某轻型压点火发动机耐久性循环试验润滑油降解及其对制动比油耗的影响分析

R. Sala, Kamil Węglarz, A. Suchecki
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引用次数: 0

摘要

欧6排放标准要求新注册车辆符合法定废气排放限制,并要求轻型车辆制造商遵守在役车辆16万公里耐久性要求。虽然没有对燃料消耗设定法律限制,但制造商有义务减少车队的碳足迹,以便在2035年之后实现碳中和的移动性。本文的目的是分析在一个标准化的耐久性测试周期中,不同的油和粘度等级的退化对断裂比油耗(BSFC)变化的影响。每种候选油在试验台上进行了300小时的耐久性测试,没有任何换油。实验室测试的目的是再现车辆在极端实际驾驶中可能经历的长寿命发动机油类型的最坏工况和退化过程。为了确定机油劣化对BSFC曲线的影响,在整个试车过程中对发动机运行参数进行了连续监测。此外,还对机油进行了化学分析,并对涡轮增压器压气机一侧形成的固体沉积物进行了评估。测试结果显示,在耐久性测试周期内,候选油之间的BSFC值差异高达3.5%。观察到的BSFC的增加与发动机效率的降低直接相关,并可能导致发动机油耗的增加,这反过来又对环境保护目标产生不利影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of lubricating oil degradation and its influence on brake specific fuel consumption of a light-duty compression-ignition engine running a durability cycle on a test stand
The Euro 6 emission standard required compliance with legal exhaust emissions limits for newly registered vehicles and obligates light duty vehicle manufacturers to respect the 160,000 km durability requirements for in-service conformity. Although there is no legal limit set for fuel consumption, manufacturers are obligated to decrease the carbon footprint of vehicle fleets in order to obtain carbon neutral mobility beyond 2035. The aim of this paper is to analyse the impact of various oils’ and viscosity grades’ degradation on the change in break specific fuel consumption (BSFC) measured over a standardized durability test cycle. Each oil candidate underwent 300 h of durability test running performed on a test bed, without any oil changes. The purpose of the laboratory test was to reproduce the worst-case operating conditions and degradation process of the long-life engine oil type that can be experienced during extreme real life driving of a vehicle. In order to define the influence of the engine oil deterioration on the BSFC profile, the engine operation parameters were continually monitored throughout the test run. Additionally, chemical analysis of the oil was performed and the solid deposits formed on the turbocharger’s compressor side were evaluated. The test results revealed differences up to 3.5% in the BSFC values between the oil candidates tested over the durability cycle. The observed BSFC increase was directly related to the decrease in engine efficiency and can cause higher fuel consumption of the engine, which in turn has an adverse effect on environmental protection goals.
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来源期刊
CiteScore
0.90
自引率
0.00%
发文量
30
审稿时长
6 weeks
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