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The use of electron beam for designing of wear-resistant coating

机译:电子束用于设计耐磨涂层

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The paper reports the results of an investigation of structure formation in the eutectic chromium-vanadium cast iron coating deposited by electron-beam hardfacing (EBH) and subjected to multipoint pulsed electron-beam treatment (MPEBT) of the surface layers. The coating material structure in the zones modified by MPEBT changes considerably, showing the presence of a large amount of supersaturated austenite matrix and eutectic colonies in the form of fine isolated inclusions. The eutectic colonies are fan-like. The leading phase in the eutectic colonies is vanadium carbide. After aging within the temperature range from 900 to 1100°C the structure of the modified zones exhibits a large amount of fine secondary carbides Cr7C3 rejected from the matrix. The secondary carbides are uniformly distributed in the bulk of the modified zones. The matrix after aging undergoes γ→α transformation and mainly has the martensitic structure. Aging increases significantly the hardness of the modified zones and abrasive wear resistance of the entire coating.
机译:本文报告了通过电子束性硬渣(EBH)沉积的共晶铬 - 钒铸铁涂层中结构形成的调查结果,并经受了表面层的多点脉冲电子束处理(MPEBT)。通过MPEBT改性的区域中的涂层材料结构显着变化,显示出诸如精细分离的夹杂物的形式的大量超饱和奥氏体基质和共晶菌落的存在。共晶菌落是风扇状的。共晶菌落中的前相是碳化钒。在900至1100℃的温度范围内老化后,改性区域的结构表现出大量的细次碳化物CR7C3从基质中排出。二次碳化物均匀地分布在大量改性区域中。老化后的基质经历γ→α转化,主要具有马氏体结构。老化显着增加了整个涂层的改性区域和磨料耐磨性的硬度。

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