Showing posts with label software. Show all posts
Showing posts with label software. Show all posts

First look at Cloud Based Fusion 360

Many of you use Fusion 360 as main design application. Adafruit team shows us the first view at browser based Fusion 360 system. Personally, I'm more fan of the open source software and I don't like to depend on a big corporation.





Link where you can test it yourself:

https://www.autodesk.com/products/fusion-360/blog/fusion-360-in-a-browser-preview/

My First Impressions With Using ViaCAD

I had some time to play around with ViaCAD and it looks really interesting. I've downloaded the 14-day trial version and used a few simple daily tasks to see how it performs.

First steps in the program interface are very easy and you are greeted with a simple video tutorial on how to create a 3D goblet from 2D drawing in 60 seconds:





From the beginning, I wanted to focus on 3D printing tools which are a part of this CADs features.

The toolbar with 3D Printing tools can be activated in the "Window" menu.
























The interface is fast and fluid.

You can define your printer settings from a list of the pre-defined machine or set it manually:



































To see how other functions work, I imported the Voronoi "Broken benchy" by T-E-C from Thingiverse. It is a more complicated and harder version of the standard Benchy.





























You can check the printability of your model with "3D Print Check" tool. Here is the output screen with some of the errors found, with several being my mistakes of not properly aligning the object or setting the parameters correctly (like print volume).
Very useful!































"Surface normals" tool shows, you guessed it, surface normals :-)






























There are tools to show overhangs and wall thickness.

"Slices" tools will show animated slices base on several parameters, they can be saved into several formats. This is not a slicer which generates g-code for printing.





























"Support structures" tool enables you to create support pieces and attach them with a mouse click.

































With the "Position" tool you can place the object anywhere in selected print volume coordinate manually or with the automatic positions like "Center".

These basic tools were easy to use at this level, time will show how they perform in everyday work during a longer period. For now, I'm satisfied with this CAD software and will continue to us it.


You can get ViaCAD here and test it yourself and download a trial version from PunchCAD homepage:


PunchCAD.com


There are additional 3D Printing "power packs" for ViaCAD with 70+ 3d printing tools, you can see them here:

Punch! PowerPack v10

Here is a video demo:


Maybe I'll get them also in the future. The pack seems to have many tools in one place instead of using multiple apps and sites.

In next post, I'll describe some of my experiences with actual design and learning curve.

PrusaControl - a new software interface from Prusa3D

Prusa released a new software aimed at beginners: the PrusaControl, which is a simplified interface for Slic3r Prusa Edition.

Here is the description from the news release:
PrusaControl is an alternative user interface for Slic3r Prusa Edition.
Slic3r Prusa Edition was the first step with a great success and we are extremely proud when people mention they switched back from S3D. But Slic3r has one problem, it is rather complex and intimidating for new users. We cannot do much about this, it is its nature. And that is why PrusaControl was born. It is parallel to Slic3r PE for newcomers to 3D printing, we distil the settings down for the user and put our knowledge to the backend to get the same results. The main goal is to open an object and hit print. PrusaControl is simple, novice friendly and smart.























PrusaControl home page:

http://prusacontrol.org/

Source news article:

http://www.prusaprinters.org/prusacontrol-release/

ViaCAD by Punch!CAD

I'm always on a search for the new and interesting software tools and when I received a tweet from Punch!CAD about their ViaCAD product I decided to take a look.

ViaCAD looks like an easy to use CAD that has an acceptable learning curve and feature set. You can start from the easy models and move into more complex stuff as you learn. Since it has support for many file formats I was able to open and edit things from various sources. The community behind it and support/tutorials available helped me find answers quickly.

The price seems very affordable and there are no additional fees or vendor lock-in features. It runs both on Windows and Mac machines.


ViaCAD has some powerful 3D printing features and tools:

  • 3D Print Check: This tool checks a part for print viability, displaying warnings or errors to the user.
  • Surface Normals Check: Facet normals define the inside and outside areas of a part. If facet normals are pointing the wrong way, the 3D printer may have problems creating the part. If you have a normals issue, there are several commands that can help you fix this problem.
  • Overhang Analysis: The Overhang Analysis tool provides a means to visually inspect modeling areas that may require structural support for 3D printing. Meshes, surfaces, and solids facets normals are compared to the work plane direction. Angles that are less or equal to 45 degrees are highlighted as red.
  • Wall Thickness: The Wall Thickness Analysis tool provides a means to visually inspect modeling areas that may be too thin for 3D printing. Meshes, surfaces, and solids facets are examined using ray intersections. 
  • Preview Slices: The Preview Slices tool provides a user interface to slice models given a direction and thickness. The dialog box allows for animation through the slices and single stepping. One use of the Preview Slice tool is to verify a part has closed, non-overlapping sections, a requirement for 3D printing. The Save Slices option provides several options to save slices to DXF, STL or adds the results directly into your drawing.
  • Auto Position: The Auto Position tool translates the model to the positive x, y coordinate system at z=0.
  • Support Structure: Manually adds geometry to support material as it is created by the 3D printer. Support structures controls, include Attach Radius, Midpoint Radius, Base Radius, Base Thickness and Drag base and midpoints to modify structure location.
  • Show Printer Volume: Toggles the boundary of the default 3D Printer. The volume is defined within the Printer Definitions dialog box.
  • Printer Definitions: Sets key parameters of the 3D printer, including length, width, and height of the volume accessible by the printer. The parameters in the Printer Definitions dialog box are used for commands such as 3D Print Check and Auto Position.

Here is the ViaCAD presentation video:




For much more information go and check out the company website:

http://www.punchcad.com/



In the future, I'm going to explore ViaCAd further and see if it can bring a CAD noob like myself on to the next skill level.

SelfCAD is a new browser based CAD and slicer software

SelfCAD is a new browser based CAD and slicer application with many powerful features but focused on simplicity and usability. It has a subscription based model with a free trial and has a somewhat high cost for the benefit it provides.


Here is how SelfCAD is described:
SelfCAD 's mission is to make 3D designing and printing accessible to everyone, including professional designers, as well as hobbyists and students who have little to no prior expertise using CAD/CAM software. One of the greatest achievements of SelfCAD is its simplicity and a low entry price point. Advanced shapes can be created within minutes using various shape creators.
SelfCAD is an online browser-based CAD/CAM platform which allows the you to model, sculpt, slice and print online. With SelfCAD, you do not have to spend months learning complex software and pay hundreds of dollars for the privilege. SelfCAD is about simplicity, affordability and accessibility. Learn, create, and print objects in a fraction of the time required with traditional CAD/CAM software.

SelfCAD introduction video:





Here is one of the feature demonstrations focusing on 3d screw generator:




Slicer video tutorial:





You can check it out at:

https://www.selfcad.com/

SelfCAD has a very active YouTube channel with many tutorials and feature demonstrations:

SelfCAD on YouTube

Here is an interview with the CEO and founder, Aaron Breuer:

http://www.3dnatives.com/en/selfcad-interview010520174/

Podcast interview on 3D Start Point: https://3dstartpoint.com/teach-your-selfcad-with-aaron-breuer/


SelfCAD user interface

Marlin 1.1 released!!!

The new Marlin 1.1 firmware has been released with many new features and upgrades!

Here is the description from github site: Marlin 1.1 Release Notes

"Marlin 1.1 represents an evolutionary leap over Marlin 1.0.2. It is the result of over two years of effort by several volunteers around the world who have paid meticulous and sometimes obsessive attention to every detail. For this release, we focused on code quality, performance, stability, and overall user experience. Several new features have also been added, many of which require no extra hardware.

The code has been significantly optimized in several areas, leading to fewer stutters, better delta performance, more reliable USB/Serial communication, and more consistent and deterministic results."

Key improvements are:
  • More consistent configuration with sanity-checking.
  • Many more boards supported, with sane defaults for most common features. Improved thermal protection, enabled by default with tight margins for error.
  • Improved Auto Bed Leveling with Bilinear Mesh and probeless operation.
  • Unified Bed Leveling™ – Combining all forms of bed leveling in one package, plus tools like G26 Mesh Validation to improve leveling accuracy even further.
  • Option to "fade" leveling compensation out over several layers to save computes on long prints.
  • Support for up to 5 extruders with different geometries.
  • Support for mixing and switching extruders. Linear Advance compensates for viscosity and pressure to reduce ooze and improve surfaces.
  • Dozens of languages including Japanese, Galician, and Simplified Chinese.
  • Significantly improved UI performance, especially Graphical Display.
  • Display rate adjusts dynamically to prevent print stuttering.
  • M600 Filament Change, Nozzle Clean, Nozzle Park, Auto Park on Pause, etc.
  • Improved support for Bed Leveling probes and Manual Probing.
  • Support for Trinamic steppers, i2c control, steppers as endstops.
  • Endstops can use pin interrupts for improved performance.
  • M43 Pins Debugging to report about, test, and monitor pins and endstops.
  • Print Job Timer
  • Sorted SD Card file listings.
  • Improved host integration, extended capabilities report, keepalive messages, auto-report temperature, and more!
  • Integrated I2C Bus allowing Marlin to interoperate on multiple boards.
  • Support for Case Light, RGB LED, LED Strip. Printer events feedback.
  • New features too numerous to list here. Read the config files for details!
For complete Marlin documentation and downloads go to the Marlin Homepage:

www.marlinfw.org

GitHub repository:

https://github.com/MarlinFirmware/Marlin




TrussFab Builds Complex Structures with 3D Printed Hubs and Bottles

Researchers at Hasso Plattner Institute developed TrussFab system which enables you to design and build large complex structures like furniture, boats, and buildings. Hopefully, they will open source the software.

Project description:
TrussFab is an integrated end-to-end system that allows users to fabricate large-scale structures that are sturdy enough to carry human weight. TrussFab achieves the large scale by complementing 3D print with plastic bottles.  TrussFab achieves the large scale by complementing 3D print with plastic bottles. It does not use these bottles as “bricks” though, but as beams that form structurally sound node-link structures, also known as trusses.

TrussFab presentation video:





Project homepage with more information about it:

https://hpi.de/en/baudisch/projects/trussfab.html

Full scientific publication in PDF:

https://hpi.de/fileadmin/user_upload/fachgebiete/baudisch/projects/TrussFab/TrussFab-authors-copy.pdf

3d printed structural hub holding the bottle trusses

Some Good Upgrade and Slicing News from Prusa

The Prusa team announced two great little upgrades in slicing software and hardware.

Slic3r Prusa edition has new smooth variable height layer option and new support optimization.

Here is the presentation video for SLH:





You can read about it, in more detail, here:

http://www.prusaprinters.org/smooth-variable-layer-height-awesome-supports-slic3r-prusa-edition/


Prusa i3 MK2 is now upgraded into MK2S

MK2S is being rolled into production and it comes several improvments.

Key MK2S features:
  • Better LM8UU mounting on Y axis
  • Better LM8UUs and smooth rods
  • Better P.I.N.D.A. probe mount
  • Improved cable stress relief on the extruder
  • Better electronics cover
No more zip ties!!! Yeah!!!

Metal U-bolts now hold things fixated
















For users with old version upgrade kit comes at 49 USD.

Full tech specs with pictures:

http://www.prusaprinters.org/original-prusa-i3-mk2s-release/

MakerBot MinFill

Makerbot presented their new software innovation that enables you to minimize and optimize the infill to save time and material. It can reduce material and time for some 30%. You will lose some structural integrity, but it is aimed at prototyping applications.






































MinFill presentation video:




Makerbot news post with more detail:

https://www.makerbot.com/media-center/2017/03/20/introducing-makerbot-minfill


Here is the Minfill description:
Now you can bring your ideas to life faster for less with this major breakthrough in MakerBot Print. We’re proud to introduce MakerBot MinFill, a dynamic new Print Mode that is the first of its kind in 3D printing. Short for “Minimum Infill,” MinFill uses an intelligent algorithm to determine the absolute minimum amount of support needed for the inside of any 3D print.
As we’ve learned from professional users, not all prints need to be durable, dense, or heavy. When surface quality and print speed are more important, MinFill is a far more efficient option — especially for prints with a large internal volume.
Based on our testing, MinFill typically prints 30% faster using 30% less filament. With especially voluminous models, like spheres, we’ve seen MinFill print up to 80% faster. For professionals, that means faster early concept modeling, faster form studies, and more iterations in less time.
MinFill’s Benefits at a Glance
  • Professionals can accelerate early concept modeling, form studies, and iterations.
  • Educators can serve more students and classrooms while saving time and money.
  • Based on our testing, MinFill typically prints 30% faster using 30% less filament.*
  • The greater the internal volume of your print, the more time and money you save.
  • Compatible with MakerBot Replicator+, Replicator (5th Gen), and the Replicator Z18.

I'm still waiting to see some tests and reviews by independent sources. I also hope that this will be implemented on other platforms. Does anyone know of anything simillar?

New Cura 2.4 released with tons of new features!

New Cura 2.4 is released by Ultimaker. It has many new features and improvements. Here are just some key novelties:

  • Project saving / opening. Cura 2.4 now lets you save your build plate configuration, which includes all your active machine’s meshes and settings too. Even more conveniently, when you reopen your project file, you’ll see that all build plate configurations and settings are exactly as you left them when you last saved the project.
  • Search Settings. Need to tweak a setting in a hurry? It’s now easy to search custom settings via the side panel.
  • Editing start / end g-code. If you need to alter the start and end g-code settings for your single-extrusion machines, the new Cura 2.4 lets you do just that.
  • Multiply object function. We know that duplicating an object multiple times can be a hassle, so we’ve made life easier for you. Simply right-click an object, and you can multiply it by a variable amount.
  • Single-extrusion prints. Your Ultimaker 3 dual-extrusion printer now lets you do single-extrusion prints within a larger printable area.
  • Streaming printer monitor view. Selected camera snapshots don’t really tell you much about how your print project is progressing. Now, you’ll be able to follow every second of your 3D print (if you want to), using the live streaming function. It’s an effective way to minimize errors while printing.
  • Slicing disabled? Now you’ll know why. It’s a bit frustrating when your slicing is blocked by settings with error values, but you don’t know which settings to change to make things right again. Now, a message will appear, clearly outlining what needs to be done to get your print back on track.
  • Ultimaker 3 printing profiles. The initial and final printing temperatures reduce oozing during PLA/PLA, PLA/PVA and Nylon/PVA prints. This means printing a prime tower is now optional (except for CPE and ABS, which we’re working on). The new Ultimaker 3 printing profiles boost reliability and reduce print time.
  • Initial layer printing temperature. We’ve fine-tuned the initial and final printing temperatures, to achieve a higher quality end-result.
  • Material printing temperature. The material printing temperature (in the material profiles) is now the same as the printing temperature for the Normal Quality profile.
  • Improved PLA/PVA layer adhesion. It’s important to get good layer adhesion between the PVA and PLA. That’s why we’ve now optimized the PVA jerk and acceleration.
  • Nylon – default build plate adhesion type. We’ve now changed the default build plate adhesion type for Nylon prints – from raft to brim.
  • Support Interface Thickness. To reduce printing time, we’ve changed the Support Roof Thickness to 0.8mm, and slightly decreased the PVA support infill.
  • Ultimaker 2+ PC prints. The raft settings for the 0.25mm and 0.4mm nozzles have been adjusted in the polycarbonate profiles – which means less warping and better print results.



























Detailed release post:

https://ultimaker.com/en/blog/38784-whats-new-in-cura-24

Download:

https://ultimaker.com/en/products/cura-software

3D Printable Control Unit with 32 Programmable Keys

Here is a very useful DIY 3d printable control unit that can send custom g-code scripts and macros via 32 programmable keys. It can be used on almost any machine that uses g code, like CNC mills, 3d printers, laser cutters and other. It is powered with Arduino Nano. 

The "Gcode Sender" was developed and released by James Sierra. Here is his description of the project:
This project is very much like using Pronterface or Repetier Host manual control to send gcode instructions to your printer while connected to the computer via USB cable, but instead using an Arduino Nano connected to a small keypad to send the Gcode scripts/macros.
Gcode sender is intended to work for 3D printers as well as a CNC mills and laser engravers. Any machine that uses gcode.
This setup allows one to send highly customized gcode scripts/macros to the printer with a push of a button. I've tested all of the scripts I included in the sketch. Any one of them can be replaced or edited.
In the sketch, i tired to include a lot of comments to make it easier to tweak the code to suit your own needs.
Communication between Gcode Sender and printer is through serial communication (Tx, Rx). On RAMPS style boards the AUX-1 port can be used. Specifics on wiring can be found in the Wiring.zip file. Be sure that Tx out wire on the Gcode Sender is connected to Rx on printer and Rx is connected to Tx. In Repetier firmware, I had to enable Bluetooth serial port to make use of the AUX-1 port.






























All files and instructions to make it yourself can be found at:

http://www.thingiverse.com/thing:2105847

GraphSCAD Nodal Editor for OpenSCAD

Dimitri Kolovitz developed GraphSCAD nodal editor for OpenSCAD scripts. It gives an interesting new way of working in this environment with powerful features.


Here is a demonstration of basic workflow and features:




Project homepage where you can follow the development and download it:

https://graphscad.blogspot.com/

At this time it is still a beta, but it look promising.



gDraw Software that Converts 2D Drawing into G-Code

Niklas Roy developed gDraw software that enables you to draw in 2D and then export it as 3D printable g-code.

In this example he used it to create simple Christmas card:






























Learn more about gDraw here:

http://www.niklasroy.com/articles/194/gdraw-free-software-for-you

GitHub repository:

https://github.com/royrobotiks/gDraw

Get 3D Printer Notifications on your Smartwatch via Octoprint and Telegram

Rene Jurack developed a simple tutorial on how you can get push notifications about your 3d print status to your smartwatch using the Octoprint and Telegram app.


You can see push notifications in action here on Apple Watch:



Complete setup tutorial can be found at project homepage:

http://well-engineered.net/index.php/en/58-push-notifications-from-your-3d-printer-with-octoprint-and-telegram



How to 3d print GPX data

Thingiverse user "snrk" aka Per from Sweden shared his method of converting .GPX data from a GPS in 3d printable files. He used Processing to with additional libraries to  parse the files and translate the data to points in a voxel array.

Here is the example of 3d printed run data recorded on a GPS device in .gpx format:































Full instructions can be found here:

http://www.thingiverse.com/thing:276911

MIT Foundry software is amazing, but will it be available to public?

MIT CSAIL scientists developed Foundry CAD / CAM software which they call "Photoshop for 3d printing". It looks amazing with many advanced options.

The main question will be open sourced and available for wider 3d printing community? I strongly support that all software developed by public funding be released under an open source license.
One of the articles claim that the developer, Kiril Vidimče, wants to integrate it  into the workflow of existing CAD systems. We will see ...

Here is a video of Foundry in action:



More information about Foundry:

http://vidimce.org/publications/foundry/

https://news.mit.edu/2016/designing-3-d-printing-foundry-1011


One of the objects designed in Foundry. Foundry news release claims it can be used by novice users also. 


Kiri:Moto Web Based Slicer for your 3D Printer, Laser Cutter and CNC Machine

Kiri:Moto is a new free web based slicer that can be used for FDM printers, laser cutters and CNC machines.
Kiri:Moto is an extensible, multi-purpose slicing and visualization engine that produces output for:
  • CAM : 3 axis CNC toolpaths
  • FDM : GCode for 3D printers
  • LASER : DXG / SVG cut paths
  • Onshape : Directly Integrated
  • Thingiverse : Thing App

Left menu options:





























Here is a more detailed video playlist with all functions presented:




Try it live at:

https://grid.space/kiri

You can also visit the project wiki for more information at:

https://github.com/GridSpace/gridspace.github.io/wiki/Kiri:Moto


New Cura 2.1.2 is out!

New Cura software in version 2.1.2.is released. As all releases it has some interesting new features:

Select Multiple Objects
You now have the freedom to select and manipulate multiple objects at the same time.

Grouping
You can now group objects together to make it easier to manipulate multiple objects.

Undo/Redo
You can now undo and redo your actions, like moving an object or scaling.

Setting Profiles
The new GUI allows custom profiles to load easily and intuitively, directly from Cura.

3MF File Loading Support
We’re happy to report we now support loading 3MF files. This is a new file format similar to AMF, but freely available.

Intuitive Cut-Off Object Bottom
Added a feature that allows you to move objects below the build plate. You can either correct a model with a rough bottom, or print only a part of an object. Please note that the implementation greatly differs from the old one where it was a setting.

64-bit Windows Builds
An optimized 64-bit Windows Cura version is now available. This allows loading larger model files.

Automatic calculations
Cura allows to set a number of lines/layers instead of millimeters. The engine automatically calculates the right settings.

Per-Object Settings
Per-object settings allow you to override individual profile settings per object.

CURA ENGINE FEATURES
Line width settings added per feature
Global, Walls, Top/Bottom, Infill, Skirt, Support.

Pattern settings improved per feature
Top/Bottom, Infill, Support.

Shell

  • Alternate Skin Rotation: helps to combat the pillowing problem on top layers.
  • Alternate Extra Wall: for better infill adhesion.
  • Horizontal Expansion: allows to compensate model x,y-size to get a 1:1 result.

Travel

  • (Combing) Avoid Printed Parts: when moving to the next part to print, avoid collisions between the nozzle and other parts which are already printed.

Support

  • Stair step height: Sets the balance between sturdy and hard to remove support. By setting steps of the stair-like bottom of the support resting on the model.
  • ZigZag: a new, infill type that’s easily breakable, introduced specially for support.
  • Support Roofs: a new sub-feature to reduce scars the support leaves on overhangs.
  • Support Towers: specialized support for tiny overhang areas.

Special Modes

  • Surface Mode: this mode will print the surface of the mesh instead of the enclosed volume. This used to be called ‘Only follow mesh surface’. In addition to the ‘surface mode’ and ‘normal’, a ‘both’ mode has now been added. This ensures all closed volumes are printed as normal and all loose geometry as single walls.

Experimental

  • Conical Support: a filament cost-reduction feature for support.
  • Draft Shield: prints a protective wall at a set distance around the object that prevents air from hitting the print, reducing warping.
  • Fuzzy Skin: prints the outer walls with a jittering motion to give your object a diffuse finish.
  • Wire Printing: the object is printed with a mid-air / net-like structure, following the mesh surface. The build plate will move up and down during diagonal segments. Though not visible in layer view, you can view the result in other software, such as Repetier Host or http://chilipeppr.com/tinyg.

REQUIREMENTS
Mac OSX 10.7 or Higher
Windows Vista or Higher
Ubuntu 14.04 or Higher - Only 64-bit versions
Cura requires a video card that supports OpenGL 2 or higher.

SUPPORTED 3D PRINTERS
By Ultimaker: Ultimaker Original (no dual extrusion support), Ultimaker Original+, Ultimaker 2 Family, Ultimaker 2+ Family.
By 3rd parties: BQ Prusa i3, BQ Witbox, 3D Maker Starter, RigidBot, Malyan M180, German RepRap Neo.
There is no dual extrusion support in Cura 2.1.2 yet. Users with an Ultimaker Original who installed the dual extrusion upgrade kit, can use Cura 15.04.

OTHER NEW CURA ENGINE SETTINGS

Shell

  • Top/Bottom Thickness: can now be changed separately!
  • Extra Skin Wall Count: add extra walls to the top and bottom layers to improve roofs that start on infill material.
  • Remove Overlapping Inner Wall Parts: remove narrow pieces that cause over extrusion on prints.
  • Compensate Wall Overlaps: compensate narrow pieces causing over extrusion on prints.
  • Fill Gaps Between Walls: fills the tiny gaps on narrow prints pieces.
  • Z Seam Alignment: allows you to choose the z-seam location.
  • Ignore Small Z gaps: if unchecked, fixes small Z gaps.
Infill
  • Infill Wipe Distance: allows you to increase infill overlap without over extrusion on the shell.
  • Infill Layer Thickness: choose a separate layer thickness for the infill to save time on prints.
  • Material
  • Retraction Extra Prima Amount: allows you to compensate for oozed material after a travel move.
  • Speed
  • Number of Slower Layers: sets the first layer(s) speeds to increase build plate adhesion.

Travel

  • Coasting: prevents oozing by replacing the end of print paths with a short travel move.

Cooling

  • Regular/Maximum Fan Speed Threshold: Allows you to set the time a layer must take to linearly go from Regular fan speed to Maximum fan speed.

Support

  • Stair Step Height: allows the support to lie tightly on top of objects, increasing support stability.
  • Join Distance: allows supports to become one, increasing support stability.
  • Horizontal Expansion: adds extra support to the x,y-directions, increasing support stability.
  • Area Smoothing: smooths the outside contour of support structures to minimize resonation of the print head.


News release:

https://ultimaker.com/en/blog/21263-cura-212-has-been-released

Download:

https://ultimaker.com/en/products/cura-software

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