6</sub>Sn<sub>5</sub> 的結構穩(wěn)定性、形成能、結合能、彈性以及電子性質。結果表明: β-Sn 和 Cu<sub>6</sub>Sn<sub>5</sub> 的形成能分別為 0.0053eV 和 -0.0681eV ,結合能分別為 -3.8439eV 和 -3.848leV ,兩者在熱力學上均是穩(wěn)定的; Cu<sub>6</sub>Sn<sub>5</sub> 的彈性模量、維氏硬度均大于 β-Sn 的,表明 Cu<sub>6</sub>Sn<sub>5</sub> 對錫基巴氏合金的強度和剛度影響更大,但 β?Sn 的塑性和彈性各向異性更好; β?Sn 和Cu<sub>6</sub>Sn<sub>5</sub> 的費米能級分別為 1.01eV 和 1.18eV ,說明兩者均具有較好的結構穩(wěn)定性。-龍源期刊網" />

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錫基巴氏合金SnSb8Cu4組成相的結構和性能的第一性原理計算

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中圖分類號: TH142.3 文獻標志碼:A

文章編號:2096-2983(2025)03-0070-08

Abstract: The soft matrix and hard phases in the microstructure of tin-based Babbitt alloy have a decisive influence on its macroscopic properties,and the research and development of high-performance alloys requires an understanding of the structure and performance characteristics of each constituent phase.The structural stability, forming energy, binding energy, elastic properties and electronic characteristics of β -Sn and Cu6Sn5 in tin-based Babbitt alloy SnSb8Cu4 were investigated by using firstprinciples calculations based on density functional theory. The results show that the forming energies of β -Sn and Cu6Sn5 are 0.0053eV and -0.0681eV , respectively, and their binding energies are -3.8439eV and -3.848leV respectively, indicating that both are thermodynamically stable. The elastic modulus and Vickers hardness of Cu6Sn5 are both higher than those of β -Sn, indicating that Cu6Sn5 has a greater influence on the strength and stiffness of the tin-based Babbitt alloy. However, β -Sn demonstrates beter plasticity and elastic anisotropy. The Fermi energy levels of β -Sn and Cu6Sn5 are 1.01eV and 1.18eV , respectively, indicating that both have good structural stability.

Keywords: tin-based Babbit aloy; first-principles; structural stability; elastic property; electronic property

錫基巴氏合金具備優(yōu)異的嵌藏性、順應性和抗咬合能力,以及低摩擦因數和低膨脹系數的特點,在渦輪機、汽輪機、核電機組等設備的滑動軸承制造中得到廣泛應用,成為高精度、高負荷運轉設備中不可或缺的重要材料[1-3]。(剩余11178字)

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