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from amworkflow.api import amWorkflow as aw | ||
import numpy as np | ||
@aw.engine.amworkflow("draft") | ||
def geometry_spawn(pm): | ||
#This is where to define your model. | ||
th = pm.thickness | ||
l = pm.length | ||
height = pm.height*3 | ||
g = aw.geom | ||
hth = th * 0.5 | ||
display = True | ||
p0 = g.pnt(0, hth, 0) | ||
p1 = g.pnt(l * 0.5, hth) | ||
p2 = g.pnt(l, (np.sqrt(3) * l) * 0.5 + hth) | ||
p3 = g.pnt(2 * l, (np.sqrt(3) * l) * 0.5 + hth) | ||
p4 = g.pnt(5 * l * 0.5, hth) | ||
pu = [p0, p1, p2, p3, p4] #one unit of the points _/-\ | ||
alist = np.array([list(i.Coord()) for i in pu]) # get the coord from the points | ||
put1 = g.p_translate(pu, [3 * l, 0, 0]) # Translate the unit _/-\_/-\ | ||
end_p = np.copy(put1[-1]) | ||
end_p[0] += l * 0.5 # Add one point to make half of the infill _/-\_/-\_ | ||
pm = pu + put1 # integrate the points together | ||
pm.append(end_p) # add the point | ||
# pm_cnt = g.p_center_of_mass(pm) | ||
# pm_cnt[0] -=hth | ||
pmr = g.p_rotate(pm, angle_z=np.pi) # Rotate the half infill to make it upside down | ||
# pmr = g.p_translate(pmr, np.array([-th,0,0])) | ||
cnt2 = g.p_center_of_mass(pmr) #Get the center of mass of all points | ||
t_len = cnt2[1] * 2 #2 times the y coord would be the length for translation | ||
pmrt = g.p_translate(pmr, [0, -t_len, 0]) | ||
pm_lt = np.vstack((alist, put1)) | ||
pm_lt = np.vstack((pm_lt, np.array(end_p))) | ||
pmf = np.vstack((pm_lt, pmrt)) | ||
p5 = g.pnt(0, -(1.5*th + (np.sqrt(3) * l) * 0.5)) # create points for the outerline | ||
p6 = g.pnt(6 * l + th, -(1.5*th + (np.sqrt(3) * l) * 0.5)) | ||
p7 = g.pnt(6 * l + th, (1.5*th + (np.sqrt(3) * l) * 0.5)) | ||
p8 = g.pnt(0, (1.5*th + (np.sqrt(3) * l) * 0.5)) | ||
pout = [p5, p6, p7, p8] | ||
pout_nd = [i.Coord() for i in pout] | ||
pmfo = np.vstack((pmf, pout_nd)) | ||
pmfo_cnt = g.p_center_of_mass(pmfo) | ||
# pmfo = g.p_rotate(pmfo, angle_z=np.pi, cnt = pmfo_cnt) | ||
# pmfo = g.p_translate(pmfo, np.array([6 * l + th,0,0])) | ||
wall_maker = g.CreateWallByPoints(pmfo, th, height) | ||
wall_maker.is_close = True | ||
# wall_maker.visualize("linear") | ||
p = wall_maker.Shape() | ||
return p#TopoDS_Shape | ||
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# Info : 1st: [3536, 12, 23374] #15 | ||
# Info : 2nd: [3536, 12, 13031] #8 | ||
# Info : The dihedral angle between them is 6.0792e-05 degree. | ||
# Info : Hint: You may use Mesh.AngleToleranceFacetOverlap to decrease the dihedral angle tolerance 0.1 (degree) | ||
# Error : Invalid boundary mesh (overlapping facets) on surface 15 surface 8 |
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You could use the command | ||
python pwall.py -n pwall -gp thickness length height -gpv 8 20 30 | ||
You may also notice that there is a parameter "draft" in the decorator @aw.engine.amworkflow("draft") | ||
This will trigger a QT5 window and you can preview your design after clicking "Display Geometry". | ||
In draft mode no data will be stored in db. | ||
To create a real model, simply delete the string "draft". |