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Structure and Properties of Composite Nickel Coatings Deposited by Means of Programmable Pulsed Current under Laser Irradiation

机译:激光照射下可编程脉冲电流沉积复合镍涂层的结构与性能

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摘要

A method for the formation of composite electrolytic coatings in the process of electrodeposition in an electrolyte with ultradisperse diamond (UDD) particles in the programmable pulsed current regime under simultaneous laser irradiation has been developed. This method provides the layer-by-layer deposition of gradient nickel coatings 15-20 μm in thickness with a variable content of UDD particles along their depth. The amount of UDD particles is minimal (0.10-0.13 at %) in the layers deposited in the initial period of this process, whereas the concentration of UDD particles in the layers formed at the later process stages grows to 0.19-0.26 at %. The concentration gradient of UDD particles along the depth improves the adhesion properties and wear resistance of coatings and provides a 16% decrease in the consumption of UDD particles with a local increase in the concentration of UDD particles in a coating to 0.32 at %.
机译:已经开发了一种在同时激光照射下可编程脉冲电流中的超强金刚石(UDD)颗粒在电解质中形成复合电解涂层的方法。该方法提供沿厚度15-20μm的梯度镍涂层的层叠层沉积,其厚度是沿其深度的可变含量的UDD颗粒。在该方法的初始时段中沉积的层中,UDD颗粒的量最小(0.10-0.13at%),而在后面的工艺阶段形成的层中的UDD颗粒的浓度生长至0.19-0.26at%。沿深度的UDD颗粒的浓度梯度提高了涂层的粘附性和耐磨性,并在涂层中的UDD颗粒浓度的局部增加至0.32at%时,提供了16%的降低。

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