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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >A Dynamic Model of an Electropneumatic Valve Actuator for Internal Combustion Engines
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A Dynamic Model of an Electropneumatic Valve Actuator for Internal Combustion Engines

机译:内燃机电动气门执行器的动力学模型

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This paper presents a detailed model of a novel electropneumatic valve actuator for both engine intake and exhaust valves. The valve actuator's main function is to provide variable valve timing and variable lift capabilities in an internal combustion engine. The pneumatic actuation is used to open the valve and the hydraulic latch mechanism is used to hold the valve open and to reduce valve seating velocity. This combination of pneumatic and hydraulic mechanisms allows the system to operate under low pressure with an energy saving mode. It extracts the full pneumatic energy to open the valve and use the hydraulic latch that consumes almost no energy to hold the valve open. A system dynamics analysis is provided and followed by mathematical modeling. This dynamic model is based on Newton's law, mass conservation, and thermodynamic principles. The air compressibility and liquid compressibility in the hydraulic latch are modeled, and the discontinuous nonlinearity of the compressible flow due to choking is carefully considered. Provision is made for the nonlinear motion of the mechanical components due to the physical constraints. Validation experiments were performed on a Ford 4.6 l four-valve V8 engine head with different air supply pressures and different solenoid pulse inputs. The simulation responses agreed with the experimental results at different engine speeds and supply air pressures. ©2010 American Society of Mechanical Engineers
机译:本文介绍了用于发动机进气门和排气门的新型电动气门执行器的详细模型。气门致动器的主要功能是在内燃机中提供可变的气门正时和可变的升程能力。气动致动用于打开阀,液压闩锁机构用于保持阀打开并降低阀座速度。气动和液压机构的这种组合使系统可以在低压下以节能模式运行。它提取全部的气动能量来打开阀门,并使用几乎不消耗能量的液压闩锁来保持阀门打开。提供系统动力学分析,然后进行数学建模。该动力学模型基于牛顿定律,质量守恒和热力学原理。对液压闩锁中的空气可压缩性和液体可压缩性进行了建模,并仔细考虑了由于阻塞而导致的可压缩流的不连续非线性。由于物理限制,规定了机械部件的非线性运动。验证实验是在福特4.6升四气门V8发动机盖上进行的,该发动机盖具有不同的进气压力和不同的电磁脉冲输入。模拟响应与不同发动机转速和进气压力下的实验结果一致。 ©2010美国机械工程师学会

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