Energy saving of hybrid hydraulic excavator with innovative powertrain

2021 ◽  
Vol 244 ◽  
pp. 114447
Author(s):  
Yingxiao Yu ◽  
Tri Cuong Do ◽  
Yongsoo Park ◽  
Kyoung Kwan Ahn
2017 ◽  
Vol 126 ◽  
pp. 1099-1106 ◽  
Author(s):  
Andrea Bedotti ◽  
Federico Campanini ◽  
Mirko Pastori ◽  
Luca Riccò ◽  
Paolo Casoli

2009 ◽  
Vol 112 (1083) ◽  
pp. 133-136 ◽  
Author(s):  
Etsujiro IMANISHI ◽  
Yoichiro YAMAZAKI

2013 ◽  
Vol 312 ◽  
pp. 158-162
Author(s):  
Wen Hai Wu ◽  
Jian Ke ◽  
Huan Long Liu ◽  
Yu Lan Yang ◽  
Hui Zheng

For the high energy consumption and poor emission of a medium-sized hydraulic excavator, energy consumption point is analyzed combined with the advantages of the electric hybrid system. The energy recovery schematic of the system is designed. Mathematical models of the slewing system are established and theoretical simulation is conducted, and it is compared with the traditional structure. The velocity, displacement, and energy consumption curves of the two systems are concluded under the same conditions. The comparison shows that: energy saving of the electric hybrid slewing system is 37.27% compared with the traditional system. And the electric hybrid slewing system has the characteristics of the better control function and the higher energy utilization.


2014 ◽  
Vol 2014 ◽  
pp. 1-14 ◽  
Author(s):  
Wei Li ◽  
Baoyu Cao ◽  
Zhencai Zhu ◽  
Guoan Chen

Hydraulic excavator energy saving is important to relieve source shortage and protect environment. This paper mainly discusses the energy saving for the hybrid hydraulic excavator. By analyzing the excess energy of three hydraulic cylinders in the conventional hydraulic excavator, a new boom potential energy recovery system is proposed. The mathematical models of the main components including boom cylinder, hydraulic motor, and hydraulic accumulator are built. The natural frequency of the proposed energy recovery system is calculated based on the mathematical models. Meanwhile, the simulation models of the proposed system and a conventional energy recovery system are built by AMESim software. The results show that the proposed system is more effective than the conventional energy saving system. At last, the main components of the proposed energy recovery system including accumulator and hydraulic motor are analyzed for improving the energy recovery efficiency. The measures to improve the energy recovery efficiency of the proposed system are presented.


2005 ◽  
Vol 2005 (6) ◽  
pp. 646-651 ◽  
Author(s):  
Hironao YAMADA ◽  
Shuji SHIOZAKI ◽  
Hiroshi MATSUYAMA ◽  
Takayoshi MUTO

2014 ◽  
Vol 635-637 ◽  
pp. 266-269
Author(s):  
Wei Bo Zhang

In the working process of the traditional hydraulic excavator, the potential energy could not be properly applied in the course of boom-down, whereas the boom requires additional kinetic energy to rise, resulting in a waste of energy, heating up the system, reducing the service life of the machine. As a solution to this problem, the paper proposes the balance hydraulic excavator, adhering to the energy-saving principle of mechanical design, on the basis of which, turning the traditional hydraulic excavator’s fixed weight into a sliding weight and fuel tank, meanwhile, connecting the sliding weight fuel tank with the boom fuel tank, which constitutes the machinery - hydraulic hybrid balance system to the effect of saving the system energy, improving the overall stability and reliability.


2017 ◽  
Vol 868 ◽  
pp. 118-123 ◽  
Author(s):  
Ying Xiao Yu ◽  
Kyoung Kwan Ahn

Facing the energy crisis and environmental problems, saving energy of construction machinery, especially in the hydraulic excavator is very important. Regeneration of the potential energy is an effective solution to save energy. However, the conventional hybrid excavator can’t regenerate the potential energy. This paper proposes a new structure of boom system of hydraulic excavator as well as a control strategy. The focus of the paper is using hydraulic transformer to regenerate energy and reusing the regenerated energy. The simulation is carried out by the AMESim software. From the simulation results, this new system has a high efficiency for energy saving.


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