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Comparison of Inclusions in Cold Drawn Wire and Precursor Hot-Rolled Rod Coil in VIM-VAR Nickel-Titanium Alloy

机译:在Vim-var镍钛合金中冷拉线和前体热轧杆线圈夹杂物的比较

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Inclusion content is important for the mechanical behavior and performance of Nitinol wires, particularly in fatigue-rated devices. The purpose of this work was to make a quantitative comparison between inclusion populations in cold drawn wires and the precursor populations in hot-rolled rod coil. Inclusion content was examined in a series of VIM-VAR alloys with different transformation temperatures (TTR) controlled by the Ni to Ti ratio. This range of chemistry was chosen to assess the effect of Ni to Ti ratio on inclusion formation. Jn order to understand the differences in behavior between carbides and intermetallic oxides in wire drawing, carbides, and intermetallic oxide inclusions were measured separately using optical metallography pursuant to ASTM F2063. In VIM-VAR alloys at higher Ni to Ti ratios about 50.79 a/o Ni the formation of intermetallic oxides appears to be suppressed in the as-cast material through the presence of carbon and the precipitation of eutectic TiC in place of eutectic Ti_4Ni_2O_x. The structure of VIM-VAR alloy also varies after hot working depending on the TTR of the alloy. Higher TTR binary alloys with lower Ni to Ti ratios tend to have more and larger intermetallic oxides and fewer and smaller carbides after hot working. Microsegregation plays a role in inclusion formation. That is, during solidification, C, O, N diffuse to the interdendritic regions. This increases the potential for the precipitation of nonmetallic species. Carbides and intermetallic oxides behave differently in hot working and cold drawing. The change in maximum carbide size from coil to wire is very near zero for all Ni to Ti ratios. The change in maximum inclusion size from coil to wire is driven mainly by the fracture of intermetallic oxides and the formation of intermetallic oxide stringers.
机译:包含含量对于镍钛烯酚导线的机械行为和性能非常重要,特别是在疲劳额定装置中。这项工作的目的是在冷拉线和热轧杆线圈中的纳入群体之间的定量比较。在一系列Vim-var合金中检查包含含量,该vim-var合金具有由Ni至Ti比率控制的不同变化温度(TTR)。选择该类化学范围以评估Ni对夹杂物形成的影响。 JN为了了解碳化物和金属间氧化物之间的行为差​​异,根据ASTM F2063将碳化物和金属间氧化物夹杂物分别使用光学金相分别测量。在较高的Ni的Vim-Var合金中,Ti比率约50.79A / O Ni,形成金属间氧化物的形成似乎通过碳的存在和共晶TIC的沉淀代替共晶Ti_4Ni_2O_x。根据合金的TTR,Vim-Var合金的结构也在热工作后变化。较低的Ni至Ti比率的TTR二元合金往往具有越来越大的金属间氧化物,并且在热工作后较少,碳化物较少。微量测定在包含形成中发挥作用。也就是说,在凝固过程中,C,O,N弥漫于跨州区域。这增加了非金属物种沉淀的可能性。碳化物和金属间氧化物在热工作和冷绘中行事不同。对于所有NI到Ti比率,线圈到电线的最大碳化物尺寸的变化非常接近零。线圈到电线的最大夹杂物尺寸的变化主要由金属间氧化物的破裂和金属间氧化物串的形成。

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