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高温氧化时间对MoSi2 RSiC复合材料组成、微观结构和性能的影响
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Effect of High temperature Oxidation Time on Composition,Microstructure and Properties of MoSi2 RSiC Composites
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    探讨了氧化时间对MoSi2 RSiC复合材料组成、微观形貌、力学性能和导电性能的影响.结果表明:复合材料氧化主要在外表面生成致密的SiO2层;材料的力学性能随氧化时间的延长先增大后减小,MS 2.62的抗弯强度和弹性模量在氧化40 h后达到最大值,分别为14603 MPa和23949 GPa,氧化100 h后,三种材料的力学性能数据仍高于氧化前;随氧化时间的延长,材料的体积电阻率先减小后趋于平缓,MS 262氧化100 h后的体积电阻率约为50 mΩ·cm,比氧化前减小42%,影响因子的计算表明这种变化可能源于MoSi2发生塑性变形而减少了复合材料中MoSi2和RSiC相界面处的微裂纹数量,在一定程度上有利于MoSi2材料导电性能的充分发挥.

    Abstract:

    The influence of high temperature oxidation time on the composition, microstructure, and mechanical and electrical properties of MoSi2 RSiC composites was discussed. The experimental results show that the oxidation of composites mainly formed a dense cristobalite SiO2 film on the external surface. The mechanical properties of the composites increased and then decreased with the increase of oxidation time, and MS 2.62 oxidized for 40 h achieved the maximal flexural strength and elastic modulus of 146.03 MPa and 239.49 GPa, respectively. Meanwhile, the mechanical properties of composites were still greater than those of samples without any oxidation even after 100 h oxidation. With the increase of oxidation time, the volume resistivity of MoSi2 RSiC composites decreased and then reached a flat, while the volume resistivity of MS 2.62 was about 50 mΩ·cm after 100 h oxidation, which was about 42% lower than its original values. Additionally, the calculated influence factor I indicated that this variety might be caused by the healing of micro crack at the interface between RSiC and MoSi2 induced by the plastic deformation of MoSi2, resulting in the decrease of the volume resistivity of composites.

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高朋召,吕华南,徐墨雨,袁铮,李冬云,肖汉宁.高温氧化时间对MoSi2 RSiC复合材料组成、微观结构和性能的影响[J].湖南大学学报:自然科学版,2017,44(6):45~51

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  • 在线发布日期: 2017-07-07
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