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混合动力地下铲运机的环保技术与发展 被引量:1

Environmental Protection Technology and Development of Hybrid LHD
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摘要 矿业是社会发展和国民经济建设的基础产业。在矿业经济发展的同时,我们也清楚的看到,发动机排出的废气含有多种有害成分会影响井下工人的健康,节能环保已成为社会发展的趋势。目前,国内外各大工程机械企业都在研发新的节能和环保技术,以期提高其产品在市场上的竞争力和影响力。在这种大趋势下,因蓄电池技术发展尚不能满足地下铲运机的尖峰作业特点,混合动力技术在工程机械上的技术应用恰好弥补了空缺,成为地下铲运机节能环保技术的发展方向。加强对混合动力技术的推广和应用成为现阶段研发人员思索的问题。 Mining industry is the basic industry of social development and national economic construction.In the development of the mining economy,we also clearly see that the development of green mining and the construction of green mines have become a top priority and must be raised to a high level of understanding of the overall situation and strategy.At present,domestic and foreign major construction machinery enterprises are developing new energy saving and environmental protection technologies,with a view to improving the competitiveness and influence of their products in the market.In this trend,the development of the battery technology can not meet the peak operation characteristics of the underground LHD.The application of hybrid power technology in the engineering machinery has been paid attention to by the relevant departments of the state and the related engineering machinery manufacturing enterprises.The research and development of hybrid power engineering machinery in our country has also entered the initial stage.It has become the development direction of energy saving and environmental protection technology for underground scraper.Strengthening the popularization and application of hybrid technology has become a problem for researchers at this stage.
作者 柏艳茹 苑昆 冯茂林 BAI Yan-ru;YUAN Kun;FENG Mao-lin
出处 《有色设备》 2019年第3期84-87,共4页 Nonferrous Metallurgical Equipment
关键词 混合动力地下铲运机 环保技术与发展 hybrid LHD environmental protection technology and development
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  • 1肖清,王庆丰,张彦廷,付强.液压挖掘机混合动力系统建模及控制策略研究[J].浙江大学学报(工学版),2007,41(3):480-483. 被引量:33
  • 2杜平安,于德江,岳萍.虚拟样机技术的技术与方法体系研究[J].系统仿真学报,2007,19(15):3447-3451. 被引量:33
  • 3罗玉涛,胡红斐,沈继军.混合动力电动汽车行驶工况分析与识别[J].华南理工大学学报(自然科学版),2007,35(6):8-13. 被引量:21
  • 4Lin Tiawliang, Wang Qing feng, Hu Bao-zan. De- velopment of hybrid powered hydraulic construction machinery[J]. Automation in Construction, 2010, 19(1):11-19.
  • 5Sun Hui, Jing Jun-qing. Research on the system configuration and energy control strategy for parallel hydraulic hybrid loader[J]. Automation in Con struetion, 2010, 19(2): 213-220.
  • 6Filla Reno. Hybrid power systems for construction machinery: aspects of system design and operability of wheel loaders[C]//American Society of Mechani- cal Engineers, Florida,USA, 2009.
  • 7Grammatico Sergio, Balluchi Andrea, Cosoli Ettore. A series-parallel hybrid electric powertrain for in dustrial vehicles[C]//2010 IEEE Vehicle Power and Propulsion Con{erence, Pisa, Italy, 2010.
  • 8Zou Nai-wei, Dai Qun-liang, Jia Yuan-hua, et al. Modeling and simulation research of coaxial parallel hybrid loader[C]//2010 International Conference on Applied Mechanics and Mechanical Engineering, Changsha, China, 2010.
  • 9Lajunen Antti. Evaluation of energy storage system requirements for hybrid mining loader[C]//IEEE Computer Society, Chicago, USA, 2011.
  • 10孙立清,白文杰,王仁贞,等.工况分析法在电动车辆设计中的应用[c].2002电动汽车研究与开发,2002.

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