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Laser Powder Cladding of Ti-6Al-4V α/β Alloy

机译:Ti-6Al-4Vα/β合金的激光熔覆

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摘要

Laser cladding process was performed on a commercial Ti-6Al-4V (α + β) titanium alloy by means of tungsten carbide-nickel based alloy powder blend. Nd:YAG laser with a 2.2-KW continuous wave was used with coaxial jet nozzle coupled with a standard powder feeding system. Four-track deposition of a blended powder consisting of 60 wt % tungsten carbide (WC) and 40 wt % NiCrBSi was successfully made on the alloy. The high content of the hard WC particles is intended to enhance the abrasion resistance of the titanium alloy. The goal was to create a uniform distribution of hard WC particles that is crack-free and nonporous to enhance the wear resistance of such alloy. This was achieved by changing the laser cladding parameters to reach the optimum conditions for favorable mechanical properties. The laser cladding samples were subjected to thorough microstructure examinations, microhardness and abrasion tests. Phase identification was obtained by X-ray diffraction (XRD). The obtained results revealed that the best clad layers were achieved at a specific heat input value of 59.5 J·mm−2. An increase by more than three folds in the microhardness values of the clad layers was achieved and the wear resistance was improved by values reaching 400 times.
机译:通过碳化钨-镍基合金粉末共混物对市售的Ti-6Al-4V(α+β)钛合金进行激光熔覆工艺。具有2.2KW连续波的Nd:YAG激光器与同轴喷嘴和标准粉末进料系统一起使用。在合金上成功地完成了由60%(重量)的碳化钨(WC)和40%(重量)的NiCrBSi组成的混合粉末的四道沉积。高含量的硬质WC颗粒旨在增强钛合金的耐磨性。目的是使硬质WC颗粒均匀分布,该颗粒无裂纹且无孔,以增强此类合金的耐磨性。这是通过更改激光熔覆参数来达到最佳条件以实现良好的机械性能而实现的。对激光熔覆样品进行了彻底的显微组织检查,显微硬度和磨损测试。通过X射线衍射(XRD)获得相鉴定。所得结果表明,在59.5 J·mm -2 的比热输入值下可获得最佳的包覆层。包覆层的显微硬度值提高了三倍以上,耐磨性提高了400倍。

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