AN INVESTIGATION OF THE HIGH-TEMPERATURE AND SOLIDIFICATION MICROSTRUCTURES OF PH 13-8 MO STAINLESS-STEEL

被引:17
作者
CIESLAK, MJ
HILLS, CR
HLAVA, PF
DAVID, SA
机构
[1] Physical Metallurgy Division, Sandia National Laboratories, Albuquerque, 87185, NM
[2] Electron Optics and X-ray Analysis Division, Sandia National Laboratories, Albuquerque, 87185, NM
[3] Materials Joining, is with the Metals and Ceramics Division, Oak Ridge National Laboratory, Oak Ridge, 37831, TN
来源
METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE | 1990年 / 21卷 / 09期
关键词
D O I
10.1007/BF02646991
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Differential thermal analysis (DTA), high-temperature water-quench (WQ) experiments, and optical and electron microscopy were used to establish the near-solidus and solidification microstructures in PH 13-8 Mo. On heating at a rate of 0. 33 °C/s, this alloy begins to transform from austenite to δ-ferrite at ≈1350 °C. Transformation is complete by ≈1435 °C. The solidus is reached at ≈1447 °C, and the liquidus is ≈1493 °C. On cooling from the liquid state at a rate of 0. 33 °C/s, solidification is completed as δ-ferrite with subsequent transformation to austenite beginning in the solid state at ≈1364 °C. Insufficient time at temperature is available for complete transformation and the resulting room-temperature microstructure consists of matrix martensite (derived from the shear decomposition of the austenite) and residual δ-ferrite. The residual δ-ferrite in the DTA sample is enriched in Cr (≈16 wt pct), Mo (≈4 wt pct), and Al (≈1. 5 wt pct) and depleted in Ni (≈4 wt pct) relative to the martensite (≈12. 5 wt pct Cr, ≈2 wt pct Mo, ≈1 wt pct Al, ≈9 wt pct Ni). Solid-state transformation of δσ γ was found to be quench-rate sensitive with large grain, fully ferritic microstructures undergoing a massive transformation as a result of water quenching, while a diffusionally controlled Widmanstätten structure was produced in air-cooled samples. © 1990 The Metallurgical of Society of AIME.
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页码:2465 / 2475
页数:11
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