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Multibody Dynamics Model of a Diesel Engine and Timing Gear Train with Experimental Validation

机译:柴油机和正时齿轮系多体动力学模型的实验验证

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High-powered Diesel engines typically use a timing gear train to couple/synchronize the camshaft rotation with the crankshaft and also to drive the accessories such as the fuel and oil pumps. In this paper a high-fidelity multibody dynamics model of a 6-cylinder inline Diesel engine and its timing gear train is presented. The multibody system representing the system is modeled using rigid bodies, torsional springs, revolute joints, prismatic joints, and rotational/linear actuators. A penalty model is used to impose joint and normal contact constraints. The normal contact penalty stiffness and damping techniques are used to model gear tooth stiffness and damping. The contact model detects contact between discrete points on the surface of a gear tooth (master contact surface) and a polygonal surface representation of the mating gear tooth (slave contact surface). A recursive bounding box/bounding sphere contact search algorithm is used to allow fast contact detection. Time-varying forces are applied to the cylinders to model the cylinder pressure variations due to combustion events as a function of the crank angle. The governing equations of motion are solved along with joint/constraint equations using a time-accurate explicit solution procedure. The model is partially validated by comparing its predictions of the torsional vibrations of a Diesel engine's crankshaft and moving parts to experimental measurements. Emphasis is given on the practicality of the modeling methods to industry.
机译:高功率的柴油发动机通常使用定时齿轮系与曲轴耦合/同步凸轮轴旋转,并还驱动诸如燃料和油泵的附件。在本文中,提出了一种高保性的6缸内联柴油发动机及其定时齿轮系的多体动力学模型。代表该系统的多体系系统采用刚体,扭转弹簧,旋转接头,棱柱形接头和旋转/线性执行器进行建模。惩罚模型用于施加关节和正常接触限制。正常接触处刚度和阻尼技术用于模拟齿轮齿刚度和阻尼。接触型号检测齿轮齿(主接触表面)表面上的离散点和配合齿轮齿(从接触表面)的多边形表面表示之间的接触。递归边界框/边界球形接触搜索算法用于允许快速接触检测。时变力施加到汽缸上以模拟由于燃烧事件而模拟作为曲柄角的函数的燃烧事件。使用时间准确的明确解决方案程序,与关节/约束方程一起解决动作方程。通过比较其预测柴油发动机曲轴的扭转振动和移动部件到实验测量来部分验证该模型。给出了对工业建模方法的实用性的重点。

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