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Pulsed: Nd:YAG laser deposition of WC/Ni clad layers

机译:脉冲:Nd:WC / Ni Clad层的YAG激光沉积

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We report on the use of a pulsed Nd:YAG laser and optical fibres to produce WC/Ni clad layers on H 13 tool steel substrates. The effects of laser parameters, such as laser pulse energy, pulse length and pulse frequency as well as material parameters such as powder composition on the clad layer microstructure and wear properties were investigated. The microhardness of the clad layers was measured using a Vickers microhardness tester. The microstructure of the clad layers was assessed by optical and scanning electron microscopy in conjunction with x-ray diffraction. The results show that up to 1 mm thick, fully dense and crack-free clad layers of WC/Ni can be formed in a single pass with an incident average laser power of 440 W delivered through a 600 μm diameter, glass fibre. The results further show that the higher the microhardness of the clad layer, the higher its wear resistance. Average surface microhardness values of the coatings were as high as 650 NV05 and, in low stress abrasion tests, their abrasive wear resistance was up to 10 times higher than that of heat-treated H 13 tool steel.
机译:我们报告使用脉冲Nd:YAG激光器和光纤,在H 13刀具钢基板上产生WC / Ni Clad层。研究了激光参数,例如激光脉冲能量,脉冲长度和脉冲频率以及诸如粉末组合物上的材料参数,如粉末组合物,如粉末组合物和磨损性能。使用Vickers Micro硬度测试仪测量包层层的显微硬度。通过光学和扫描电子显微镜与X射线衍射结合使用光学和扫描电子显微镜来评估包层层的微观结构。结果表明,在单通机的单次通过440W的入射平均激光功率,直径为600μm,可在单次通过600μm,直径为600μm,可以形成高达1mm的厚度,完全致密的和无裂缝的层层。结果进一步表明,夹层层的微硬度越高,其耐磨性越高。涂层的平均表面显微硬度值高达650 nV05,并且在低应力磨损试验中,它们的磨料耐磨性高于比热处理的H 13刀具钢的耐磨性高达10倍。

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