首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Alpha-Case Kinetics and Surface Crack Growth in the High-Temperature Alloy TSMETAL 834 Under Creep Conditions
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Alpha-Case Kinetics and Surface Crack Growth in the High-Temperature Alloy TSMETAL 834 Under Creep Conditions

机译:蠕变条件下高温合金TSMETAL 834的α-相动力学和表面裂纹扩展

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摘要

Investigations of Timetal 834 crept specimens showed that a uniform alpha-case layer was developed at the surfaces of all specimens tested in air at 823 K to 923 K (550 °C to 650 °C). The formation of this alpha-case was a result of the inward diffusion of oxygen, which is an alpha stabilizer, and other elements promoting the transformation of the beta matrix into an alpha phase and, thus, modifying the microstructure at the surfaces of these test pieces. The thickness of this alpha-case was increasing in a parabolic manner with increasing exposure time and temperature. Cracks were clearly observed at the surface of the crept specimens whose depths were greater at lower stresses. Interestingly, an alpha-case was also developed at the surfaces of the penetrating cracks with the case thickness decreasing towards the crack tip. This information was used to calculate the times at which the cracks initiated.
机译:对Timetal 834蠕变样品的研究表明,在空气中于823 K至923 K(550°C至650°C)下测试的所有样品的表面均形成了均匀的α-壳层。这种α-情况的形成是氧气(一种α稳定剂)和其他元素向内扩散的结果,这些元素促进了β基质向α相的转化,从而改变了这些测试表面的微观结构件。随着暴露时间和温度的增加,这种α-壳的厚度以抛物线的方式增加。在蠕变试样的表面清晰可见裂纹,在较低应力下其深度更大。有趣的是,在穿透裂纹的表面还形成了一个α壳,壳的厚度朝着裂纹尖端减小。该信息用于计算裂纹萌生的时间。

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