首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Asymmetry in the Mechanical Properties of Block Ni-Cr-Al Superalloy Foam Fabricated by the Combination of Powder Alloying and Hot Rolling Processes
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Asymmetry in the Mechanical Properties of Block Ni-Cr-Al Superalloy Foam Fabricated by the Combination of Powder Alloying and Hot Rolling Processes

机译:通过粉末合金化和热轧工艺的组合制造块Ni-Cr-Al超合金泡沫的力学性能的不对称性

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摘要

A block Ni-Cr-Al superalloy foam with dimensions of 300 mm (width direction, WD) x 500 mm (rolling direction, RD) x 60 mm (normal direction, ND) was fabricated using powder alloying, multi- sheet stacking, and hot rolling processes. The structural characteristics, microstructure, and mechanical asymmetry of the block Ni-based foam were investigated. Analysis of the structural features showed that the interfaces between the sheets had complex strut interactions, such as contacted (deformed) and intersected struts. The average pore size along the directions was measured to be 2569.6μm (WD), 2988.1 μm (RD), and 2493.2 μm (ND). The average thickness of the strut was 340.8 μm, and the wall thickness of the strut was 27.7μm. The elemental distributions in the struts were uniformly controlled, and the block foam consisted of γ (matrix) and γ ' (NigAl) phases. Tensile properties in the ND direction showed a yield strength of 0.175 MPa, tensile strength of 0.233 MPa, and elongation of 2.54%, while the tensile properties in the RD direction were 1.27 MPa (YS), 3.01 MPa (UTS), 8.92% (El.) respectively. The foam was observed to have a compressive yield strength of 0.795 MPa in the ND direction, and that of 2.18 MPa in the RD direction were obtained. The asymmetry and anisotropy of these mechanical properties could be explained by the difference in pore sizes along the direction, and the structural characteristics of the sheet interface generated by sheet stacking and rolling.
机译:使用粉末合金化,多纸张堆叠和尺寸为300mm(宽度,WD)×500mm(滚动方向,Rd)×60mm(正常方向,Nd)的块的块Ni-Cr-Al高温合金泡沫。热轧工艺。研究了嵌段Ni基泡沫的结构特征,微观结构和机械不对称性。结构特征的分析表明,片材之间的界面具有复杂的支柱相互作用,例如接触(变形)和相交的支柱。测量沿方向的平均孔径为2569.6μm(Wd),2988.1μm(Rd)和2493.2μm(nd)。支柱的平均厚度为340.8μm,支柱的壁厚为27.7μm。支柱中的元素分布均匀控制,并且块泡沫由γ(基质)和γ'(末端)阶段组成。 Nd方向上的拉伸性能显示出0.175MPa的屈服强度,拉伸强度为0.233MPa,伸长率为2.54%,而Rd方向的拉伸性能为1.27MPa(Ys),3.01MPa(UT),8.92%( El。)分别。观察到泡沫在Nd方向上具有0.795MPa的压缩屈服强度,并且获得了2.18MPa的RD方向。这些机械性能的不对称性和各向异性可以通过沿着方向的方向的差异,以及由片材堆叠和轧制产生的纸张界面的结构特性来解释。

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