author | Michael Krelin <hacker@klever.net> | 2016-01-13 09:50:19 (UTC) |
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committer | Michael Krelin <hacker@klever.net> | 2016-01-13 09:50:19 (UTC) |
commit | b1ff07b6fa7c70633ee564cefb3c0325b9da60ab (patch) (side-by-side diff) | |
tree | bb28ce98c0aef591f6dce003b3610cb734af8054 /delta.jscad | |
parent | 2dbb3965806819fc380118f30e6642759206579b (diff) | |
download | redelta-b1ff07b6fa7c70633ee564cefb3c0325b9da60ab.zip redelta-b1ff07b6fa7c70633ee564cefb3c0325b9da60ab.tar.gz redelta-b1ff07b6fa7c70633ee564cefb3c0325b9da60ab.tar.bz2 |
log config and calculated cd
-rw-r--r-- | delta.jscad | 1 |
1 files changed, 1 insertions, 0 deletions
diff --git a/delta.jscad b/delta.jscad index 85cf254..9061c28 100644 --- a/delta.jscad +++ b/delta.jscad @@ -84,96 +84,97 @@ var CONFIG = { switch_x: 2.5 }, guide: { width: 3, height: 5+1, length: 6 }, fanholder: { r: 30, screw: { d: 3, m: 2.5/*margin*/ }, w: 3 } }, nut: { h: 2.3, w: 5.5 }, color: { extrusion: [0.8, 0.8, 0.8, 0.8], pcb: [ 0, 0.3, 0.2, 0.8 ], bulk: [ .9, .9, .9, .2 ], parts: [ 0, 0.8, 0, 0.9 ], softparts: [ 0, 0, 0.8, 0.9 ] } }; var CD = { base: (function(){ var rv = {}; rv.circumscription_r = CONFIG.base.sl/2/Math.cos(Math.PI/6); rv.outer_inscription_r = Math.sqrt(Math.pow(rv.circumscription_r,2)- Math.pow(CONFIG.base.sl/2,2)); rv.mid_inscription_r = rv.outer_inscription_r-CONFIG.extrusion.w/2; rv.inner_inscription_r = rv.outer_inscription_r-CONFIG.extrusion.w; // TODO: properly calculate rv.column_r = rv.circumscription_r - 48.29; return rv; })(), duetholder: (function() { var rv = {}; var s = CONFIG.base.sl; var l = CONFIG.duet.hole_spacing.x; var w = CONFIG.duet.hole_spacing.y; var h = s*Math.cos(Math.PI/6); var h1 = h*(1-l/s); rv.distance = (h1-w)/3; // hole to side return rv; })() }; +console.log(CONFIG); console.log(CD); var U = { hypotenuse: function(a,b) { return Math.sqrt(Math.pow(a,2)+Math.pow(b,2)); }, peek: function(x,m) { console.log(x,m); return x; } }; /* {h:,w:} */ function nut(o) { var rv = CSG.cylinder({ start:[0,0,0],end:[0,0,o.h], radius: o.w/2/Math.cos(Math.PI/6), resolution: 6 }); rv.properties.axis_connector = new CSG.Connector([0,0,0],[0,0,1],[0,1,0]); return rv; } var E3DV6 = { dimensions: { big_d: 22.3, }, heatsink: function() { var fn = 16; var z=0; var unite = [ {d:16,h:3.7},{d:12,h:6},{d:16,h:3} ].map(function(x) { return CSG.cylinder({ start: [0,0,z], end: [0,0,z-=x.h], radius: x.d/2, resolution: fn }); }); unite.push(CSG.cylinder({ start:[0,0,z-=1.5], end:[0,0,z-=1], radius: 16/2, resolution: fn })); for(var i=0;i<11;++i) unite.push(CSG.cylinder({ start:[0,0,z-=1.5], end:[0,0,z-=1], radius: this.dimensions.big_d/2, resolution: fn })); unite.push(CSG.cylinder({ start:[0,0,z], end: [0,0,-12.7], radiusStart: 10/2, radiusEnd: 8.5/2, /* pretty arbitrary */ resolution: fn |