
FUNMAT PRO 310 NEO
As an authorized service and sales partner of INTAMSYS, we present the FUNMAT PRO 310 NEO – an industrial FFF system for reliable processing of high-performance and engineering thermoplastics such as PLA, ABS, PETG, as well as polycarbonate (PC), polyamide (PA/nylon), PPS, and fiber-reinforced materials (carbon and glass fiber). The 310 NEO is designed for stable and efficient industrial operation. Its coordinated thermal management, motion control, and material handling ensure consistent part quality and high productivity. Key advantages for industrial applications include: reliable processing of a wide material range stable thermal conditions for low-warp parts high reproducibility across multiple print jobs With a closed, heated build chamber and controlled filament environment, the system enables process-stable manufacturing, even with demanding engineering materials. It is well suited for functional prototypes, tooling, and cost-efficient small-batch production. The 310 NEO meets the needs of industries such as mechanical engineering, automotive development, and general engineering, where durable plastic parts must be produced quickly and reliably. As a partner, we support customers in technology selection, integration into existing workflows, application development, and ensuring stable, efficient long-term production.

FUNMAT PRO 610HT
As an authorized service and sales partner of INTAMSYS, we present the FUNMAT PRO 610HT – an industrial FFF system designed for processing high-performance polymers such as PEEK, PEKK and other PAEK family materials, as well as high-temperature thermoplastics like PPSU and PEI (ULTEM™). The 610HT is engineered for demanding industrial applications. Its precise thermal control, elevated chamber temperatures, and robust motion system ensure consistently high part quality. Key advantages for industrial applications include: reliable processing of high-performance polymers high thermal stability for low-warp parts excellent mechanical properties, including in the Z-axis With an actively heated build chamber and controlled material environment, the system enables stable manufacturing processes even with the most demanding materials. This makes the 610HT ideal for functional end-use parts, tooling, and applications requiring high thermal and mechanical performance. The 610HT is designed for industries such as aerospace, automotive, medical technology, and industrial manufacturing, where high-performance polymers increasingly replace metal components. As a partner, we support customers in integrating the technology into existing production processes, qualifying applications, and ensuring stable, repeatable manufacturing conditions.
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Future-oriented hot runner solutions for greater efficiency and environmental compatibility
KUTENO focuses on hot runner systems for applications such as thin-walled packaging, closures and medical technology products, as well as the processing of biopolymers and compostable compounds. In addition, Oerlikon HRSflow concentrates on future-oriented automotive applications and the innovative FLEXflow system, which was specially developed for challenging injection molding tasks.

FW-Change Moulds
Meusburger change moulds are the ideal solution for the quick and cost-effective production of small series and prototypes. Thanks to the special change system with positioning wedges, the inserts can be changed quickly and easily with repeatable accuracy.

GAIA BIODOLOMER®: COMPOSTABLE AND BIODEGRADABLE PLA & PBAT
Imagine a material that feels like plastic, functions like plastic, even looks like plastic - but goes far beyond it. A material that leaves no microplastics behind, decomposes naturally, and reduces CO2 emissions by 80%. GAIA BIOMATERIALS created that revolutionary material called BIODOLOMER®, and it has the power to transform your business.

Gas Assisted Plastic Injection Moulding
Gas Assisted Plastic Injection Moulding For over 25 years, Weiss Precision has used gas assist molding for plastic injection molding in a variety of applications, offering OEMs numerous advantages. When it comes to reducing time and cost without compromising quality or design options, gas assist injection molded plastics make a great choice. Gas Assist Molding Process Pressurized nitrogen gas is injected into a mold, pushing the plastic into the mold extremities, while hollowing out thicker portions of the part. Gas assist molding is a process of plastic injection molding at low pressure, in which plastic is pushed into mold extremities by pressurized nitrogen gas. During the gas assist molding process, plastic material is melted and injected into mold cavities via conventional injection molding. Plastic material in contact with the mold walls begins to solidify first. As this happens, nitrogen gas is injected into the mold through strategically designed and placed gas channels, providing pressure that pushes the plastic material into the mold extremities. Once the plastic cures, the nitrogen is vented and the gas assist injection molded plastic parts are removed from the mold.

Gauge Management
PMM.Net combines gauge and calibration management, gauge monitoring, gauge lending, and measurement system analysis (MSA) in one software. Plan, administrate, control, and calibrate all your inspection equipment with PMM.Net – from simple calipers to the most complex multi-dimensional gauges. The calibration management software PMM.Net records the full history of each gauge and thereby facilitates consistent traceability. The software allows you to calibrate your gauges either at fixed intervals or in a production-accompanying manner. Simplify the integration of gauges into your daily inspection planning processes with the predefined fitting tables and inspection standards included. Eliminate the error-potential of manual calibration management by using the integrated gauge assistants. Highlights of the Calibration Management Software PMM.Net • Compliant with ISO 9001, IATF 16949, VDA, MSA (QS 9000), IFS, and ISO 13485 • VDA 5 proof of suitability • Display inspection plans in accordance with VDI / VDE 2618 • Dynamic location / storage related inspection intervals • Complete inspection history of characteristics and gauges • Evaluation of gauge suppliers • Integrated inspection plan management • Inspection history and gauge life-cycles at location of storage / utilization • Integrated standards and fitting tables • Production-accompanying calibration • Import and export inspection data in accordance with VDI / VDE 2623

GC green 3071 MI T6
GC green 3071 MI T6 is a biodegradable compound consisting of BioPBS, sunflower seed hulls and biodegradable additives. It has a high fibre content of 30% and actively contributes to the conservation of resources. It is particularly suitable for thick-walled products, as the fibres swell, preventing sink marks. It is also cost-effective, as it can only be processed at 180°C, enabling up to 30% faster cycle times.

GC green 3082 MIF T13
OK compost HOME certified GC green 3082 MIF T13 is the material for our very first home compostable coffee capsules. It is suitable for food contact with dry foods and ideal for the production of caps and packaging without undercuts. The material consists of BioPBS, sunflower seed hulls and biodegradable additives. It has already proven its worth in many products.

GC green 71 MI T30
GC green 71 MI T30 is the only biodegradable biopolymer for injection moulding applications. It is both biodegradable and dishwasher safe. This material is ideal for sustainable products such as disposables, packaging and technical components. It is easy to process and is the perfect choice for food contact approved products.

GC green M2571 7G3 A
Our material, GC green M2571 7G3 A, has been specially developed for the needs of plant pot production and is currently being certified as OK-Biodegradable-Soil seal by TÜV Austria. This planned certification confirms that the material can be biodegraded in soil, making it perfect for the horticultural industry. It's got a high fibre content, so it can be processed at a low temperature and with a short cooling time, and it can be used to make functional and attractive plant pots that are also environmentally friendly. The material has a high proportion of bio-based components, making it a sustainable alternative to conventional plastics.

GC pro M35KC BO 1G3
The GC pro M35KC BO 1G3 material is made from high-quality recycled materials (PCR) and is great for the environment, with a low CO2 footprint. It's got 35% natural fibre, so it's not only eco-friendly, but also saves energy. Because it's processed at a lower temperature and cools quickly, manufacturers can optimise their production processes and reduce costs. It's perfect for making sustainable, high-performance products!

gearbox cover

gearbox housing
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