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Sintering behavior and mechanical properties of Mo-TZM alloyed with nanotitanium carbide

机译:用纳米钛碳化物合金的Mo-Tzm的烧结行为和力学性能

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Molybdenum alloys are used in a number of commercial, defense, nuclear, and aerospace applications that take advantage of their high melting temperature, good creep resistance, and decent mechanical properties at elevated temperature. Titanium-Zirconium-Molybdenum (TZM) alloys are the most commercially important Mo alloy as they possess substantially higher strength than pure molybdenum while still maintaining strong mechanical performance at elevated temperature. High density components of these alloys are of interest for high performance defense and aerospace applications, however obtaining high relative densities by sintering has proven difficult. Here we report nano-titanium carbide addition as an effective method of improving TZM sintered density as well as increasing alloy hardness and flexural strength. Pure TZM was sintered by Field Assisted sintering Technique (FAST) to over 98.5% density at 2000 degrees C under 55 MPa applied pressure, while density was improved to >99% using TiC addition. TiC addition was found to result in reduced grain size and improved hardness of as sintered alloys, including over a 95% reduction in grain size and 75% increase in hardness for TZM with 10 vol%TiC addition. (C) 2016 Published by Elsevier Ltd.
机译:钼合金用于许多商业,防御,核和航空航天应用,可利用其高熔化温度,良好的蠕变性,升高的机械性能。钛 - 锆 - 钼(TZM)合金是最商业的Mo合金,因为它们具有比纯钼的强度大得多,同时仍保持升高的温度下的强机械性能。这些合金的高密度部件对于高性能防御和航空航天应用感兴趣,但是通过烧结获得高相对密度已经证明困难。在这里,我们报告纳米钛碳化物作为改善TZM烧结密度的有效方法,以及增加合金硬度和弯曲强度。纯TZM在55MPa施加压力下以超过98.5%的密度(快速)烧结到超过98.5%的密度,使用TIC加入,密度改善为> 99%。发现添加加法导致晶粒尺寸降低,并改善了烧结合金的硬度,包括降低晶粒尺寸的95%,TZM的硬度增加75%,加入10 Vol%。 (c)2016由elestvier有限公司出版

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