Institute of Metallurgy and Materials Science Polish Academy of Sciences, 30-059 Cracow, 25 Reymonta St., Poland.
J Microsc. 2009 Nov;236(2):143-8. doi: 10.1111/j.1365-2818.2009.03291.x.
Two powder alloys from the beta phase region of compositions Co(28.5)Ni(36.5)Al(35) and Co(35)Ni(30)Al(35) were ball milled for 80 h in a high energy ball mill. The formation of amorphous structure was observed after 40 h of milling and further milling did not change their structure. The analytical and high-resolution transmission electron microscopy (TEM, HREM) examination of powder structure showed that nanoparticles of L1(0) phase of size of about 5 nm were present within the amorphous matrix. The vacuum hot pressing of the milled powders under pressure of 400 MPa at 700 degrees C for 12 min resulted in the formation of compacts with density of about 70% of the theoretical one. The additional heat treatment at 1300 degrees C for 6 h followed by water quenching, led to significant improvement of density and induced the martensitic transformation manifested by a broad heat effect. The characteristic temperatures of the transformation were determined using DSC measurements, which revealed only small differences within the examined alloys compositions. TEM structure studies of heat-treated alloys allowed to identify the structure of an ordered beta (B2) phase and L1(0) martrensite.
两种成分分别为 Co(28.5)Ni(36.5)Al(35)和 Co(35)Ni(30)Al(35)的β相区粉末合金在高能球磨机中球磨 80 小时。经过 40 小时的球磨后观察到非晶结构的形成,进一步的球磨并没有改变它们的结构。粉末结构的分析和高分辨率透射电子显微镜(TEM,HREM)检查表明,在非晶基体中存在约 5nm 尺寸的 L1(0)相纳米颗粒。将球磨粉末在 400MPa 的压力下于 700°C 下真空热压 12 分钟,得到了密度约为理论密度的 70%的压坯。随后在 1300°C 下进行 6 小时的附加热处理,然后水淬,导致密度显著提高,并诱导马氏体相变,表现为宽的热效应。通过差示扫描量热法(DSC)测量确定了相变的特征温度,结果表明在所研究的合金成分中只有很小的差异。对热处理合金的 TEM 结构研究允许识别有序β(B2)相和 L1(0)马氏体的结构。