EDEM-based design and test of precision feeder for caged breeder ducks
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1.College of Engineering, Huazhong Agricultural University, Wuhan 430070, China;2.Ministry of Agriculture and Rural Affairs Key Laboratory of Agricultural Equipment in Mid-Lower Yangtze River, Wuhan 430070, China

Clc Number:

S834

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    Abstract:

    A vane type pellet feeder was designed to solve the problems of inaccurate feeding quantity of the feeder system for current cage breeder ducks and the low degree of controlling individual feeding amounts during feeding process adverse to the breeding and selection of breeder ducks. A three factor and three level orthogonal experiment was established based on the experimental factors of feed passage pitch, blade spiral lift angle and blade speed, and the coefficient of variation of feed discharge per unit time of the feeder as evaluation indicators by analyzing the feeding and discharging principles of the feeder and the parameters of its core working components. The order of influence and optimal combination of various factors based on actual breeding needs were analyzed. According to the results of simulation, the primary and secondary order of the influence of each parameter on the uniformity of the discharge was the passing pitch of feed, spiral rising angle of discharge blade, and the speed of blade. When the pitch of feed passed through a spacing of 9.0 mm, the spiral rising angle of discharge blade was 71.5°, and the speed of blade was 58.4 r/min, the minimum discharge coefficient of variation of the feeder was 18.66%. The results of a bench test conducted to verify the discharge performance of the feeder under the optimal combination of parameters showed that the coefficient of variation of the feeder discharge was 18.74%, the discharge speed was 109.26 g/s, and the relative error between the preset amount of discharge and the actual amount of discharge was 3.07%, meeting the feeding needs of caged breeder ducks.

    Table 4 Analysis of variance for quadratic polynomial models
    Table 1 Simulation mechanical parameters
    Table 2 Experimental factor coding
    Table 5 Bench experiment results
    Fig.1 Schematic diagram of the feeding system structure
    Fig.2 Structure diagram of the feeder
    Fig.3 Feed pellet model
    Fig.4 Simulation model diagram
    Fig.5 Feed quality sensor in simulation test
    Fig.6 Diagram of the feeder in working condition
    Fig.7 Schematic diagram of the spacing
    Fig.8 Schematic diagram of the spiral rising angle
    Fig.9 Response surface of the influence of interaction on coefficient of variation
    Fig.10 Verification test bench
    Table 3 Experimental protocols and results
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唐诗杰,谷月,李传珍,王树才. EDEM-based design and test of precision feeder for caged breeder ducks[J]. Jorunal of Huazhong Agricultural University,2024,43(5):269-277.

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History
  • Received:March 15,2024
  • Online: October 08,2024
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