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Cr-N硬质镀层的断裂韧性和冲击疲劳特性研究 被引量:3

Fracture Toughness and Repeated Impact Fatigue Properties of Cr-N Hard Coatings
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摘要 采用离子束辅助磁控溅射技术(IBAMS)沉积Cr-N硬质镀层,用压入法评定镀层的断裂韧性,多次冲击试验法测定镀层的多冲疲劳抗力,探讨了多冲疲劳抗力与镀层组织结构和断裂韧性等机械性能的关系。结果表明,通过调节离子束辅助轰击能量,可以提高Cr-N镀层的硬度和断裂韧性。镀层断裂韧性的提高除了与晶块尺寸减小有关外,还与离子轰击导致镀层致密度增加相关。在冲击载荷作用下Cr-N镀层的失效方式为内聚力型疲劳剥落,随硬度和断裂韧性增加,镀层的抗多次冲击疲劳能力提高。 Cr-N hard coatings were deposited by ion beam assisted magnetron sputtering technique(IBAMS). Indentation test was used to measure the coatings fracture toughness. The repeated impact test was applied to evaluate the impact fatigue resistance. The relations of the impact fatigue resistance with coatings microstructure and mechanical properties were analyzed. The results show that both the hardness and fracture toughness of Cr-N coatings are improved by adjusting ion assisted bombardment energy. The improvements of hardness and fracture toughness are related to the decreasing grain size and coatings densification. The failure mode of Cr-N coatings under impact load is cohesion fatigue failure. The impact fatigue resistance is improved with coatings hardness and fracture toughness increasing.
出处 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2010年第A01期35-38,共4页 Rare Metal Materials and Engineering
基金 国家自然科学基金项目(50771070) 山西省科技攻关项目(20100321078-02)
关键词 Cr-N镀层 离子束辅助磁控溅射 断裂韧性 多次冲击 Cr-N coatings IBAMS fracture toughness repeated impact
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  • 1刘军海,苏启生,陆明珠.亚微压入法硬度测量[J].理化检验(物理分册),1994,30(6):32-34. 被引量:1
  • 2Hovsepian P E, Lewis D B, Mtinz W D, Recent progress in large scale manufacturing of multilayer/superlattice hard coatings[J]. Surf Coat Technol. 2000, 133-134:166-175.
  • 3Musil J. PolákováH, Hard nanocomposite Zr-Y-N coatings, correlation between hardness and structure[J]. Surf Coat Technol. 2000.127 : 99- 106.
  • 4Veprek S,Niederhofer A. Moto K .et al. Composition.nano-structure and origin of the ultrahardness in nc-TiN/a-Si3N4/a-and nc-TiSi2 nanocomposites with Hv=80 to≥105 GPa[J]. Surf Coat Technol. 2000,133-134:152-159.
  • 5Holubar P,Jilek M,Sima M,Present and possible future applications of superhard nanocomposite coatings[J]. Surf Coat Technol. 2000,133- 134 .- 145- 151.
  • 6Vperek S, Nesladek P. Niederhofer A, et al. Recent Progress in the superhard nanocrystalline composites:towards their industrialization and understanding of the superhardness [J]. Surf Coat Technol. 1998, 108- 109:138- 147.
  • 7Musil J, Vlcek J, Magnetron sputtering of hard nanocomposite coatings and their properties [J]. Surf Coat Technol. 2001,142- 144 : 557- 556.
  • 8Musil J, Leipner L. Kolega M, Nanocrystalline and nanocomposite CrCu and CrCu-N films prepared by magnetron sputtering [J]. Surf. Coat, Technol. 1999,115:32-37.
  • 9Sproul W D, New routes in the preparation of mechanically hard films[J]. Science, 1996,273 : 889-892.
  • 10Heister U. Krempel-Hesse J, Szczyrbowski J. Twin-MagTM I :attempts to improve an excellent sputter tool[J]. Thin Solid Films. 1999,351 : 27-31.

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