The Research of Camellia Oleifera Seed Winnowing Peel Test

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Abstract:

On the basis of analyzing the properties of the Camellia oleifera peel and seed, for the purpose of solving the problem of the separation of peel and seed, a device has been designed based on the aerodynamic principles. The single factor experiment has been carried out to research how the feeding angle, feeding height, fan inclination and fan height can influence the seperation. The result shows that the feeding angle has a significantly effect on the separation, the suitable angle is 40°; the feeding height has a significantly effect on the separation; when the feeding height is 200mm, the peel in the seed zone is the least, but the seed in mixing zone is the most, when the feeding height is 300mm, the seed in the mixing zone is the lesat, but the peel in the seed zone is the most, so in the actual production, the feeding height need to be comprehensive considered; the fan inclination has a significantly effect on the separation, the suitable inclination is 15°; the fan height does not have a significant effect on the separation.

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Periodical:

Advanced Materials Research (Volumes 228-229)

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737-743

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April 2011

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© 2011 Trans Tech Publications Ltd. All Rights Reserved

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[1] Sumei Zhou, Qiang Wang: Food and Nutrition China, (2004) NO. 3, p.13.

Google Scholar

[2] Genwang Zhang: Engineering Science , Vol. 2(2000) NO. 3, p.82.

Google Scholar

[3] Li Chen, Dongming Huang, Dejun Chen, etc: Agricultural Machinery, Vol. 40(2006) NO. 4,P. 73.

Google Scholar

[4] Yifeng Zhang: The Experiment Research of Air-and-Screen Cleaning Device Parameters of Longitudinal Axial Flow(MS., Heilongjiang August First Land Reclamation Univer- -sity, China2009), p.9.

Google Scholar

[5] Yaoming Li, Lizhang Xu, Lu Lin: Agricultural Machinery, Vol. 37(2006)NO. 11, p, 6.

Google Scholar

[6] Shiduo Liu, Lijuan Zhang, Qingxiang Shi, etc: Agricultural Machinery, Vol. 37(2006)NO. 6, p.45.

Google Scholar

[7] Yingsi Wu, Wenliang Du, Fei liu, etc: Agricultural Engineering, Vol. 26(2010)NO. 5, p.127.

Google Scholar

[8] Tado C J M, Wacker P, Kutzbach H D, etc: International Agricultural Engineering Journal, Vol. 8(2010)NO. 2, p.127.

Google Scholar

[9] Gang Liu: ADAMS Technology Applied In the Design Rind Machine of Zanthoxylum Seed(MS., Northwest Agriculture & Forestry University, China2007), p.27.

Google Scholar