304 lines
8.3 KiB
Plaintext
304 lines
8.3 KiB
Plaintext
// Gridfinity Bins With A Stacking Lip
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// Gridfinity is a system to help you work more efficiently. This is a system invented by Zack Freedman. There are two main components the baseplate and the bins. The components are comprised of a matrix of squares. Allowing easy stacking and expansion. This Gridfinity bins version includes a lip to allowable stacking Gridfinity bins
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// Set units in millimeters (mm)
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@settings(defaultLengthUnit = mm)
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// Define parameters
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binLength = 41.5
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binHeight = 7.0
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binBaseLength = 2.95
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binTol = 0.25
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binThk = 1.2
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cornerRadius = 3.75
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firstStep = 0.8
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secondStep = 1.8
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thirdStep = 2.15
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magOuterDiam = 6.5
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magOffset = 4.8
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magDepth = 2.4
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lipRadius = 0.5
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lipStep1 = 1.4
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lipStep2 = 1.2
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lipStep3 = 0.7
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lipStep4 = 1.8
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lipStep5 = 1.9
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// Number of bins in each direction
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countBinWidth = 2
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countBinLength = 3
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countBinHeight = 1
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// The total height of the baseplate is a summation of the vertical heights of the baseplate steps
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height = firstStep + secondStep + thirdStep
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lipHeight = lipStep1 + lipStep2 + lipStep3 + lipStep4 + lipStep5
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// Define a function which builds the profile of the baseplate bin
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fn face(plane) {
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faceSketch = startSketchOn(plane)
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|> startProfileAt([binBaseLength + binTol, 0], %)
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|> yLine(length = height)
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|> xLine(length = -binBaseLength)
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|> angledLine(angle = -45, lengthY = thirdStep)
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|> yLine(length = -secondStep)
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|> angledLine(angle = -45, lengthY = firstStep)
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|> close()
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return faceSketch
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}
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// Extrude a single side of the bin
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singleSide = extrude(face(offsetPlane(YZ, offset = cornerRadius + binTol)), length = binLength - (cornerRadius * 2))
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// Create the other sides of the bin by using a circular pattern
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sides = patternCircular3d(
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singleSide,
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arcDegrees = 360,
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axis = [0, 0, 1],
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center = [
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(binLength + 2 * binTol) / 2,
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(binLength + 2 * binTol) / 2,
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0
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],
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instances = 4,
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rotateDuplicates = true,
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)
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// Define an axis axis000
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axis000 = {
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direction = [0.0, 1.0],
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origin = [
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cornerRadius + binTol,
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cornerRadius + binTol
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]
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}
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// Create a single corner of the bin
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singleCorner = revolve(face(offsetPlane(YZ, offset = cornerRadius + binTol)), angle = -90, axis = axis000)
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// Create the corners of the bin
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corners = patternCircular3d(
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singleCorner,
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arcDegrees = 360,
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axis = [0, 0, 1],
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center = [
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(binLength + 2 * binTol) / 2,
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(binLength + 2 * binTol) / 2,
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0
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],
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instances = 4,
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rotateDuplicates = true,
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)
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singleBinFill = startSketchOn(XY)
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|> startProfileAt([
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binBaseLength + binTol,
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binBaseLength + binTol
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], %)
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|> line(end = [binLength - (binBaseLength * 2), 0], tag = $line000)
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|> line(end = [0, binLength - (binBaseLength * 2)], tag = $line001)
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|> xLine(endAbsolute = profileStartX(%), tag = $line002)
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|> close(tag = $line003)
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|> extrude(length = height)
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|> fillet(
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radius = firstStep,
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tags = [
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getNextAdjacentEdge(line000),
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getPreviousAdjacentEdge(line000),
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getNextAdjacentEdge(line002),
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getPreviousAdjacentEdge(line002)
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],
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)
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magCutout000 = startSketchOn(singleBinFill, face = START)
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|> circle(
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center = [
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-magOffset - binBaseLength - binTol,
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magOffset + binBaseLength + binTol
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],
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radius = magOuterDiam / 2,
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)
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|> patternCircular2d(
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arcDegrees = 360,
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center = [
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(-binLength + 2 * binTol) / 2,
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(binLength + 2 * binTol) / 2
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],
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instances = 4,
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rotateDuplicates = true,
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)
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|> extrude(length = -magDepth)
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// Create the baseplate by patterning sides
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binSides = patternLinear3d(
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sides,
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axis = [1.0, 0.0, 0.0],
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instances = countBinWidth,
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distance = binLength + binTol * 2,
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)
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|> patternLinear3d(axis = [0.0, 1.0, 0.0], instances = countBinLength, distance = binLength + binTol * 2)
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// Create the corners of the baseplate by patterning the corners
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binCorners = patternLinear3d(
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corners,
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axis = [1.0, 0.0, 0.0],
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instances = countBinWidth,
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distance = binLength + binTol * 2,
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)
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|> patternLinear3d(axis = [0.0, 1.0, 0.0], instances = countBinLength, distance = binLength + binTol * 2)
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// Create the fill of the bin by patterning the corners
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binFill = patternLinear3d(
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singleBinFill,
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axis = [1.0, 0.0, 0.0],
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instances = countBinWidth,
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distance = binLength + binTol * 2,
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)
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|> patternLinear3d(axis = [0.0, 1.0, 0.0], instances = countBinLength, distance = binLength + binTol * 2)
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binTop = startSketchOn(offsetPlane(XY, offset = height))
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|> startProfileAt([0, 0], %)
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|> xLine(length = (binLength + 2 * binTol) * countBinWidth, tag = $line010)
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|> yLine(length = (binLength + 2 * binTol) * countBinLength, tag = $line011)
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|> xLine(endAbsolute = profileStartX(%), tag = $line012)
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|> close(tag = $line013)
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|> extrude(length = binHeight * countBinHeight)
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|> fillet(
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radius = cornerRadius,
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tags = [
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getNextAdjacentEdge(line010),
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getPreviousAdjacentEdge(line010),
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getNextAdjacentEdge(line012),
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getPreviousAdjacentEdge(line012)
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],
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)
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|> shell(faces = [END], thickness = binThk)
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// Define a function which builds the profile of the baseplate bin
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fn lipFace(plane) {
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faceSketch = startSketchOn(plane)
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|> startProfileAt([0, 0], %)
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// |> yLine(length = lipHeight, tag = $line100)
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|> line(end = [0.0, 5.792893], tag = $line000)
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|> arc(
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angleStart = 180.0,
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angleEnd = 45.0,
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radius = 0.500000,
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tag = $arc000,
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)
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// |> angledLine(angle = -45, lengthY = lipStep5 )
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|> line(end = [1.046447, -1.046447], tag = $line001)
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|> yLine(length = -lipStep4)
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|> angledLine(angle = -45, lengthY = lipStep3)
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|> yLine(length = -lipStep2)
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|> angledLine(angle = -135, lengthY = lipStep1)
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|> close()
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return faceSketch
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}
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plane000 = {
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origin = [
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cornerRadius,
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0.0,
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height + binHeight * countBinHeight
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],
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xAxis = [0.0, 1.0, 0.0],
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yAxis = [0.0, 0.0, 1.0],
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zAxis = [1.0, 0.0, 0.0]
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}
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plane001 = {
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origin = [
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0.0,
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cornerRadius,
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height + binHeight * countBinHeight
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],
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xAxis = [1.0, 0.0, 0.0],
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yAxis = [0.0, 0.0, 1.0],
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zAxis = [0.0, 1.0, 0.0]
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}
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plane002 = {
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origin = [
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countBinWidth * (binLength + 2 * binTol) - cornerRadius,
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0.0,
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height + binHeight * countBinHeight
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],
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xAxis = [0.0, 1.0, 0.0],
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yAxis = [0.0, 0.0, 1.0],
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zAxis = [1.0, 0.0, 0.0]
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}
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// Extrude a single side of the lip of the bin
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lipSingleLength = extrude(lipFace(plane000), length = binLength * countBinWidth - (2 * cornerRadius) + 2 * binTol * countBinWidth)
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// Extrude a single side of the lip of the bin
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lipSingleWidth = extrude(lipFace(plane001), length = binLength * countBinLength - (2 * cornerRadius) + 2 * binTol * countBinLength)
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// Create the other sides of the lips by using a circular pattern
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lipLengths = patternCircular3d(
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lipSingleLength,
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arcDegrees = 360,
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axis = [0, 0, 1],
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center = [
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(binLength + 2 * binTol) / 2 * countBinWidth,
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(binLength + 2 * binTol) / 2 * countBinLength,
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0
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],
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instances = 2,
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rotateDuplicates = true,
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)
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// Create the other sides of the lips by using a circular pattern
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lipWidths = patternCircular3d(
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lipSingleWidth,
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arcDegrees = 360,
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axis = [0, 0, 1],
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center = [
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(binLength + 2 * binTol) / 2 * countBinWidth,
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(binLength + 2 * binTol) / 2 * countBinLength,
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0
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],
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instances = 2,
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rotateDuplicates = true,
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)
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// Define an axis axis000
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axis001 = {
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direction = [0.0, 1.0],
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origin = [cornerRadius, cornerRadius]
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}
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// Create a single corner of the bin
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lipSingleLengthCorner = revolve(lipFace(plane000), angle = -90, axis = axis001)
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// Create a single corner of the bin
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lipSingleWidthCorner = revolve(lipFace(plane002), angle = 90, axis = axis001)
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// Create the corners of the bin
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lipCorners000 = patternCircular3d(
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lipSingleLengthCorner,
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arcDegrees = 360,
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axis = [0, 0, 1],
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center = [
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(binLength + 2 * binTol) / 2 * countBinWidth,
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(binLength + 2 * binTol) / 2 * countBinLength,
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0
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],
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instances = 2,
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rotateDuplicates = true,
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)
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// Create the corners of the bin
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lipCorners001 = patternCircular3d(
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lipSingleWidthCorner,
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arcDegrees = 360,
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axis = [0, 0, 1],
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center = [
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(binLength + 2 * binTol) / 2 * countBinWidth,
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(binLength + 2 * binTol) / 2 * countBinLength,
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0
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],
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instances = 2,
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rotateDuplicates = true,
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)
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