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预热温度对TiC和PCD颗粒增强的激光焊接MMC钴基涂层结构和力学性能的影响

Influence of Preheating Temperature on Structural and Mechanical Properties of a Laser-Welded MMC Cobalt Based Coating Reinforced by TiC and PCD Particles.

作者信息

Czupryński Artur, Pawlyta Mirosława

机构信息

Department of Welding Engineering, Faculty of Mechanical Engineering, Silesian University of Technology, Konarskiego 18A, 44-100 Gliwice, Poland.

Materials Research Laboratory, Silesian University of Technology, Konarskiego 18A, 44-100 Gliwice, Poland.

出版信息

Materials (Basel). 2022 Feb 14;15(4):1400. doi: 10.3390/ma15041400.

Abstract

This article presents research on the structural and mechanical properties of an innovative metal matrix composite (MMC) coating designed for use in conditions of intense metal-mineral abrasive wear. The layer, which is intended to protect the working surface of drilling tools used in the oil and natural gas extraction sector, was padded using the multi-run technique on a sheet made of AISI 4715 low-alloy structural steel by Laser Direct Metal Deposition (LDMD) using a high-power fiber laser (FL). An innovative cobalt alloy matrix powder with a ceramic reinforcement of crushed titanium carbide (TiC) and tungsten-coated synthetic polycrystalline diamond (PCD) was used as the surfacing material. The influence of the preheating temperature of the base material on the susceptibility to cracking and abrasive wear of the composite coating was assessed. The structural properties of the coating were characterized by using methods such as optical microscopy, scanning electron microscopy (SEM), energy dispersion spectroscopy (EDS), transmission electron microscopy (TEM) and X-ray diffraction analysis (XRD). The mechanical properties of the hardfaced coating were assessed on the basis of the results of a metal-mineral abrasive wear resistance test, hardness measurement, and the observation of the abrasion area with a scanning laser microscope. The results of laboratory tests showed a slight dissolution of the tungsten coating protecting the synthetic PCD particles and the transfer of its components into the metallic matrix of the composite. Moreover, it was proved that an increase in the preheating temperature of the base material prior to welding has a positive effect on reducing the susceptibility of the coating to cracking, reducing the porosity of the metal deposit and increasing the resistance to abrasive wear.

摘要

本文介绍了一种创新型金属基复合材料(MMC)涂层的结构和力学性能研究,该涂层设计用于承受强烈金属-矿物磨料磨损的工况。该涂层旨在保护石油和天然气开采领域使用的钻井工具的工作表面,采用多道次技术,在由AISI 4715低合金结构钢制成的板材上,使用高功率光纤激光器(FL)通过激光直接金属沉积(LDMD)进行堆焊。一种创新的钴合金基体粉末,其陶瓷增强相为破碎的碳化钛(TiC)和涂覆钨的合成聚晶金刚石(PCD),用作堆焊材料。评估了基材预热温度对复合涂层开裂敏感性和磨料磨损的影响。通过光学显微镜、扫描电子显微镜(SEM)、能谱分析(EDS)、透射电子显微镜(TEM)和X射线衍射分析(XRD)等方法对涂层的结构性能进行了表征。基于金属-矿物耐磨试验结果、硬度测量以及用扫描激光显微镜观察磨损区域,对堆焊涂层的力学性能进行了评估。实验室测试结果表明,保护合成PCD颗粒的钨涂层略有溶解,其成分转移到复合材料的金属基体中。此外,还证明了焊接前基材预热温度的升高对降低涂层开裂敏感性、减少金属沉积物的孔隙率以及提高耐磨性能具有积极作用。

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