增加,齿根的表面粗糙度逐渐增加到一个临界点,在该临界点上,粗糙的喷丸表面可能会由于应力集中而引起裂纹萌生,最终导致铅疲劳恶化。

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