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British Standard Pipe Thread
++++++++++++++++++++++++++++ Added module to create british standard pipe thread. For now, only the parallel version, not the tapered one.
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BSPthread.scad
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86
BSPthread.scad
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/*
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Britisch Standard Pipe Thread
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++++++++++++++++++++++++++++++
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British Standard Pipe Thread is based on a triangular profile. The angle between flanks
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is 55 deg (symmetrical). We use the following nomenclature:
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- crest: The "summit" of a thread
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- groove: The lowest point in the valley of a thread
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- rcrest, rgroove: Radii of crest and groove, respectively
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- t = abs(rcrest - rgroove)
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- rpitch = mean of rmajor and rminor
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The crest and groove are both truncated by t/6. The radii at these flats are called
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rmajor and rminor.
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Note 1:
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The specification requires that the flats are smoothed by circles that tangentially
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match the flanks. We use a simpler version here: We create a triangular profile
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and truncate the crests but not the grooves.
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Note 2:
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The specification requires allowances. This module creates threads with the ideal
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rpitch for both external and internal threads (i.e., they just touch each other).
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This is exactly at the edges of the given allowances and will not reliably work
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in practice!
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*/
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use <thread_profile.scad>
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phi = 55;
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module BSPP_external_thread(pitch=2.309, turns=3, dminor=30.291, higbee_arc=45, fn=120)
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{
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t = pitch / (2 * tan(phi/2));
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rgroove = dminor / 2 - t / 6;
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rcrest = rgroove + t;
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section_profile = [[0, -pitch / 2], [0, pitch / 2], [+t, 0]];
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rmajor = rcrest - t / 6;
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intersection() {
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straight_thread(
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section_profile=section_profile,
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higbee_arc=higbee_arc,
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r=rgroove,
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turns=turns,
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pitch=pitch,
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fn=fn);
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cylinder(h=turns * pitch, r=rmajor, $fn=fn);
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};
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}
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module BSPP_internal_thread(pitch=2.309, turns=3, dmajor=33.249, higbee_arc=45, fn=120)
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{
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t = pitch / (2 * tan(phi/2));
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rgroove = dmajor / 2 + t / 6;
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rcrest = rgroove - t;
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section_profile = [[0, +pitch / 2], [0, -pitch / 2], [-t, 0]];
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rminor = rcrest + t / 6;
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difference() {
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rotate(180) // rotate by half a turn to fit external thread
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straight_thread(
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section_profile=section_profile,
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higbee_arc=higbee_arc,
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r=rgroove,
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turns=turns,
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pitch=pitch,
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fn=fn);
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cylinder(h=turns * pitch, r=rminor, $fn=fn);
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};
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}
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// testing:
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intersection() {
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color("Green")
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translate([-50, 0, -50])
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cube(100, 100, 100);
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union() {
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BSPP_external_thread(pitch=2.309, turns=3, dminor=30.291,
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higbee_arc=45, fn=120);
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BSPP_internal_thread(pitch=2.309, turns=3, dmajor=33.249,
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higbee_arc=45, fn=120);
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};
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};
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