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首页> 外文期刊>Petroleum Science and Technology >Treatment and restoration of used Mineral-Oil-Based hydraulic fluids from different machines. Part 1: Dewatering, filtration and effect of viscosity modifier
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Treatment and restoration of used Mineral-Oil-Based hydraulic fluids from different machines. Part 1: Dewatering, filtration and effect of viscosity modifier

机译:不同机器的使用矿物油基液压流体的处理与恢复。 第1部分:脱水,过滤和粘度改性剂的影响

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In this work, characterization and treatment of used hydraulic oil samples were performed in three steps. In the first step, the physical and the chemical properties of fresh and used hydraulic mineral oil samples from various centrifugal casting and pipe drawing machines were investigated according to ASTM D 6158. Results show that water content, solid particles count and depletion of additives have considerably affected most of the oil properties. Used oil samples failed in the appearance, thermal stability, oxidation stability, foaming tendency, water content and particles count.In the second step, a simple methodology for dewatering and filtration was adopted. This methodology involved settling, followed by dry-air bubbling for oil dehydration and finally vacuum filtration. Such process successfully removed considerable portion of solid particles and water in used oil samples. Appearance, pour point, water content, particles count, and acid number were restored to the allowable limits. While water separability, oxidation stability, thermal stability and foaming tendency still failed the limits after treatment. It is obvious that additives will be needed to restore the latter properties.In the third step, viscosity modifier additive was added to the oil samples to enhance viscous properties. A linear increase in kinematic viscosity was witnessed at 100 degrees C, while at 40 degrees C, an initial linear increase at low viscosities was followed by lower slopes at higher viscosities.
机译:在这项工作中,三个步骤进行了使用的液压油样品的表征和处理。在第一步中,根据ASTM D 6158研究了来自各种离心铸造和管道拉丝机的新鲜和使用的液压矿物油样品的物理和化学性质。结果表明水含量,固体颗粒计数和添加剂的耗竭具有大大影响了大部分的油质。二手油样品在外观,热稳定性,氧化稳定性,发泡趋势,水含量和粒子计数中失效。第二步,采用了一种简单的脱水和过滤方法。这种方法涉及沉降,然后干燥空气鼓泡用于油脱水,最后真空过滤。这种方法成功地除去了二手油样中的可相当一部分的固体颗粒和水。外观,倾点,含水量,颗粒计数和酸值恢复到允许的限度。虽然水可分离性,氧化稳定性,热稳定性和发泡倾向仍未在处理后失效。显然,将需要添加剂来恢复后一种特性。第三步,将粘度调节剂添加剂加入油样中以增强粘性特性。在100℃下见证了运动粘度的线性增加,而在40℃下,低粘度下的初始线性增加,然后在较高粘度下较低斜率。

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