---
title: Dry materials for higher quality products
slug: dry-materials-for-higher-quality-products
description: ### Drying Granulate for Extrusion

For advanced materials, such as industrial waste, drying granulate is essential before extrusion. This step is crucial for producing high-quality products like 3D printing filament. 

For a detailed guide, refer to our video:  
[How-To Video](https://youtu.be/dkm_gXxX2pk)
tags: ["hack"]
category: Guides
difficulty: Easy
time: < 1 hour
location: Darmstadt, Germany
---
import { Image } from 'astro:assets'
# Dry materials for higher quality products
<Image src={import('./Precious_Plastic_Thumbnail.jpg')} alt="Dry materials for higher quality products" />
### Drying Granulate for Extrusion

For advanced materials, such as industrial waste, drying granulate is essential before extrusion. This step is crucial for producing high-quality products like 3D printing filament. 

For a detailed guide, refer to our video:  
[How-To Video](https://youtu.be/dkm_gXxX2pk)

User Location: Darmstadt, Germany
## Steps
### Step 1: When and why to dry

### Types of Polymers and Moisture Considerations

Polymers are classified as polar or nonpolar. Nonpolar materials, like HDPE and PP, typically do not require drying, as they repel water similarly to oil. In contrast, many commercial polymers with polar characteristics can absorb moisture from the air. Drying is often essential to prevent cosmetic defects, such as splay or silver streaking, and to maintain material integrity. Polar polymers may undergo hydrolysis if processed with excess moisture, reducing their strength. For more details, refer to the material overview below.


<Image src={import('./Erste_Tabelle_Zeichenflache_1.png')} alt="Erste Tabelle_Zeichenfläche 1.png" />

### Step 2: Different drying methods

### DIY Polymer Drying Methods

Several DIY methods exist for drying polymers, including an oven, dehydrator, or vacuum dryer. Here, we focus on constructing a dry box with silica gel, as it offers optimal results while being cost-effective, simple, and energy-efficient. Using an oven can lead to overheating, causing issues. Household dehydrators are not suitable for reaching the low humidity levels necessary for effective polymer drying. Below is a temperature guide for different polymers. 

- **Oven:** Prone to overheating polymers.
- **Dehydrator:** Inadequate for low humidity requirements.
- **Vacuum Dryer:** Effective but more complex than a dry box. 

#### Temperature Guide (for reference):
- [Include a table with temperature values for various polymers, converted from metric to imperial or vice versa where necessary.]


<Image src={import('./Zweite_Tabelle_Zeichenflache_1.png')} alt="Zweite Tabelle_Zeichenfläche 1.png" />

### Step 3: Make and airtight plastic box

To create our drybox, use a plastic container and enhance it with window seals to ensure it is airtight. Glue the seals to the rim of the container.


<Image src={import('./Step_3_2.jpg')} alt="Step 3 (2).jpg" />


<Image src={import('./Step_3.jpg')} alt="Step 3.jpg" />

### Step 4: Get Silica Gel

You might recognize silica gel from shoe packaging. These small bags absorb moisture to keep items dry. Silica gel is also effective with polymers. Place about 2 kilograms (4.4 pounds) in the plastic box. While there is no exact required amount, more gel means less frequent drying is needed.


<Image src={import('./Step_4_.jpg')} alt="Step 4 .jpg" />


<Image src={import('./Step_4_1.jpg')} alt="Step 4 (1).jpg" />

### Step 5: Get a hygrometer

To monitor humidity within the drybox, a hygrometer is useful. A transparent box allows for continuous observation of the drying process.


<Image src={import('./Step_5.jpg')} alt="Step 5.jpg" />


<Image src={import('./Step_5_2.jpg')} alt="Step 5 (2).jpg" />

### Step 6: Place granulate inside the box

Using a microplastic bag (e.g., one from Guppyfriend) inside the drybox conserves time and space by containing the materials while allowing humidity to escape.


<Image src={import('./Step_6.jpg')} alt="Step 6.jpg" />


<Image src={import('./Step_6_2.jpg')} alt="Step 6 (2).jpg" />

### Step 7: Check the results

The simplest way to measure moisture absorption is by weighing the granulate before and after drying. However, using hot air releases volatiles, which decreases weight but not accurately reflects moisture loss. Accurate moisture measurements require sensors placed in the drying hopper, which use real-time dielectric property measurements; however, these sensors are costly.


<Image src={import('./Step_7.jpg')} alt="Step 7.jpg" />

### Step 8: Renew the silica gel

After some time, silica gel will reach its maximum water absorption capacity. Place it in the oven at 100°C (212°F) for one to two hours to restore its effectiveness.


<Image src={import('./Def7hdBUwAA2YTq.jpg')} alt="Def7hdBUwAA2YTq.jpg" />

### Step 9: Bonus tip

Rapid temperature changes cause surface moisture. For example, when a cold drink is outside in hot weather, condensation forms. The same occurs with polymers. Moving plastic from a cold, damp garage to a warm production area led to surface moisture, causing bubbles and inconsistencies in our 3D-printing filament.


<Image src={import('./Step_last.jpg')} alt="Step last.jpg" />


<Image src={import('./Step_last_2.jpg')} alt="Step last 2.jpg" />


<Image src={import('./Ste_last_3.jpg')} alt="Ste last 3.jpg" />
