首页> 外文期刊>Russian Journal of Non-Ferrous Metals >Effect of High-Power Ion Beams on the Surface Topography and Structure of the Subsurface Layer of Submicrocrystalline Titanium Alloys
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Effect of High-Power Ion Beams on the Surface Topography and Structure of the Subsurface Layer of Submicrocrystalline Titanium Alloys

机译:高功率离子束对亚微晶钛合金地下层表面形貌及结构的影响

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The influence of high-power beams of carbon ions (the ion energy is 250 keV; the pulse duration is similar to 100 ns; the current density in the pulse is 150-200 A/cm(2); the surface energy density of a single pulse is j similar to 3 J/cm(2) under the irradiation of the samples of the VT1-0 titanium alloy and j similar to 1 J/cm(2) for the treatment of the samples of the VT6 titanium alloy; and the number of pulses is 1, 5, 10, and 50) on the surface topography and structure-phase state of the subsurface layer of submicrocrystalline titanium alloys VT1-0 and VT6 is studied. The sample surface before irradiation is preliminarily mechanically grinded and polished. It is shown that surface defects are formed on the alloy surface after irradiation. These are craters of various shapes and geometry with diameter from fractions of micrometer to 80-100 mu m. Herewith, the grain structure in the subsurface layer becomes more uniform in size and degree of grain equiaxity. A rather homogeneous structure is characteristic of the state of the VT1-0 titanium alloy; the average grain size is similar to 0.31 mu m, while that one the VT6 alloy is similar to 0.9 mu m. The grain growth in the transverse direction to 0.54 mu m is observed after one irradiation pulse in the subsurface layer of the VT1-0 alloy (at j similar to 3 J/cm(2)), while the grain size for the VT6 alloy (j similar to 1 J/cm(2)) decreases to similar to 0.54 mu m. The average grain size in the subsurface layer after 50 pulses reaches similar to 2.2 mu m for the VT1-0 alloy and similar to 1.6 mu m for the VT6 alloy. It should be noted that a rather homogeneous grain structure with equiaxial grains is formed for both alloys already after the effect of one pulse of the high-power ion beam.
机译:碳离子的高功率束的影响(离子能量为250keV;脉冲持续时间类似于100ns;脉冲中的电流密度为150-200a / cm(2); a的表面能密度单个脉冲是J类似于3J / cm(2)的辐射,在VT1-0钛合金的样品和J类似于1J / cm(2)的用于治疗VT6钛合金的样品;和脉冲的数量是1,5,10和50)在表面形貌和亚微晶层钛合金地下层的结构相位,研究了VT1-0和VT6。辐射前的样品表面初步地机械研磨和抛光。结果表明,照射后在合金表面上形成表面缺陷。这些是各种形状和几何形状的陨石坑,其直径来自米尺的级数至80-100μm。在此,地下层中的晶粒结构在晶粒等尺寸的尺寸和程度上变得更加均匀。相当均匀的结构是VT1-0钛合金状态的特征;平均晶粒尺寸类似于0.31μm,而VT6合金类似于0.9μm。在VT1-0合金的地下层中的一个照射脉冲(在类似于3J / cm(2))的一个照射脉冲之后,观察到横向的晶粒生长至0.54μm),而VT6合金的晶粒尺寸( j类似于1 j / cm(2))降低至类似于0.54 mu m。 50脉冲后地下层中的平均晶粒尺寸与VT1-0合金相似达到2.2μm,对于VT6合金,类似于1.6μm。应当注意,在高功率离子束的一个脉冲效应之后,两种合金形成了具有寿命的相当均匀的晶粒结构。

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