include <../helper/slack.scad> include <./yBar.scad> include <./xBar.scad> include <./connector/connectors.scad> *xyPlate(); xyPlateConnDx = xBarX + 2*_heatSetX; // X distance between connectors xyPlateConnDy = yBarDepth - 2*basePlateScrewMountToYBarXZFace; // Y distance between connectors module xyPlate() { translate(v=-[connPosX,connPosY,0]) // center around one of the YBarConnector holes applyYBarConnectors() plateBody(); connYBarCornerDx = yBarWidth; // distance from a plate body corner and the nearest yBar corner connYBarCornerDy = xBarY; // distance from a plate body corner and the nearest yBar corner connPosX = basePlateScrewMountToYBarYZFace - connYBarCornerDx; // distance between plateBody corner at (0,0,0) and the related corner connPosY = basePlateScrewMountToYBarXZFace - connYBarCornerDy; module plateBody() { plateBodyX = xBarX - xySlack; plateBodyY = (yBarDepth - 2*xBarY) - xySlack; plateBodyH = xBarWallThickness; translate(v=[xySlack/2, xySlack/2, 0]) cube(size=[plateBodyX, plateBodyY, plateBodyH]); } module applyYBarConnectors() { apply_p() { union() { translate(v=[connPosX, connPosY, 0]) yBarConnector(); translate(v=[connPosX, connPosY+xyPlateConnDy, 0]) yBarConnector(); translate(v=[connPosX+xyPlateConnDx, connPosY, 0]) rotate(a=[0,0,180]) yBarConnector(); translate(v=[connPosX+xyPlateConnDx, connPosY+xyPlateConnDy, 0]) rotate(a=[0,0,180]) yBarConnector(); } children(0); } module yBarConnector() { difference() { hull() { translate(v=[0,0,_baseConnRecession]) roundCutSlice(radius = heatSetInsertSlotRadiusSlacked(rackFrameScrewType), length=5); roundCutSlice(radius = _baseConnY/2, length=15); } cylinder(r=screwRadiusSlacked(rackFrameScrewType), h=inf, center=true); } } } }