Hasemann Georg, Harris Chad, Krüger Manja, Perepezko John H
Institute of Materials and Joining Technology, Otto-von-Guericke University Magdeburg, Universitätsplatz 2, 39106 Magdeburg, Germany.
Department of Materials Science and Engineering, University of Wisconsin-Madison,1509 University Ave., Madison, WI 53706, USA.
Materials (Basel). 2020 Sep 15;13(18):4099. doi: 10.3390/ma13184099.
Alloys in the V-Si-B system are a new and promising class of light-weight refractory metal materials for high temperature applications. Presently, the main attention is focused on three-phase alloy compositions that consist of a vanadium solid solution phase and the two intermetallic phases VSi and VSiB. Similar to other refractory metal alloys, a major drawback is the poor oxidation resistance. In this study, initial pack-cementation experiments were performed on commercially available pure vanadium and a three-phase alloy V-9Si-5B to achieve an oxidation protection for this new type of high temperature material. This advance in oxidation resistance now enables the attractive mechanical properties of V-Si-B alloys to be used for high temperature structural applications.
V-Si-B 体系合金是一类新型且有前景的轻质难熔金属材料,适用于高温应用。目前,主要关注的是由钒固溶体相以及两种金属间化合物相VSi和VSiB组成的三相合金成分。与其他难熔金属合金类似,一个主要缺点是抗氧化性差。在本研究中,对市售纯钒和三相合金V-9Si-5B进行了初步的包埋渗金属实验,以实现对这种新型高温材料的氧化防护。抗氧化性方面的这一进展现在使得V-Si-B合金具有吸引力的力学性能能够用于高温结构应用。