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Metal Matrix Composite Production By Means Of Laser Dispersing Of Sic And Wc Powder In Al Alloy

机译:激光分散SiC和WC粉末在铝合金中的金属基复合材料生产

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The properties and processing parameters of the metal matrix composite (MMC) surface layers, obtained under conditions of the superposition of intense laser radiation with the kinetic effect due to gas-dynamically controlled particle injection, are investigated for the case of laser dispersing of the SiC and WC powders in the soft Al 6061 alloy. With substrate preheating above 600 K the nearly homogeneous distribution of SiC particles up to depths of about 1 mm, characterized by their content of about 35% by volume, is revealed by the scanning electron microscopes (SEM) inspection. In the microstructure the presence of the A1_4C_3 plates separated by the eutectic regions of Si-Al is observed and confirmed by the X-ray diffraction (XRD) and energy-dispersive spectrometer (XEDS) measurements. The surface layers (25 cm~2) consisting of parallel processing traces show the wear rate of about 3×10~(-4) mm~3/N m which is markedly lower than that of the reference substrate. For WC under similar processing conditions the particle enriched layer of thickness of about 100 μm is covered by the alloy material. The experimental data confirm that laser dispersing combines the advantages of the soft matrix with these of the wear and corrosion resistant material, and results in the improvement of the properties of composite material.
机译:对于在激光分散SiC的情况下,研究了在强激光辐射的叠加条件下获得的金属基复合材料(MMC)表面层的性能和加工参数,该动力学效果归因于气体动力学控制的粒子注入。软质Al 6061合金中的WC和WC粉。通过将基板预热到600 K以上,可以通过扫描电子显微镜(SEM)检查发现SiC颗粒几乎均匀分布,其深度约为1 mm,其特征是其含量约为35%(体积)。在微观结构中,观察到并通过X射线衍射(XRD)和能量色散光谱仪(XEDS)测量确认了被Si-Al的共晶区域分隔的Al_4C_3板。由平行加工痕迹构成的表面层(25 cm〜2)的磨损率约为3×10〜(-4)mm〜3 / N m,明显低于参考基板的磨损率。对于在类似加工条件下的WC,合金材料覆盖了厚度约为100μm的颗粒富集层。实验数据证实,激光分散将软质基质的优点与耐磨和耐腐蚀材料的优点结合在一起,从而改善了复合材料的性能。

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