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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >In-situ neutron diffraction study on the high temperature thermal phase evolution of wire-arc additively manufactured Ni53Ti47 binary alloy
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In-situ neutron diffraction study on the high temperature thermal phase evolution of wire-arc additively manufactured Ni53Ti47 binary alloy

机译:原位中子衍射研究对线弧的高温热相进化的研究含有Ni53Ti47二元合金

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摘要

In the present research, to further reduce the fabrication and forming cost of NiTi alloy, an innovative wire-arc additive manufacturing process (WAAM), which is simultaneously an in-situ alloying process, has been applied to fabricate polycrystalline Ni53Ti47. The as-fabricated alloy is subsequently subjected to a necessary post-production annealing for additively manufactured metals. During the thermal cycle, to characterize the obtained phases in the Ni53Ti47 alloy and provide dynamic lattice evolution information, neutron diffraction is conducted to the heated sample in real time. It is found that the metastable Ni4Ti3 phase is only obtained in the heat-treated alloy while the as-fabricated NiTi alloy produced by WAAM contains only NiTi and Ni3Ti. The generated Ni4Ti3 precipitates have increased the NiTi phase micro strains. The hcp-Ni3Ti lattice evolution is found inducing converse lattice shrinkage and expansion in bcc-NiTi lattice during the dissolution and precipitation of Ni3Ti, respectively. The WAAM induced residual stress in the as-fabricated alloy is tensile and during the residual stress relief, the thermal expansion rate of Ni and Ni3Ti are reduced. In addition, the thermal expansion coefficient of NiTi and Ni3Ti is measured according to the neutron Rietveld refinement as 0.040 x 10(-3) degrees C-1 and 0.036 x 10(-3) degrees C-1, respectively. (C) 2020 Elsevier B.V. All rights reserved.
机译:在本研究中,为了进一步降低NITI合金的制造和成型成本,施加了一种创新的线弧添加剂制造方法(WAAM),其同时是一种原位合金化方法,已应用于制造多晶Ni53Ti47。随后对其制造的合金进行了含有含有含有碱性制造金属的必要后退火。在热循环期间,为了表征Ni53Ti47合金中所获得的相并提供动态晶格演化信息,中子衍射实时地对加热的样品进行。发现亚稳基Ni4Ti3相仅在热处理的合金中获得,而WAAM产生的AS制造的NITI合金仅含有Niti和Ni3Ti。产生的Ni4Ti 3沉淀物增加了Niti相微量菌株。发现HCP-Ni3Ti晶格进化在Ni3Ti的溶解和沉淀过程中诱导逆晶格收缩和Bcc-Niti格的膨胀。 WAAM诱导的AS制造合金中的残余应力是拉伸的,并且在残余应力浮雕期间,Ni和Ni3Ti的热膨胀率降低。另外,根据中子Rietveld细化物分别测量Niti和Ni3Ti的热膨胀系数,分别测量为0.040×10(-3)℃-1和0.036×10(-3)℃-1。 (c)2020 Elsevier B.v.保留所有权利。

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