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Mass Balancing Measures of a Linkage-Based Extended Expansion Engine

机译:基于连锁的扩展膨胀发动机的质量平衡测量

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The enhancement of efficiency will play a more and more important role in the development of future (small) internal combustion engines. In recent years, the Atkinson (or Extended Expansion) cycle, realized over the crank drive, attracted increasing attention. Several OEMs have investigated this efficiency-increasing principle in the whole range from small engines up to automotive engines until now. In prior publications, the authors outlined the remarkable efficiency potentials of an Extended Expansion (EE) cycle. However, for an internal combustion engine, a smooth running performance as well as low vibrations and noise emissions are relevant aspects. This is especially true for an Extended Expansion engine realized over the crank drive. Therefore, design measures concerning friction and NVH need to be taken to enable possible series production status. Basically, these measures strongly depend on the reduction of the free mass forces and moments. Hence, the focus of this publication is laid on mass balancing measures of an Extended Expansion engine based on a linkage system. This paper first gives a brief overview of the specific 2-cylinder engine layout of the designed EE prototype engine. The second part deals with the determination of occurring free mass forces and moments. In the following, possible as well as performed mass balancing arrangements are presented and evaluated. Finally, a comparison between the EE prototype engine and other conventional 2-cylinder engines is performed. The determination of free mass forces and moments is based on numerical calculations. They include a kinematic simulation of the crank drive and, derived from that, accelerations of each relevant engine part. The geometry data are determined via CAD and the appropriate masses are calculated according to the corresponding density of the applied materials. In addition, results based on a Fourier transformation are presented, whereas free mass forces and moments are mathematically split into harmonic orders, which are helpful to evaluate balancing measures.
机译:提高效率将在未来(小)内燃机的发展中发挥越来越重要的作用。近年来,Atkinson(或延长的扩展)周期,实现了曲柄驱动器,吸引了不断的关注。几位OEM在全部范围内调查了这种效率,从小发动机到达汽车发动机到目前为止。在现有出版物中,作者概述了扩展扩展(EE)周期的显着效率潜力。然而,对于内燃机,平稳运行性能以及低振动和噪声排放是相关的方面。对于在曲柄驱动器上实现的扩展膨胀发动机尤其如此。因此,需要采取关于摩擦和NVH的设计措施来实现可能的阶层生产状态。基本上,这些措施强烈取决于减少自由群众力量和时刻。因此,本出版物的重点是基于连杆系统的扩展膨胀发动机的质量平衡测量。本文首先介绍了所设计的EE原型发动机的特定2缸发动机布局的简要概述。第二部分涉及确定自由群众力量和时刻。在下文中,提供和评估可能的质量平衡装置。最后,执行EE原型发动机和其他传统的2缸发动机之间的比较。自由群体和矩的测定基于数值计算。它们包括曲柄驱动器的运动仿真,并导出来自该相关发动机部件的加速度。几何数据通过CAD确定,并且根据所施加材料的相应密度来计算适当的质量。此外,提出了基于傅里叶变换的结果,而自由群众力和矩在数学上分为谐波令,这有助于评估平衡措施。

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