Kaczorowski Witold, Świątek Hanna, Łuczak Klaudia, Głuszek Marta, Cłapa Marian
Faculty of Mechanical Engineering, Institute of Material Sciences and Engineering, Lodz University of Technology, 94-924 Lodz, Poland.
Department of Solid State Physics, Faculty of Applied Physics and Mathematics, Gdansk University of Technology, 80-233 Gdansk, Poland.
Materials (Basel). 2021 Jan 17;14(2):433. doi: 10.3390/ma14020433.
The processes of the deposition of carbon coatings on PDMS (polydimethylsiloxane) substrates using plasma techniques are widely used in a large number of studies, in applications ranging from electronic to biological. That is why the potential improvement of their functional properties, including tribological properties, seems very interesting. This paper presents an analysis of the impact of plasma pre-treatment on the properties of the produced diamond-like carbon (DLC) coatings, including changes in the coefficients of friction and wear rates. The initial modification processes were performed using two different techniques based on low-pressure plasma (RF PACVD, radio-frequency plasma-assisted chemical vapour deposition) and dielectric barrier discharge (DBD) plasma. The effects of the above-mentioned treatments on the geometric structure of the PDMS surface and its water contact angles and stability over time were determined. The basic properties of the DLC coatings produced on unmodified substrates were compared to those of the coatings subjected to plasma pre-treatment. The most interesting effects in terms of tribological properties were achieved after the DBD process and production of DLC coatings, achieving a decrease in wear rates to 2.45 × 10 mm/Nm. The tests demonstrate that the cross-linking of the polymer substrate occurs during plasma pre-treatment.
使用等离子体技术在聚二甲基硅氧烷(PDMS)基底上沉积碳涂层的工艺在大量研究中被广泛应用,其应用范围涵盖从电子到生物等领域。正因如此,改善其功能特性(包括摩擦学特性)的潜力显得十分有趣。本文分析了等离子体预处理对所制备的类金刚石碳(DLC)涂层性能的影响,包括摩擦系数和磨损率的变化。初始改性过程采用了基于低压等离子体的两种不同技术(射频等离子体辅助化学气相沉积,RF PACVD)和介质阻挡放电(DBD)等离子体。确定了上述处理对PDMS表面几何结构及其水接触角和随时间稳定性的影响。将未改性基底上制备的DLC涂层的基本性能与经过等离子体预处理的涂层性能进行了比较。在DBD处理和DLC涂层制备后,在摩擦学性能方面取得了最有趣的效果,磨损率降低至2.45×10⁻⁶mm/Nm。测试表明,在等离子体预处理过程中聚合物基底发生了交联。