270 Degree Hinge (#268)
* Initialize chrisrgonzales/270_degree_hinge * Update Files and Readme chrisrgonzales/240_degree_hinge * Add chrisrgonzales/270_degree_hinge to Printer Mods List * Updated chrisrgonzales/270_degree_hinge README and stls per suggestions * Update printer mods README chrisrgonzales/270_degree_hinge alphabetical * Update chrisrgonzales/270_degree_hinge verbiage * Update chrisrgonzales/270_degree_hinge grammar update
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| btp | [Galileo chain mount (befenybay)](./btp/Galileo_Switchwire_Chain_Mount/README.md) | Modified chain mount position to cater for difference with Galileo Clockwork |:x:|:x:|:x:|:heavy_check_mark:|
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| buzzdalf | [v1.8/2.4 Afterburner connector cover for 42STH20-1004AS](./buzzdalf/connector_cover) | v1.8/2.4 Connector cover for 42STH20-1004AS | :x: | :heavy_check_mark: | :heavy_check_mark: |:grey_question:|
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||[Ender 3 Switchwire Taller Z Mod](./buzzdalf/ender_switchwire_taller_z) | Taller Z Mod | :x: | :x: | :x: | :heavy_check_mark: |
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| chrisrgonzales | [270° Front Panel Hinge](./chrisrgonzales/270_degree_hinge) | Hinges that have 270° of swivel, parametric CAD included | :x: | :x: | :heavy_check_mark: | :x: |
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| Conqueror433 | [Voron Parts Logo](./conqueror433/Voron_Parts_Logo) | Voron Parts Logo for your back panels, 3D Print or Laser Cut | :x: | :x: | :heavy_check_mark: | :x: |
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|consibonsi | [Y-Mod SW 9mm](./consibonsi/Y-Mod_SW_9mm)| 9mm Y belt mod for SW | :x: |:x: |:x: |:heavy_check_mark:|
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| d3nny | [Filtered Power Plug with RND_165-00057](./d3nny/mains_plug_panel_for_RND_165-00057) | Filtered Power Plug for RND 165-00057 and CAT6-Plug | :x: | :x: | :heavy_check_mark: |:x:|
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# 270° Hinge - Parametric
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These hinges allow for 270 degrees of motion, from closed 0° to 270° full open parallel with the side panels. This was
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developed out of an effort of running into tolerance issues with the spec hinges not allowing much room if the two panel
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doors are used and are slightly cut larger by only 1 mm or so. I ran into issues closing and the doors hitting and needed
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something that allowed more horizontal movement.
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So it was decided to figure a way to mount on the side of the printer. After some searching, printing, trial & error,
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I came to what you see below. 270 degrees wasn't the initial intention but figured if they are going to be mounted to the side,
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might as well take advantage of the extra flexibility.
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During development and testing of these I struggled with tape being sufficient with my first version of these. So went back
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and designed these to use hardware and remove tape from the equation. Hardware mount was heavily influenced by
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[Randell](../../randell/Door_Hinges) other door hinge mod
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that uses hardware. The handles in this mod are a remixed version of
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[Randell's](../../randell/Door_Hinges) to adjust for the
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altered latch developed for this setup. The latch in the mod gives as much room as possible vertically if panels are
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slightly too tall.
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Note: Un-tested but the holes should line up with [Randell's](../../randell/Door_Hinges)
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hardware for the hinges if you are looking to swap for more swivel.
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As you can see this setup allows vertical and horizontal freedom if your panels are cut too large.
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 | 
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--- | ---
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## BOM
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#### Hinge Hardware
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```
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M3 x 35 mm SHCS [x4]
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M3 x 8 mm SHCS [x4] Side Mount
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M3 x 8 mm BHCS [x8] Backplate. SHCS can also be used here. And if you want a flush look 8 mm FHCS
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M3 Threaded Insert [x8]
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M3 T-nuts [x4] hammerhead or spring ball, your choice
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```
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#### Latch
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```
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3 mm x 6 mm magnets [x4]
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M3 x 6 mm SHCS [x2] BHCS screws work better here if you have them
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M3 T-nuts [x2] hammerhead or spring ball, your choice
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```
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#### Handles
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```
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3 mm x 6 mm magnets [x4]
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M3 x 6 mm BHCS [x8]
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M3 Threaded Insert [x8]
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```
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## Printing
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Use the default recommended for Voron parts. Can be done in PLA but I have not tested this. If having issues printing side mounts
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you may need to add a brim to those and trim before installation
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```
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Layer Height : 0.2 mm
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Extrusion Width : 0.4 mm
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Infill : 40 %
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Walls : 4
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Solid Top/Bottom : 5
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```
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There is a left (a) and right (b), you will need to print 2 for each side. There are 2 versions of each of the hinge faces
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if you don't want a Voron logo or want to mix and match. Multiple depths are also provided. Should you need a specific
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depth and no access to Fusion, feel free to reach out to me on discord [chrisrgonzales#0731](https://discord.com/users/chrisrgonzales#0731)
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The 4 mm is typical 3 mm panel and 1 mm foam , and 6 mm files are for 3 mm panel and 3 mm foam.
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You will need to print 4 of the side mounts, they are not side specific.
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> There are test stl files that can be printed to verify if your panel plus foam thickness will work with supplied stl
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> files. Example 4mm test stl is `tester_4mm.stl`
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## Assembly
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These are designed to have a tight tolerance, so the 35 mm screw can be screwed into the lower portion of the face hinge,
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and still have some play without wiggle. You will likely have to thread it all the way down then play with the hinge and
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pivot it a couple of times to work it in before attaching. Do not over tighten the screw as it will bind on the upper portion.
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If you feel it binding, back the screw off just a lil bit.
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When installing back plates to hinges to protect panel from cracking be careful not to screw down too much as insert depth
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is shallow as you may risk of pushing through. The backplates have a chamfer for more recessed look, but can be flipped
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if you have longer hardware.
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Take it slow when installing heat inserts as it's very easy to push them through and cause deformation on the face of the hinge.
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Set temp on iron lower than used on most other heat inserted parts as this gives you more time not to press through. Also
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you may have to use the side of your iron's tip as not to puncture all the way.
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For placement of drilling, you can install the hinges in place, and tape or use panel clips from sides temporarily to hold
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front doors and tape outline of hinge. Then remove the panel and hinge, place the hinge where the tape outline is, mark the hole and drill.
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> TIP: When installing with tape, mount the panels with the same corner clips that are used on the sides and top - you
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> can temporarily take a couple from each panel. Use the corner clips to position the doors where they should be when
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> closed. Install the hinges on the sides at the desired positions and apply the double-sided adhesive tape to the hinges.
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> Then swing the hinges inwards touching the doors and secure them. Once you feel the adhesive is secure, remove the
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> corner clips.
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## CAD Files
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The CAD files are parametric! When opened in Fusion 360, editing the `thickness` parameter will change the spacing and
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geometry to allow the hinge full 270 articulation. Enter in thickness of your panel and foam, I would recommend
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accounting for the compression in your foam. Example 3 mm panel with 3 mm foam, typical 6 mm would be entered, but possible
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that 5.8 mm might be a better choice to give some compression for a seal. If you are unsure, printing a single bracket and
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testing fitment and offset would be ideal.
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If you would like to use this with tape only you may adjust the `faceThickness` parameter to be thinner but wouldn't
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suggest going smaller than 3 mm. You will also need to remove or extrude flush the holes for the brass inserts. Also the
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`faceWidth` parameter may be adjusted to be smaller width. Would not go lower than 27 mm for this parameter.
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The logo can be removed if needed. If using Fusion 360 with history, step back two actions and logo will be removed.
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Otherwise removal of chamfer and extrude flush will be needed.
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```
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thickness : panel + foam depth in mm (default 4 mm)
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faceThickness : depth of the face portion of hinge not including panel + foam (default 5 mm)
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FacePlate_width : width of facing hinge from edge of extrusion to the opposite edge. Not actual width of hinge default (34.9 mm)
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Taped versions use 27mm. See image below.
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```
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### Questions / Suggestions
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If you have any questions or suggestions feel free to contact me on Discord [chrisrgonzales#0731](https://discord.com/users/chrisrgonzales#0731)
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 |  |  | 
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--- | --- | --- | ---
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0° | 180° | 270° | FacePlate_width
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