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Description

PolyLite™ LW-PLA : impressions ultra-légères, performances constantes

Technologie pré-moussée innovante
Découvrez PolyLite™ LW-PLA - un filament PLA pré-moussé conçu pour les projets où le poids est particulièrement important. Contrairement aux filaments à moussage actif, PolyLite™ LW-PLA est moussé pendant sa fabrication, ce qui garantit une faible densité constante sans nécessiter d'ajuster les températures d'extrusion.

Applications idéales pour les modèles légers
Parfait pour les passionnés d'aérospatiale et pour tous ceux qui cherchent à réduire le poids de leurs modèles, PolyLite™ LW-PLA produit des impressions solides et ultra-légères, avec un niveau de détail remarquable.

Conseils d'impression pour des résultats optimaux
Pour obtenir la meilleure qualité d'impression, consultez nos paramètres d'impression recommandés avant de commencer. Remarque : le LW-PLA peut être sujet au filage ; il est donc essentiel d'affiner les paramètres de rétraction et de température.

Une solidité légère sur laquelle vous pouvez compter
Obtenez légèreté, solidité et fiabilité avec PolyLite™ LW-PLA - votre filament de prédilection pour les Applications spécialisées où le poids est un facteur déterminant.

Exigences d'impression

Aucun ! S'imprimera parfaitement sur n'importe quelle imprimante 3D FDM standard sans nécessiter de mise à niveau.

Si vous utilisez une imprimante standard de style ancien, nous recommandons d'imprimer plus lentement.


Le LayerHub Il est maintenant vivant. Une maison construite par la communauté pour les prédécesseurs de filament — Ouvert à chaque filament Marqueà chaque imprimante. Chaque prédécesse vient avec une photo imprimée réelle pour le prouver.

Paramètres d’impression

Température d’impression : 190˚C - 210˚C
Température du plateau : 30˚C - 50˚C
Vitesse d’impression : 25mm/s - 60mm/s
Ventilateur : activé

Entraînement direct :
Distance de rétraction : 3mm
Vitesse de rétraction : 40mm/s
Entraînement indirect :
Distance de rétraction : 6mm
Vitesse de rétraction : 60mm/s
Paramètres de séchage : 55˚C pendant 6h
(uniquement si le matériau a absorbé de l’humidité)

Veuillez noter que le LW-PLA a tendance à produire des filaments, même avec les meilleurs paramètres : un léger passage au pistolet thermique ou un grattage avec une lame de rasoir aidera à retirer ces fils.

Vous ne trouvez pas vos profils ? Consultez nos préréglages officiels à l’adresse presets.polymaker.com

PolyLite™ LW-PLA

$29.99
1.75mm UGS : PA08001 HEX Code: #2F2E30
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Caractéristiques principales

  • Le Lightweight
  • Facile à imprimer
  • Strong et Lightweight
  • Rétraction Tuning recommandé
  • Idéal pour les modèles Lightweight
Couleur: Noir
Poids net

Payment Methods

  • American Express
  • Apple Pay
  • Diners Club
  • Discover
  • Google Pay
  • Mastercard
  • PayPal
  • Shop Pay
  • Visa

Télécharger Tips

  • Conservez le filament hermétiquement fermé et au sec ; utilisez le cycle de séchage recommandé à 55 °C pendant 6 h si des défauts liés à l’humidité apparaissent.
  • Étalonnez le débit, la température et la rétraction de l’imprimante avant d’imprimer un modèle complet, car la légèreté du résultat et le filage dépendent du profil.
  • Commencez avec la plage recommandée de 190 à 210 °C pour la buse et de 25 à 60 °C pour le plateau, puis effectuez de petits ajustements selon l’imprimante et le modèle.
  • Utilisez le réglage recommandé du ventilateur de refroidissement sur ON et maintenez la vitesse d’impression entre 50 et 100 mm/s.
Property X-Y Z Value Method
Densityg/cm³·ISO 1183 0.9 g/cm³ Important ISO 1183
Tensile strengthMPa·ISO 527 24.4 MPa Important 20.8 MPa Important ISO 527
Elongation at break%·ISO 527 8.8 % Important 2 % Important ISO 527
Bending strengthMPa·ISO 178 50.2 MPa Important ISO 178
Bending modulusMPa·ISO 178 1958.9 MPa Important ISO 178
Young's modulusMPa·ISO 527 1688.5 MPa Important 1726.3 MPa Important ISO 527
Charpy, notchedKJ/m²·ISO 179 2.4 KJ/m² Important ISO 179
Melting temperature°C·ISO 11357 150 °C Important ISO 11357
Glass transition temperature (Tg)°C·ISO 11357 59 °C Important ISO 11357
Vicat softening temperature°C·ISO 306 60 °C Important ISO 306
HDT (0.45 MPa)°C·ISO 75 54 °C Important ISO 75
HDT (1.8 MPa)°C·ISO 75 50 °C Important ISO 75

Testé sur des échantillons avec un taux de remplissage de 100 %. X-Y = transversalement aux couches, Z = entre les couches (adhésion interlaminaire).

Foire aux questions

Vous avez des questions ? Nous avons les réponses. Du choix du matériau adapté à l’entretien de vos bobines, voici tout ce que vous devez savoir au même endroit.

Quelle est la différence entre le foaming actif et le foaming passif ?

PolyLite™ LW-PLA n'est pas un filament de foamage actif, ce qui signifie qu'il ne foamera pas lorsqu'il est extrait de la Buse en fonction de la température. PolyLite™ LW-PLA Il est déjà prédéfini.

Quels sont les avantages et les inconvénients entre le foaming actif et passif ?

Le foaming actif :
Vous devez modifier votre imprimante Paramètres dépendant de la température et de la configuration pour compenser l’expansion de la Matériau lors de l’impression.
Vous devez imprimer à une très haute température pour obtenir la lumière Poids Les résultats (~250̊), ces températures élevées créeront beaucoup de défauts sur l'impression tels que les lignes et les blobs.
À des températures très élevées, le foaming actif peut atteindre une imprimerie plus légère que le foaming passif, mais l’impression peut souffrir de graves défauts de stringage.

Le foaming passif :
Vous n’avez pas besoin de changer d’un Paramètres De votre ordinaire PLA Paramètres (une légère augmentation Rétraction) comme PolyLite™ LW-PLA Il fournira la lumière Poids Les résultats même lors de l'impression à très faible température (~190̊C
Plus la température est inférieure, plus la qualité de l’impression est élevée.

est PolyLite™ LW-PLA C’est bon pour RC Plans ?

Oui oui, PolyLite™ LW-PLA Il est conçu pour la facilité d'impression et une rigidité forte. Pour plus d'informations, consultez la revue ci-dessous sur PolyLite™ LW-PLA pour RC Plane Application.

Quelle est la différence entre PolyLite™ LW-PLA et de PolyWoodTM ?

Il n’y a pas de différence ! Le bois Couleur à LW-PLA C'est en fait le même produit que PolyWoodTM.

Comment puis-je réduire la rigidité ?

LW -PLA et PolyWoodTM sont les deux matériaux qui sont susceptibles de s'éteindre. Voici quelques astuces :

  • 190̊C Température d'impression (à 50mm- les imprimantes Vitesse)
  • Maximum de voyages Vitesse
  • 0.5mm La cote et 1mm de l'écorce (en fonction du modèle)

Habituellement, la couture et le vapeur sont ce qui aide le plus

Les spools vont-ils travailler dans un AMS ?

Oui ! Nous avons renouvelé les bords de nos pousses pour tout Polymaker Aujourd’hui, les produits seront très nombreux dans l’AMS.

est ce Matériau La nourriture en sécurité ?

Malheureusement, nous n’avons pas de données si cette Matériau La nourriture est sûre. Pour l’instant, non 3D imprimé Matériau Sur le marché est la FDA Food Safety Compliant. C’est parce que pour être certifié comme alimentation sûre, l’objet réel doit être certifié et non la base. Matériau. La forme, le lit utilisé, Environnement l'objet a été fait, et beaucoup plus va en obtenir un certificat de sécurité alimentaire. A ce jour, il n'y a pas de certification réelle que la FDA offre pour 3D de l’impression.

Vous vendez des réparations ?

Nous sommes désolés, mais nous ne vendons pas de réparations à ce moment-là

est ce Matériau Recyclable ?

Il n'y a pas de bonne réponse pour le recyclage. PLA à ce moment. Nos panneaux de carton sont biodégradables mais il n'y a pas de bonne façon de recycler PLA à ce moment.

Revue

Pre-foamed lightweight PLA that "prints wonderfully" and is "easy to use" like regular PLA. Customers report 20-40% weight reduction, ideal for RC planes. Strong layer bonding and rigid structure. Some note printing challenges requiring settings adjustments, stringing issues, and compatibility problems with specific AMS systems. Heavier than foaming LW-PLA alternatives.

Plane (positive)Price (positive)Quality (positive)Weight (positive)Settings (positive)
  • 5 stars: 47 (81%)
  • 4 stars: 5 (9%)
  • 3 stars: 1 (2%)
  • 2 stars: 2 (3%)
  • 1 star: 3 (5%)
J
Jeff J.
Bright Red / 0.8kg
AMS pro binding

Hello,

I recently purchased 3 rolls of your POLYLITE LW-PLA. 1st time using your product. I'm using the Bambu lab P2S with the AMS 2 pro Not sure if you are aware or not but this filament does not fit in the AMS 2 pro. The filament is to close to the edge of the spool. When the AMS is calling for the filament to be loaded the spool wont rotate at all as it sits directly against the feed port as shown in the picture. I transferred about 12M of filament off of the spool so that it wouldn't bind during loading. Seeing that I have purchased 3 rolls and did plan on purchasing more, I Now have a lot of filament that is pretty much unusable. Is there a work around for this issue?

Thank you for you're concern in this matter,

This e-mail was sent on 7/10 and still no response

We are very sorry for the issue! The main culprit is just due to how light weight (low density) the LW-PLA is - meaning that even 0.8KG fills up a large amount of the spool. But we want to make sure to help as much as we can here so please reach out to support@polymaker.com with these details and any proof of purchase. Thanks and sorry again about this!

M
Matt
"Extremely Lightweight" what a joke!

Extremely Lightweight" what a joke! This is marginally lighter that ABS. Absolutely no adjustment can be made in terms of density. Two times heavier than foaming LW-PLA; what was the problem with that again? Too difficult for an average user to set extrusion multiplier to 50%???
Ah yes, it also doesn't stick to the bed

We are very sorry for the issues here! We are making sure to communicate via email and will help to troubleshoot or replace any issues!

M
Martin M.P.
White / 0.8kg
Esta muy bien

Esta muy bien, es lo que buscaba pesa muy poco y es muy fácilmente usar

K
KEN G.
Black / 0.8kg
So far so good

So far so good. Prints wonderfully in my Elegoo Centauri Carbon 2. Depending on your print project, you may have to adjust printer settings, but as far as materials go, this stuff works just fine. 100% will purchase again.

R
Randy M.
Bright Orange / 0.8kg
I am new to 3D printing

I am new to 3D printing. As in a week or two ago I got my Bambu P1S and know nothing about 3D. I have and use a CNC and two blue lasers.
And with that background, I had no issues at all with the PolyLite LW-PLA.
I have printed quite a few items with it. All came out good.

A
Aspen
Lightweight Rigid Filament Creates Excellent Parts

Very lightweight, and impressively rigid for its density, you just need to keep a few things in mind:- Print it slow, like no faster than 100mm/s, and ideally around 75mm/s even if your printer can do much faster like mine, keep it slow.- Print at a higher temperature like 225C .- Make sure to calibrate pressure advance (at the correct temp) for this filament specifically.- The filament itself is very brittle but don't let that scare you, the final parts that come out are excellent.- Parts that are somewhat hollow inside will experience a lot of stringing, but all you need is a bit of sandpaper to go over it a few times to smooth out the surface and it'll be just like the outer perimeters.Attached image is a partially finished UAV printed with this material using:- 1 perimeter- 5% infill (gyroid)- 225C nozzle temp, 60C bed temp (PEI)- 0.14mm layer height- 100mm/s perimeters and 20-30mm for bridges, and 50mm/s for supports and top solid infill, gap fillNote the smooth print lines and clean surfaces.

J
J
Really great filament, works well.

This is really great filament! I've printed four spools of this material on my Qidi X-Max 3. 225C Ext, 55C Bed, 100% fans, 50mm/s, 25mm/s inital layer, glue stick on blue tape. No clogs. Little to no stringing. Had a few failed prints till I got these numbers. Now, I send it to the printer and go do something else till it's done. I put this on my subscribe and save so that I always have this to print with.

A
Anonymous
Lightweight PLA Prints Pretty Good

Printed 3dlabprint plane (their Piper Cub) where the struts are fragmented despite the overall print turns out to be pretty good with the following settings on my Creality Ender 3 V3 KE with standard .4 nozzle.Layer Height: .24Wall Line Count & all layers of 10 infill as recommended by 3dlabprintTravel and print speed: fairly low between 25 - 42 mm/sExtruder temp: 205 C and Bed temp: 60Material flow (extrusion multiplier): .90, .95, and even 1.0 all yield same resultsLine Width: .4Retraction distance: 2Retract speed: 45Retract prime speed: 30I use their included 3mf files (as this is the only ones recognized by my Slicer (Creality Print). In weighing the parts, they all seem be lighter than standard PLA by 20-30% but heavier than the more expensive foaming lw-pla from Colorfabb by like 10-30% so pretty much in the middle.

A
Anonymous
Pre Foamed LW PLA Performs Well

I used this for printing some RC aircraft parts and found that if you follow the instructions the filament performed as advertised. On my avg part I noticed a 20%-45% reduction in weight from standard PLA. One thing to note, this is ***Pre-Foamed***. I have read reviews were people were upset because it did not foam and they had to crank the temps up to get any foaming/expansion of the filament. It is not that type of LW-PLA. This prints better at lower temps, I found 190-195 to be the sweet spot for my parts. It is also not a smooth filament as it is pre-foamed it has a rough texture, to be expected.It prints great and with a nice smooth surface that is easily sanded where needed.

A
Anonymous
Very Strong And Much Lighter PLA

Like most PLA you have to find your grove in temp and bed temp during printing. I do recommend that if you work in a humid area - dry it out before a run. I also use a thin layer of glue stick on the print board to keep the initial layers in place. Very strong and much lighter than the PLA or PLA+. I use it in combination with PLA+, the light is perfect for airframes, wings, nose cones etc... Not so good for gears, servo arms or moving parts which can easily be stripped. It is prefoamed so the parts come out as designed. The ball cam shown here is mostly PLA LW with PLA+ only on the control arms and inner gears.

N
Nickademusss
LWPLA Great for RC Airplane Parts

So this is my first time using this filament, I have used dozens of others in my print farm. I wanted to print a RC airplace and its doing a great job with a few issues. The settings I use worked on a couple of printers. Because it doesnt stick well onthe first layer I used 0.3mm first layers with a brim of at least 3mm. It get very stringy over 200C, in fact if its a small part you need to start at 190C and do the rest at 192C to get good layer bonding, and it does bond very well, but only with an extrusion multiplier of 1.15. I printed two of the same center wing parts, one in PLA+ and the other in this, the PLA weighed 18g and the LWPLA weighed 15g not a huge difference but enough. I also like the texture of the finished parts, it foams a little so you have a hard time seeing the print lines. One last thing, before printing the fillament is a little brittle, if your printer bends it around a small radius it will snap.

J
Jeff
Super Easy Use Minimal Stringing Strong

Pros:Super easy to use; standard Creality Slicer PLA profile worked fine with minimal stringingLighter than regular PLA by about 20%, Seems strongCons:Rough textures on the filament so it can snag on the filament sensor on the ender 3, Heavier than other LW-PLAs. Printed a model plane part:Hatchbox standard PLA: 3.84This stuff: 3.1gUnknown lw-pla brand printed for me by a friend using same layer/thickness settings: 1.8 (lighter but flimsier)All in all pretty happy as traditional expanding lw-pla sounds like a nightmare to get the settings right on, and this works as a drop in replacement for a generic PLA profile.

B
Brandon
Incredible Bonding Rigid Lighter Than PLA

The important bits: layer bonding and strength is incredible! very rigid and much lighter than PLA or PLA+ but heavier than foaming lightweight PLA. I am going to use this on all my future 3D printed planes!Now my long boring story :)Patience was the key with this filament! I have seen too many great reviews to think that there was an issue with the filament itself. I took the recommended approach of printing using PLA settings and increasing the retraction distance and speed to the settings recommended on polymakers website. My prints were completely unusable initially. I didn't have a lot of time after work to run calibration tests but I did what I could in my free time. I would change one setting and print a part, I didn't write anything down and I didn't keep track of my changes. The poor print quality was completely my fault for not taking the proper time to dial in the print settings. I even tried multiple slicers! I finally had a day off! no chores, no work... time to get this right :)I started with the basics, e-step calibration and PID tuning. Those were very close to perfect already so I knew that wasn't my issue. I started back with the defualt PLA settings and did a retraction test (two 10mm cubes spaced 40mm apart). I would do a print and take a picture, record the settings and results and then make only 1 change to 1 setting at a time until I got the setting dialed in. Then I would move to the next setting. Rinse and repeat until I got everything dialed in. About 10 hours later, a nearly perfect print with just the smallest amount of stringing!Don't do what I did and just get frustrated and start throwing different settings at this stuff! It took the perfect mix of speed, temp, retraction speed & distance as well as extra prime after retraction to get this stuff dialed in. A change to any one of those setting will throw off the print!Cura 5.10Artillery Sidewinder X2 (love this printer!)Fulament magnetic flex PEI bedTemp 190Bed temp 60 (I always run 60 for everything, just seems to work)Print speed 40mm/sTravel speed 250mm/sRetraction 3.5mmRetraction Speed 35mm/sExtra prime after retraction .36mmMy issue was an extreme amount of stringing and oozing. I am printing a single walled print and it is important to have a strong Z seam. The loss of material during travel moves and layer changes made the Z seam very weak.

A
Anonymous
Good results expected light weight product

It is light weight. I can't give a full evaluation as this is the first time printing it. Also settings were locked in with a different slicer/printer setup so I believe my results will be better as experience is gained. Epoxy resin really added to the strength but added more time to the build process I hope to avoid in the future.

A
Anonymous
Bright Orange LW PLA Looks Best

This color Bright Orange Polymaker LW PLA filament looks much better in person than in the product photo. I took a better picture that shows the color more accurately. It's the nicest looking LW in Orange color that's available in my opinion.

W
Wwjoesr
Polymaker Prefoamed LW-PLA Is Amazing

This is the Polymaker prefoamed lw-pla. It is slightly heavier than eSun lw-pla, but still extremely lightweight. The reason I love it so much is because it is so much easier to use than regular lw-pla. Basically I used regular pla settings in Cura. The photos are from the new Eclipson GO 1 WOLF plane that is free to print on the Eclipson website. The prints are strong, smooth, and zero stringing! There is not as much material on a spool since it is already prefoamed, but the price is in line with other lw-pla for the amount you get. I totally love it and will be purchasing again for future builds!

A
Anonymous
Easy To Print Lightweight PLA Works Great

This lightweight PLA is very easy to print with compared to other's I've tried. I got the Bright Yellow color and am printing a J3 Cub. It is very lightweight and looks amazingly like the cloth covering on a real Cub.This filament prints pretty much like normal PLA and does not require fussy settings to print right. I have a lot of stringing on the inside of the fuselage parts, which I haven't been able to tame with retraction settings or temperature, but the outside looks fine and I'm happy with the results. Due to the very light-weight nature of airframes this PLA, although somewhat expensive, goes a long way!Would definitely recommend this lightweight PLA for printing RC airplanes!

M
Mauricio
Best filament for price and performance

i printed a plane wiht it and it looks one of the best filaments to do that based on price and performance

L’écriture LW-PLA 1.75mm 3Le filament d'impression Polymaker Découvrez le LW-PLA, 3Filament d'impression, Filamento para impresidn 3D...
Polymaker

PolyLite™ LW-PLA

$29.99 USD

PolyLite™ LW-PLA : impressions ultra-légères, performances constantes

Technologie pré-moussée innovante
Découvrez PolyLite™ LW-PLA - un filament PLA pré-moussé conçu pour les projets où le poids est particulièrement important. Contrairement aux filaments à moussage actif, PolyLite™ LW-PLA est moussé pendant sa fabrication, ce qui garantit une faible densité constante sans nécessiter d'ajuster les températures d'extrusion.

Applications idéales pour les modèles légers
Parfait pour les passionnés d'aérospatiale et pour tous ceux qui cherchent à réduire le poids de leurs modèles, PolyLite™ LW-PLA produit des impressions solides et ultra-légères, avec un niveau de détail remarquable.

Conseils d'impression pour des résultats optimaux
Pour obtenir la meilleure qualité d'impression, consultez nos paramètres d'impression recommandés avant de commencer. Remarque : le LW-PLA peut être sujet au filage ; il est donc essentiel d'affiner les paramètres de rétraction et de température.

Une solidité légère sur laquelle vous pouvez compter
Obtenez légèreté, solidité et fiabilité avec PolyLite™ LW-PLA - votre filament de prédilection pour les Applications spécialisées où le poids est un facteur déterminant.

Couleur

Poids net

  • 0.8kg
Voir le produit
$29.99