Modified Design of a Precision Planter For a Robotic Assistant Farmer
External loads and boundary conditions
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AMINZADEH-THESIS
External loads and boundary conditions: The external loads on this part are actually
the forces that are applied to gauge wheel when interacting with the soil. The forces calculated in chapter 3, the vertical and horizontal forces on the gauge wheel are G y =1200 N and G x =308 N, respectively. These forces are in y and x direction of the ground coordinate system. In other words, they are horizontal and vertical with respect to the ground. But they will have different components with respect to a coordinate system that is parallel to the depth control links faces. Their components in the x, y and z direction of this coordinate system can be calculated, using the geometry of the assembly, trigonometry functions and the disc and tilt angles of the disc. These calculated components can be found in Table 4-1. X, Y and Z components shown in Table 4-1 are parallel to depth control link’s sides. These external forces are applied on the surface of the hole, forces C and D, as shown in Figure 4-3. Table 4- 1- Components of external forces in the coordinate system parallel to faces of depth control link Horizontal force Vertical force X component 276.6 N 511.1 N Y component -131.2 N 1077.8 N Z component 33.5 N 130.4 N Total (N) 308 N 1200 N At point A, which is the hinge, and point B, which is the pin, cylindrical support is defined as boundary condition. Cylindrical support is a type of support that can be used for 80 cylindrical shape that does not bear tangential load, such as bearings. To model pinned or hinge support, radial and axial directions are fixed and tangential DOF is set free to rotate for both cylindrical support A and B. Remote force can be applied to the part from any point in the space. To define a remote force, the location of force, its direction and which part of the body that the force is applied must be defined. For depth control link, the remote forces are applied in the center of the hole (see Figure 4-3) and to the interior face of the hole. Figure 4- 3-Geometry and supports of depth control link |
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