Clear=0.175; // size of tolerance zonethickness = 2; // global wall thicknessheight = 15; // height of one screen elementscreen_radius = 75/2; // outer radius of screentube_radius=30/2; // inner radius of the space for a sensorscreen_bevel = 10; // bevel of outer screen wallnum_ribs = 3; // number of holding ribsangle_sep = 360/num_ribs;translate ([0,0,height])// screen upper rimdifference () {cylinder (h=thickness*2,r= screen_radius - screen_bevel,$fn=100);translate ([0,0,-Clear/2])cylinder (h=thickness*2 +Clear,r= (screen_radius - screen_bevel)- thickness ,$fn=100);// screen upper rim gabs for ribs from another screen.for (i = [0 : (num_ribs-1)]) {rotate ([0,0,60 + (angle_sep * i)])translate ([(screen_radius - screen_bevel)- thickness - Clear/2 ,-Clear/2,-Clear/2])cube(size = [thickness + 2*Clear, thickness + Clear,thickness*2 + Clear]);}}//screendifference () {cylinder (h=height,r1=screen_radius ,r2=screen_radius - screen_bevel,$fn=100);translate ([0,0,-Clear/2])cylinder (h=height+Clear,r1=screen_radius - thickness ,r2=(screen_radius - screen_bevel) - thickness,$fn=100);}//inner ringinner_ring_thickness = thickness *2;difference () {cylinder (h=inner_ring_thickness,r = tube_radius + thickness,$fn=100);translate([0,0,-Clear/2])cylinder (h=inner_ring_thickness +Clear,r = tube_radius,$fn=100);}// center ribsfor (i = [0 : (num_ribs-1)]) {rotate ([90,0,angle_sep * i])translate ([0,0,-thickness/2])linear_extrude (height = thickness, convexity = 10)polygon(points=[[tube_radius + thickness, inner_ring_thickness],[tube_radius + thickness - Clear, 0],[screen_radius - thickness,0],[screen_radius - screen_bevel,height]]);}