首页> 外文会议>SAE World Congress >Hydraulic Simulation and Experimental Analysis of Needle Response and Controlled Injection Rate Shape Characteristics in a Piezo-Driven Diesel Injector
【24h】

Hydraulic Simulation and Experimental Analysis of Needle Response and Controlled Injection Rate Shape Characteristics in a Piezo-Driven Diesel Injector

机译:压电柴油喷射器针响应和控制注射率形状特性的液压模拟及实验分析

获取原文

摘要

The more precise control of the multiple-injection is required in common-rail injection system of direct injection diesel engine to meet the low NO{sub}x emission and optimal PM filter system. The main parameter for obtaining the multiple-injections is the mechanism controlling the injector needle energizing and movement. In this study, a piezo-driven diesel injector, as a new method driven by piezoelectric energy, has been applied with a purpose to develop the analysis model of the piezo actuator to predict the dynamics characteristics of the hydraulic component (injector) by using the AMESim code and to evaluate the effect of this control capability on spray formation processes. Aimed at simulating the hydraulic behavior of the piezo-driven injector, the circuit model has been developed and verified by comparison with the experimental results. We found that the input voltage exerted on piezo stack is the dominant factor which affects on the initial needle behavior of piezo-driven injector than the hydraulic force generated by the constant injection pressure. And the piezo-driven injector has more degrees of freedom in controlling the injection rate with the high pressure than a solenoid-driven injector. The piezo-electric characteristics of a piezo-driven diesel injector, which was manufactured as prototype version was experimentally examined to confirm the injection driving principle based on the inverse piezo-electric effect and to ensure the operating performance of a prototype piezo-driven injector. The injection duration is proportional to the external input pulse duration for driving the piezo-driven injector. The higher the output current (voltage) applied to piezo-driven injector's controller, the longer the hold time on the injection duration is. The charging time decreases rapidly as the output current increase. And the needle's response of a piezo-driven injector by using an accelerometer has been investigated together with the evaluation of the injection rate employing Bosch's method. Results were compared between a conventional solenoid-driven injector and the piezo-driven injector, both equipped with the same micro-sac, multi-hole injection nozzle. The experimental results show that the piezo-driven injector has a higher injection flow rate by a fast needle response time and it is possible to control the injection rate slope by altering the induced current. Also these experimental results showed favorable agreement with the predicted simulation results by AMESim environment.
机译:在直喷式柴油发动机的共轨注射系统中需要更精确地控制多喷射系统,以满足低NO {SUB} X发射和最佳PM滤波器系统。用于获得多次喷射的主要参数是控制喷射器针通电和运动的机构。在该研究中,作为由压电能驱动的新方法的压电驱动的柴油喷射器已经应用于开发压电致动器的分析模型,以通过使用液压部件(注射器)的动力学特性Amesim代码并评估该控制能力对喷雾形成过程的影响。旨在模拟压电驱动喷射器的液压行为,通过与实验结果进行比较开发和验证了电路模型。我们发现在压电堆上施加的输入电压是影响压电驱动喷射器的初始针行为的主导因素,这比由恒定喷射压力产生的液压力影响。并且压电驱动的喷射器在控制喷射速率时具有比螺线管驱动的喷射器的高压更高的自由度。通过实验检查作为原型版本制造的压电驱动柴油喷射器的压电特性,以基于反逆压电效应确认注射驱动原理,并确保原型压电驱动喷射器的操作性能。喷射持续时间与用于驱动压电驱动的注射器的外部输入脉冲持续时间成比例。较高的输出电流(电压)施加到压电驱动的注射器控制器,收集持续时间的保持时间越长。充电时间随着输出电流的增加而迅速降低。通过使用博世方法的注射率的评估,研究了通过使用加速度计的压电喷射器对压电喷射器的响应。在传统的螺线管驱动的喷射器和压电驱动的喷射器之间比较了结果,两者都配备有相同的微囊,多孔喷射喷嘴。实验结果表明,压电驱动的喷射器通过快速针响应时间具有更高的喷射流速,并且可以通过改变感应电流来控制喷射速率斜率。此外,这些实验结果表明,通过Amesim环境的预测模拟结果表现出有利的一致性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号