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Investigation of the Structure and Properties of Boron-Containing Coatings Obtained by Electron-Beam Treatment

机译:通过电子束处理获得的含硼涂层的结构和性能研究

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An investigation of surface-hardened materials obtained by cladding with an electron beam injected into the air atmosphere was carried out. Structural investigations of coatings revealed that an increase in boron carbide concentration in a saturating mixture contributed to a rise of a volume fraction of iron borides in coatings. The maximum hardened depth reached 2 mm. Hardened layers were characterized by the formation of heterogeneous structure which consisted of iron borides and titanium carbides distributed uniformly in the eutectic matrix. Areas of titanium boride conglomerations were detected. It was found that an increase in the boron carbide content led to an enhancement in hardness of the investigated materials. Friction testing against loosely fixed abrasive particles showed that electron-beam cladding of powder mixtures containing boron carbides, titanium, and iron in air atmosphere allowed enhancing a resistance of materials hardened in two times.
机译:进行了通过包层与注入空气气氛中的电子束而获得的表面硬化材料的研究。涂层的结构研究表明,饱和混合物中的碳化硼浓度的增加有助于涂层中的铁硼的体积分数。最大硬化深度达到2毫米。通过形成异质结构的化物质的特征在于,由铁硼化物和均匀分布在共晶基质中均匀地分布。检测到硼化钛硼化钛的区域。结果发现,碳化硼含量的增加导致了研究的材料硬度的增强。对松散固定的磨料颗粒的摩擦测试表明,在空气气氛中含有硼碳化物,钛和铁的粉末混合物的电子束包覆允许增强材料的抗性两次硬化。

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