...
首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >105056 Evaluation of the structure and properties of the hard TiAlN-(TiAlN/CrAlSiN)-TiAlN multiple coatings deposited on different substrate materials
【24h】

105056 Evaluation of the structure and properties of the hard TiAlN-(TiAlN/CrAlSiN)-TiAlN multiple coatings deposited on different substrate materials

机译:105056评价硬质TiAlN-(TiAln / Cralin)的结构和性质 - 沉积在不同的基材材料上的多涂层

获取原文
获取原文并翻译 | 示例

摘要

Substrate materials have a significant influence on the coating properties, especially on the adhesion of coating to substrate. Therefore, the understanding of the substrate materials effect on deposited coatings will lead to a better performance of the coated cutting tools. In this investigation, the TiAlN-(TiAlN/CrAlSiN)-TiAlN multiple coatings have been prepared by arc ion plating technology on cermet, cemented carbide and high-speed steel substrates, respectively. The effects of substrate materials on microstructure, hardness, adhesion strength as well as tribological properties of the as-deposited coatings were investigated. The results show that the TiAlN-(TiAlN/ CrAlSiN)-TiAlN multiple coatings on all substrates exhibit a single (200) preferred fcc-CrN structure with columnar grain morphology. With the finest grains of 16.2 rim and the strong solid solution strengthening effect, the coating deposited on the cermet substrate possesses the highest hardness. However, the TiAlN-(TiAlN/CrAlSiN)-TiAlN multiple coating obtained on the cemented carbide substrate has the highest adhesion of 95 N due to the slightly lower thermal expansion coefficient of the cemented carbide substrate than the inner TiAlN layer as well as the small hardness difference between the cemented carbide substrate and the coating. Owing to the low friction coefficient and high hardness, the TiAlN-(TiAlN/CrAlSiN)-TiAlN multiple coating prepared on the cemented carbide substrate exhibits the best wear resistance. Besides, the wear mechanism of the TiAlN(TiAlN/CrAlSiN)-TiAlN multiple coatings is the combination of abrasive, oxidative and adhesive wear, which is little affected by the substrate materials.
机译:基材材料对涂层性能有显着影响,特别是在涂层对基材的粘附性上。因此,对沉积涂层的基材效果的理解将导致涂覆的切削刀具的更好性能。在该研究中,通过CERMET,硬质合金和高速钢基板上的电弧离子电镀技术制备了TiAln-(TiAln / Cralsin)-tialn多涂层。研究了基底材料对微观结构,硬度,粘合强度以及沉积涂层的摩擦学性质的影响。结果表明,所有底物上的TiAlN-(TiAln / Cralsin) - 在所有基材上的多涂层具有柱状晶粒形态的单(200)优选的FCC-CRN结构。具有16.2轮辋的最佳颗粒和强固溶溶液强化效果,沉积在金属陶瓷基底上的涂层具有最高的硬度。然而,由于稠热的碳化物基材的热膨胀系数略低于内部TiAlN层以及小型碳化物基材以及小的碳化物基板的热膨胀系数略低于内部TiAln层以及小的碳化物衬底而获得的TiAlN-(TiAln / Cralsin) - 95 n的粘附性最高。硬质合金基材和涂层之间的硬度差异。由于低摩擦系数和高硬度,在静碳碳化物基材上制备的TiAlN-(TiAln / Cralsin) - 粒子多涂层具有最佳的耐磨性。此外,TiAlN(TiAln / Cralsin)-tialn多涂层的磨损机理是磨料,氧化和粘合剂磨损的组合,这对基材材料的影响很少。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号