Thermal Fatigue Failure of a CrN-Coated Restrike Punch

Suranjeeta Dhar, Fameeda Mohammed, Laura Xu, R. Fontana
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Abstract

A CrN coated restrike punch was made of WR-95 (similar to H-11), which was fluidized bed nitrided. The coated punch was used on hot Inconel at about 1040 deg C (1900 deg F). However, a water-soluble graphite coolant was used to maintain the punch temperature at 230 deg C (450 deg F). Visual and binocular inspection at 64+ revealed presence of cracks and complete washout of coating in the working area of the failed punch. Comparison of metallographic cross sections of used and unused punches revealed a significant microstructural transformation in case of the used punch. Presence of a yellow porous layer was clearly evident between the nitrided layer and the coating, in case of the used punch. Cracks were observed to propagate from the outer surface into the bulk. Oxidation was evident along the cracks. The microstructural transformation observed in the case of the used punch was a clear indication of high temperature exposure (due to insufficient cooling) during application. The most probable cause of failure was thermal fatigue.
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镀铬重打冲床的热疲劳失效
以WR-95(类似于H-11)为材料,采用流化床氮化处理,制备了CrN涂层重击冲床。涂层冲床在1040摄氏度(1900华氏度)的高温铬镍铁合金上使用。然而,使用水溶性石墨冷却剂将冲床温度维持在230摄氏度(450华氏度)。在64摄氏度以上的温度下,肉眼和双眼检查发现,在失效冲床的工作区域存在裂纹和涂层的完全冲洗。使用和未使用的冲头的金相横截面的比较揭示了一个显著的微观结构转变的情况下,使用的冲头。在使用冲床的情况下,在氮化层和涂层之间明显存在黄色多孔层。观察到裂纹从外表面向体内扩展。沿裂纹有明显的氧化现象。在使用冲床的情况下观察到的显微组织转变是在应用过程中高温暴露(由于冷却不足)的明确指示。最可能的故障原因是热疲劳。
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