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Germany

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• Mold measurements up to 4 x 2 x 1 m • Does away with elaborate and expensive mold set-ups • Short throughput time (a few days) • Sand molds correspond 1:1 with CAD model • Structures can be designed in accordance with requirements, without having to watch for draft angles or undercuts • Special sands prevent casting problems • Surface quality can be adjusted through use of different sands • Coarse-grained sands for high gas permeability • Considerable flexibility with changes in geometry, without additional expenses • No storage or maintenance of patterns • Cost savings particularly for complex molds and batch sizes of 1 to several hundred pieces

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Germany

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• Mold measurements up to 4 x 2 x 1 m • Does away with elaborate and expensive mold set-ups • Short throughput time (a few days) • Sand molds correspond 1:1 with CAD model • Structures can be designed in accordance with requirements, without having to watch for draft angles or undercuts • Special sands prevent casting problems • Surface quality can be adjusted through use of different sands • Coarse-grained sands for high gas permeability • Considerable flexibility with changes in geometry, without additional expenses • No storage or maintenance of patterns • Cost savings particularly for complex molds and batch sizes of 1 to several hundred pieces

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Germany

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• Mold measurements up to 4 x 2 x 1 m • Does away with elaborate and expensive mold set-ups • Short throughput time (a few days) • Sand molds correspond 1:1 with CAD model • Structures can be designed in accordance with requirements, without having to watch for draft angles or undercuts • Special sands prevent casting problems • Surface quality can be adjusted through use of different sands • Coarse-grained sands for high gas permeability • Considerable flexibility with changes in geometry, without additional expenses • No storage or maintenance of patterns • Cost savings particularly for complex molds and batch sizes of 1 to several hundred pieces

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Germany

Verified by Europages

• Mold measurements up to 4 x 2 x 1 m • Does away with elaborate and expensive mold set-ups • Short throughput time (a few days) • Sand molds correspond 1:1 with CAD model • Structures can be designed in accordance with requirements, without having to watch for draft angles or undercuts • Special sands prevent casting problems • Surface quality can be adjusted through use of different sands • Coarse-grained sands for high gas permeability • Considerable flexibility with changes in geometry, without additional expenses • No storage or maintenance of patterns • Cost savings particularly for complex molds and batch sizes of 1 to several hundred pieces

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Germany

Verified by Europages

• Mold measurements up to 4 x 2 x 1 m • Does away with elaborate and expensive mold set-ups • Short throughput time (a few days) • Sand molds correspond 1:1 with CAD model • Structures can be designed in accordance with requirements, without having to watch for draft angles or undercuts • Special sands prevent casting problems • Surface quality can be adjusted through use of different sands • Coarse-grained sands for high gas permeability • Considerable flexibility with changes in geometry, without additional expenses • No storage or maintenance of patterns • Cost savings particularly for complex molds and batch sizes of 1 to several hundred pieces

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Germany

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• Model measurements up to 1.000 x 600 x 500 mm • Same handling as for conventional wax parts • Tool-less and hence more cost-effective process • Single items and small series can be produced within a few days • High degree of accuracy: ±0.4% (min. +/- 100 µm) • Wax infiltration creates closed smooth surface • Suitable for autoclaves, even for thin-walled shells • Can be burnt out in normal kiln with low emission formation • Does not expand during burn-out process, hence no shell cracking (whether gypsum or ceramics) • Residual ash contents <0.02% for polypor binder type C • All alloys can be used with lost-wax casting process

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Germany

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• Model measurements up to 1.000 x 600 x 500 mm • Same handling as for conventional wax parts • Tool-less and hence more cost-effective process • Single items and small series can be produced within a few days • High degree of accuracy: ±0.4% (min. +/- 100 µm) • Wax infiltration creates closed smooth surface • Suitable for autoclaves, even for thin-walled shells • Can be burnt out in normal kiln with low emission formation • Does not expand during burn-out process, hence no shell cracking (whether gypsum or ceramics) • Residual ash contents <0.02% for polypor binder type C • All alloys can be used with lost-wax casting process

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Germany

Verified by Europages

• Model measurements up to 1.000 x 600 x 500 mm • Same handling as for conventional wax parts • Tool-less and hence more cost-effective process • Single items and small series can be produced within a few days • High degree of accuracy: ±0.4% (min. +/- 100 µm) • Wax infiltration creates closed smooth surface • Suitable for autoclaves, even for thin-walled shells • Can be burnt out in normal kiln with low emission formation • Does not expand during burn-out process, hence no shell cracking (whether gypsum or ceramics) • Residual ash contents <0.02% for polypor binder type C • All alloys can be used with lost-wax casting process

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Germany

Verified by Europages

• Model measurements up to 1.000 x 600 x 500 mm • Same handling as for conventional wax parts • Tool-less and hence more cost-effective process • Single items and small series can be produced within a few days • High degree of accuracy: ±0.4% (min. +/- 100 µm) • Wax infiltration creates closed smooth surface • Suitable for autoclaves, even for thin-walled shells • Can be burnt out in normal kiln with low emission formation • Does not expand during burn-out process, hence no shell cracking (whether gypsum or ceramics) • Residual ash contents <0.02% for polypor binder type C • All alloys can be used with lost-wax casting process

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Germany

Verified by Europages

• Model measurements up to 1.000 x 600 x 500 mm • Same handling as for conventional wax parts • Tool-less and hence more cost-effective process • Single items and small series can be produced within a few days • High degree of accuracy: ±0.4% (min. +/- 100 µm) • Wax infiltration creates closed smooth surface • Suitable for autoclaves, even for thin-walled shells • Can be burnt out in normal kiln with low emission formation • Does not expand during burn-out process, hence no shell cracking (whether gypsum or ceramics) • Residual ash contents <0.02% for polypor binder type C • All alloys can be used with lost-wax casting process

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Germany

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The VX4000 is the world's biggest industrial 3D printing system for sand molds. It has a cohesive build space measuring 4,000 x 2,000 x 1,000 mm (LxWxH). This machine can be used to economically produce very large individual molds, a great many small series components or a combination of the two. With its uniquely large volume, the VX4000 maximizes productivity and flexibility. The unique and patented layering process was specially adapted for this printer. Instead of lowering the building platform during the printing process, the print head and coater are raised with each layer. As a result, the machine can bear the enormous weight of the building platform, which can be quickly exchanged via a rail—making it possible to print nearly continuously. Sand can be used as the particulate material. The VX4000's print head system can achieve a resolution of up to 300 dpi. A layer applied in one cycle is 300 µm thick.

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Germany

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The VX2000 is a 3D printer for industrial applications. It is a particularly good choice for cost-effectively producing large-format models from sand cores for prototyping. The VX2000 can also be used to economically manufacture small-series components. The machine is fast and easy to operate. The build space measures up to 2,000 x 1,000 x 1,000 mm. The VX2000's print head system can achieve a resolution of up to 300 dpi. A layer applied in one cycle is 300 µm thick.

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Germany

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Our international bestseller: the VX1000 is a universal 3D printer for industrial applications. The machine is fast, easy to operate and enables you to cost-effectively produce medium-sized molds, cores and models for making prototypes. The VX1000 is also suitable for producing small series. Plastic and sand can be used as the particulate material. The piezo print head system of the VX1000 achieves a resolution of up to 600 dpi. The machine's build space measures 1,000 x 600 x 500 mm. The thickness of a layer applied in one cycle is 150 µm for plastic and 300 µm for sand. In addition, the VX1000 concept is environmentally friendly: In plastic processes, the unprinted particulate material is recyclable.

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Germany

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The VX500 is a 3D printer for industrial applications that has been tried and tested many times over in practice. These machines can be found wherever there is a demand for the straightforward production of prototypes and models. Despite their compact dimensions, they captivate with the features of a high-performance printer, such as multi-jet print heads, integrated material handling and job boxes. The machine is very fast, easy to operate and permits cost-effective production of both individual parts and small series alike. Plastic can be used as the particulate material. The machine's build space measures 500 x 400 x 300 mm. The VX500's print head system can achieve a resolution of up to 600 dpi. The thickness of a layer applied in one cycle is 150 µm. In addition, the VX500 concept is resource-friendly: In plastic processes, the unprinted particulate material is recyclable.

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Germany

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The VX200 is the most compact 3D printer in the voxeljet portfolio. It weighs a mere 450 kilograms and, thanks to its dimensions of only 1,700 x 900 x 1,500 mm (LxWxH), the VX200 can be installed without problems in places where space is tight, such as research laboratories. The machine is very fast, easy to operate and permits the economical production of small prototypes and design pieces. Plastic and sand can be used as the particulate materials. The build space measures 300 x 200 x 150 mm. The VX200's print head system can achieve a resolution of up to 300 dpi. The thickness of a layer applied in one cycle is 150 µm for plastic and 300 µm for sand.

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Germany

Verified by Europages

• Model measurements up to 1.000 x 600 x 500 mm • Same handling as for conventional wax parts • Tool-less and hence more cost-effective process • Single items and small series can be produced within a few days • High degree of accuracy: ±0.4% (min. +/- 100 µm) • Wax infiltration creates closed smooth surface • Suitable for autoclaves, even for thin-walled shells • Can be burnt out in normal kiln with low emission formation • Does not expand during burn-out process, hence no shell cracking (whether gypsum or ceramics) • Residual ash contents <0.02% for polypor binder type C • All alloys can be used with lost-wax casting process

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Turkey

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VITA RESIN 3D PRINTER RESINS DENTAL JEWELRY Each meticulously crafted detail at Vita Resin contributes to making it a masterpiece. Vita Resin invites you to an extraordinary experience where creativity and cutting-edge technology converge. Forming the Artistry Our jewelry designs and dental models, carefully curated as individual works of art, come to life through the unique power of 3D resin technology. Vita Resin harmonizes aesthetics with engineering, creating a distinctive balance in every product. A Workshop that Blends Art and Engineering At Vita Resin, every project is approached as a work of art. By striking a flawless balance between the freedom of art and the precision of engineering, we produce products that are not only aesthetically striking but also highly functional. Collaborating with Customers: Turning Dreams into Reality Every customer is unique, and every project tells a story.

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Netherlands

Online 3D printing service from 3D Hubs: - technologies: FDM, SLA, MJF, SLS, DMLS, Polyjet - Materials: plastics (nylon, PLA, ABS, resin, PETG, TPU, ASA, PEI); metals (stainless steel, aluminium, titanium) - Upload CAD for instant quote and start production in 5 minutes.

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United Kingdom

Surface Scan offers a 3D Printing Service. We offer SLS and FDM 3D Printing. If you need 1 product printed or 1000 we can help. Quality and speed are very important to us. If you are looking for a 3D printing service near you then please get in touch. We would love to hear from you. We work with engineers, product designers, architects, mechanics, creatives and more. Let Surface Scan help you with your 3D printing services.

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Germany

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igus® presents world's first tribological 3D filament for 3D printers. The tribological 3D printing material is up to 50 times more abrasion-resistant than conventional 3D print materials igus® has been researching the 3D printer filament field to provide its customers with even more flexibility. Real useable parts can now be produced for prototyping. At the moment we offer two materials: the highly wear resistant iglidur® I170-PF and the flexible iglidur® I180-PF. igus®' 3D printer material starter kits are now available in weights from 25 g and diameters of 1,75 mm - 3 mm. Typical applications:Prototype construction, small batches, test installations Delivery program: Delivery program: Wear linear: v= 0,1 m/s; p= 1 MPa; l= 5 mm Wear pivoting: v= 0.01 m/s; p= 1 MPa; ß= 60 igus® presents world's first tribological 3D filament for 3D printers. The tribological 3D printing material is up to 50 times more abrasion-resistant than conventional 3D print materials igus® has been researching the 3D printer filament field to provide its customers with even more flexibility. Real useable parts can now be produced for prototyping. At the moment we offer two materials: the highly wear resistant iglidur® I170-PF and the flexible iglidur® I180-PF. igus®' 3D printer material starter kits are now available in weights from 25 g and diameters of 1,75 mm - 3 mm. Typical applications:Prototype construction, small batches, test installations igus® presents the first tribo filament for 3D printers The new 3D printing materials are up to 50 times more abrasion-resistant than conventional 3D print materials. Complete processing instructions for iglidur® I170-PF (PDF) Complete processing instructions for iglidur® I180-PF (PDF) iglidur® |180-PF Hotend temperature: 220 - 250 °C Bed temperature: 90 - 110 °C Excellent wear behaviour Material table Colour white Moisture absorption at 23 °C and 50 %r.h. 0,3 weight-% Max. water absorption 0,9 weight-% Max. long term application temperature +80 °C Max. short term application temperature +90 °C Minimum application temperature -40 °C Delivery program: iglidur® |170-PF Hotend temperature: 220 - 250 °C Bed temperature: 90 - 110 °C Outstanding wear behaviour of the tribo filaments Harder to process Material table Colour yellow Moisture absorption at 23 °C and 50 %r.h. 0,5 weight-% Max. water absorption 1,6 weight-% Max. long term application temperature +75 °C Max. short term application temperature +85 °C Minimum application temperature -40 °C Delivery program: Y = rate of wear [µm/km] * moulded Wear linear: v= 0,1 m/s; p= 1 MPa; l= 5 mm Y = rate of wear [µm/km] * moulded Wear pivoting: v= 0.01 m/s; p= 1 MPa; ß= 60

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Netherlands

The product development process heavily relies on prototyping. During the design, we go back and forth between 3D design and tangible prototypes, constantly improving the details. Early mock-ups are usually made of paper, cardboard or plastic leftovers that represent the rough functions and measurements of a product idea. Later we use 3D printing, lasercutting and other methods to create realistic prototypes that can be used to test the idea and the design. High quality prototypes can be used for product photography for your website or crowdfunding page. We have a large network of 3D printers, lasercutters, CNC operators, woodworkers, metal workers and more, to make sure that the prototype get as close to the final product as possible.

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Germany

Process steps are essentially concept, development and implementation. In the conception phase, free associations and thoughts play the main role. essentially it is about approaches to problem-solving. different methods for finding ideas are used here. Well-known solutions and familiar processes are questioned, alternatives are considered. The development transfers the approaches to more or less concrete forms, the first geometries are created. flow e.g. ergonomic, technical and aesthetic parameters. Materials are considered, manufacturing processes are considered. In the implementation, the detailed processing of the draft takes place with the aim of conveying specifications to the manufacturers that are not technically feasible or economically viable. Hand sketches and 3D software are used. Visualizations can be created to get realistic ideas about the products. Drafts can be converted into models in our own model making workshop as well as with the 3D printer.

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United Kingdom

EMBROIDER,3D EMBROIDERY,SCREEN PRINTER,JUMBO PRINT,DTG,PERSONALISED CLOTHING,PLAIN CLOTHING,RELABLING,SWING TAG SERVICE

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