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Financing Infrastructure still Faces Challenges
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作者 Ren Hongbin 《China's Foreign Trade》 2016年第5期12-,共1页
The inclusive growth and inter-connected development of the global economy is the highest concern of the G20 Summit.The rich experiences in the realm of infrastructure make me believe that increasing investment in hig... The inclusive growth and inter-connected development of the global economy is the highest concern of the G20 Summit.The rich experiences in the realm of infrastructure make me believe that increasing investment in high-quality infrastructure building will provide effective solutions to 展开更多
关键词 Financing Infrastructure still Faces Challenges
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Review of grain threshing theory and technology 被引量:9
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作者 Jun Fu Zhi Chen +1 位作者 Lujia Han Luquan Ren 《International Journal of Agricultural and Biological Engineering》 SCIE EI CAS 2018年第3期12-20,共9页
Threshing is the most important function of grain harvester.Grain loss and damage in harvesting are significantly related to threshing theory and technology.There are four kinds of threshing principles including impac... Threshing is the most important function of grain harvester.Grain loss and damage in harvesting are significantly related to threshing theory and technology.There are four kinds of threshing principles including impact,rubbing,combing and grinding.Four types of contact models between grain and threshing components have been constructed correspondently.Grain damage can be regarded as a function of peripheral velocity and contact pattern of impacting.Grain loss can be regarded as a function of contact pattern of rasp bars.Grain loss coming from cleaning and separation in the subsequent process of combing threshing was significantly decreased.Tangential and axial threshing technologies have been applied in grain threshing system widely.It showed that in the combined application,tangential rolls are used to accelerate grain flow,and axial rolls are used to increase threshing quality especially lower loss and damage.Conical concave may take the place of the traditional cylindrical one.With the development of sensor technology and communication technology,intelligent harvesting robot and automatic threshing system will be integrated together to improve grain quality and operation comfort. 展开更多
关键词 GRAIN THRESHING threshing theory threshing technology HARVESTER grain loss
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Friction wheel transmission of no-tillage corn planters 被引量:1
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作者 Jia Honglei Zhang Zhuo +3 位作者 Chen Zhi Zheng Tiezhi Zhao Jiale Guo Mingzhuo 《International Journal of Agricultural and Biological Engineering》 SCIE EI CAS 2017年第4期87-97,共11页
To overcome the unfavorable factors of ground wheel-driven chain transmission when a no-tillage planter operates on straw mulching fields,a friction wheel transmission based on ground wheel transmission was designed i... To overcome the unfavorable factors of ground wheel-driven chain transmission when a no-tillage planter operates on straw mulching fields,a friction wheel transmission based on ground wheel transmission was designed in this research.The stability,i.e.,the effects of friction wheel tyre pressure on stability of machine transmission was investigated via validation of main factors.The relationships among tyre pressure,deformation and load were determined via theoretical analysis.The tyre pressure extreme for transmission is 25.90 psi,the maximum pressure imposed on the friction wheel tyre is 14 kN,the maximum deformation of friction wheel is 8.7 mm.The stabilities of friction wheel slip rate and seeding distance were investigated via field tests and alteration of friction wheel tyre pressure.After processing the test data,it can be found that the minimum tyre pressure for acquisition of friction wheel slip rate was 24.35 psi.After processing the data of seeding distance,it can be validated that the tyre pressure was kept unchanged following the optimal transmission effect of the transmission through the abrupt change of working speed,which further proved the feasibility of the new friction wheel transmission.The transmission of friction wheel can reduce 14.67%in variation coefficient of seed spacing at the speed of 5 km/h,and 16.22%at the speed of 8 km/h. 展开更多
关键词 no-tillage planter CORN friction wheel transmission slip rate field test variation coefficient seeding distance
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