共查询到17条相似文献,搜索用时 156 毫秒
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柴油机蓄压式共轨喷油系统(一) 总被引:1,自引:0,他引:1
随着电子技术的发展和对汽车使用性能的要求越来越高,柴油机蓄压式共轨喷油系统(下称共轨喷油系统),即柴油机电控燃油喷射系统得到了广泛的应用。 相似文献
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将多个喷油器并联在一个高压蓄油器上,由电控单元(ECU)控制喷油,称为共轨喷油,简称CR。它用在柴油机电子控制喷油系统(EDC)中,称为蓄压式共轨喷射系统,简称EDC—CR。目前,蓄压式共轨喷射系统,已运用在依维柯汽车的索菲墨柴油机(8140.43S型和8140.43N型)上。蓄压式共轨喷射系统在这2种柴油机上的配用,使依维柯汽车如虎添翼,特别是在发动机的性能和排污方面,完全达到了国家的要求。 相似文献
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汽车柴油机电控高压共轨喷油系统(一) 总被引:2,自引:0,他引:2
现代小型乘用车柴油机对进一步降低燃油耗、减少废气排放和降低噪声的要求越来越高。满足这些条件都需要喷油系统具有很高的喷油压力、非常灵活的控制柔性、极准确的赜油过程和计量极精确的喷油量。因此,那些机械调节式喷浦系统或喷油压力较低而控制功能有限的电子控制式分配泵已无法满足这些要求。在这种情况下,电拄高压共轨喷油系统就有了“用武之地”。本文将为您系统、详细地介绍小型乘用车柴油机用第一代电磁阀控制高压共轨喷油系统的组成部件、结构、工作原理及其各种功能。 相似文献
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随着车用柴油机高压喷射和电子控制的发展,近年来共轨喷油系统在欧美和日本得到了长足的发展。所谓共轨喷油系统,有一个共同的特点,就是整个柴油机有一个共同的高压燃油蓄势器,称为共轨。油泵只管向这个蓄势器提供高压燃油,不管燃油定量和喷油正时。这个蓄势器向各个气缸供应燃油,而不是像传统的直 相似文献
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Seungwoo Hong Donghyuk Jung Myoungho Sunwoo 《International Journal of Automotive Technology》2018,19(4):585-595
Fuel injection limitation algorithms are widely used to reduce particulate matter (PM) emissions under transient states in diesel engines. However, the limited injection quantity leads to a decrease in the engine torque response under transient states. To overcome this issue, this study proposes an adaptation strategy for exhaust gas recirculation (EGR) and common rail pressure combined with a fuel injection limitation algorithm. The proposed control algorithm consists of three parts: fuel injection limitation, EGR adaptation, and rail pressure adaptation. The fuel injection quantity is limited by adjusting the exhaust burned gas rate, which is predicted based on various intake air states like air mass flow and EGR mass flow. The control algorithm for EGR and rail pressure was designed to manipulate the set-points of the EGR and rail pressure when the fuel injection limitation is activated. The EGR controller decreases the EGR gas flow rate to rapidly supply fresh air under transient states. The rail pressure controller increases the rail pressure set-point to generate a well-mixed air-fuel mixture, resulting in an enhancement in engine torque under transient states. The proposed adaptation strategy was validated through engine experiments. These experiments showed that PM emissions were reduced by up to 11.2 %, and the engine torque was enhanced by 5.4 % under transient states compared to the injection limitation strategy without adaptation. 相似文献
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