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A new approach involving a multi transducer ultrasonic system for cleaning turbine engines' oil filters under practical conditions

机译:一种涉及多换能器超声系统的新方法,用于在实际条件下清洁涡轮发动机的机油滤清器

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The purpose of this paper is to provide a green technology that can clean turbine engine oil filters effectively in ships using ultrasound, with ultrasonic devices having a frequency of 25 kHz and different powers of 300 W and 600 W, respectively. The effects of temperature, ultrasonic cleaning times, pressure losses through the oil filter, solvent washing, and ultrasonic power devices were investigated. In addition, the cleaning efficiency of three modes (hand washing, preliminary washing and ultrasonic washing) were compared to assess their relative effectiveness. Experimental results revealed that the necessary ultrasonic time varied significantly depending on which solvent was used for washing. For instance, the optimum ultrasonic cleaning time was 50-60 min when the oil filter was cleaned in a solvent of kerosene oil (DO) and over 80 min when in a solvent of diesel oil (DO) using the same ultrasonic generator device (25 kHz, 600 W) and experimental conditions. Furthermore, microscopic examination did not reveal any damage or breakdown on or within the structure of the filter after ultrasonic cleaning, even in the filter's surfaces at a constantly low frequency of 25 kHz and power specific capacity (100 Wigal). Overall, it may be concluded that ultrasound-assisted oil filter washing is effective, requiring a significantly shorter time than manual washing. This ultrasonic method also shows promise as a green technology for washing oil filters in turbine engines in general and Vietnamese navy ships in particular, because of its high cleaning efficiency, operational simplicity and savings. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文的目的是提供一种绿色技术,该技术可以使用超声波,频率为25 kHz的超声波设备和分别具有300 W和600 W的不同功率的超声波设备有效地清洁涡轮发动机机油滤清器。研究了温度,超声清洗时间,通过滤油器的压力损失,溶剂清洗和超声功率装置的影响。此外,比较了三种模式(手洗,预洗和超声波洗)的清洁效率,以评估它们的相对有效性。实验结果表明,所需的超声时间会根据清洗所用的溶剂而有很大不同。例如,使用相同的超声波发生器设备将油滤器在煤油(DO)的溶剂中清洗的最佳超声清洗时间是50-60分钟,而在柴油(DO)的溶剂中的石油清洗器的最佳超声清洗时间是80分钟以上(25)。 kHz,600 W)和实验条件。此外,在超声清洗后,即使在过滤器表面以25 kHz的恒定低频和功率比容量(100 Wigal)进行的显微镜检查也没有发现过滤器结构上或内部的任何损坏或损坏。总的来说,可以得出结论,超声辅助滤油器清洗是有效的,比手动清洗需要的时间短得多。这种超声波方法还因为具有高清洁效率,操作简便和节省成本的优点,因此有望作为一种绿色技术用于清洗普通涡轮发动机,尤其是越南海军舰船中的机油滤清器。 (C)2016 Elsevier B.V.保留所有权利。

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