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Influence of Rapid Cooling Rate and Homogenization Temperature on the Ferrite Content and Microstructures of CD3MWCuN Castings

机译:快速冷却速率和均质化温度对CD3MWC铸件铁氧体含量和微观结构的影响

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The influence of homogenization temperature and rapid cooling rate on the ferrite content and microstructures of CD3MWCuN was investigated using BSE-SEM images. For these experiments CD3MWCuN was homogenized at six different temperatures 1000 degrees C, 1050 degrees C, 1100 degrees C, 1150 degrees C, 1205 degrees C, and 1250 degrees C for 4 hours followed by air-cooling and water quenching. In addition to these samples two temperatures, namely 1150 degrees C and 1205 degrees C, were chosen and samples were cooled at the varying rates of 500 degrees C/h, 750 degrees C/h, 850 degrees C/h, and 1000 degrees C/h. Determination of the resulting ferrite/austenite ratio revealed that homogenization temperature plays the dominant role in determining the final ferrite content. Slower cooling rates drop the amount of ferrite in a linear manner that is approximately constant for the different homogenization temperatures studied. An equation is proposed to predict the ferrite content covering the homogenization temperatures from 1000 degrees C to 1250 degrees C given that the initial ferrite amount present at the homogenization T is known. (C) The Minerals, Metals & Materials Society and ASM International 2019
机译:采用BSE-SEM图像研究了均质化温度和快速冷却速率对CD3MWCU的微晶含量和微观结构的影响。对于这些实验,CD3MWCU在六个不同的温度下均化1000℃,1050℃,1100℃,1205℃,1250℃,1250℃,然后进行4小时,然后进行空气冷却和水淬火。除了这些样品的两个温度之外,将选择1150℃和1205摄氏度,以500℃/ h,750℃/ h,850℃/ h和1000度C的不同速率冷却样品/H。产生的铁氧体/奥氏体比的测定表明,均质化温度在确定最终铁氧体含量方面发挥着主题作用。较慢的冷却速率以线性方式降低铁素体的量,该线性方式对于所研究的不同均化温度近似恒定。提出了一种等式,以预测覆盖在均质T中的初始铁氧体量的1000℃至1250℃的铁氧体含量从1000摄氏度覆盖到1250℃。 (c)2019年矿物质,金属和材料协会和ASM国际

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