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首页> 外文期刊>Diamond and Related Materials >On the adhesion and wear resistance of DLC films deposited on nitrile butadiene rubber: A Ti-C interlayer
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On the adhesion and wear resistance of DLC films deposited on nitrile butadiene rubber: A Ti-C interlayer

机译:丁基丁二烯橡胶沉积DLC膜的粘附性和耐磨性:Ti-C中间层

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摘要

To promote the adhesion strength between diamond-like carbon (DLC) films and nitrile butadiene rubber (NBR) substrates, titanium-doped carbon (Ti-C) films prepared by dual-target magnetron sputtering under varied substrate bias voltages were used as an interlayer on the rough NBR The surface topography and structure of Ti-C films were investigated by atomic force microscopy (AFM) and Raman spectra. Raman analysis indicates that the increase of substrate bias voltage leads to an increase of the number or the size of sp(2) clusters in the Ti-C interlayer. The adhesion strength and tribological properties of DLC films coated on NBR substrate were scrutinized by a scratch tester and a ball-on-disk tribometer, respectively. It was found that DLC film with a Ti-C interlayer at a certain bias voltage exhibited superior wear resistance with a low coefficient of friction (CoF) during the sliding of 6000 laps. No clear damages in the coatings were observed from the wear tracks. Besides, the scratch test also revealed a reliable adhesion when the interlayer was prepared at -150 V, as confirmed by a scratch crack width of similar to 50 mu m as compared to that of the pure DLC film increasing to similar to 120 mu m. Therefore, a Ti-C interlayer could significantly enhance the adhesion and wear resistance of DLC thin films deposited on NBR.
机译:为了促进金刚石碳(DLC)膜和丁腈丁二烯橡胶(NUR)基材之间的粘合强度,使用在各种基板偏置电压下通过双靶磁控溅射制备的钛掺杂碳(Ti-C)膜作为中间层在粗糙的NBR上,通过原子力显微镜(AFM)和拉曼光谱研究了Ti-C膜的表面形貌和结构。拉曼分析表明,基板偏置电压的增加导致Ti-C中间层中的SP(2)簇的数量或尺寸的增加。分别通过划痕测试仪和圆盘摩擦计仔细筛选涂覆在NBR底物上的DLC膜的粘附强度和摩擦学性质。发现在某种偏置电压下具有Ti-C中间层的DLC膜表现出优异的耐磨性,在6000圈的滑动期间具有低摩擦系数(COF)。从磨损轨道观察到涂层中没有明确的损坏。此外,划痕试验还显示在-150V的中间层在-150V中制备中间层时,通过与纯DLC膜的划痕裂纹宽度的划痕裂纹宽度的剥离裂缝宽度,与120μm相似的划痕裂纹宽度证实。因此,Ti-C中间层可以显着提高沉积在NBR上的DLC薄膜的粘附性和耐磨性。

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  • 来源
    《Diamond and Related Materials》 |2020年第2020期|共11页
  • 作者单位

    Hainan Univ Sch Mat Sci &

    Engn Educ Minist Key Lab Adv Mat Trop Isl Resources Haikou 570228 Hainan Peoples R China;

    Hainan Univ Sch Mat Sci &

    Engn Educ Minist Key Lab Adv Mat Trop Isl Resources Haikou 570228 Hainan Peoples R China;

    Univ Groningen Engn &

    Technol Inst Groningen Dept Adv Prod Engn Nijenborgh 4 NL-9747 AG Groningen Netherlands;

    Hainan Univ Sch Mat Sci &

    Engn Educ Minist Key Lab Adv Mat Trop Isl Resources Haikou 570228 Hainan Peoples R China;

    Hainan Univ Sch Mat Sci &

    Engn Educ Minist Key Lab Adv Mat Trop Isl Resources Haikou 570228 Hainan Peoples R China;

    Special Glass Key Lab Hainan Prov Haikou 570228 Hainan Peoples R China;

    Hainan Univ Sch Mat Sci &

    Engn Educ Minist Key Lab Adv Mat Trop Isl Resources Haikou 570228 Hainan Peoples R China;

    Hainan Univ Sch Mat Sci &

    Engn Educ Minist Key Lab Adv Mat Trop Isl Resources Haikou 570228 Hainan Peoples R China;

    Univ Groningen Engn &

    Technol Inst Groningen Dept Adv Prod Engn Nijenborgh 4 NL-9747 AG Groningen Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 电热工业、高温制品工业;第Ⅳ族非金属元素及其无机化合物;人造宝石、合成宝石的生产;
  • 关键词

    NBR; DLC; Ti-C interlayer; Adhesion; Wear resistance;

    机译:NBR;DLC;Ti-C中间层;粘附;耐磨性;

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