Aurora3D diy reprap prusa i3 3d printer


Aurora3D DIY RepRap Prusa I3 3D Printer, 7.9" x7.9" x 7.1" Build Volume, Heated Bed, Support ABS and PLA Filament, Upgrade Injection Molded, 2015 Newest Desktop Starter Bundle Kits

Brand : Aurora

Brand : Aurora

Description

  • High printing accuracy.
  • Easy for installation.
  • Nice appearance.
  • Low price.
  • Imported from USA.

Brand: JGAURORA Model: Z-605 KIT Structure: Acrylic Quantity: 1 Printing size: 190*190*180mm Precision: 0.1-0.4mm offline printing: TF card LCD Screen: N Printing speed: 20~100mm/s Nozzle diameter: 0.4mm Nozzle temperature: Room temp-250 centigrade Hot bed temperature: Room temp-110 centigrade Hot bed material: Aluminum substrate Printing filament: PLA,ABS Filament diameter: 1.75mm Recommended filament: PLA Software language: English/Chinese/ect. Input file type: STL, G-Code Supporting function: Optional Device dimension: 430*405*370mm Device weight: 7. 5KG Packing dimension: 510*470*230mm Packing weight: 10KG Voltage: AC110~230V OS: Windows,Lunis,Mac Control software: Repetier-Host Working condition: Temp:10-30℃,Humidity:20-50%

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Printable parts for Original Prusa

Relevant for

:

CW1MINIMINI+MK2.5MK2.5SMK2SMK3MK3SMMU1MMU2SPlus 1.75 mmSL1

Last updated

6 months ago

This article is also available in following languages:

 

Plastic parts used on our 3D printers are printed by the same very machines, holding on to the original idea of the RepRap project. If you want to print replacement parts, upgrades, have your printer in a different color, or make your own modifications it is all available online.

Downloading printable parts

Printables.com

We have published STL files for every printable part of our printers, as well as printing instructions, to Printable's print depository. Here you can easily browse and view parts by their area of installation using the Printables folders feature.

Check out the Printable parts collection on Printables to find the parts you need.

Prusa3d.com

You can find the latest printable parts for all of our 3D printers or printer upgrades at Prusa i3 Printable parts. Printable parts are divided into two groups: 

  • Complete kits - which contain a full set of plastic parts for the entire 3D printer.  
  • Upgrades - which contain only the parts for upgrading to the new version of the printer. 

Here you can download STL-files for absolutely all plastic parts and pre-sliced GCODES for all upgrades.

Settings

If you decide to generate your G-codes, it is recommended to use:

  • Material: PETG
  • 0.2 mm layer height QUALITY preset
  • Infill: 20% GRID

The 'Fan-shroud'- part, which directs air from the print-fan to the part, should be printed in ASA or ABS, but otherwise with the same settings.

If you have printed your own plastic parts, check this article for guidance on post-processing.

Project files (STEP/SCAD)

We do not provide the actual project-files for our printed parts. Too many different programs being used for that. However, if you are interested in modifying the parts we have made STEP files (in addition to STL files) available on our Github, for all parts.

Project files (STEP/SCAD) are only available in the Github branch/tree where they were initially released.

Some parts were designed using OpenSCAD, where SCAD files are the project files you can edit. For that reason, for all parts designed with OpenSCAD, there are only SCAD files and no STEP-files available. This also includes metal parts.

  • MK-series: https://github.com/prusa3d/Original-Prusa-i3
  • MINI: https://github.com/prusa3d/Original-Prusa-MINI/releases
  • SL1: https://github. com/prusa3d/Original-Prusa-SL1

For the MK-series you simply select the branch for the machine you are after and navigate to the file.

The naming of printable parts

To know the origin of our printable parts, we are using naming which always starts with an alphabetical letter and is followed by a number

  • C# D# - MK3S/MK3S+ parts produced in our 3D printing farm, which are sent to our customers with Kits or pre-assembled printers. 
  • F# - MINI / MINI+ parts, farm printed. 
  • M# - MMU2S parts, farm printed. 
  • S# - SL1 / CW1 parts, farm printed.
  • R# - Parts that can be found at Prusa Research profile at PrusaPrinters, Prusa3D site or our Github. These are the parts you can print yourself. 

Each letter of the alphabet is only used 9 times. For example, once we reached C9, the next revision was named D1.

3D printer Prusa i3 Steel - DIY from the manufacturer 3DiY FDM/FFF)

Construction area, mm: 200x200x220

Printing material: ABS plastic, PLA plastic, PVA plastic, hips, filaflex,

All specifications

Description of the 3D printer "Prusa i3 Steel - DIY"

Prusa i3 Steel DIY is a kit for building a Prusa i3 Steel 3D printer. This 3D printer differs from its predecessors from the Prusa family by a RIGID STEEL BODY, an increased print area, the ability to print with various materials - ABS, PLA, HIPS, FLEX, PVA. Inexpensive 3D printer Prusa i3 Steel has small dimensions (410 x 480 x 450 mm), at the same time, a sufficient build area (200 x 200 x 220 mm), which makes it the best option for personal use. The design does not use any studs or plastic parts - everything is made of steel. This model provides reliability, quality and high speed of the press.

About Prusa i3 Steel - DIY printer

Package contents

Electronics:

  • Arduino Mega 2560 R3 controller board (1 pc)
  • Ramps 1.4 expansion board (1 pc)
  • LCD display (1pc)
  • USB cable (1 pc)
  • stepper motor driver A4988 (5 pcs)
  • Nema 17 stepper motor (4 pcs)
  • extruder assembly (1 pc)
  • mechanical limit switch (3 pcs)
  • power supply (1 pc)
  • heating table MK2 (1 pc)
  • NTC thermistor 100 kOhm 3950 for heating table (1 pc)
  • fan (Hot-End 30x30 airflow, PCB airflow 40x40) (2 pcs)
  • male-female wires for extension-connection of engines, thermistors, limit switches with RAMPS 1. 4 board (40 pcs)
  • power cable 220V (1 pc)
  • power connector with button (1 pc)

Mechanics:

  • body kit (3mm steel, black painted)
  • set of polished shafts with a diameter of 8 mm
  • gear screw-nut M5 (Z-axis movement) (2 pcs)
  • set of nuts, screws, washers, springs
  • coupling 5x5 mm (2 pcs)
  • lm8uu linear bearing (11 pcs)
  • bearing 608ZZ (2 pcs)
  • Timing belt GT-2 (2 pcs)
  • toothed pulley GT-2 (2 pcs)
  • braid for wires (2 pcs)
  • heating table mirror (1 pc)

All parts included in the kit are neatly packed in a box (dimensions: 500x500x10 mm). The kit includes detailed instructions for assembling a 3D printer.

Printed Models

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Prusa i3 Steel - DIY 3D Printer Owner Articles

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Prusa i3/en - RepRap

Prusa i3 Documentation

Main page | Prusa i3 Buyer's Guide | Prusa i3 Build Manual | Prusa i3 User Manual | Prusa i3 improvements

Prusa i3

Release status: working

Description

Prusa i3 design Prusajr.

License

GPL

Author

User:Prusajr (design),

Contributors
Based-on

Prusa i3

Categories

Prusa i3/ru, Prusa i3 Development, Prusa Mendel Development, Prusa Mendel, Mendel Variations, Cartesian-XZ-head

CAD Models
External Link

Github

Contents

  • 1 Introduction
  • 2 Features
  • 3 Major changes and improvements
  • 4 Project development
  • 5 History
  • 6 Printed parts
  • 7 Frame type
    • 7.1 Single Sheet frame
    • 7.2 Wood Sheet frame
    • 7.3 Box Style frame
    • 7.4 Alternative frame
  • 8 Electronics
    • 8. 1 Stepper motors
    • 8.2 Controller
    • 8.3 Extruder
  • 9 Spool holder
  • 10 Translation
  • 11 Parts

Introduction

Prusa i3 is the current latest 3D printer design from RepRap Core Developer Prusajr. i3 took into account all the mistakes of the previous two generations of Prusa, as well as other popular RepRap printers. See also Prusa Mendel (iteration 2).

Derivatives
The Prusa i3 is a very popular model that has attracted the interest of many people making derivatives. View a list of these derivatives Category: Prusa i3 Derivate.

Features

' Single Sheet Frame Box frame
Plastic parts (without Extruder) 26 29
Parts that cannot be printed ≈. 337 293
Price $300-1000? $300-$800?
Controller Almost any RepRap Almost any RepRap
Printable area 200 x 200 x 200 200 x 200 x 270
Engines 5 x NEMA 17 Stepper 5 x NEMA 17 Stepper
Frame material 6mm Aluminium, Wood 12mm Wood
Frame production Laser Cutter, CNC, Water Jet Basic woodworking tools
+ Easy assembly rigid connection of XZ to Y axes
- Specialized tools Looks less professional?

Main changes and improvements

List of main improvements over Prusa Mendel Iteration 2

  • Improved frame rigidity (prevents X-axis play)
  • Easy assembly
  • parametric model files for different sizes of bushings and bearings

Development of the project

Development and new Prusa Mendel files are hosted on github: https://github. com/josefprusa/Prusa3.

History

Printed parts

STL models for printer assembly can be found here: Clone_wars:_Prusa_iteración_3. and in the ZIP archive here: File:Clonewars.zip


To compile STL models for your parameters, use the files from Github [[1]] (box style files) [[2]] (Single sheet style files) Copy configuration.scad.dist to configuration.scad and complete the section user settings

Using doc/complete-printer.scad as a visual cue and doc/manual.txt as a guide, build a printer.

Frame type

Prusa i3 frame type is divided into 2 types: Single Sheet Frame and Box Style Frame. The Single Sheet Frame is designed for assembly using a laser cutter, WaterJet, and CNC Mill. Usually Single Sheet Frame is made of aluminum or wood. Both can be made from 6mm or thicker material. Both the EiNSTeiN variant and the redesigned i3 use a single sheet aluminum frame. The Box Style frame, on the other hand, is designed for easy assembly at home using basic woodworking tools.


Single Sheet frame

This frame is made from a single sheet of metal, usually aluminium, but can be made from different materials over 6mm thick.

Prusa i3 with solid sheet metal frame.


Pros:

- Looks professional (subjective)

Cons:

- Requires specialized tools (e.g. waterjet cutter)

- The stiffness of the connection between the XZ-frame and the Y-frame is weak, but this can be corrected by the TwelvePro option, which provides additional support for the frame.


Wood Sheet Frame

This version of the frame can be made from wood or Plexiglas using laser or water jet cutting. The only difference is that this version has wedges on the back of the vertical frame.

Wood Style frame

Wood Style frame made of melamine


Same construction.

Find the files here github. com/sgraber/Prusa3_LC.

Pros:

- Looks professional (subjective)

Cons:

- Requires specialized tools (eg laser cutter)

- The rigidity of the connection between the XZ-frame and the Y-frame is lame.


Box Style frame

This frame is made from 8 small sheets of plywood or chipboard.

Prusa i3 with box style.


Pros:

- Can be created using common tools

- Improved joint rigidity between XZ-frame and Y-frame.

Cons:

- Looks less professional (subjective)


Alternative frame

Alternative frame.

This frame version only uses 5 parts instead of 8. Requires some additional cutting work, but less assembly effort.

Drawings can be found here[3]

Electronics

Stepper motors

Prusa version 3 uses five NEMA17 stepper motors (including the motor for the extruder). The two motors that rotate the Z axis are connected to one driver. In case a Wade's Extruder is used, a motor with a holding force of at least 40 Ncm (0.4 Nm) must be used. You can read more about stepper motors on this page.

Controller

Any suitable controller can be used in Prusa version 3. The most common option is Arduin MEGA + RAMPS 1.4, but almost any other option will work, such as Sanguinololu. Minimum requirements: 4 stepper motor drivers, 1 extruder thermistor input, 1 extruder heater output. It is desirable to have one more input for the heated table thermistor and an output for the table heater. It is recommended to immediately equip the controller with a kit in the form of an LCD and a card reader, this will allow you to print without the participation of a PC / laptop and will positively affect the print quality. the extruder will not be idle waiting for Serial instructions. The choice of controller is a matter of taste and possibilities. For selection, you can explore the following pages: a list of controllers, a table of comparison of controllers and alternative electronics.


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