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AISI H13 Hot-Work Steel with Hard Chromium Plating Thermal Fatigue Behavior Evaluation

机译:AISI H13热轧钢,硬铬电镀热疲劳行为评价

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A hard-coating on hot work tool steel can be used to obtain higher corrosion resistance, as well as better wear resistance. This study investigates the thermal fatigue performance of AISI H13 hot work tool steel with and without hard chromium plating. Treated specimens were characterized using microstructural analysis, X-ray diffraction analysis and microhardness measurement. The thermal fatigue test is based on cyclic induction heating and water cooling. The specimen was heated to the maximum surface temperature of 670°C followed with water injection to bring the specimen down to a minimum temperature of 25°C. The thermal fatigue testing in this study was conducted using 500 cycles. A vacuum heat treated specimen with a hardness of 47 HRC was used as the reference material. The hard chromium plated layer with a thickness 35μm had a hardness of 930 HV_(0.1). The damage factor, defined as crack depth × crack width, of quenched and tempered H13 specimens and hard chromium plated specimens were 800 and 1760, respectively. The damage factor evaluation verified the vacuum heat treated specimen thermal fatigue resistance is superior to that of the hard chromium plated specimen.
机译:热工作工具钢上的硬涂层可用于获得更高的耐腐蚀性,以及更好的耐磨性。本研究调查了AISI H13热工床钢的热疲劳性能,无需硬铬。用微观结构分析,X射线衍射分析和微硬度测量表征了处理的样品。热疲劳试验基于循环感应加热和水冷却。将样品加热至670℃的最大表面温度,然后用水注射将样品降至25℃的最低温度。使用500个循环进行该研究的热疲劳试验。使用具有47HRC硬度的真空热处理样品作为参考材料。厚度为35μm的硬铬镀层具有930 hV_(0.1)的硬度。定义为裂纹深度×裂纹宽度,淬火和回火H13样品和硬铬镀样标本的损伤因子分别为800和1760。损伤因子评估验证了真空热处理的样品热疲劳性能优于硬铬镀铬试样的试样。

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