How Do You Store Filament Correctly? The Complete Beginner’s Guide to Dry, Damage-Free 3D Printing

We might receive an affiliate commission if you purchase using links on our website. For more information, click here.

Have you ever spent hours levelling your print bed, modifying slicer settings, changing nozzles, and adjusting temps only to have a print fail?

You’re not alone.

When prints start exhibiting excessive stringing, rough surfaces, popping noises, or weak layers, many novices feel their 3D printer is the issue. The printer isn’t actually one of the main reasons for poor print quality.

The filament is the cause.

One of the simplest and least expensive ways to increase the quality of your prints and prolong the life of each spool you purchase is to store your filament properly.

Inappropriate storage of 3D printing materials can result in irritating print failures, lost filament, and needless troubleshooting because most of them naturally collect moisture from the surrounding air.

In this guide, you’ll learn:

  • Why proper filament storage matters
  • Which filaments absorb moisture the fastest
  • How to identify wet filament
  • The best filament storage methods
  • How to rescue moisture-damaged filament
  • Daily habits that keep your filament in excellent condition

These easy storage methods will help you create prints that are stronger, cleaner, and more dependable, regardless of how long you have been 3D printing.


Why Proper Filament Storage Matters

A common misconception is that plastic is watertight.

Unfortunately, one of the most common misconceptions about 3D printing is that.

The majority of printing materials are hygroscopic, which means that even when they are inside your house, they automatically take in moisture from the surrounding air.

Your printer will definitely notice the moisture entering the spool, even though you might not.

Any trapped water immediately turns into steam when the filament is heated within the nozzle. As the material is extruded, tiny steam pockets develop inside the molten plastic, causing flaws.

The outcome?

You can encounter several annoying issues in place of lovely, smooth prints.

Common Problems Caused by Wet Filament

  • Excessive stringing
  • Rough or fuzzy surfaces
  • Weak layer adhesion
  • Inconsistent extrusion
  • Blobs and zits
  • Popping or crackling sounds
  • Brittle filament
  • Poor dimensional accuracy

Many novices assume their printer is having issues right away.

They repair nozzles, change the machine’s temperature, recalibrate it, or even buy new parts.

Many times, none of those solutions are required.

The issue can be resolved by just drying or storing the filament correctly.

Acquiring knowledge of appropriate storage methods not only enhances print quality but also saves time, minimizes material waste, and safeguards your investment.


Which Filaments Need Proper Storage the Most?

The rate at which each filament absorbs moisture varies.

While some materials start absorbing water in a matter of hours, others stay stable for weeks.

Let’s examine the most prevalent kinds of filaments.


PLA

PLA is one of the easiest materials to print with and one of the least moisture-sensitive.

However, that doesn’t mean it should be left sitting on your printer indefinitely.

Over time, PLA absorbs moisture that can lead to:

  • More stringing
  • Brittle filament
  • Poor surface finish
  • Inconsistent extrusion

If you only print occasionally, storing PLA in an airtight container will help maintain its quality for months.

Best storage recommendation: Airtight container with silica gel packs.


PETG

PETG is significantly more hygroscopic than PLA.

It absorbs moisture faster and often shows symptoms much sooner.

Wet PETG commonly produces:

  • Long strings between printed parts
  • Surface imperfections
  • Weak bridges
  • Extra blobs
  • Reduced layer strength

Many users notice dramatic improvements simply by drying their PETG before printing.

Best storage recommendation: Dry box or airtight container with desiccant.


ABS

ABS doesn’t absorb moisture quite as quickly as PETG, but it still benefits from dry storage.

Because ABS already requires careful temperature control during printing, adding moisture into the equation can create additional print quality issues.

Keeping ABS dry results in:

  • Better layer bonding
  • More consistent extrusion
  • Cleaner surfaces
  • Fewer failed prints

Best storage recommendation: Vacuum bag or airtight storage container.


Nylon

Nylon is one of the most moisture-sensitive materials available.

In humid environments, it can absorb enough water in a single day to noticeably reduce print quality.

Professional manufacturers almost always store Nylon inside dedicated dry boxes and frequently dry it before every print.

Symptoms of wet Nylon include:

  • Severe stringing
  • Weak prints
  • Rough surfaces
  • Bubbling during extrusion

If you plan to print with Nylon regularly, investing in a quality filament dryer is highly recommended.

Best storage recommendation: Dedicated dry box with continuous humidity control.


TPU

Flexible filaments such as TPU also absorb moisture surprisingly quickly.

Because TPU already requires slower print speeds and careful extrusion settings, moisture only makes printing more difficult.

Wet TPU often causes:

  • Under-extrusion
  • Heavy stringing
  • Poor layer adhesion
  • Uneven surfaces

Always return TPU to a sealed container immediately after printing.

Best storage recommendation: Vacuum storage bag or dry box.


Specialty Filaments

Many specialty filaments contain additives that make them even more susceptible to moisture.

These include:

  • Carbon fiber composites
  • Wood-filled PLA
  • Metal-filled filament
  • Glow-in-the-dark filament
  • Silk PLA

Although each material behaves differently, all of them benefit from dry storage.

When in doubt, always assume specialty filaments should be protected from humidity.


Signs Your Filament Has Absorbed Moisture

How can you tell if your filament has become wet?

Fortunately, there are several easy-to-recognize warning signs.

1. Popping or Crackling Noises

One of the clearest indicators is hearing popping sounds while your printer is running.

Those sounds are tiny pockets of water instantly turning into steam inside the hot nozzle.


2. Excessive Stringing

If your printer suddenly begins creating spiderweb-like strands between parts despite using the same settings, moisture may be the culprit.

Wet filament tends to ooze more easily, producing long, thin strings.


3. Rough Print Surfaces

Instead of smooth layers, your prints may appear rough, fuzzy, or uneven.

Tiny steam bubbles disrupt the extrusion process, leaving noticeable imperfections behind.


4. Weak Layer Adhesion

Moisture prevents the plastic from bonding together as effectively.

As a result, finished prints may break apart much more easily than expected.


5. Tiny Surface Holes

Steam escaping through the melted plastic often leaves behind tiny pits or pinholes across the surface of the print.

These defects are especially noticeable on larger, flat objects.


6. Brittle Filament

PLA is particularly prone to becoming brittle after prolonged exposure to moisture.

If your filament snaps while feeding into the extruder, moisture could be the cause.


Before Replacing Printer Parts…

Whenever you notice several of these symptoms, don’t immediately assume your printer needs repairs.

Instead, inspect your filament first.

Drying or replacing a moisture-damaged spool may completely solve the problem without requiring any hardware changes.

The 5 Best Ways to Store 3D Printing Filament

Now that you know why moisture is harmful to filament, let’s look at the best ways to keep your spools dry and ready for your next print.

Whether you’re just getting started or have a growing collection of materials, these storage methods can help protect your investment and reduce failed prints.


Method 1: Keep the Original Vacuum-Sealed Bag

One of the easiest and most cost-effective storage solutions is the bag that came with your filament.

Most manufacturers package filament in vacuum-sealed bags to protect it from humidity during shipping. Once you’ve finished printing, simply return the spool to the original bag and reseal it.

For even better protection, add a fresh silica gel packet before sealing the bag.

Pros

  • Free storage solution
  • Easy to reuse
  • Excellent for occasional printing
  • Helps extend filament life

Cons

  • Bags eventually wear out
  • Vacuum seal may weaken after repeated use

Best For: PLA, ABS, PETG, and hobbyists with a small filament collection.


Method 2: Airtight Storage Containers

Airtight plastic containers are one of the most popular storage methods among 3D printing enthusiasts.

Storage bins with rubber gaskets create an enclosed environment that greatly reduces moisture exposure.

Inside the container, include:

  • Multiple filament spools
  • Reusable silica gel packs
  • Humidity indicator cards
  • A digital hygrometer (optional)

This setup creates a miniature dry environment that’s easy to maintain.

Why It Works

By sealing out humid air, the desiccant absorbs any remaining moisture inside the container before the filament can.

Best For

  • Beginners
  • Multiple filament colors
  • Long-term storage
  • Home workshops

Method 3: Vacuum Storage Bags

If you own several expensive filament spools, vacuum storage bags are an excellent investment.

Instead of simply sealing the container, vacuum bags remove much of the surrounding air.

Less air means less humidity.

Many affordable kits include:

  • Reusable storage bags
  • Manual vacuum pumps
  • Electric vacuum pumps
  • Replacement seals

Vacuum storage is especially useful if you only print occasionally.

Advantages

  • Excellent moisture protection
  • Compact storage
  • Affordable
  • Easy to organize

Best For

  • PETG
  • TPU
  • Specialty filaments
  • Long-term storage

Method 4: Dry Boxes

Dry boxes take filament storage to the next level.

Instead of removing the spool every time you print, the filament remains inside the sealed container while feeding directly into your printer.

This means the filament stays dry throughout the entire printing process.

Dry boxes are especially useful when printing materials that absorb moisture very quickly.

These include:

  • Nylon
  • PETG
  • TPU
  • Polycarbonate
  • Carbon fiber composites

Many commercial dry boxes also include:

  • Temperature controls
  • Humidity displays
  • Built-in filament heaters
  • Multiple spool capacity

If you print regularly, a dry box can dramatically improve print consistency.


Method 5: Dedicated Filament Cabinets

As your filament collection grows, organization becomes increasingly important.

Many experienced makers eventually dedicate an entire cabinet to filament storage.

These cabinets often include:

  • Adjustable shelving
  • Airtight doors
  • Rechargeable dehumidifiers
  • Large silica containers
  • Digital humidity monitors

Some makers even convert metal storage cabinets into climate-controlled filament stations.

Although this solution requires a larger investment, it’s ideal for serious hobbyists and small businesses.


Why Desiccants Are So Important

Have you ever noticed those tiny packets labeled:

“Do Not Eat.”

Those little packets are doing an important job.

They’re called desiccants, and they’re designed to absorb moisture from the surrounding air.

The most common type is silica gel.

Every airtight storage container should include several silica gel packs.

Benefits of Silica Gel

  • Absorbs humidity
  • Protects filament
  • Prevents moisture damage
  • Reusable for years
  • Very inexpensive

Many premium silica packs change color once they’ve absorbed their maximum amount of moisture.

For example:

  • Orange to green
  • Blue to pink

When the color changes, simply recharge them according to the manufacturer’s instructions.

Most reusable silica gel packs can be dried in an oven or filament dryer and reused many times.


Can Wet Filament Be Saved?

Good news.

In many cases…

Yes.

Moisture-damaged filament doesn’t always need to be thrown away.

Instead, it can often be restored by carefully removing the absorbed moisture.

Several methods are commonly used.

Dedicated Filament Dryers

These are specifically designed for 3D printing materials.

Benefits include:

  • Accurate temperature control
  • Even heating
  • Safe drying
  • Continuous drying while printing (on some models)

This is the safest option for beginners.


Food Dehydrators

Many hobbyists successfully use food dehydrators to dry filament.

Because dehydrators circulate warm air evenly, they work surprisingly well for many materials.

However, it’s a good idea to dedicate a dehydrator to filament rather than using one for food afterward.


Low-Temperature Ovens

Some manufacturers recommend using a household oven.

However, caution is essential.

Household ovens often fluctuate in temperature.

Even a small increase above the recommended drying temperature can deform the plastic spool or soften the filament.

Always follow the drying temperatures and times recommended by the filament manufacturer.


Simple Daily Habits That Prevent Moisture Damage

The best storage system in the world won’t help if good habits aren’t followed.

Fortunately, protecting your filament only takes a few seconds after each print.

Here are five simple habits that make a huge difference.

1. Store Filament Immediately

As soon as a print finishes, remove the spool and place it back into its storage container.

The less time it’s exposed to open air, the better.


2. Label Every Spool

Write down:

  • Purchase date
  • Opened date
  • Material type
  • Brand
  • Color

This makes inventory much easier to manage.


3. Avoid Sunlight

Direct sunlight and excessive heat can weaken certain plastics over time.

Store filament in a cool, dry location away from windows.


4. Recharge Your Desiccants

Silica gel doesn’t last forever.

Recharge or replace desiccants whenever they become saturated.


5. Monitor Humidity

If possible, keep a small digital hygrometer inside your storage container.

Monitoring humidity lets you know when it’s time to replace or recharge your desiccants.


Final Thoughts

Proper filament storage is one of the easiest upgrades you can make to improve your 3D printing experience.

By protecting your filament from moisture, you’ll enjoy:

  • Cleaner prints
  • Stronger layer adhesion
  • Less stringing
  • Fewer failed prints
  • Longer-lasting filament
  • Less wasted material
  • Lower printing costs

Whether you’re printing with PLA, PETG, ABS, TPU, Nylon, or specialty materials, keeping filament dry will consistently produce better results.

The best part?

You don’t need expensive equipment to get started.

Even a simple airtight container with reusable silica gel packs can dramatically improve the quality of your prints.

Building good storage habits today will save you countless hours of troubleshooting tomorrow.


Recommended Affiliate Products

Airtight filament storage containers

Amazon

Check on Amazon Canada

Vacuum storage bags and hand pumps

Amazon

Check on Amazon Canada

Reusable silica gel desiccant packs

Amazon

Check on Amazon Canada

3D Filament Storage Bags Vacuum Sealed Kit, With Humidity Indicator Cards

Amazon

Check on Amazon Canada

Digital hygrometers

Amazon

Amazon Canada

Dedicated filament dryers

Amazon

Check on Amazon Canada

FAQs

How should I store 3D printer filament?

Store filament in an airtight container or vacuum-sealed bag with silica gel desiccant packs. Keep it in a cool, dry place away from direct sunlight and humidity.


Does PLA need to be stored in an airtight container?

Yes. Although PLA absorbs moisture more slowly than many other filaments, storing it in an airtight container helps prevent brittleness and maintains consistent print quality.


Which filament absorbs the most moisture?

Nylon is one of the most hygroscopic 3D printing materials, followed by TPU and PETG. These materials benefit greatly from dry boxes or dedicated filament dryers.


Can wet filament be restored?

In many cases, yes. Wet filament can often be dried using a filament dryer, food dehydrator, or another manufacturer-approved drying method.


How long does filament last?

When stored properly in a dry environment with desiccants, most filament can remain usable for several years, although the exact lifespan depends on the material and storage conditions.

Photo of author

AUTHOR

Mila, as she likes to be addressed is passionate about 3D Printing and it is one of her hobbies. Also, she enjoys researching on 3d printing. She likes to teach herself about things regarding it as the technology evolves. Even though she is a beginner, she is also learning about designing 3d objects. She is good with technical aspects of things.

Leave a Comment