Newest filament in our offer

The Filament HT-PLA

High-end PLA with 🔥 heat stability up to 150 °C as printed

Meet a sustainable, next‑generation, high‑performance PLA filament that redefines standards in 3D printing.

The Filament HT‑PLA features biodegradable polymer blends made of 100% renewable raw materials to deliver impressive thermal stability — up to 150 °C straight off the build plate — so your parts never sag, warp or lose detail under heat.

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The Filament HT-PLA. When standard PLA just isn’t enough.

The Filament HT-PLA is an advanced biopolymer polymer blend designed for applications, where standard PLA falls short. HT-PLA delivers outstanding heat stability up to 150°C resisting sagging or deformations under its own weight. With more than double the stiffness, three times the impact resistance than standard PLA and a refined semi-matte finish, HT-PLA combines engineering-grade performance with a professional look. Fully compostable and made 100% from renewable resources, it’s the ultimate choice for durable, high-performance 3D prints.

Heat stability up to 150°C, as printed
100% biodegradable & recyclable
Fully compatible with AMS systems
BambuLab compatible spool & ReFill
Food-safe & dishwasher-safe
OK compost certification according to EN 13432
Semi-matte surface

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Eco-friendly. High-performance. Reliable.

Discover our new, eco-friendly PLA filament that delivers exceptional heat resistance and strength. The Filament HT-PLA offers reliable performance while maintaining easy printability and professional-quality results.

Heat Stability up to 150°C

Withstand the heat without compromise.

HT-PLA delivers heat stability up to 150 °C straight from the printer – no annealing, no extra steps.

Your parts stay strong, precise and dimensionally stable, even in demanding environments where standard PLA quickly gives up.

Ultimate choice for technical prototypes, kitchen accessories and many components for real-world applications.

Superior Mechanical Properties

Stronger. Tougher. More reliable.

Compared to standard PLA, The Filament HT-PLA offers over twice the stiffness, three times the impact resistance and far less brittleness – so your parts won’t snap under stress.

It’s the perfect choice for functional, load-bearing components such as brackets, housings and mounting elements.

Thanks to its extra durability, your prints can withstand everyday use with confidence, delivering lasting performance where ordinary PLA falls short.

Available in Tooling Colors

Beyond the standard colors, The Filament HT-PLA is offered in tooling-inspired shades that match popular power tool brands.

This lets you create parts with a professional look that seamlessly fit into workshop and industrial environments.

A smart choice for both hobbyists and professionals — whether you want components that complement your tools or prefer a sleek, technical appearance.

Eco-Friendly & Compostable

HT-PLA is made entirely from biodegradable and renewable resources, offering a sustainable alternative to conventional plastics.

Our filament is fully recyclable, industrially compostable and certified under EN 13432 (OK compost).

Second Life Plastic spools and FSC Certified packaging is used for production further reducing environmental impact.

Print strong, durable parts while making an environmentally conscious choice. With HT-PLA, you lower your ecological footprint without giving up on performance, reliability, or ease of printing.

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Applications

Ideal for functional prototypes, tooling and components exposed to higher temperatures. Use The Filament HT-PLA when you need strength, stability and high heat resistance — without sacrificing the ease of printing.

Everyday Functional Accessories

Create sturdy cup holders, phone stands, cable clips and more that fit seamlessly into your daily routine. HT-PLA 3D-printed parts resist flex and deformation, so your printed helpers stay reliable day after day.

Dishwasher Safe Kitchen Helpers

Print coasters, utensil caddies, spice racks and soap dishes that can go straight into the dishwasher. With heat stability up to 150 °C, your kitchen 3D-prints stay pristine and ready for anything.

Workshop & Tool Organizers

Organize wrenches, drill bits, screws and hand tools with custom racks, bins and mounts. HT PLA’s enhanced stiffness and impact resistance ensure your workshop fixtures stay rock solid under load.

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Questions & Answers

1. What is HT-PLA?

HT-PLA is a next-generation, high-performance PLA filament engineered for demanding applications. It offers exceptional thermal stability up to 150 °C directly after printing — no annealing required — and significantly improved mechanical strength compared to standard PLA. At the same time, it remains eco-friendly, fully recyclable, and industrially compostable, making it a sustainable alternative to conventional technical materials.

2. How to print HT-PLA?

HT-PLA is very easy to print as long as you follow a few specific guidelines. To unlock the full potential of our advanced filament, visit the dedicated page and check out our detailed Printing Guide.

3. How does HT-PLA differ from standard PLA?

Compared to regular PLA, HT-PLA delivers over twice the stiffness, three times the impact resistance, and greater tensile strength. Most importantly, it withstands temperatures up to 150°C straight from the printer — no annealing or post-processing required.

4. Is post-annealing required?

No. HT-PLA achieves full thermal and mechanical performance immediately after printing, saving time and extra processing steps.

5. Is HT-PLA dishwasher safe?

Yes. Printed parts retain their shape and strength when washed in a household dishwasher, making them ideal for kitchen accessories.

6. Can HT-PLA be used for functional brackets and mounts?

Absolutely. Its high stiffness and impact resistance make it perfect for end use brackets, mounts, and structural components.

7. Is HT-PLA environmentally friendly?

Yes. It’s made from renewable resources and is 100% biodegradable. HT-PLA is fully compostable under industrial conditions. This filament is a sustainable alternative to traditional plastics. HT-PLA is wound on Second Life Plastic spools and packed into FSC Certified cardboard box, reducing environmental impact even further. This makes HT-PLA a reliable, eco-conscious choice for anyone looking to minimize ecological footprint.

8. How does HT-PLA handle mechanical stress?

With twice the stiffness of standard PLA and excellent tensile properties, HT-PLA withstands repeated loading and rough handling without cracking.

9. How should I store HT-PLA?

Keep the spool sealed in a dry box or airtight bag with desiccant. PLA based filaments absorb moisture, which can cause printing issues.

10. Can HT-PLA be used in multi material prints?

Yes. It bonds well to many common filaments. Keep all materials within overlapping temperature ranges.

11. What is the shrinkage rate?

Due to its unique formulation and properties, HT-PLA has a higher shrinkage rate than standard PLA. However, the material is still easy to print when you follow our recommended guidelines, which you can find here.

12. Does HT-PLA have similar chemical resistance as regular PLA?

Yes, HT-PLA provides chemical resistance comparable to standard PLA.

13. Is HT-PLA recyclable?

Yes. Unlike standard PLA, which quickly loses mechanical strength, HT-PLA can be recycled many times with little loss of properties.

A wide range of products

Wide portfolio consisting of over 50 filaments with a versatile range of properties and applications, divided into three segments: desktop easy-to-use, industrial grade and high performance.

High quality

Innovation, extrusion know-how and highest quality filaments are the pillars of Spectrum philosophy. Our team is working continously on the development of new materials and their applications.

European made

All filaments from our portfolio are in-house made. We use modern production lines equipped with non-standard solutions to obtain highest quality final product.

Professional technical support

Our qualified support team helps at every stage from material selection to the 3D printing process.

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