feat: Truncate inner panel to avoid collision
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@ -59,6 +59,7 @@ class WingProfile(Model):
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# strength
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spacer_thickness: float = 25.4 / 4
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rod_width: float = 10.0
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panel_s0_inner_trunc = 0.05
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light_strip: LightStrip = LightStrip()
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@ -186,7 +187,7 @@ class WingProfile(Model):
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]
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]
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)
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def inner_profile_s0(self) -> Cq.Edge:
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def inner_profile_s0(self, trunc: float=0.0) -> Cq.Edge:
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"""
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The inner boundary of s0
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"""
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@ -203,9 +204,21 @@ class WingProfile(Model):
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(-self.base_width + dx1, dy1),
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(-self.base_width, 0),
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]
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return Cq.Edge.makeBezier(
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bezier = Cq.Edge.makeBezier(
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[Cq.Vector(x, y) for x, y in points]
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)
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if trunc == 0.0:
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return bezier
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tip = bezier.positionAt(d=trunc, mode='parameter')
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tangent = bezier.tangentAt(locationParam=trunc, mode='parameter')
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points = [
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tip,
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tip + tangent,
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Cq.Vector(-self.base_width + dx1, dy1),
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Cq.Vector(-self.base_width, 0),
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]
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return Cq.Edge.makeBezier(points)
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@property
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@ -266,7 +279,7 @@ class WingProfile(Model):
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return result
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def inner_shell_s0(self) -> Cq.Workplane:
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t = self.panel_thickness_s0
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profile = self.inner_profile_s0()
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profile = self.inner_profile_s0(trunc=self.panel_s0_inner_trunc)
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result = (
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Cq.Workplane('XZ')
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.moveTo(-t, 0)
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@ -291,7 +304,7 @@ class WingProfile(Model):
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"""
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This part should be laser cut and then bent on a falsework to create the required shape.
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"""
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length = self.inner_profile_s0().Length()
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length = self.inner_profile_s0(trunc=self.panel_s0_inner_trunc).Length()
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height = self.root_height + self.panel_thickness_s0 * 2
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return Cq.Sketch().rect(length, height)
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