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Construction equipment engine performance degradation due to environmental and operation factors in Latin America

机译:施工设备发动机性能退化由于拉丁美洲的环境和运营因素

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The purpose of this paper is to determine whether the altitude at which construction equipment operates affects or contributes to increased engine wear. Design/methodology/approach - The study includes the evaluation of two John Deere PowerTech Plus 6,068 Tier 3 diesel engines, the utilization of OSA3 oil analysis laboratory equipment to analyze oil samples, the employment of standard sampling scope and methods, and the analysis of key Engine Control Unit (ECU) data points (machine utilization, Diagnostic Trouble Codes (DTCs) and engine sensor data). Findings — At 250 h of engine oil use, the engine operating at 3,657 meters above sea level (MASL) had considerably more wear than the engine operating at 416 MASL. The leading and earliest indicator of engine wear was a high level of iron particles in the engine oil, reaching abnormal levels at 218 h. The following engine oil contaminants were more prevalent in the engine operating at the higher altitude: potassium, glycol, water and soot. Furthermore, the engine operating at higher altitude also presented abnormal and critical levels of oil viscosity, Total Base Number and oxidation. When comparing the oil sample analysis with the engine ECU data, it was determined that engine idling is a contributor for soot accumulation in the engine operating at the higher altitude. The most prevalent DTCs were water in fuel, extreme low coolant levels and extreme high exhaust manifold temperature. The ECU operating data demonstrated that the higher altitude environment caused the engine to miss-fire and rail pressure was irregular. Practical implications — Many of the mining operations and construction projects are accomplished at mid to high altitudes. This research provides a comparison of how construction equipment engines are affected by this type of environment (i.e. higher altitudes, cooler temperatures and lower atmospheric pressure). Consequently, service engineers can implement maintenance strategies to minimize internal engine wear for equipment operating at higher altitudes. Originality/value - The main contribution of this paper will help construction equipment end-users, maintenance engineers and manufacturers to implement mitigation strategies to improve engine durability for countries with operating conditions similar to those described in this research.
机译:本文的目的是确定建筑设备是否经营的高度会影响或有助于提高发动机磨损。设计/方法/方法 - 该研究包括评估两台John Deere Powertech加6,068层三级柴油发动机,利用OSA3石油分析实验室设备分析油样,标准采样范围和方法的就业,以及关键的分析发动机控制单元(ECU)数据点(机器利用率,诊断故障代码(DTCS)和发动机传感器数据)。调查结果 - 发动机油的250小时,发动机在海拔3,657米(MASL)上运行的发动机比416 MasL的发动机更大的磨损。发动机磨损的领先和最早指标是发动机油中的高水平的铁颗粒,在218小时达到异常水平。在高度高度的发动机运行中,以下发动机油污染物更普遍:钾,乙二醇,水和烟灰。此外,在较高海拔地区操作的发动机也呈现出异常和临界水平的油粘度,总基数和氧化。当使用发动机ECU数据进行比较油采样分析时,确定发动机空转是在更高海拔地区操作的发动机中烟灰累积的贡献者。最普遍的DTC是燃料,极端低冷却剂水平和极端高排气歧管温度的水。 ECU操作数据表明,较高的高度环境导致发动机失去火灾和轨道压力不规则。实际意义 - 许多采矿业务和建筑项目在中高海拔地区完成。该研究提供了施工设备发动机如何受到这种环境的影响的比较(即,较高的高度,冷却温度和较低的大气压)。因此,服务工程师可以实施维护策略,以最大限度地减少在较高海拔地区操作的设备的内部发动机磨损。原创性/价值 - 本文的主要贡献将有助于建设设备最终用户,维护工程师和制造商实施缓解策略,以提高具有与本研究中所述的操作条件相似的国家的发动机耐用性。

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