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Improvements in Lubricating Oil Quality by an On Line Oil Recycler for a Refuse Truck Using in Service Testing

机译:用于垃圾桶的垃圾回收器润滑油质量的改进

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摘要

A method of cleaning lubricating oil on line was investigated using a fine bypass particulate filter followed by an infra red heater. Two bypass filter sizes of 6 and 1 micron were investigated, both filter sizes were effective but the one micron filter had the greatest benefit. This was tested on two nominally identical EURO 1 emissions compliance refuse trucks, fitted with Perkins Phazer 210Ti 6 liter turbocharged intercooled engines and coded as RT320 and RT321. These vehicles had lubricating oil deterioration and emissions characteristics that were significantly different, in spite of their similar age and total mileage. RT321 showed an apparent heavier black smoke than RT320. Comparison was made with the oil quality and fuel and lubricating oil consumption on the same vehicles and engines with and without the on-line bypass oil recycler. Engine oils were sampled and analyzed about every 400 miles. Both vehicles started the test with an oil drain and fresh lubricating oil. The two refuse trucks were tested in a different sequence, the RT320 without the recycler fitted and then fitted later and the RT321 with the recycler fitted and then removed later in the test and both without any oil change. The RT320 was also the one with the finer bypass filter. The test mileage was nearly 8,000 miles both trucks. The amount of fresh oil top up was monitored and the results corrected for this dilution effect. The results showed that the on-line bypass oil recycler cleaning system reduced the rate of fall of the TBN by 23% and 49% for two trucks respectively. A 73% reduction in the rate of increase of the TAN incurred for one of the trucks. The soot in oil was reduced by mA70% on average for both trucks.ududThe reduction in the rate of carbon accumulation in oil was 55% for the refuse truck with heavy smoke emissions. There was a 56% reduction in iron. The rate of oxidation, nitration and sulfation of oils was significantly reduced. There was an improvement of the fuel economy of about 3%. The lubricating oil consumption was reduced by 40% for 1 micron recycler filter and 30% for 6 micron filter.
机译:研究了一种使用细旁路微粒过滤器和红外线加热器清洁在线润滑油的方法。研究了两种尺寸分别为6和1微米的旁路过滤器,两种尺寸的过滤器均有效,但一个微米的过滤器具有最大的优势。这在两辆名义上完全相同的符合EURO 1排放标准的垃圾车上进行了测试,这些卡车配备了Perkins Phazer 210Ti 6升涡轮增压中冷发动机,编码为RT320和RT321。尽管它们的使用年限和总行驶里程相似,但这些车辆的润滑油劣化和排放特性却大不相同。 RT321显示出比RT320明显黑烟。比较了使用和不使用在线旁路机油回收器的相同车辆和发动机的机油质量,燃料和润滑油消耗。大约每400英里对机油进行采样和分析。这两辆车都以放油和新鲜润滑油开始了测试。这两辆垃圾车的测试顺序不同,没有安装回收站的RT320,然后再安装,而安装回收站的RT321,然后在测试后移走,并且两者都没有换油。 RT320也是配备更精细的旁路过滤器的产品。两辆卡车的测试里程均接近8,000英里。监测新鲜油补充量,并针对该稀释效果校正结果。结果表明,在线旁路油循环器清洁系统使两辆卡车的TBN下降率分别降低了23%和49%。其中一辆卡车的TAN增长率降低了73%。两辆卡车的油烟灰平均降低了 mA70%。 ud ud对于排放大量烟雾的垃圾车,油中碳的积聚率降低了55%。铁减少了56%。油的氧化,硝化和硫酸化速率大大降低。燃油经济性提高了约3%。对于1微米的循环过滤器,润滑油消耗降低了40%,对于6微米的过滤器,润滑油消耗降低了30%。

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