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3D模型:轨道器V2.0 - 涡轮驱动系统 - BTT EBB36 侧边安装

Orbiter V2.0 - Turbiter - BTT EBB36 Side Mount

2024-01-07 12:05:08

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Summary

Orbiter V2.0 Turbiter BTT EBB36 Canboard side mount

THIS CONTAINS REMIXED FILES FROM THE ORBITER TURBITER PROJECT:
https://www.orbiterprojects.com/turbiter/

MOTIVATIONS:
I designed this part for my Ender 3 pro which I modified heavily to print at higher speeds and more advanced materials. This is part of a tool head modification I made around the Klemco V6 (Fystec V6 on Amazon) mount. You can find the other parts on my page on Thingiverse or printables. Feel free to use them as the official Klemco parts are incomplete for the orbiter mount.

REMIXING AND MODIFICATIONS:
I have included all Solidworks files and they are fully dimensionally parametric so feel free to pop into the equations page and modify some values.

(The geometry isn't fully parametrically constrained for some aspects. You may need to modify additional values as it isn't designed to scale using inputs automatically.)
(If you do not have Solidworks I highly recommend Onshape, it is a great alternative with a more modern GitHub-like version control system.)

Print Settings

  • Printer brand:

    Monoprice

  • Printer:

    Mini Delta V2

  • Rafts:
    Doesn't Matter
  • Supports:
    Yes
  • Resolution:
    0.2mm Layer Height
  • Infill:
    20% Gyroid (Up to you)
  • Filament brand:

    SUNLU

  • Filament color:

    Black

  • Filament material:

    PLA+ or ABS

  • Notes:

    This is a functional print. It is meant to snugly attach to the ldo nema 14 motor (36mm diameter) on the back of your Orbiter V2.0 and fit a 3010 square blower fan inside it using an interference fit. You must adjust for shrinkage based on your material and printer.

Post-Printing

Required Materials: M3 6mm Heat Inserts, 4mm Ziptie

The mounting holes for the EBB require two M3 6mm brass heat set inserts in order to screw in the ebb36 board.

If you want to mount the board using just M3 Screws you will need to shrink the diameter for the mount holes so that the metal cuts threads into the material. (Can be done via the .sldprt files using the preset equations.)

You will also need to ziptie the CAN Cable to reduce strain on the cable as mini molex is a poor standard.

How I Designed This

The goal was to modify the turbiter design to have an EBB36 mount on the side using heat inserts.

The available orientations for mounting the EBB36 were not compatible with the geometric restrictions posed by my mounting situation and printer design (bedslinger). The rear motor mount options would cause a collision with the side towers or the top tower, the front-facing motor mount causes too much torsion on the tool head resulting in unwanted resonance so the only real option is to mount it on the linear rail carriage or the side of the orbiter. The linear rail mount does not allow enough clearance for the wiring so the only option left is the side mount.

Tags

License

CC BY-NC

Orbiter V2.0 - Turbiter - BTT EBB36 Side Mount
by suhbatshugan is licensed under the Creative Commons - Attribution - Non-Commercial license.

3D模型:轨道器V2.0 - 涡轮驱动系统 - BTT EBB36 侧边安装
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