Mechanochemical modification of tin bronzes with intermetallide Cu9 Al4

IF 0.1 Q4 MULTIDISCIPLINARY SCIENCES DOKLADY NATSIONALNOI AKADEMII NAUK BELARUSI Pub Date : 2023-03-05 DOI:10.29235/1561-8323-2023-67-1-74-82
P. Vityaz, T. F. Grigoreva, V. Zhornik, S. Kovaliova, V. I. Kvashnin, S. Petrova, E. Devyatkina, S. Vosmerikov, I. S. Veremey, N. Lyakhov
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Abstract

The influence of the conditions of mechanical activation of a mixture of Cu–12 wt. % Sn with different content of the modifier Cu9 Al4 on the structural-phase composition and morphology of the formed composites was studied by the methods of X-ray diffraction analysis, optical and electron microscopy. With the mechanochemical introduction of 10 wt. % of the modifying additive into the matrix of mechanosynthesized tin bronze, the product mainly forms a ternary solid solution of aluminum and tin in copper, Al0.05Cu0.9Sn0.05. In the case of 20 wt. % of the modifying additive, the product contains a solid solution of tin in copper Cu0.9Sn0.1 and an intermetallic compound Cu9 Al4. Studies of the mechanical and tribotechnical characteristics of the material obtained by sintering under pressure showed that the intensity of wear of bronze of the mechanochemically synthesized powder Cu–12 wt. % Sn is slightly less than that of industrial bronze BrTPh10-1, the friction coefficient f decreases by a factor of 1.4, and the range of its values is quite wide f = 0.7–0.9. Modification of mechanically synthesized Cu–12 wt. % Sn bronze with the Cu9 Al4 intermetallic compound makes it possible to reduce wear by a factor of 1.4–1.8 and significantly reduces the friction coefficient (by a factor of 2). A stable value of f = 0.5 is achieved for the MA composition Cu–12 wt. % Sn + 20 wt. % Cu9 Al4. The introduction of an intermetallic compound increases the microhardness of the alloys by a factor of 1.6–2.0 (up to Hμ = 2730 MPa) relative to the bronze alloy BrTPh10-1and mechanically synthesized bronze.
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金属间化物cu9al4对锡青铜的机械化学改性
采用X射线衍射分析、光学和电子显微镜等方法研究了Cu–12wt.%Sn与不同改性剂Cu9 Al4含量的混合物的机械活化条件对所形成复合材料的结构相组成和形态的影响。在机械合成锡青铜基体中加入10wt%的改性添加剂后,产物主要形成铝和锡在铜中的三元固溶体Al0.05Cu0.9Sn0.05。在20重量%的改性添加剂的情况下,产物包含锡在铜中的固溶体Cu0.9Sn0.1和金属间化合物Cu9Al4。通过对压力烧结获得的材料的机械和摩擦学特性的研究表明,机械化学合成的粉末Cu–12 wt.%Sn的青铜磨损强度略低于工业青铜BrTPh10-1,摩擦系数f降低了1.4倍,其值的范围相当宽,f=0.7–0.9。用Cu9 Al4金属间化合物对机械合成的Cu–12 wt.%Sn青铜进行改性,可以将磨损降低1.4–1.8倍,并显著降低摩擦系数(降低2倍)。对于MA成分Cu–12 wt.%Sn+20 wt.%Cu9 Al4,实现了f=0.5的稳定值。相对于青铜合金BrTPh10-10和机械合成青铜,金属间化合物的引入使合金的显微硬度提高了1.6–2.0倍(高达Hμ=2730 MPa)。
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DOKLADY NATSIONALNOI AKADEMII NAUK BELARUSI
DOKLADY NATSIONALNOI AKADEMII NAUK BELARUSI MULTIDISCIPLINARY SCIENCES-
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