include include // To jest model celownika do karabinu CZ Varmint // Koncepcyjnie składa się z 3 części - na górze jest szyna // Picattiny (rail), na środku jest obejma lufy (clamp), i na dole // wystaje pałąk do przykręcenia (post) // parameters length = 9; // ustaw poniżej 5 do testów wymiarów clamp_inner = 22.075; clamp_inner_acurracy = 90; clamp_thickness = 2; c_s = length>5 ? 1 : 0.4; // chamfer_size używane tylko do testów rail_height = -9.4 + clamp_inner/2 + 6.8; // -9.4 is to center the picatinny post_thickness=7; post_length=9; post_slit=1; post_chamfer = 1.665; nut_wall_t = -1.5; screw = "M2.5"; info = screw_info(name=screw, head="socket"); hh = struct_val(info, "head_height"); screw_head_h = post_thickness - hh - nut_wall_t; $slop = 0.1; top_screw = 3.9; top_h = 5; top_w = 6; top_lock_hole_distance = 4; top_lock_hole_d = 1.8; quality = 1; $fn=36*quality; difference() { // celownik union() { // obejma wokół lufy cyl_size = clamp_inner/2 + clamp_thickness; cyl(h=length, r=cyl_size, rounding=1*c_s); // na dole wystający trzpień do przykręcenia translate([(clamp_inner + post_length)/2, 0, 0]) cuboid([post_length, post_thickness, length], rounding=c_s); // top front sights yrot(-90) up((clamp_inner + top_h)/2) union() { cuboid([length,top_w,top_h], rounding=2, edges=TOP); } } // lufa, śruby oraz przecięcie union() { // lufa karabinu cyl(h=length+0.2, r=clamp_inner/2, $fn=clamp_inner_acurracy, rounding=-c_s); // przecięcie translate([(clamp_inner+post_length)/2 - 0.1,0,0]) cuboid([post_length + 0.25,post_slit,length+0.2], rounding=-1); // miejsce na śrubę if (length > 5){ tab = length>12?[length*-1/4, length*1/4]:[0]; for (i = tab) { translate([(clamp_inner + post_length)/2,0,i]) rotate([90,90,0]) screw_hole(spec=screw, length=screw_head_h, head="socket", thread=0, $fn=120); translate([(clamp_inner + post_length)/2,post_thickness/2 - nut_wall_t,i]) rotate([90,90,0]) nut_trap_inline(spec=screw, h=hh); } } // chamfer for slit translate([clamp_inner/2 - post_slit/4,0,0]) rotate([0,0,45]) cuboid([post_slit*post_chamfer,post_slit*post_chamfer,length+2]); // top front sights yrot(-90) up((clamp_inner + top_h)/2 - 0.2) union() { if(length>12) { left(top_lock_hole_distance/2) cyl(h=top_h + 1, d=top_lock_hole_d, $fn=12*quality); right(top_lock_hole_distance/2) cyl(d=top_screw, length=top_h + 1, $fn=12*quality); } else { cyl(d=top_screw, length=top_h + 1, $fn=12*quality); } } // debug - wyświetl rozmiar if(length < 5) { translate([clamp_inner/2 + 2 ,post_thickness/6,length-0.5]) linear_extrude(5) text(str(clamp_inner), 3); } } } // rear sight r_clamp_width = 20; r_clamp_th = 3.4; r_clamp_t = 1.5; r_clamp_l = 16; r_clamp_h = 10; r_clamp_w = r_clamp_th + 2*r_clamp_t; r_clamp_hole_pos = 2.8; r_clamp_hole_d = 4.7; r_sight_pos = 12; r_sight_pos_h = 0.5; r_sight_screw_d1 = 3.7; r_sight_screw_d2 = 5.4; r_sight_screw_head_d = 9.5; back(50) union() { // slits to hold onto optic mount difference() { union() { left(r_clamp_width/2) cuboid([r_clamp_w,r_clamp_l,r_clamp_h]); right(r_clamp_width/2) cuboid([r_clamp_w, r_clamp_l, r_clamp_h]); } union() { left(r_clamp_width/2) fwd(r_clamp_t*2) cuboid([r_clamp_th, r_clamp_l, r_clamp_h+1]); right(r_clamp_width/2) fwd(r_clamp_t*2) cuboid([r_clamp_th, r_clamp_l, r_clamp_h+1]); fwd(r_clamp_hole_pos) yrot(90) cyl(d=r_clamp_hole_d, h=100, $fn=36*quality); // hole for screw head for peepsight screw back(r_sight_pos) down(r_sight_pos_h) yrot(90) fwd(1) up(-50) cyl(d=r_sight_screw_head_d, h=100, $fn=36*quality); } } // rear part for sight back(r_sight_pos) down(r_sight_pos_h) difference() { down(r_sight_pos_h) cuboid([20,12,8]); down(r_sight_pos_h) cuboid([15, 12.1, 8.1]); yrot(90) fwd(1) up(50) cyl(d=r_sight_screw_d1, h=100, $fn=12*quality); yrot(90) fwd(1) up(-50) cyl(d=r_sight_screw_d2, h=100, $fn=12*quality); } back(16.5) down(-1.5) cuboid([20,3,3]); back(16.5) down(4) cuboid([20,3,2]); }