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ThermaX HTS1(1010 High Temp Supp.)

3DTECH-THERMAX-HTS1-NATURAL-175-500
125.00 € 125.00 €
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10 10% 10% 112.50 € 112.50 €
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In stock 0 units available for immediate shipping.
units available for shipping in 10 - 15 days
Available for shipment within 10 - 15 days

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Product temporarily out of stock with these characteristics. Select another combination.

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Approximate delivery date: Monday 9 March - Monday 16 March

ThermaX HTS1 by 3DXTECH is a high-temperature breakaway support filament specifically developed to work alongside advanced engineering materials in industrial FDM/FFF 3D printing processes. Designed to pair with high-performance polymers such as PEEK, PEKK, PEI (ULTEM™), PPSU, PSU and PPS, this technical support material provides excellent thermal stability, controlled adhesion, and clean removal, ensuring more accurate parts, higher surface quality, and more efficient production cycles.

In professional applications where process reliability is critical, using a support filament engineered for extreme temperatures makes the difference between failed prints and consistent results. For this reason, ThermaX HTS1 stands out as a strategic solution for advanced manufacturing environments, functional prototyping, and end-use part production.

Technical support optimized for high-performance materials

Engineering thermoplastics require demanding printing conditions, including heated chambers and high extrusion temperatures that exceed the capabilities of conventional supports. ThermaX HTS1 by 3DXTECH has been formulated as a support filament for PEEK, support for PEKK, support for ULTEM™, support for PPSU and PPS, maintaining its mechanical integrity even in extreme thermal environments.

This advanced compatibility ensures stable adhesion during printing while enabling controlled separation after cooling, resulting in fewer defects, greater dimensional accuracy, and significantly reduced post-processing. The outcome is technical parts with cleaner finishes and lower cost per unit.

Extreme thermal stability for industrial 3D printers

Developed for high-temperature, dual-extruder 3D printers, this breakaway support retains its properties even during long print cycles. Its superior heat resistance prevents collapse, warping, or unwanted melting, ensuring strong support structures for complex geometries, steep overhangs, and internal cavities.

Thanks to this stability, users achieve a higher success rate in professional 3D printing, better repeatability, and less material waste—key advantages in industries such as aerospace, automotive, medical, defense, and advanced manufacturing.

Clean breakaway removal and minimal post-processing

The high-performance breakaway design allows for fast and precise support removal, with no need for solvents or additional chemical processes. This easy separation protects the surface of the main material and significantly reduces finishing time.

Efficient removal directly translates into higher productivity, lower operating costs, and optimized workflow, all decisive factors in professional additive manufacturing and on-demand production.

Certified quality and consistency guaranteed by 3DXTECH

Manufactured under ISO 9001:2015 certification, 3DXTECH ensures strict quality standards, precise tolerances, and batch-to-batch consistency. This guarantees a stable diameter, consistent extrusion, and reduced risk of clogs, delivering the reliability required for continuous production processes.

Material consistency improves overall printer performance and minimizes downtime, reinforcing efficiency in demanding industrial environments.

The professional choice in high-temperature support filaments

For projects that require buying high-temperature support filament, a professional breakaway support for 3D printing, or a technical filament compatible with PEEK and ULTEM™, ThermaX HTS1 by 3DXTECH is one of the most reliable options on the market. Its combination of thermal resistance, easy removal, and compatibility with engineering polymers makes it an essential component for maximizing quality, productivity, and profitability.

In industrial 3D printing and high-performance additive manufacturing, choosing a specialized support is not just an accessory, but a strategic decision that drives superior results from the very first print.

General information

Material Support material
Format 500 g | 1 kg | 2 kg
Density (ISO 1183) 1.37 g/cm³
Filament diameter 1.75

Mechanical properties

Elongation at break (ISO 527) Not Applicable %
Tensile strength (ISO 527) Not Applicable MPa
Tensile modulus (ISO 527) Not Applicable MPa
Flexural strength (ISO 178) Not Applicable MPa
Flexural modulus (ISO 178) Not Applicable MPa

Electrical properties

Surface electrical resistivity (ASTM D257) >1013 Ohm/sq

Thermal properties

Softening temperature (ISO 75 @ 1.80 MPa) 205 ºC

Other

HS Code 3916.9

To achieve maximum performance from 3DXTECH ThermaX HTS1 high-temperature support filament in industrial 3D printing applications with PEEK, PEKK, PEI/ULTEM™, and technical polymers, it is essential to work with stable thermal parameters and optimized configurations for engineering materials. Correct calibration ensures reliable adhesion, structural support stability, and clean breakaway removal, reducing defects and improving the final quality of each part.

Extruder Temperature

An extrusion temperature between 365 °C and 390 °C is recommended, with a stable operating range of 350 °C to 380 °C depending on the 3D printer, hotend, and primary material used. Working within these values promotes consistent flow of the technical filament, improves inter-material adhesion, and prevents clogs or under-extrusion in high-temperature 3D printers.

Heated Bed Temperature

To ensure proper fixation and minimize warping, it is advised to set the heated bed between 140 °C and 160 °C, with a functional range of 120 °C to 160 °C being acceptable. These temperatures help maintain dimensional stability during the printing of large technical parts or complex geometries.

Heated Chamber

The use of a closed or heated chamber is highly recommended in professional manufacturing environments. Maintaining a controlled thermal atmosphere improves interlayer adhesion and reduces internal stresses. For optimal support performance, it is recommended not to exceed 225 °C in the chamber to avoid material degradation.

Nozzle Specifications

It is recommended to use a nozzle with a minimum diameter of 0.4 mm to ensure stable flow and uniform support deposition. There are no additional special requirements, although in industrial applications, the use of wear-resistant nozzles compatible with high temperatures is recommended to extend the system's lifespan.

Layer Height

The recommended layer height is 0.10 mm or higher. This setting facilitates consistent extrusion and a solid support structure, maintaining the ideal balance between detail, print time, and ease of removal. No additional special configurations are required.

Filament Drying

As with most high-performance technical filaments, keeping the material dry is essential to avoid bubbles, stringing, or surface defects. Pre-drying at 65 °C for 4 hours is recommended before printing. In high-humidity environments or after long-term storage, intensive drying at 120 °C for 4 hours can be applied to fully recover the filament's properties.

Applying these parameters allows you to leverage the full potential of 3DXTECH ThermaX HTS1, achieving more stable supports, more reliable prints, and faster post-processing. A correct setup maximizes productivity and ensures consistent results in industrial 3D printing and professional additive manufacturing.

Featured properties

Filament diameter
1.75
Density
1.37 g/cm³

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