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首页> 外文期刊>Materials Science and Engineering >Influence of H-phase precipitation on the microstructure and functional and mechanical properties in a Ni-rich NiTiZr shape memory alloy
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Influence of H-phase precipitation on the microstructure and functional and mechanical properties in a Ni-rich NiTiZr shape memory alloy

机译:H相沉淀对富含NII型耐均匀形状记忆合金的微观结构和功能性和机械性能的影响

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摘要

The relationship between precipitate evolution, martensitic transformation temperatures, hardness, and functional load-bias behavior has been analyzed for a Ni_50.8Ti_34.2Zr_15 (at.%) alloy. In the solutionized condition, the alloy was fully austenitic and no transformation (at least to -90 °C) was observed. Upon aging at 550 °C, the onset of a martensitic transformation (M_s), as determined by differential scanning calorimetry, was observed at approximately -10 °C and 75 °C after 24 and 300 h, respectively. Electron diffraction identified the precipitation of the orthorhombic H-phase within the B2 matrix. When the inter-precipitate spacing was ~12 run, a greater undercooling was necessary to initiate the martensitic transformation due to overlapping strain fields of the precipitates. As the precipitates coarsened with aging time, a corresponding increase in the inter-precipitate spacing occurred and the chemical partitioning effects between the matrix and precipitate, as determined by atom probe tomography, began to dominate the transformation behavior resulting in an increase in transformation temperatures. For selected aging conditions, the load-biased shape memory behavior was determined under compressive and tensile loading using uniaxial constant-force thermal cycling experiments. A tension-compression asymmetry was noted with larger transformation strains in tension than compression at constant stresses up to 400 MPa. A recoverable transformation strain of 3% was observed in the sample aged for 4 h at 550 °C under a tensile stress of 400 MPa, which is the largest recoverable strain currently reported for a precipitation-strengthened NiTiZr alloy.
机译:已经分析了沉淀蒸馏,马氏体转化温度,硬度和功能载荷 - 偏置行为之间的关系,用于Ni_50.8Ti_34.2ZR_15(at。%)合金。在溶解的条件下,合金是完全奥氏体的,没有观察到转化(至少至-90℃)。在550℃下老化时,通过差示扫描量热法测定的马氏体转化(M_S)的发作分别在24至300小时后观察到约-10℃和75℃。电子衍射鉴定了B2基质内的正交H相的沉淀。当沉淀间隔〜12的间隔〜12开始时,由于沉淀物的重叠应变场引起的马氏体转化是更大的过冷。当沉淀物粗糙的时间时,发生沉淀间距的相应增加,并且由原子探测层析成像测定的基质和沉淀物之间的化学分配效应开始主导转化行为导致转化温度的增加。对于选定的老化条件,使用单轴恒定的热循环实验在压缩和拉伸负载下测定负载偏置形状的记忆行为。张力张力张力的张力大于400MPa的恒定应力的压缩,张力张力的张力菌株的张力压缩不对称。在400MPa的拉伸应力下在550℃下在4小时的样品中观察到3%的可回收转化株,其是目前沉淀加强的尼替咪硫磺的最大可回收菌株。

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  • 来源
    《Materials Science and Engineering》 |2021年第13期|140401.1-140401.10|共10页
  • 作者单位

    The University of AlabamaDepanment of Metallurgical & Materials Engineering Box 870202 Tuscaloosa Ah 35401-0202 USA;

    The University of AlabamaDepanment of Metallurgical & Materials Engineering Box 870202 Tuscaloosa Ah 35401-0202 USA;

    The University of AlabamaDepanment of Metallurgical & Materials Engineering Box 870202 Tuscaloosa Ah 35401-0202 USA United States Army Research Laboratory Weapons and Materiab Research Directorate RDRL-WMM-B Aberdeen Proving Grounds MD 21005-5069 USA;

    The University of AlabamaDepanment of Metallurgical & Materials Engineering Box 870202 Tuscaloosa Ah 35401-0202 USA;

    The University of AlabamaDepanment of Metallurgical & Materials Engineering Box 870202 Tuscaloosa Ah 35401-0202 USA;

    United States Army Research Laboratory Weapons and Materiab Research Directorate RDRL-WMM-B Aberdeen Proving Grounds MD 21005-5069 USA;

    United States Army Research Laboratory Weapons and Materiab Research Directorate RDRL-WMM-B Aberdeen Proving Grounds MD 21005-5069 USA;

    United States Army Research Laboratory Weapons and Materiab Research Directorate RDRL-WMM-B Aberdeen Proving Grounds MD 21005-5069 USA;

    The University of AlabamaDepanment of Metallurgical & Materials Engineering Box 870202 Tuscaloosa Ah 35401-0202 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Shape memory alloy; Precipitation; Microstructure; Uniaxial constant force thermal cycling;

    机译:形状记忆合金;沉淀;微观结构;单轴恒定力热循环;

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