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METHOD FOR PRODUCING AN ABRASION-RESISTANT COATING ON SURFACE OF 3D PRINTED TITANIUM ALLOY COMPONENTS

机译:在3D印刷钛合金组分表面上生产耐磨涂层的方法

摘要

The present invention relates to a method for producing an abrasion-resistant coating on surface of a 3D printed titanium alloy component, which belongs to the field of surface modification. The method comprises using spherical TC4 titanium alloy powder as a base material and adopting selective laser melting (SLM) technology to manufacture a 3D printed titanium alloy component in a layer-by-layer stacking manner, using graphene oxide to perform friction-induction treatment, and making the graphene oxide infiltrate into the surface of the TC4 titanium alloy component to obtain a graphene oxide surface coating. The goal of improving the friction and wear performance of the TC4 titanium alloy printed components is achieved. The preparation method is simple, and the steps are easy to operate. Introducing the graphene oxide is beneficial to reduce the generation of wear debris during the friction and wear processes and improve tribological characteristics of the base material.
机译:本发明涉及一种用于在3D印刷钛合金组分表面上产生耐磨涂层的方法,其属于表面改性领域。该方法包括使用球形TC4钛合金粉末作为基材,采用选择性激光熔化(SLM)技术以逐层堆叠方式制造3D印刷的钛合金组分,使用石墨烯氧化物进行摩擦感应处理,并使得石墨烯氧化物渗透到TC4钛合金组分的表面中以获得石墨烯氧化物表面涂层。实现了改善TC4钛合金印刷部件的摩擦和磨损性能的目标。制备方法很简单,步骤易于操作。介绍石墨烯氧化物有利于减少摩擦和磨损过程中的磨损碎片的产生,提高基材的摩擦学特性。

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