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12 Commits

Author SHA1 Message Date
Chris Palmer
f9b06c855c Merge branch 'martinbudden-kp_pillow_block' 2020-02-25 09:32:55 +00:00
Chris Palmer
05bfe9b159 Updated and images. 2020-02-25 09:32:40 +00:00
Martin Budden
f961874ce3 Added kp_pillow_blocks. 2020-02-25 07:55:47 +00:00
Chris Palmer
8649d59e8a Merge branch 'martinbudden-print_search_path' 2020-02-25 00:05:12 +00:00
Chris Palmer
e9bc300b8d Fix for printed directory not present. 2020-02-24 23:58:22 +00:00
Chris Palmer
dcb1e74894 Merge branch 'print_search_path' of https://github.com/martinbudden/NopSCADlib into martinbudden-print_search_path 2020-02-24 19:02:50 +00:00
Chris Palmer
42b9479094 Merge branch 'martinbudden-tnuts_and_hammer_nuts' 2020-02-24 18:37:40 +00:00
Chris Palmer
f46f35e909 Updated readme 2020-02-24 18:37:25 +00:00
Chris Palmer
0513b151b2 Merge branch 'tnuts_and_hammer_nuts' of https://github.com/martinbudden/NopSCADlib into martinbudden-tnuts_and_hammer_nuts 2020-02-24 18:22:05 +00:00
Chris Palmer
dcf258f11a Brass colour now distinct from gold. 2020-02-24 18:15:20 +00:00
Martin Budden
4ff6c7d0a8 Unified tnuts and hammer nuts. 2020-02-24 17:40:39 +00:00
Martin Budden
ad3e8d85af Added scad/printed to stl search path. 2020-02-23 17:54:28 +00:00
37 changed files with 373 additions and 140 deletions

View File

@@ -60,7 +60,8 @@ grey60 = [0.6, 0.6, 0.6];
grey70 = [0.7, 0.7, 0.7];
grey80 = [0.8, 0.8, 0.8];
grey90 = [0.9, 0.9, 0.9];
brass = [255/255, 215/255, 0/255];
gold = [255/255, 215/255, 0/255];
brass = [255/255, 220/255, 100/255];
silver = [0.75, 0.75, 0.75];
/*

View File

@@ -38,16 +38,17 @@ See [usage](docs/usage.md) for requirements, installation instructions and a usa
<tr><td> <a href = "#Iecs">Iecs</a> </td><td> <a href = "#Spades">Spades</a> </td><td> <a href = "#Ssr_shroud">Ssr_shroud</a> </td><td></td><td></td></tr>
<tr><td> <a href = "#Inserts">Inserts</a> </td><td> <a href = "#Spools">Spools</a> </td><td> <a href = "#Strap_handle">Strap_handle</a> </td><td></td><td></td></tr>
<tr><td> <a href = "#Jack">Jack</a> </td><td> <a href = "#Springs">Springs</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Ldrs">Ldrs</a> </td><td> <a href = "#Ssrs">Ssrs</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Leadnuts">Leadnuts</a> </td><td> <a href = "#Stepper_motors">Stepper_motors</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Leds">Leds</a> </td><td> <a href = "#Toggles">Toggles</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Light_strips">Light_strips</a> </td><td> <a href = "#Transformers">Transformers</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Linear_bearings">Linear_bearings</a> </td><td> <a href = "#Tubings">Tubings</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Mains_sockets">Mains_sockets</a> </td><td> <a href = "#Variacs">Variacs</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Meter">Meter</a> </td><td> <a href = "#Veroboard">Veroboard</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Microswitches">Microswitches</a> </td><td> <a href = "#Washers">Washers</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Microview">Microview</a> </td><td> <a href = "#Wire">Wire</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Modules">Modules</a> </td><td> <a href = "#Zipties">Zipties</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Kp_pillow_blocks">Kp_pillow_blocks</a> </td><td> <a href = "#Ssrs">Ssrs</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Ldrs">Ldrs</a> </td><td> <a href = "#Stepper_motors">Stepper_motors</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Leadnuts">Leadnuts</a> </td><td> <a href = "#Toggles">Toggles</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Leds">Leds</a> </td><td> <a href = "#Transformers">Transformers</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Light_strips">Light_strips</a> </td><td> <a href = "#Tubings">Tubings</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Linear_bearings">Linear_bearings</a> </td><td> <a href = "#Variacs">Variacs</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Mains_sockets">Mains_sockets</a> </td><td> <a href = "#Veroboard">Veroboard</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Meter">Meter</a> </td><td> <a href = "#Washers">Washers</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Microswitches">Microswitches</a> </td><td> <a href = "#Wire">Wire</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Microview">Microview</a> </td><td> <a href = "#Zipties">Zipties</a> </td><td></td><td></td><td></td></tr>
<tr><td> <a href = "#Modules">Modules</a> </td><td></td><td></td><td></td><td></td></tr>
</table>
---
@@ -93,8 +94,10 @@ Also single bearing balls are modelled as just a silver sphere and a BOM entry.
| Qty | Module call | BOM entry |
| ---:|:--- |:---|
| 1 | ```ball_bearing(BB608)``` | Ball bearing 608-2RS 8mm x 22mm x 7mm |
| 1 | ```ball_bearing(BB6200)``` | Ball bearing 6200-2RS 10mm x 30mm x 9mm |
| 1 | ```ball_bearing(BB6201)``` | Ball bearing 6201-2RS 12mm x 32mm x 10mm |
| 1 | ```ball_bearing(BB624)``` | Ball bearing 624-2RS 4mm x 13mm x 5mm |
| 2 | ``` bearing_ball(3)``` | Steel ball 3mm |
| 4 | ``` bearing_ball(3)``` | Steel ball 3mm |
<a href="#top">Top</a>
@@ -1087,6 +1090,57 @@ E.g. a "brown" socket for mains live needs to be displayed as "sienna" to look r
| 1 | ```jack_4mm_shielded("brown", 3, "sienna")``` | 4mm shielded jack socket brown |
<a href="#top">Top</a>
---
<a name="Kp_pillow_blocks"></a>
## Kp_pillow_blocks
KP pillow block bearings
[vitamins/kp_pillow_blocks.scad](vitamins/kp_pillow_blocks.scad) Object definitions.
[vitamins/kp_pillow_block.scad](vitamins/kp_pillow_block.scad) Implementation.
[tests/kp_pillow_blocks.scad](tests/kp_pillow_blocks.scad) Code for this example.
### Properties
| Function | Description |
|:--- |:--- |
| ```kp_base_height(type)``` | Height of base containing the bolts |
| ```kp_diameter(type)``` | Rod hole diameter |
| ```kp_hole_offset(type)``` | Rod hole offset |
| ```kp_screw_separation(type)``` | Separation of bolts in the base |
### Functions
| Function | Description |
|:--- |:--- |
| ```kp_size(type)``` | Size of bracket |
### Modules
| Module | Description |
|:--- |:--- |
| ```kp_pillow_block(type)``` | Draw the KP pillow block |
| ```kp_pillow_block_assembly(type, part_thickness = 2, screw_type = M5_cap_screw, nut_type = undef)``` | Assembly with fasteners in place |
| ```kp_pillow_block_hole_positions(type)``` | Place children at hole positions |
![kp_pillow_blocks](tests/png/kp_pillow_blocks.png)
### Vitamins
| Qty | Module call | BOM entry |
| ---:|:--- |:---|
| 1 | ```kp_pillow_block(KP000)``` | KP000 pillow block |
| 1 | ```kp_pillow_block(KP001)``` | KP001 pillow block |
| 1 | ```kp_pillow_block(KP08)``` | KP08 pillow block |
| 2 | ```sliding_t_nut(M4_sliding_t_nut)``` | Nut M4 sliding T |
| 2 | ```sliding_t_nut(M5_sliding_t_nut)``` | Nut M5 sliding T |
| 2 | ```nut(M5_nut, nyloc = undef)``` | Nut M5 x 4mm |
| 2 | ```screw(M4_cap_screw, 10)``` | Screw M4 cap x 10mm |
| 4 | ```screw(M5_cap_screw, 12)``` | Screw M5 cap x 12mm |
| 2 | ```washer(M4_washer)``` | Washer M4 x 9mm x 0.8mm |
| 6 | ```washer(M5_washer)``` | Washer M5 x 10mm x 1mm |
<a href="#top">Top</a>
---
@@ -1623,12 +1677,12 @@ If a nut is given a child then it gets placed on its top surface.
| 1 | ```nut(M2p5_nut)``` | Nut M2.5 x 2.2mm |
| 1 | ```nut(M2p5_nut, nyloc = true)``` | Nut M2.5 x 2.2mm nyloc |
| 1 | ```nut(M2p5_nut, nylon = true)``` | Nut M2.5 x 2.2mm nylon |
| 1 | ```hammer_nut(M3_hammer_nut)``` | Nut M3 hammer |
| 1 | ```sliding_t_nut(M3_hammer_nut)``` | Nut M3 hammer |
| 1 | ```sliding_t_nut(M3_sliding_t_nut)``` | Nut M3 sliding T |
| 1 | ```nut(M3_nut)``` | Nut M3 x 2.4mm |
| 1 | ```nut(M3_nut, brass = true)``` | Nut M3 x 2.4mm brass |
| 1 | ```nut(M3_nut, nyloc = true)``` | Nut M3 x 2.4mm nyloc |
| 1 | ```hammer_nut(M4_hammer_nut)``` | Nut M4 hammer |
| 1 | ```sliding_t_nut(M4_hammer_nut)``` | Nut M4 hammer |
| 1 | ```sliding_t_nut(M4_sliding_t_nut)``` | Nut M4 sliding T |
| 1 | ```nut(M4_nut)``` | Nut M4 x 3.2mm |
| 1 | ```nut(M4_nut, nyloc = true)``` | Nut M4 x 3.2mm nyloc |

View File

@@ -85,48 +85,49 @@ def make_parts(target, part_type, parts = None):
#
lib_dir = os.environ['OPENSCADPATH'] + '/NopSCADlib/printed'
module_suffix = '_dxf' if part_type == 'svg' else '_' + part_type
for dir in [source_dir, lib_dir]:
for filename in os.listdir(dir):
if filename[-5:] == ".scad":
#
# find any modules ending in _<part_type>
#
with open(dir + "/" + filename, "r") as f:
for line in f.readlines():
words = line.split()
if(len(words) and words[0] == "module"):
module = words[1].split('(')[0]
if module.endswith(module_suffix):
base_name = module[:-4]
part = base_name + '.' + part_type
if part in targets:
#
# make a file to use the module
#
part_maker_name = part_type + ".scad"
with open(part_maker_name, "w") as f:
f.write("use <%s/%s>\n" % (dir, filename))
f.write("%s();\n" % module);
#
# Run openscad on the created file
#
part_file = target_dir + "/" + part
dname = deps_name(deps_dir, filename)
changed = check_deps(part_file, dname)
changed = times.check_have_time(changed, part)
if part_type == 'stl' and not changed and not part in bounds_map:
changed = "No bounds"
if changed:
print(changed)
t = time.time()
openscad.run("-D$bom=1", "-d", dname, "-o", part_file, part_maker_name)
times.add_time(part, t)
if part_type == 'stl':
bounds = c14n_stl.canonicalise(part_file)
bounds_map[part] = bounds
for dir in [source_dir, source_dir + '/printed', lib_dir]:
if os.path.isdir(dir):
for filename in os.listdir(dir):
if filename[-5:] == ".scad":
#
# find any modules ending in _<part_type>
#
with open(dir + "/" + filename, "r") as f:
for line in f.readlines():
words = line.split()
if(len(words) and words[0] == "module"):
module = words[1].split('(')[0]
if module.endswith(module_suffix):
base_name = module[:-4]
part = base_name + '.' + part_type
if part in targets:
#
# make a file to use the module
#
part_maker_name = part_type + ".scad"
with open(part_maker_name, "w") as f:
f.write("use <%s/%s>\n" % (dir, filename))
f.write("%s();\n" % module);
#
# Run openscad on the created file
#
part_file = target_dir + "/" + part
dname = deps_name(deps_dir, filename)
changed = check_deps(part_file, dname)
changed = times.check_have_time(changed, part)
if part_type == 'stl' and not changed and not part in bounds_map:
changed = "No bounds"
if changed:
print(changed)
t = time.time()
openscad.run("-D$bom=1", "-d", dname, "-o", part_file, part_maker_name)
times.add_time(part, t)
if part_type == 'stl':
bounds = c14n_stl.canonicalise(part_file)
bounds_map[part] = bounds
targets.remove(part)
os.remove(part_maker_name)
targets.remove(part)
os.remove(part_maker_name)
#
# Write new bounds file
#

View File

@@ -124,66 +124,67 @@ def views(target, do_assemblies = None):
#
main_blurb = None
lib_dir = os.environ['OPENSCADPATH'] + '/NopSCADlib/printed'
for dir in [source_dir, lib_dir]:
for filename in os.listdir(dir):
if filename.endswith('.scad'):
#
# find any modules with names ending in _assembly
#
with open(dir + "/" + filename, "r") as f:
lines = f.readlines()
line_no = 0
for line in lines:
words = line.split()
if len(words) and words[0] == "module":
module = words[1].split('(')[0]
if is_assembly(module):
if module in assemblies:
#
# Scrape the assembly instructions
#
for ass in flat_bom:
if ass["name"] == module:
if not "blurb" in ass:
ass["blurb"] = blurb.scrape_module_blurb(lines[:line_no])
break
if not do_assemblies or module in do_assemblies:
for dir in [source_dir, source_dir + '/printed', lib_dir]:
if os.path.isdir(dir):
for filename in os.listdir(dir):
if filename.endswith('.scad'):
#
# find any modules with names ending in _assembly
#
with open(dir + "/" + filename, "r") as f:
lines = f.readlines()
line_no = 0
for line in lines:
words = line.split()
if len(words) and words[0] == "module":
module = words[1].split('(')[0]
if is_assembly(module):
if module in assemblies:
#
# make a file to use the module
# Scrape the assembly instructions
#
png_maker_name = 'png.scad'
with open(png_maker_name, "w") as f:
f.write("use <%s/%s>\n" % (dir, filename))
f.write("%s();\n" % module);
#
# Run openscad on the created file
#
dname = deps_name(deps_dir, filename)
for explode in [0, 1]:
png_name = target_dir + '/' + module + '.png'
if not explode:
png_name = png_name.replace('_assembly', '_assembled')
changed = check_deps(png_name, dname)
changed = times.check_have_time(changed, png_name)
changed = options.have_changed(changed, png_name)
tmp_name = 'tmp.png'
if changed:
print(changed)
t = time.time()
openscad.run_list(options.list() + ["-D$pose=1", "-D$explode=%d" % explode, colour_scheme, "--projection=p", "--imgsize=4096,4096", "--autocenter", "--viewall", "-d", dname, "-o", tmp_name, png_maker_name]);
times.add_time(png_name, t)
do_cmd(["magick", tmp_name, "-trim", "-resize", "1004x1004", "-bordercolor", background, "-border", "10", tmp_name])
update_image(tmp_name, png_name)
tn_name = png_name.replace('.png', '_tn.png')
if mtime(png_name) > mtime(tn_name):
do_cmd(("magick "+ png_name + " -trim -resize 280x280 -background " + background + " -gravity Center -extent 280x280 -bordercolor " + background + " -border 10 " + tmp_name).split())
update_image(tmp_name, tn_name)
os.remove(png_maker_name)
done_assemblies.append(module)
else:
if module == 'main_assembly':
main_blurb = blurb.scrape_module_blurb(lines[:line_no])
line_no += 1
for ass in flat_bom:
if ass["name"] == module:
if not "blurb" in ass:
ass["blurb"] = blurb.scrape_module_blurb(lines[:line_no])
break
if not do_assemblies or module in do_assemblies:
#
# make a file to use the module
#
png_maker_name = 'png.scad'
with open(png_maker_name, "w") as f:
f.write("use <%s/%s>\n" % (dir, filename))
f.write("%s();\n" % module);
#
# Run openscad on the created file
#
dname = deps_name(deps_dir, filename)
for explode in [0, 1]:
png_name = target_dir + '/' + module + '.png'
if not explode:
png_name = png_name.replace('_assembly', '_assembled')
changed = check_deps(png_name, dname)
changed = times.check_have_time(changed, png_name)
changed = options.have_changed(changed, png_name)
tmp_name = 'tmp.png'
if changed:
print(changed)
t = time.time()
openscad.run_list(options.list() + ["-D$pose=1", "-D$explode=%d" % explode, colour_scheme, "--projection=p", "--imgsize=4096,4096", "--autocenter", "--viewall", "-d", dname, "-o", tmp_name, png_maker_name]);
times.add_time(png_name, t)
do_cmd(["magick", tmp_name, "-trim", "-resize", "1004x1004", "-bordercolor", background, "-border", "10", tmp_name])
update_image(tmp_name, png_name)
tn_name = png_name.replace('.png', '_tn.png')
if mtime(png_name) > mtime(tn_name):
do_cmd(("magick "+ png_name + " -trim -resize 280x280 -background " + background + " -gravity Center -extent 280x280 -bordercolor " + background + " -border 10 " + tmp_name).split())
update_image(tmp_name, tn_name)
os.remove(png_maker_name)
done_assemblies.append(module)
else:
if module == 'main_assembly':
main_blurb = blurb.scrape_module_blurb(lines[:line_no])
line_no += 1
times.print_times()
#
# Build the document

View File

@@ -0,0 +1,34 @@
//
// NopSCADlib Copyright Chris Palmer 2018
// nop.head@gmail.com
// hydraraptor.blogspot.com
//
// This file is part of NopSCADlib.
//
// NopSCADlib is free software: you can redistribute it and/or modify it under the terms of the
// GNU General Public License as published by the Free Software Foundation, either version 3 of
// the License, or (at your option) any later version.
//
// NopSCADlib is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
// without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
// See the GNU General Public License for more details.
//
// You should have received a copy of the GNU General Public License along with NopSCADlib.
// If not, see <https://www.gnu.org/licenses/>.
//
include <../core.scad>
use <../utils/layout.scad>
include <../vitamins/kp_pillow_blocks.scad>
include <../vitamins/nuts.scad>
module kp_pillow_blocks() {
screws = [M4_cap_screw, M5_cap_screw, M5_cap_screw];
nuts = [M4_sliding_t_nut, M5_sliding_t_nut, M5_nut];
layout([for(k = kp_pillow_blocks) 2 * kp_size(k)[1]])
kp_pillow_block_assembly(kp_pillow_blocks[$i], screw_type = screws[$i], nut_type = nuts[$i]);
}
if($preview)
kp_pillow_blocks();

View File

@@ -58,10 +58,10 @@ module nuts() {
translate([0, 80]) {
if(n == M3_nut)
hammer_nut(M3_hammer_nut);
sliding_t_nut(M3_hammer_nut);
if(n == M4_nut)
hammer_nut(M4_hammer_nut);
sliding_t_nut(M4_hammer_nut);
}
}
}

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@@ -18,7 +18,9 @@
//
BB624 = ["624", 4, 13, 5, "blue"]; // 624 ball bearing for idlers
BB608 = ["608", 8, 22, 7, "OrangeRed"]; // 608 bearings for wades
BB6200 = ["6200", 10, 30, 9, "black"]; // 6200 bearings for KP pillow blocks
BB6201 = ["6201", 12, 32, 10, "black"]; // 6201 bearings for KP pillow blocks
ball_bearings = [BB624, BB608];
ball_bearings = [BB624, BB608, BB6200, BB6201];
use <ball_bearing.scad>

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@@ -0,0 +1,117 @@
//
// NopSCADlib Copyright Chris Palmer 2018
// nop.head@gmail.com
// hydraraptor.blogspot.com
//
// This file is part of NopSCADlib.
//
// NopSCADlib is free software: you can redistribute it and/or modify it under the terms of the
// GNU General Public License as published by the Free Software Foundation, either version 3 of
// the License, or (at your option) any later version.
//
// NopSCADlib is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
// without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
// See the GNU General Public License for more details.
//
// You should have received a copy of the GNU General Public License along with NopSCADlib.
// If not, see <https://www.gnu.org/licenses/>.
//
//! KP pillow block bearings
//
include <../core.scad>
use <../utils/tube.scad>
include <screws.scad>
use <washer.scad>
use <ball_bearing.scad>
kp_pillow_block_color = grey70;
function kp_diameter(type) = type[1]; //! Rod hole diameter
function kp_hole_offset(type) = type[2]; //! Rod hole offset
function kp_size(type) = [type[3],type[8],type[5]]; //! Size of bracket
function kp_base_height(type) = type[7]; //! Height of base containing the bolts
function kp_screw_separation(type) = type[4]; //! Separation of bolts in the base
module kp_pillow_block(type) { //! Draw the KP pillow block
vitamin(str("kp_pillow_block(", type[0], "): ", type[0], " pillow block"));
d = kp_diameter(type);
H = kp_hole_offset(type);
L = kp_size(type)[0];
J = kp_screw_separation(type);
A = kp_size(type)[2];// sizeZ, includes protruding center
N = type[6];
H1 = kp_base_height(type);
H0 = kp_size(type)[1];
K = type[9];
S = type[10];
b = type[11];
bolthole_radius = type[12];
color(kp_pillow_block_color)
translate([0, -H, 0]) {
fillet = 1;
squareSizeX = (L - H0) / 2 + fillet;
rotate([-90, 0, 0])
linear_extrude(H1)
difference() {
union() {
for(i = [-L / 2, L / 2 - squareSizeX])
translate([i, -A / 2])
rounded_square([squareSizeX, A], fillet, center = false);
}
for(i = [-J / 2, J / 2])
translate([i, 0])
circle(r = bolthole_radius);
}
translate_z(-A / 2) {
for(x = [- L / 2 + squareSizeX - fillet, L / 2 - squareSizeX + fillet - 2])
translate([x, 0, 0])
cube([2, H, A]);
stripLength = J - 2 * bolthole_radius;
stripThickness = 4;
translate([-stripLength / 2, 0, (H1 + stripThickness) / 2])
cube([stripLength, H1, stripThickness]);
translate([0 , H, 0])
tube(H0 / 2, b / 2, A, center = false);
}
}
not_on_bom() no_explode()
ball_bearing(type[13]);
}
module kp_pillow_block_hole_positions(type) { //! Place children at hole positions
for(x = [-kp_screw_separation(type), kp_screw_separation(type)])
translate([x / 2, kp_base_height(type) - kp_hole_offset(type), 0])
rotate([-90,0,0])
children();
}
module kp_pillow_block_assembly(type, part_thickness = 2, screw_type = M5_cap_screw, nut_type = undef) { //! Assembly with fasteners in place
kp_pillow_block(type);
screw_washer_thickness = washer_thickness(screw_washer(screw_type));
nut_type = is_undef(nut_type) ? screw_nut(screw_type) : nut_type;
nut_washer_type = nut_washer(nut_type);
nut_washer_thickness = nut_washer_type ? washer_thickness(nut_washer_type) : 0;
nut_offset = kp_base_height(type) + part_thickness;
screw_length = screw_shorter_than(nut_offset + screw_washer_thickness + nut_thickness(nut_type) + nut_washer_thickness);
kp_pillow_block_hole_positions(type) {
screw_and_washer(screw_type, screw_length);
translate_z(-nut_offset)
vflip()
if(nut_washer_type)
nut_and_washer(nut_type);
else
sliding_t_nut(nut_type);
}
}

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@@ -0,0 +1,35 @@
//
// NopSCADlib Copyright Chris Palmer 2018
// nop.head@gmail.com
// hydraraptor.blogspot.com
//
// This file is part of NopSCADlib.
//
// NopSCADlib is free software: you can redistribute it and/or modify it under the terms of the
// GNU General Public License as published by the Free Software Foundation, either version 3 of
// the License, or (at your option) any later version.
//
// NopSCADlib is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
// without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
// See the GNU General Public License for more details.
//
// You should have received a copy of the GNU General Public License along with NopSCADlib.
// If not, see <https://www.gnu.org/licenses/>.
//
//
//! KP pillow block bearings
//
include <../core.scad>
include <screws.scad>
include <ball_bearings.scad>
// d H L J A N H1 H0 K S b bolthole bearing
KP08 = ["KP08", 8, 18, 55, 42, 13, 4.5, 5, 29, 0.0, 0, 22, M4_clearance_radius, BB608];
KP000 = ["KP000", 10, 18, 67, 53, 16, 7.0, 6, 35, 14.0, 4, 30, M6_clearance_radius, BB6200];
KP001 = ["KP001", 12, 19, 71, 56, 16, 7.0, 6, 38, 14.5, 4, 32, M6_clearance_radius, BB6201];
kp_pillow_blocks = [KP08, KP000, KP001];
use <kp_pillow_block.scad>

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@@ -132,7 +132,8 @@ module wingnut(type) { //! Draw a wingnut
}
module sliding_t_nut(type) {
vitamin(str("sliding_t_nut(", type[0], "): Nut M", nut_size(type), " sliding T"));
hammerNut = type[10];
vitamin(str("sliding_t_nut(", type[0], "): Nut M", nut_size(type), hammerNut ? " hammer" : " sliding T"));
size = [type[7], type[2], nut_thickness(type, true)];
tabSizeY1 = type[8];
@@ -141,20 +142,7 @@ module sliding_t_nut(type) {
holeRadius = nut_size(type) / 2;
color(grey80)
extrusionSlidingNut(size, tabSizeY1, tabSizeY2, tabSizeZ, holeRadius);
}
module hammer_nut(type) {
vitamin(str("hammer_nut(", type[0], "): Nut M", nut_size(type), " hammer"));
size = [type[7], type[2], nut_thickness(type, true)];
tabSizeY1 = type[8];
tabSizeY2 = type[9];
tabSizeZ = nut_thickness(type);
holeRadius = nut_size(type) / 2;
color(grey80)
extrusionSlidingNut(size, tabSizeY1, tabSizeY2, tabSizeZ, holeRadius, 0, hammerNut = true);
extrusionSlidingNut(size, tabSizeY1, tabSizeY2, tabSizeZ, holeRadius, 0, hammerNut);
}
module extrusionSlidingNut(size, tabSizeY1, tabSizeY2, tabSizeZ, holeRadius, holeOffset = 0, hammerNut = false) {

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@@ -51,12 +51,12 @@ toggle_nut = ["toggle_nut", 6.1, 9.2, 1.5, 1.5, M6_washer, 1.5]
M4_wingnut = ["M4_wingnut", 4, 10, 3.75,8, M4_washer, 0, 22, 10, 6, 3];
// sx ty1 ty2
M3_sliding_t_nut = ["M3_sliding_t_nut", 3, 6, 3.0, 4.0, false, 0, 10, 10, 6];
M4_sliding_t_nut = ["M4_sliding_t_nut", 4, 6, 3.25,4.5, false, 0, 11, 10, 6];
M5_sliding_t_nut = ["M5_sliding_t_nut", 5, 6, 3.25,4.5, false, 0, 11, 10, 7];
M3_hammer_nut = ["M3_hammer_nut", 3, 6, 2.75,4.0, false, 0, 5.5, 10, 6];
M4_hammer_nut = ["M4_hammer_nut", 4, 6, 3.25,4.5, false, 0, 5.5, 10, 6];
// sx ty1 ty2 hammer
M3_sliding_t_nut = ["M3_sliding_t_nut", 3, 6, 3.0, 4.0, false, 0, 10, 10, 6, false];
M4_sliding_t_nut = ["M4_sliding_t_nut", 4, 6, 3.25,4.5, false, 0, 11, 10, 6, false];
M5_sliding_t_nut = ["M5_sliding_t_nut", 5, 6, 3.25,4.5, false, 0, 11, 10, 7, false];
M3_hammer_nut = ["M3_hammer_nut", 3, 6, 2.75,4.0, false, 0, 5.5, 10, 6, true];
M4_hammer_nut = ["M4_hammer_nut", 4, 6, 3.25,4.5, false, 0, 5.5, 10, 6, true];
nuts = [M2_nut, M2p5_nut, M3_nut, M4_nut, M5_nut, M6_nut, M8_nut];

View File

@@ -117,9 +117,9 @@ module sk_bracket_assembly(type, part_thickness = 2, screw_type = M5_cap_screw,
screw_and_washer(screw_type, screw_length);
translate_z(-nut_offset)
vflip()
if(!nut_washer_type)
sliding_t_nut(nut_type);
else
if(nut_washer_type)
nut_and_washer(nut_type);
else
sliding_t_nut(nut_type);
}
}