How to Smooth and finish PLA 3D prints

Master Chief MJOLNIR Mark VI

How to: Smooth and finish PLA 3D prints

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How to: Smooth and finish PLA 3D prints

How to Smooth and Finish 3D Prints: PLA

For this tutorial, Im using theArkham Knight Helmet from the Batman Arkham Knight game.

1.) Glue each piece of your print together. I useLiquid Super Glue.  My favorite has beenHarbor Freights brand, but any will do.

2.) (Optional) Fill each seam withApoxie Sculpt. This strengthens the seams, and is very easy to sand. This is an entirely optional step, and something you may want to do for larger, heavier props or props with a lot of gaps, or errors. You can also use Apoxie Sculpt to sculpt on details.

3.) Add 2 to 3 layers ofFiller Primer. Be sure to do this in a well ventilated area and wear a respirator. Dont be afraid to lay it on thick. Once it dries and cures,  sand with low grit sandpaper (100~150). Sand back the higher areas to to blend the print lines smooth.

4.) AddBondo Spot Putty. Some pieces may not need much, others may need a lot. This print had a lot of flaws, and required more Bondo than usual.

Once it dries and cures, sand with slightly higher grit sandpaper (150-220).

5.) Rinse and Repeat! Literally. Rinse with water, and wait to dry. Bondo the problem areas that are still left, and sand them back again.

Extra: Your print may have had some flaws like this print and needs more work than just smoothing. This print had warped badly and I thought it would be easier to just fix withBondo-All Purpose Puttythan to reprint.

This Bondo is trickier to use than Spot Putty. Youll need to read and follow their instructions. You have a limited amount of time and much less forgiving material. Lay it on in thin layers and work your way up. This stuff is much more difficult to sand and I suggest using a hand/mouse sander to save yourself some time.

Once youve sanded your Bondo Smooth, repeat Step 3.

Final) Once it is smooth, youre ready for paint! For this, I usedMetallic Blue& Satin Black for the base colors.

For weathering, I took a dry paint brush, sprayed the ends with chrome spray paint, and lightly tapped the edges of the helmet to create a weathered look. This gives the illusion that the helmet is metal and the paint has scratched away revealing the metal under layers.

Thanks for reading and if you have any questions or suggestions, please contact me.

[] Props has also included a tutorial of how to finish the mask once its 3D printed so it looks like the gif below. We highly suggest you check out their Facebook and []

[] remixed from a previous design originally uploaded by another user. Project Props followed up with instructions for how to smooth and finish the PLA 3D-printed mask, so that fans can take their cosplay to the next []

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How to Smooth Your PLA 3D Prints

Matthew Gorton of PrintedSolid seems to have found a way to smooth PLA prints.

Up to now most enthusiasts interested in smoothing prints used Acetone vapor to smooth ABS plastic prints. But the technique did not work on PLA plastic. Chemistry, you know.

Acetone is used by some to finish ABS prints into a smooth, glossy surface. The acetone vapor, created by heating liquid Acetone in a chamber, slightly softens ABS plastic. After an appropriate amount of time immersed in Acetone vapor, ABS objects are removed and re-solidify with smooth surfaces. Its a semi-dangerous activity, as Acetone is flammable and toxic, but many take the right precautions and get the job done. But it doesnt work with PLA.

Gorton knew there were exotic and even more toxic chemicals (Tetrahydrofuran) that can work with PLA in a similar manner, but THF is not something wed want in our lab.

So what can one do to smooth a PLA print beyond manual sanding or hours of jiggling in an abrasion shaker? Gorton tested Ethyl Acetate, which is sometimes found in paint stores, as it can be used as a thinner.

He tested several species of PLA, including ColorFabbs popular WoodFill product (which discolored) and found smoothing did actually occur. With some tuning of immerse durations, its likely this approach can be used to smooth PLA.

Ironically, some people use PLA because of potential safety issues with ABS plastic fumes floating around their unventilated homes or offices. Using Ethyl Acetate in the same location slightly increases the danger factor, as it has safety characteristics similar to Acetone.

Can someone please build an inexpensive smoothing tank that safely contains the smoothing agent?

Kerry Stevenson, aka General Fabb has been writing Fabbaloo posts since he launched the venture in 2007, with an intention to promote and grow the incredible technology of 3D printing across the world. So far, it seems to be working!

Fabbaloo is a daily online publication focusing on the 3D print and additive manufacturing industries. We provide deeper analysis of developments in current and future technologies as well as corporate matters. If theres something happening in 3D technologies, especially FDM, SLA, SLS and Stereolithography, well have an opinion about it.

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Which PLA is the Best for 3D Printing? Ask 3D Matter

Which PLA is the Best for 3D Printing? Ask 3D Matter

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Which PLA is the Best for 3D Printing? Ask 3D Matter

On forums and social media groups devoted to 3D printing, the question is often raised of which filament manufacturer is the best. See, 3D printing filament can vary from supplier to supplier in terms of consistency, quality, and price, among other criteria. And, as more and more companies take to the 3D printing market with their own filaments for desktop fused filament fabrication, navigating these options is increasingly difficult. Materials consulting firm3D Matterhas taken it upon itself to look into the matter, publishing a white paper discussing the variety of PLA filament out there and nailing down which is the best, based on a number of criteria.

3D Matter was founded by Arthur Sebert, an engineer from Ecole des Ponts Paristech with a Masters in Engineering for Sustainable Development from the University of Cambridge.  Working in strategy consulting for Roland Berger, in the field of chemicals and energy, for the past four years, Sebert became an expert in materials and manufacturing. Believing that 3D printing will cause a major shift in manufacturing, he sees materials as the key catalyst for growth in 3D printing. As a result, he began 3D Matter to provide definitive information on materials for 3D printing, at both the consumer and industrial levels, beginning with PLA for desktop fabrication.

To test PLA filaments from a huge range of suppliers, 3D Matter created test prints using 3D printers supplied byDOODand relied on mechanical testing machines fromNavier laboratory at Ecole des Ponts Paristechin Paris.  3D Matter developed a set of criteria on which to judge its series of filament samples: strength, elongation at break, rigidity, surface finish, feature detail accuracy, consistency, post-processing requirements, and more. Though 3D Matter generally focused on PLA filament, composite filaments were tested as well, including wood, carbon fiber, and copper materials.

As a result, 3D Matter came up with some pretty unique findings, writing:

Regular PLA filaments show a wide range of price points, but it didnt seem justified considering the slim differences between them. Not considering price, Makerbot tested best on the aggregate assessment. With price in mind, Dutch Filaments offers a great filament at a low cost.

Modified filaments are quite different from regular ones and therefore may qualify for a higher price point. While the performance is not on par, the quality of the prints is significantly improved and unique. They offer very promising prospects for filament 3D printing.

Its no surprise that price points between filaments dont necessarily signify better materials. What is surprising, at least based on my observations of the RepRap community, is that MakerBot came out on top, as Ive seen at least a handful of open source advocates complain about the price of MakerBot filament, compared to materials from other manufacturers. Luckily for them, they can turn to Dutch Filaments for a lower priced feedstock.

You may already be wondering as to the exhaustiveness of this test.  3D Matter, as a start-up, has only just begun the testing process and acknowledges that there are some issues inherent in the research, including the following:

Printer specificities: we used only one 3D printer to do the tests and we believe there may be some differences depending on the machine used

Ease of procurement: depending on your location or the volume required, it may be cheaper and/or simpler to get filament from a given supplier and affect your choice

Toxicity: we didnt measure the toxicity of each filament. While we assume that PLA filaments are comparable in terms of toxicity, it may be a limitation if we extend the study to more material types

Color variety: if you are looking for a specific color or a wide range of options, it may influence the supplier you choose.

Customer service: Some suppliers will provide assistance if you are struggling with the filament, and this could compensate some of its apparent shortcomings

Recognizing these shortcomings, 3D Matter has still provided the beginnings of what could be a very useful database for desktop 3D printing filaments, perhaps aConsumer Reports-style handbook for determining which filaments may best suit a given task.  As the start-up gains steam, and resources, the variables accounted for and feedstock varieties will only become broader.

3D Matter already has already begun work on its next study, determining the relationship that the infill percentage, layer heights, and infill pattern of a 3D printed object has with its mechanical resistance.  Naturally, the firm also plans to begin testing other materials, such as ABS, resins, and powders and will implement other printer models in their testing procedures.  Sebert also tells me that 3D Matter is reaching out to industrial clients to pursue studies specifically tailored to their needs.  With that in mind, those keen to see 3D Matter examine materials for industrial 3D printing are encouraged to get in touch with the firm.  To read the complete PLA study or contact 3D Matter,visit their website here.

Michael Molitch-Hou previously served as Editor-in-Chief of 3D Printing Industry, he is now the Editor of Engineering . coms 3D printing section. He has covered additive manufacturing technology day in and day out since 2012 and has hundreds of article to his credit. He is the founder of The Reality Institute.

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PLA vs ABS

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The two most popular3D printing filamentsare PLA (polylactic acid) and ABS (acrylonitrile butadiene styrene). Both are thermoplastics capable of creating an array of printed objects. As filaments they look very similar, and both are used in conjunction with the fused deposition modeling (FDM) method of 3D printing.

They differ in terms of their chemical composition, best applications, and optimized print settings. Though many people simply want to know which one is better, when it comes to PLA vs ABS the answer isnt as simple as designating a winner and a loser. Both filaments are quality materials, each best suited for different projects.

Lower Flexibility Tolerance May Snap When Bent

Some Flexibility, May Tolerate Minor Bending

Airtight Storage Preferred May Otherwise Absorb Damaging Moisture

Airtight Storage Preferred May Otherwise Absorb Damaging Moisture

Hairspray or Blue Painters Tape Can Help

In the PLA vs. ABS arena, theres really no clear winner in the traditional sense. Each plastic has its strengths and weaknesses, but overall, theyre great materials to work with. To get the most from the plastics, users should follow each materials best practices, paying careful attention to nozzle and build platform temperature. Furthermore, using ABS and PLA for the appropriate projects will help ensure that you maximize your use of the filament. Projects that require strenuous testing or special mechanical considerations call for ABS, while educational and artistic purposes often benefit more from PLA.

Here at 3D Supply Guys, we offer a number of different brands available in bothPLAandABS.

For PLA:We have the universalBuMat PLAElite PLA, as well as filaments specific to your printer including3Doodler PLAFlashforge PLA, andLeapfrog PLA.

For ABS:We also have the universalBuMat ABSElite ABS, as well as filaments specific to your printer including3Doodler ABSFlashforge ABSLeapfrog ABS, andSolidoodle ABS.

To see our full line of filaments (including specialty materials), pleaseclick here.

All varieties of quality 3D Printers, 3D Filament, and 3D Supplies, delivered fast. Have a question? Call or email us for easy access to sales & support.

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Een 3d pen kent ontelbaar veel mogelijkheden, zowel educatief, creatief als professioneel. Objecten in de lucht tekenen, sieraden maken, 3D figuurtjes of gewoon voor het repareren van auto-onderdelen, speelgoed of andere plastic voorwerpen.

Wie gebruiken er allemaal een 3d pen?

Een 3d pen wordt gebruikt door zowel volwassenen als kinderen. Zowel thuis, op school of binnen een bedrijf. Een 3d pen is ideaal als reparatie-tool maar kan ook de creativiteit stimuleren. Inmiddels bestaan er een fors aantal 3d pennen maar hoe kies je nu de juiste 3d pen? Welke 3d printer pen is eenvoudig in gebruik en daarmee ideaal voor kinderen, of voor als je met je 3dpen professioneel aan de slag wil en de temperatuur en filamentsoort kunnen aanpassen wat is dan de beste keuze 3d-pen? 3D Pennen zijn inmiddels verkrijgbaar van eenvoudig tot moeilijke varianten en in alle prijsklassen.

Wat voor soorten 3d pennen zijn er?Wij hebben voor u een selectie gemaakt op budget, vanuit low-range 3d pen, naar mid tot high-range 3d-pen en afsluitend met een special-range met unieke specifieke eigenschappen. De low-range 3d pennen zijn heel eenvoudig in gebruik maar alleen geschikt voor PLA filament. Deze 3dpennen zijn niet te regelen in temperatuur en kunnen dus wel een beetje nadruipen omdat ze niet fijn te regelen zijn op het filament. Vanaf de mid-range zijn de 3d-pennen geschikt voor meerdere soorten filamenten. 3DTech automatic 3d pennen en Colido 3d pen stellen hun temperatuur zelf bij op basis van de ingestelde snelheid en zijn daarmee ook eenvoudig in gebruik maar wel al een stuk professioneler als de low-range 3d pennen. Bij de MyRiwell 3d pen, Scribbler 3dpen & 3Dsimo 3d pen kun je zowel temperatuur als snelheid zelf bepalen. Bij de 3dsimo mini 3d-pen kan dat zelfs middels bluetooth via de mobiele telefoon! Deze 3d-pennen zijn dan wel iets moeilijker maar wel ideaal voor meer professioneler gebruik.

Wat is de nieuwste generatie 3d pen?Voortdurend zoeken wij de markt af om te kijken wat de laatste 3d pen ontwikkelingen zijn en onderwerpen deze nieuwe 3d pennen dan aan uitgebreide testen. Zowel keurmerken als ook kwaliteit en duurzaamheid worden nagelopen. Wij hebben ons gericht op 3d pennen vanaf 2016 en nieuwer. Dit zijn 3dpennen welke geschikt zijn voor PLA (voorheen was dit voornamelijk ABS filament). Deze nieuwste generatie 3d pen printers blinkt uit in ergonomie, veiligheid en gebruiksvriendelijkheid. Deze 3d-pennen zijn geschikt voor oud en jong en zijn makkelijker in bediening dan voorlopers. De mogelijkheden met deze nieuwste generatie 3d printerpen zijn daarmee eindeloos (vaak worden deze 3d-pennen ook wel v5 of v6 genoemd).

Wat zijn 3d pen filamenten?Filamenten zijn de vullingen voor een 3d pen. De meest gebruikte filamenten zijn ABS en PLA. Abs is heel erg stevig maar ruikt bij 3d printen/tekenen heel chemisch en stinkt heel erg en kan tranerige ogen veroorzaken. De eerste 3d pennen werken haast allemaal alleen maar met ABS. Omdat 3d pennen nu ook veel door creatievelingen en kinderen worden gebruikt heeft men een nieuw soort filament (PLA) voor de 3dpen ontwikkeld. PLA stinkt haast niet bij printen en is gemaakt van suikerbieten en mais.

Veilig een 3d pen bestellen!Wil jij ook de mogelijkheden van een 3d pen verkennen? Bestel dan nu hier heel eenvoudig je 3d pen. Heb je vragen over een 3d pen of 3d printer dan kun je altijd een berichtje achterlaten. We proberen je vraag dan heel snel te beantwoorden. Wij adviseren je een filament-pack voor je 3d pen mee te bestellen. Dan heb je een mooi en fors aantal kleuren van zeer goede kwaliteit voor je 3dpen waar je geruime tijd mee vooruit kunt. Vaak kan 3d pen cleaning filament ook nuttig zijn voor het schoonhouden/spoelen voor je pen. Een 3dpen 3d-pad is heel handig je begint met overtrekstencils of voor op te tekenen. Het zorgt voor een goede hechting van het filament maar je kunt het ook zonder resten goed verwijderen. Tot slot kan een reserve nozzle een handig extra onderdeel zijn voor je 3d pen als je vaak tussen ABS en PLA wilt wisselen.3D PEN 3D PRINTER ACCESSOIRES

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Met merken als MyRiwell, Polaroid, Scribbler, 3DTech, CoLiDo en 3DSimo 3d-pennen, en CoLiDo als merk-producent voor onze 3d printers, bieden wij U een breed assortiment 3d-printer&3d-pen. Met lage tot hoge prijsklasse bieden wij elk wat wils! Al onze 3d pen en 3d printer typen zijn ontwikkeld voor 1,75mm filament!

Met een 3d pen of 3d printer kunt u maken wat uw verbeelding u ingeeft.

Vul de 3d pen met PLA of ABS filament. Plaats de punt van de 3d-pen daar waar u wilt beginnen met tekenen. Druk op de toevoer-knop en het filament zal gesmolten uit de 3d penprinter vloeien. Direct na uitvloeien zal het filament stollen waarmee u kunt tekenen op een oppervlak of zelfs in de lucht. Laat uw 3d-pen creativiteit de vrije loop en creer daarmee wat u wilt.

Uw 3d printer heeft gelijk principe als een 3d-pen, 3dprinter laden met filament, via de CoLido 3d-printer Repetier software instellingen en sjabloon laden en op printen drukken. Het filament zal mooi uit uw 3d printer vloeien, vervolgens stollen, en uw object zal geleidelijk 3d-geprint verschijnen.

De kleur waarin u gaat tekenen of 3d printen wordt bepaald door de filament-tint. Naast een breed aanbod in 3d-pen & 3d-printer hebben wij daarom ook Hoge-Kwaliteits kleurrijke voordeelsets in ABS of PLA of rollen PLA filament voor uw 3d printer of 3d pen in de aanbieding!

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WolfBite Nano

Forget the painters tape. Wolfbite Nano has arrived! Designed for use on all 3D printers, Nano prevents PLA parts from warping.

Wolfbite 3D Printing Bed Adhesives Spec Sheet

Wolfbite Nano is a premium solution specifically engineered to bond polylactic acid (PLA) plastic parts to a glass 3D printer build plate without liftingalso known in the industry as warpage,and to enable smooth release of objects after printing. This new solution works well with heated and non-heated beds on all types and brands of the 3D printers utilizing glass printing surfaces.

PLA is the most preferred material for 3D printing because of its low heat shrinkage, biodegradability and widespread availability. However, PLA must be printed on a prepared surface for correct adhesion. A common surface treatment includes applying blue or red painters tape to a glass plate. After use, the paper tape may become damaged or require replacement. Other issues associated with printing on painters tape is difficulty in removing parts after prints and warpage from insufficient adhesion. Airwolfs new solution addresses all these issues. WolfBite Nano is applied with an applicator brush straight onto glass, eliminating the need for tape. One light coat of Wolfbite can be used for several prints.

After applying Wolfbite Nano directly on glass, printing can commence immediately, either with a heated or room-temperature bed. Airwolf 3D specially formulated the proprietary solution to not only promote excellent adhesion but also to make part removal easy. Parts maybe removed post print by immersing the glass plate in water for a short period of time, if necessary.

The solution is based on a combination of green chemistry and nanotechnology to create the best possible adhesion using compounds which are generally regarded as safe. Wolfbite is packaged in a two fluid ounce container and comes with a foam brush applicator.

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