首页> 外文期刊>Surface & Coatings Technology >Tribological testing of commercial CrN, (Ti,Al)N and CrC/C PVD coatings - Evaluation of galling and wear characteristics against different high strength steels
【24h】

Tribological testing of commercial CrN, (Ti,Al)N and CrC/C PVD coatings - Evaluation of galling and wear characteristics against different high strength steels

机译:商用CrN,(Ti,Al)N和CrC / C PVD涂层的摩擦学测试-评估不同高强度钢的磨损和磨损特性

获取原文
获取原文并翻译 | 示例
           

摘要

The increasing use of high strength steels in a variety of mechanical engineering applications has illuminated problems associated with galling in sheet metal forming operations. Galling is a tribological phenomenon associated with transfer of material from the steel sheet to the tool surface during forming resulting in seizure of the tool/steel sheet contact and extensive scratching of the steel sheet surface. As a result, a number of concepts have been developed in order to reduce the tendency of galling in sheet metal forming, including the development of new dry lubricants, new forming tool steel grades and improved surface engineering treatments such as the deposition of low friction CVD- and PVD-coatings. In the present study the potential performance of three commercial PVD coatings, including CrN, (Ti,Al)N and a CrC/C DLC-based coating, in the forming of hot and cold rolled high strength steel as well as electro and hot-dip galvanized high strength steel has been evaluated using pin-on-disc testing under lubricated contact conditions. Post-test examination of the tribosurfaces using FEG-SEM and EDS analyses was performed in order to evaluate the mechanisms controlling the tendency to material transfer and wear. The results show that in contact with the hot and cold rolled steel the material pick-up tendency of the PVD coatings tend to increase in the order CrC/C-CrN-(Ti,Al)N while in contact with the two galvanized steel sheets, the CrC/C and the (Ti,Al)N coating show a significantly lower material pick-up tendency as compared with the CrN coating. Further, the substrate hardness has a strong influence on the wear of the PVD coatings and consequently on the friction characteristics and galling tendency of the coating/substrate composite. Low substrate hardness, resulting in a low load bearing capacity, increases the tendency to cracking and subsequently chipping of the brittle coating.
机译:高强度钢在各种机械工程应用中的使用日益增加,已解决了与钣金成形操作中的磨损有关的问题。磨损是一种摩擦现象,与材料在成形期间从钢板转移到工具表面有关,导致卡住工具/钢板接触并严重刮擦钢板表面。因此,为了减少金属板材成型中的磨损趋势,已经开发出许多概念,包括开发新的干性润滑剂,新的成型工具钢等级以及改进的表面工程处理方法,例如低摩擦CVD沉积-和PVD涂层。在本研究中,三种商用PVD涂层(包括CrN,(Ti,Al)N和CrC / C DLC基涂层)在热轧和冷轧高强度钢以及电热轧中的潜在性能。浸镀锌高强度钢已通过在润滑接触条件下的销盘测试进行了评估。使用FEG-SEM和EDS分析对摩擦表面进行后测试,以评估控制材料转移和磨损趋势的机制。结果表明,与热轧和冷轧钢接触时,PVD涂层的材料吸收趋势倾向于以CrC / C-CrN-(Ti,Al)N的顺序增加,而与两块镀锌钢板接触,与CrN涂层相比,CrC / C和(Ti,Al)N涂层显示出明显更低的材料吸收趋势。此外,基材硬度对PVD涂层的磨损有很大影响,因此对涂层/基材复合物的摩擦特性和磨损趋势有很大的影响。低的基材硬度导致低的承载能力,增加了脆性涂层开裂和随后崩裂的趋势。

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