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Experimental Study and Numerical Simulation of the Tensile Test for GH4169 Coated with YSZ Coating at High Temperature

机译:高温ysz涂层涂层GH4169拉伸试验的实验研究与数值模拟

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In this study, high temperature tensile test was conducted on the specimen of superalloy GH4169 coated with wt8%-YSZ under the conditions of 950°C and 80MPa. By using finite element (FE) simulation method, the failure initiation and evolution of the metal substrate and YSZ coating were predicted. It was found that stress concentration originally occurred in the YSZ ceramic top coating, causing an axial stress and triggering severe debonding failure in the center region of the specimen at t=180s. With increased load, further interfacial debonding failure of the residual coating occurred due to the presence of oblique tensile stress and at t=900s, and only a few residues can be seen at the arc transitional region. Subsequently, the metal substrate was subjected to uniform tensile deformation and finally ruptured at t=76min with apparent necking. In addition, it was notable that YSZ coating can relieve stress significantly (nearly 40% lower), thus helping prolong the substrate's service life in the same environment. Simulated results were consistent with observed behavior.
机译:在该研究中,在950℃和80MPa的条件下,在涂有WT8%-SZ的超合金GH4169标本上进行高温拉伸试验。通过使用有限元(Fe)仿真方法,预测了金属基板和YSZ涂层的故障起始和演化。发现最初发生在YSZ陶瓷顶涂层中的应力浓度,导致轴向应力并在T = 180s处触发标本的中心区域中的严重剥离失败。随着载荷增加,由于倾斜拉伸应力和T = 900s的存在而发生了残留涂层的进一步的界面剥离失效,并且在弧形过渡区域可以仅观察几个残基。随后,对金属基质进行均匀的拉伸变形,最后在T = 76min下破裂,具有表观缩颈。此外,ysz涂层可以显着释放应力(近40%),从而帮助延长了同一环境中的基材的使用寿命。模拟结果与观察到的行为一致。

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