Files
pirouette/lollipop.py
Arnaud Morin 61025489a4 Improve the lollipop antenna mount
Signed-off-by: Arnaud Morin <arnaud.gfpv@mailops.fr>
2026-09-05 10:45:57 +02:00

132 lines
2.9 KiB
Python

# @author Arnaud Morin <arnaud.gfpv@mailops.fr>
# SPDX-License-Identifier: Apache-2.0
#
import cadquery as cq
def lollipop():
# Antenna
ant = (cq.Workplane("XZ")
.box(17, 15, 11, centered=(True, True, True))
.fillet(1)
)
cut = (cq.Workplane("XZ")
.box(13.5, 10.7, 11, centered=(True, True, True)))
ant = ant.cut(cut)
# Add mass around the tube
mass = (cq.Workplane("XZ")
.polyline([
(0, 0),
(2, 0),
(13, 12),
(0, 12),
])
.close()
.extrude(10)
.fillet(1)
.translate((7, 5, -6)))
ant = ant.union(mass)
# Insert in tube
ant = ant.cut(
cq.Workplane("YZ")
.circle(2.5)
.extrude(4)
.translate((6.75, 0, 0)))
# Fillet on insert
ant = ant.edges(
cq.selectors.BoxSelector((6.5, -3, -3), (7.0, 3, 3))).fillet(1.0)
# Rotate and translate
ant = (ant.rotate((0, 0, 0), (0, 1, 0), 45)
.translate((-8, 0, 9.5)))
# Support on standoff
sup = (cq.Workplane("XY")
.polyline([
(-3, -3),
(-0.5, -14),
(4.2, -13),
(2, -9),
(2, -3),
]).close()
.mirrorX()
.extrude(4, both=True)
.translate((0,0,1))
)
sup2 = (cq.Workplane("XY")
.pushPoints([(2, 14), (2, -14)])
.circle(6.5/2)
.extrude(5, both=True))
sup = sup.union(sup2)
cut = (cq.Workplane("XY")
.pushPoints([(2, 14), (2, -14)])
.circle(3.5/2)
.extrude(5, both=True))
sup = sup.cut(cut)
p = ant.union(sup)
# Cut to have a flat printable object
cut = (cq.Workplane("XY")
.box(50, 50, 30, centered=(True, True, False))
.translate((0,0,-30))
)
p = p.cut(cut)
# Cut to reduce weight
cut = (cq.Workplane("XY")
.box(50, 15, 30, centered=(False, True, True))
.translate((2,0,0))
)
p = p.cut(cut)
# Translate back to ease next cut and hole
p = (p.rotate((0, 0, 0), (0, 1, 0), -45)
.translate((0, 0, -1)))
# Hole in tube
p = p.faces("<X").workplane().hole(2)
# Split half
cut = (cq.Workplane("XY")
.box(50, 1, 20, centered=(True, True, True))
.translate((0,0,-10))
)
p = p.cut(cut)
# Translate back to ease assembly
p = (p.rotate((0, 0, 0), (0, 1, 0), 45)
.translate((0, 0, 1)))
return p
result = lollipop()
assert result.solids().size() == 1, "lollipop is not one solid"
if "show_object" not in globals(): # running outside CQ-editor
def show_object(*args, **kwargs):
pass
show_object(result)
if __name__ == "__main__":
TPU_DENSITY = 1.21e-3 # g/mm3
print("lollipop %.2f g in TPU" % (result.val().Volume() * TPU_DENSITY))