内燃机压力控制电磁致动器的结构和材料分析

Jarosław Mamala, M. Graba, K. Prażnowski, B. Tomczuk, A. Waindok
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引用次数: 0

摘要

文章介绍了用于调节内燃机气缸压缩压力的电磁致动器设计参数的选择过程。电磁致动器安装在单缸内燃机的正时系统中,这就要求其在力和工作频率方面有基本的设计参数。针对该电磁致动器,对两种材料的线性电磁致动器的设计变体进行了现场计算。有限元法被应用于电磁致动器的计算机辅助设计。分析了磁路和绕组尺寸对磁场分布的影响。出于设计原因,在保持致动器外部尺寸不变的情况下,改变了磁场感应器的厚度和高度以及定子磁极的尺寸。所有这些工作的目的都是为了提高内燃机的性能,即提高发动机部分负荷的效率。在这一领域,内燃机的特点是效率低,明显偏离最大值,同时,在车辆正常运行期间是最常被利用的领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural and Material Analysis of an Electromagnetic Actuator for Pressure Control in an Internal Combustion Engine
The article describes the process of selecting the design parameters of the electromagnetic actuator, which was used to regulate the compression pressure in the cylinder of an internal combustion engine. The electromagnetic actuator was installed in the timing system of a single-cylinder internal combustion engine, which forced its basic design parameters in terms of force and frequency of operation. For the electromagnetic actuator in question, field calculations of the esign variants of the linear electromagnetic actuator for two types of materials were conducted. The finite element method was applied to the computer-aided design of electromagnetic actuators. The influence of the magnetic circuit and the dimensions of the windings on the distribution of the magnetic field were analyzed. The thickness and height of the magnetic field induces, and the dimensions of the stator poles have been changed while maintaining the same external dimensions of the actuator for design reasons. All this work was aimed at improving the performance of the internal combustion engine in terms of improving efficiency in terms of partial engine loads. In this area, the internal combustion engine is characterized by low efficiency, significantly deviating from the maximum, and at the same time, during normal operation of vehicles is the area most often exploited.
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