Thermal Softening Measurements of Refractory High-Entropy Alloys

被引:0
|
作者
Temesi, Otto K. [1 ,2 ]
Karacs, Albert [3 ]
Chinh, Nguyen Q. [2 ]
Varga, Lajos K. [1 ,4 ]
机构
[1] H ION Kft, Konkoly Thege Mikl Ut 29-33, H-1121 Budapest, Hungary
[2] Eotvos Lorand Univ, Dept Mat Phys, Pazmany Peter Setany 1-A, H-1117 Budapest, Hungary
[3] Mikrot Kft, Konkoly Thege Mikl Ut 29-33, H-1121 Budapest, Hungary
[4] HUN REN Wigner Res Ctr Phys, H-1525 Budapest, Hungary
关键词
temperature dependence of mechanical properties; elastic moduli; yield stress and hardness; thermal expansion; indentation depth; softening and allotropic phase transformations; refractory high-entropy alloys; TEMPERATURE-DEPENDENCE; YIELD STRENGTH; HARDNESS; PREDICTION;
D O I
10.3390/ma17235718
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Home-built equipment will be presented able to measure the thermal expansion (with a flat indenter) and indentation depth (with a pointed indenter) up to 1100 degrees C. In dilatometer mode, the allotropic phase transformations can be studied. For hardness, a Rockwell-type measurement is adopted. First, we apply a small load and measure the displacement consisting of a dominant positive thermal expansion and a small negative indentation depth contribution. Then, we repeat the thermal cycle with such a high load that the compensation appears at around 250-300 degrees C. With increasing temperature, the indentation depth starts to dominate and we can notice a contraction. The indentation depth as a function of temperature, ID(T), will be obtained by subtracting the high load curve from the low load curve. A new rational fraction expression will be tested to describe the thermal softening of pure metals and refractory HEAs. Still, we are working on improving the equipment to extend the working temperature up to 1200 degrees C.
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页数:13
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