首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >(152429)The effect of the annealing temperature on the damping capacity under constant prestress, mechanical properties and microstructure of an Fe-llCr-2.5Mo-0.1Zr-1.0Ni forged damping alloy
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(152429)The effect of the annealing temperature on the damping capacity under constant prestress, mechanical properties and microstructure of an Fe-llCr-2.5Mo-0.1Zr-1.0Ni forged damping alloy

机译:(152429)退火温度对Fe-LLCR-2.5MO-0.1ZR-1.0NI锻造阻尼合金的恒定预应力,力学性能和微观结构下的阻尼能力的影响

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摘要

A new Fe-llCr-2.5Mo-0.1Zr-1.0Ni forged damping alloy with dual phases of ferrite and martensite was obtained by an applicable heat treatment to improve the damping capacity under constant prestress. The effect of the annealing temperature on the damping capacity under constant prestress, mechanical properties and microstructure of the alloy was investigated and compared with that of an Fe-16Cr-2.5Mo-0.1Zr forged damping alloy. The Fe-11Cr-2.5Mo-0.1Zr-1.0Ni forged damping alloy annealed at 900°C comprised dual phases of ferrite and martensite, while the Fe-16Cr-2.5Mo-0.1Zr forged damping alloy annealed at 900 °C comprised single-phase ferrite. The damping results showed that the damping capacity attenuation of the Fe-llCr-2.5Mo-0.1Zr-1.0Ni forged damping alloy annealed at 900 °C was apparently slower than that of the Fe-16Cr-2.5Mo-0.1Zr forged damping alloy annealed at 900 °C with an increase in the constant prestress. When the strain amplitude γ was 3.88 x 10~(-5), the damping capacity Q~(-1) (0.038) of the Fe-llCr-2.5Mo-0.1Zr-1.0Ni forged damping alloy annealed at 900 °C under a 40MPa constant prestress maintained 71.7% of that (0.053) of the alloy under an 8MPa constant prestress. However, the damping capacity CT1 (0.017) of the Fe-16Cr-2.5Mo-0.1Zr forged damping alloy annealed at 900 °C under a 40 MPa constant prestress was only 35.4% of that (0.048) of the alloy under an 8 MPa constant prestress. According to the TEM results, the ferrite zone in the Fe-llCr-2.5Mo-0.lZr-1.0Ni forged damping alloy annealed at 900 °C had not only a moderate dislocation density but also dislocation lines that were almost parallel to each other and moved easily. It can be concluded that the dislocation damping of the Fe-llCr-2.5Mo-0.1Zr-1.0Ni forged damping alloy annealed at 900 °C was effectively activated and increased as the constant prestress increased.
机译:通过适用的热处理获得具有铁素体和马氏体的双阶段的新Fe-Llcr-2.5mo-0.1Zr-1.0ni锻造阻尼合金,以提高恒定预应力下的阻尼能力。研究了退火温度对恒定预应力下的阻尼能力,合金的机械性能和微观结构的影响,并与Fe-16Cr-2.5Mo-0.1Zr锻造阻尼合金进行比较。在900℃下退火的Fe-11cr-2.5mO-0.1zr-1.0ni锻造阻尼合金包括铁氧体和马氏体的双相,而Fe-16Cr-2.5mo-0.1zr锻造阻尼合金在900℃下退火-phase铁氧体。阻尼结果表明,在900℃下退火的Fe-Llcr-2.5mO-0.1Zr-1.0ni锻造阻尼合金的阻尼能力衰减显然比Fe-16Cr-2.5mO-0.1Zr锻造阻尼合金慢在900°C下退火,随着恒定的预应力增加。当应变幅度γ为3.88×10〜(-5)时,Fe-LLCR-2.5MO-0.1ZR-1.0NI锻造阻尼合金的阻尼容量Q〜(0.038)在900°C下退火在8MPa常数预应力下,40MPa恒定的预应力保持了合金的71.7%(0.053)。然而,在40MPa恒定的预应力下在900℃下退火的Fe-16Cr-2.5Mo-0.1Zr锻造阻尼合金的阻尼容量CT1(0.017)仅为8MPa下的合金的35.4%(0.048)持续的预应力。根据TEM结果,在900℃下退火的Fe-LLCR-2.5MO-0.LZR-1.0NI锻造阻尼合金中的铁氧体区不仅具有中等的位错密度,而且彼此几乎平行的位错线轻松移动。可以得出结论,随着900℃的900℃退火的Fe-LLCR-2.5MO-0.1ZR-1.0NI锻造阻尼合金的脱位阻尼有效地激活并随着恒定的预应力增加而增加。

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