Optimization design and simulation of transport and ejection mechanism of airborne rice seedling throwing device
Rice seedling throwing has the advantages of high efficiency and small seedling damage.In this paper,a continuous type of automatic seedling conveying and ejecting mechanism is designed,and the conveying mechanism is designed and the force analysis is carried out.The maximum force of the intermediate copying frame is about 23.47 N.The static analysis shows that the maximum stress of the copying frame is 36 MPa,the maximum displacement and deformation is 0.6 mm,and the maximum strain is 0.012,which meets the design requirements.The distance between the core of the bowl and the bottom surface is 9.71 mm,and the relation between the minimum tumbling Angle and tumbling Angle speed and falling vertical distance is obtained.When the total length of the thimble is 50 mm and the length of the boss is 5 mm,the integrity of the bowl ejection is better.The ADAMS kinematics simulation test and orthogonal test were carried out with thimble mounting Angle and ejection force as test factors,and 2D displacement of the bowl after ejection as index.When the horizontal and vertical displacement of the simulation test reached the minimum value,the mounting Angle of the thimble was 25° and ejection force was 1.5 N.The orthogonal test was carried out to verify the simulation results.When the experimental factors were consistent,the horizontal and vertical displacements reached the minimum values.The analysis shows that the installation Angle has a significant influence on the index,and the jacking force has a significant influence on the index.The research results can provide important reference for the design of rice seedling throwing device and the optimization of operation parameters.