Friction and contact temperature in dry rolling-sliding contacts with MoS2-bonded and a-C:H:Zr DLC coatings

IF 3.4 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY International Journal of Mechanical and Materials Engineering Pub Date : 2021-06-15 DOI:10.1186/s40712-021-00129-3
Stefan Hofmann, Mustafa Yilmaz, Enzo Maier, Thomas Lohner, Karsten Stahl
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引用次数: 1

Abstract

Gearboxes are usually lubricated with oil or grease to reduce friction and wear and to dissipate heat. However, gearbox applications that cannot be lubricated with oil or grease, for example in the space or food industry, are commonly lubricated with solid lubricants. Especially solid lubricants with a lamellar sliding mechanism like graphite and molybdenum disulfide (MoS2) or diamond-like carbon (DLC) coatings can enable very low coefficients of friction. This study investigates the friction and temperature behavior of surface coatings in rolling-sliding contacts for the application in dry lubricated gears. In an experimental setup on a twin-disk test rig, case-hardened steel 16MnCr5E (AISI5115) is considered as substrate material together with an amorphous, hydrogenated, and metal-containing a-C:H:Zr DLC coating (ZrCg) and a MoS2-bonded coating (MoS2-BoC). The friction curves show reduced coefficients of friction and a significantly increased operating area for both surface coatings. Due to the sufficient electrical insulation of the MoS2-BoC, the application of thin-film temperature measurement-known from lubricated contacts-was successfully transfered to dry rolling-sliding contacts. The results of the contact temperature measurements reveal pronounced thermal insulation with MoS2-BoC, which can interefere the sliding mechanism of MoS2 by accelerated oxidation. The study shows that the application of dry lubricated gears under ambient air conditions is challenging as the tribological and thermal behavior requires tailored surface coatings.

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mos2和a-C:H:Zr DLC涂层干滚滑接触的摩擦和接触温度
齿轮箱通常用油或润滑脂润滑,以减少摩擦和磨损,并散发热量。然而,不能用油或润滑脂润滑的齿轮箱应用,例如在空间或食品工业中,通常使用固体润滑剂进行润滑。特别是具有层状滑动机制的固体润滑剂,如石墨和二硫化钼(MoS2)或类金刚石碳(DLC)涂层,可以实现非常低的摩擦系数。本文研究了干润滑齿轮滚动滑动接触表面涂层的摩擦和温度行为。在双盘式实验台上,将淬火钢16MnCr5E (AISI5115)与非晶、氢化和含金属的a- c:H:Zr DLC涂层(ZrCg)和mos2结合涂层(MoS2-BoC)一起作为衬底材料。摩擦曲线显示两种表面涂层的摩擦系数减小,操作面积显著增加。由于MoS2-BoC具有足够的电绝缘性,薄膜温度测量的应用(从润滑触点开始)成功地转移到干滚动滑动触点。接触温度测量结果表明,MoS2- boc具有明显的隔热作用,这可能会干扰MoS2的加速氧化滑动机制。研究表明,干润滑齿轮在环境空气条件下的应用是具有挑战性的,因为摩擦学和热行为需要定制的表面涂层。
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CiteScore
8.60
自引率
0.00%
发文量
1
审稿时长
13 weeks
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