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首页> 外文期刊>Materials Science and Engineering >Thickness apropos stoichiometry in Pt-aluminide (PtAl) coating:Implications on the tensile properties of a directionally solidified Ni-base superalloy
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Thickness apropos stoichiometry in Pt-aluminide (PtAl) coating:Implications on the tensile properties of a directionally solidified Ni-base superalloy

机译:铂铝(PtAl)涂层的厚度非化学计量:定向凝固镍基高温合金的拉伸性能

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The effect of thickness and stoichiometry of a PtAl coating on the tensile properties of a directionally solidified superalloy has been examined in the temperature range between room temperature (RT) to 1000 ℃. The coating thickness was varied as 60, 90 and 180 μm. A concomitant change in the inherent stoichiometry, from Ni-rich to Al-rich, occurred for the constituent B2-(Ni,Pt)Al phase of the coating with the increase in thickness. The brittle-to-ductile-transition-temperature (BDTT) of the coating increased relatively with increase in thickness and, correspondingly, ductile deformation in the coatings occurred at higher temperatures of 700, 870 and 1000 ℃. The high BDTT and brittle fracture in the thick coating till high temperatures had a negative bearing on the tensile properties of the superalloy substrate. In the brittle fracture regime for the respective coatings, the tensile properties of the substrate deteriorated more with the application of thick coatings. The formation of long through-thickness cracks and higher crack penetration depths in thick coating induce greater deterioration in tensile properties of the superalloy. On the other hand, ductile failure in the coatings retards the formation of through-thickness cracks, preserves the tensile strength, and improves the ductility of the substrate.
机译:在室温(RT)至1000℃之间的温度范围内,研究了PtAl涂层的厚度和化学计量对定向凝固高温合金拉伸性能的影响。涂层厚度变化为60、90和180μm。随着厚度的增加,涂层的成分B2-(Ni,Pt)Al相发生了固有化学计量的变化,从富Ni变为富Al。涂层的脆性-韧性转变温度(BDTT)随着厚度的增加而相对增加,并且相应地,在700、870和1000℃的较高温度下,涂层发生了韧性变形。直到高温,厚涂层中的高BDTT和脆性断裂对高温合金基材的拉伸性能有负面影响。在各个涂层的脆性断裂状态下,随着厚涂层的应用,基材的拉伸性能进一步恶化。在厚涂层中形成长的贯穿厚度的裂纹和较高的裂纹穿透深度会导致高温合金的拉伸性能进一步恶化。另一方面,涂层中的延展性破坏阻碍了全厚度裂纹的形成,保留了拉伸强度,并改善了基材的延展性。

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