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Microstructural Characterization of a Directionally-Solidified Ni-33 (at. )Al-31Cr-3Mo Eutectic Alloy as a Function of Withdrawal Rate

机译:定向凝固Ni-33(原子%)Al-31Cr-3Mo共晶合金的微观组织特征与回撤速率的关系

摘要

The Ni-33 (at. %)Al-3lCr-3Mo eutectic alloy was directionally-solidified (DS) at different rates, V(sub I), varying between 2.5 to 508 mm/ h. Detailed qualitative and quantitative metallographic and chemical analyses were conducted on the directionally-solidified rods. The microstructures consisted of eutectic colonies with parallel lamellar NiAl/(Cr,Mo) plates for solidification rates at and below 12.7 mm/ h. Cellular eutectic microstructures were observed at higher solidification rates, where the plates exhibited a radial pattern. The microstructures were demonstrated to be fairly uniform throughout a 100 mm length of the DS zone by quantitative metallography. The average cell size, bar-d, decreased with increasing growth rate to a value of 125 microns at 508 mm/ h according to the relation bar-d (microns) approx. = 465 V(sup -0.22, sub I), where V(sub I) is in mm/ h. Both the average NiAl plate thickness, bar-Delta(sub NiAl), and the interlamellar spacing, bar-lambda, were observed to be constant for V(sub I) less than or = 50.8 mm/ h but decreased with increasing growth rate above this value as 0.93 bar-Delta(sub NiAl)(microns) = 61.2 V(sup -0.93, sub I) and bar-lambda (microns) = 47.7 V(sup -0.64, sub I), respectively. The present results are detailed on a microstructural map. Keywords Optical microscopy, microstructure, compounds intermetallic, directional solidification
机译:将Ni-33(原子%)Al-3lCr-3Mo共晶合金以不同的速度V(sub I)(在2.5至508 mm / h之间变化)定向凝固(DS)。对定向凝固棒进行了详细的定性和定量金相和化学分析。显微组织由具有平行层状NiAl /(Cr,Mo)平板的共晶菌落组成,固化速率为12.7 mm / h及以下。在较高的凝固速率下观察到细胞共晶微观结构,其中板显示出放射状图案。通过定量金相学证明,在整个DS区的100mm长度内,显微组织是相当均匀的。平均细胞大小,bar-d,随着生长速率的增加而减小,在508mm / h的条件下,其值达到125微米(根据bar-d(微米)的关系)。 = 465 V(sup -0.22,sub I),其中V(sub I)以mm / h为单位。 V(sub I)小于或等于50.8 mm / h时,平均NiAl板厚bar-Delta(sub NiAl)和层间间距bar-lambda都是恒定的,但随着上述速率的增加而减小该值分别为0.93 bar-Delta(sub NiAl)(微米)= 61.2 V(sup -0.93,sub I)和bar-lambda(microns)= 47.7 V(sup -0.64,sub I)。在微观结构图上详细说明了当前结果。关键词光学显微镜显微组织金属间化合物定向凝固

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