3D printer 800


ProX 800-3D Printer | 3D Systems

Integrated Printer, Material and Software Solution for Dental Workflows

The ProX® 800 printer delivers the precision and quality of our gold standard Stereolithography 3D printing technology. Our Accura® additive manufacturing materials for dental applications are formulated and biocompatible capable for applications such as surgical guides and thermoforming molds. The solution is integrated with our 3D Sprint software with specific dental workflows to enable mass-custom manufacturing processes in your production line.

Advanced Part Manufacturing Workflow

3D Systems' exclusive software for plastic printers to prepare, optimize and print 3D CAD data, 3D Sprint® software delivers all the tools you need to quickly and efficiently go from design to high quality true to CAD printed parts without needing additional third-party software.

With 3D Sprint PRO for SLA (optional), facilitate file preparation with native CAD import and advanced mesh repair tools, increase productivity with auto-placement, enhance manufacturing efficiency with finely tuned supports, and reduce the need for additional software with embedded Geomagic trusted technology. Your enhanced design for additive manufacturing workflow begins here, while 3D Connect™ Service provides a new level of management in 3D production.

SLA 3D printing workflow

3D Systems is Changing the Dental Industry

See how our dental solutions and workflows can help you provide your customers with quality products in a fraction of the time.

Find out more about Dental Solutions and Workflows

About this printer

  • Applications

  • Benefits

  • Tech Specs

Applications

  • Mass customization (orthodontic, dental)
  • Drill guides
  • Thermoforming molds

Benefits

  • Single source solution (for 3D printers, materials, and software)
  • Ease of use – intuitive workflow
  • Low material waste
  • Broad application flexibility
  • Finest feature detail
  • Smooth surface finish

Tech Specs

  • Stereolithography technology (SLA)
  • Max build envelope capacity(W x D x H): 650 x 750 x 550 mm (25. 6 x 29.5 x 21.65 in)
  • Highest precision & accuracy
  • Exchangeable Material Delivery Modules (MDMs)
  • Utilizing two laser spot sizes per layer – no compromise between speed or feature detail
  • Also available with rigid, stable nanocomposite material
  • Industry-leading 3D Sprint software for file preparation and production
  • Cloud connectivity for predictive and prompt service with 3D Connect

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DMP Dental 100

Easy-to-use entry level dental metal printer for exceptional quality

Large Scale Metal 3D Printing with SLM®800 System

The SLM®800 features an extended z-axis for large-scale part production. The ability to have multiple machines connected via the SLM® HUB opens new possibilities for large-scale industrial metal additive manufacturing.

  • 500 x 280 x 850 mm build envelope
  • Multi-laser (quad)
  • Permanent filter
  • Multi-machine set-up
  • SLM®HUB automated cylinder handling and powder management


ScHedule a demo

SLM®800

The SLM®800 efficiently builds large components and opens new production possibilities. All SLM Solutions’ patented innovations have been scaled up and partnered with features such as a metal recoating brush, permanent filter module and centralized powder supply to enable successful large builds. 

The SLM®HUB and optional Build Cylinder Magazine create an automated, multi-machine production manufacturing cell. The result: A fully automated handling station which maximizes machine uptime and offers a no-contact powder solution for production processes.

Ready for Serial Production

The SLM®800 utilizes our proven quad-laser technology with an extended z-axis for larger production builds. Vertically extending the build envelope reduces exposure per layer and yields higher part quality, in particular, to flatness and reduced internal material stress. Vertical orientations also need less supports reducing material usage and post-processing.

Permanent Filter Improves Uptime and Reduces Costs

The permanent filter module traps soot and condensate particles from the process gas stream in a sintered plate filter. The filter is purged with gas, the waste material coated with an inhibitor and dropped in a bin for dry disposal, while clean gas returns to the process chamber. This helps stabilize gas flow and ensures part quality throughout long builds without interruption. The elimination of consumable filter cartridges increases safety while improving machine uptime and reducing costs.

Automatic Powder Handling 

  • Each SLM®800 features an integrated powder tank to supply the machine with a direct source of material. The additional central powder supply unit (CPS) features two 220l tanks, one fixed for delivery to the machine and one portable for powder refill. Sieves are located both in between the two CPS tanks and on the machine directly before use to ensure powder quality throughout the process. This leads to an increased machine uptime, high safety and material quality.

Automated Build Cylinder Handling

The SLM®HUB utilizes a linear axis to drive build cylinders internally between four integrated stations and directly into or out of the SLM®800 machine. The four stations allows an automated de-packing of the part out of the cylinder under an inert gas atmosphere to maintain powder quality. All recovered powder is returned to the powder supply where it will be used in the next build. 

  • Pulling Station - Full cylinders are pulled from the machine and transported to the depowder station.
  • Depowder Station - Build cylinders are turned over to pour out loose powder. Once loose powder is removed the cylinder is vibrated to remove and powder that might be trapped within the part.
  • Merge Station - Operators can insert blank build plates into the HUB, or remove powder free parts ready for post processing.
  • Parking Station - Build plates are heated up and full build cylinders are cooled down

Patented Gas Flow

SLM Solutions patented laminar gas flow ensures a maximum removal of condensate in the build chamber. A clean, soot-free build chamber means the laser has a clear path to the powder bed resulting in high-quality parts the total height of the build.

Download the SLM®800 BrochurePrint a Benchmark

SUCCESS STORY

Machine: SLM®800
Material: Titanium

Main Fitting of a Bizjet from Safran

In a joint project, Safran Landing Systems and SLM Solutions tested Selective Laser Melting to produce a component of a nose landing gear for a bizjet. A world first for a part of this size. The objective of the project is to demonstrate the feasibility to produce a main fitting by Selective Laser Melting process. The component was therefore redesigned for metal-based additive manufacturing allowing time saving in the whole process, and significant weight reduction about 15% of the component.

Read More

 

Fuel Tank - VIBA Honda® Monkey

Machine: SLM®800
Material: AlSi10Mg

This 3D printed motor bike fuel tank is an especially innovative component, as it was 3D printed in a single piece and demonstrates the advantages of working with additive manufacturing instead of more traditional processes. The part, which weighs only 3.3 kg, was 3D printed using the SLM®800 and integrates an internal honeycomb structure that stops fuel from sloshing while the motorbike is in motion.

Cam Covers - Bugatti® Chiron

Material: AlSi10Mg
Layer Thickness: 60 μm
Build Time: 4d 8h (Maximized Build Chamber, 8 Units)

SLM®800 Accessories

The SLM®800 reaches peak performance when paired with the SLM®HUB, a fully-automated handling station. This integrated solution features automated transport of build cylinders with dedicated locations for pre-heating and cooling in an inert atmosphere. The SLM®HUB also removes manual powder handling from the production process with a centralized powder supply and a powder removal chamber that rotates and vibrates the finished substrate plate to automatically separate unused powder from the finished part, recycling it back to the sieving station for reuse in future builds. All machines connected to the SLM®HUB are fed metal powder through vacuum technology from the central powder station creating a completely closed-loop powder management system under an inert gas atmosphere.

Up to five SLM®800 systems can be modularly connected to and operated from a single SLM®HUB. With a build cylinder magazine (BCM) multiple build cylinders can be handled in parallel to optimize machine uptime and scale to full production.

Provides a consistent powder bed over thousands of layers and beneficial for efficient job changeover. Brush durability ensures stable recoating while enabling error correction during the build.

  • Haynes 25 or IN718, tested and approved for use with any material
  • Testing shows brush stability at over 100,000 layers
  • In the event of a collision with an extrusion up to 3mm from the powder bed, the bristles bend and do not break.
  • Allows for correction of a build defect without damage to either recoater or part

Developed to simplify cleaning, maintenance and installation work on the SLM®Recoater.

  • Stable mount for maintenance
  • Safe handling
  • Station features 360° rotation for full maintenance access
  • Drip tray included for easy residual powder collection
  • Safe storage of recoating mechanisms
  • Station Dimensions: 730mm x 310mm x 250mm

Tool for visualizing thermal emission of melt pool in the SLM®process. The system records the thermal radiation produced from the melt during the entire production process.

  • Sequential output of thermal emission plot images of individual layers
  • Detect irregularities and defects in parts
  • Log and document build jobs in MPM-Files

 

Permanent on-axis laser power monitoring system that measures and illustrates nominal and actual power during the ongoing manufacturing process.

  • Active warnings, highlighting spots with critical laser power deviation
  • Documentation of the laser power for each scan vector over the entire build job

Tool to level recoater height and adjust overlap area. Enables reproducible adjustments to the recoating lip height, independent from operator, within 1 μm. Resulting in recoating and the laser exposure level consistency for each build job.

SLM®800 Technical Specifications

Build Envelope (L x W x H):

500 x 280 x 850 mm
19. 7 x 11 x 33.5 in
(reduced by substrate plate thickness)

3D Optics Configuration:

Quad (4x 700 W) IPG fiber laser

Build Rate:

up to 171 cm³/h (Quad 700 W)

Variable Layer Thickness:

20 µm - 90 µm

Minimum Feature Size:

150 µm

Beam Focus Diameter:

80 µm - 115 µm

Maximum Scan Speed:

10 m/s

Average Inert Gas Consumption in Process:

5-7 l/min (argon)

Average Inert Gas Consumption Purging:

70 l/min (argon)

E-Connection / Power Input:

400 Volt 3NPE, 63 A, 50/60 Hz, 8-10 kW

Compressed Air Requirement / Consumption:

ISO 8573-1:2010 [1:4:1], 50 l/min @ 6 bar

Dimensions (L x W x H):

Dependent on setup

Weight:

Dependent on setup

Download the SLM®800 Brochure Request a Quote

RS Pro 800 (SLA) industrial 3D printer - supply of 3D printing equipment from Foliplast at a bargain price

RS Pro 800 (SLA) industrial 3D printer - supply of 3D printing equipment from Foliplast at a bargain price
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  • UnionTech RS Pro 800 Industrial 3D Printer
  • Description
  • Characteristics
  • Documents
  • Payment and delivery
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Description

RS Pro 800 3D Laser Printer

The UnionTech 3d printer, operating on laser stereolithography technology, has the following parameters:

  • The maximum weight of the model is 150 kg.
  • Construction accuracy of ±3 µm thanks to the base platform made of granite, which does not deform over time.
  • The use of precision mechanics makes it possible to achieve an accuracy of positioning the build platform along the Z axis of ±2 µm.
  • Enclosed optical system: isolated from the build chamber and not affected by tar and dust. And also has additional protection that provides long service life.
  • The SCANLAB scanner comes directly from the manufacturer (Germany).
  • Panasonic Servo Motor 3-Axis Scanner Motor meets the highest standards, durability and high precision.
  • Laser (354.7 nm) from American Spectra Physics with a stable output power of ±2 mW.
  • Rated laser power - 800 mW (at the surface of the resin in normal condition - 300 mW).
  • Photopolymer resin level control is carried out with an accuracy of ±5 µm. Prevention of excessive resin consumption is achieved through patented vacuum adsorption technology.
  • Printer electronic components are CE certified.

You can buy an industrial 3D printer RS ​​Pro 800 from UnionTech in Foliplast with delivery to Moscow, St. Petersburg, Samara, Kazan, Novosibirsk and other cities of Russia.
Make an order by phone 8 (800) 302-13-41 or send a request in any contact form on the site. Our employees will provide the necessary information and assist in choosing a 3d printer for your production purposes.


Features

Equipment type 3D printer
Print Technology SLA (Laser Stereolithography)
Construction area size, WxHxD, mm 800 x 800 x 550
Max scan speed, m/s 15 m/s
Construction accuracy, mm ±0.15mm (size <100mm) / ±0.15%(size ≥100mm)
Layer thickness (adjustable), mm 0. 07 - 0.25
Laser model Triple frequency solid state Nd: YVO4
Laser spot diameter, mm 0.12 - 0.20
Amounts of material included in the delivery, kg 560
Software UnionTech BP from Materialize/Windows® 7.10
Recyclable materials Photopolymer resins
Dimensions, WxDxH, mm 1798 x 1602 x 2118
Machine weight (excluding material), kg 1440
Power supply, V 240 V, 50 Hz

Documents

TDS RSPro 800 en

808.9 Kb

Payment and delivery

Payment method

It is possible to pay for goods and services purchased at TPK Foliplast LLC by means of a non-cash transfer of funds by the customer to the settlement account of the organization.

About delivery

Delivery of goods can be carried out by self-delivery from the main warehouse of TPK Foliplast or with the help of transport companies. Delivery to the regions of Russia by a specific transport company is agreed with the client individually.

For the convenience of preliminary calculation of shipping costs, we provide links to calculators of popular transport companies:


Cost calculation


Cost calculation


Cost calculation


Cost calculation


Cost calculation


Cost calculation


In such regions as: Nizhny Novgorod, Moscow, St. Petersburg, Samara, Kazan, Novosibirsk, our products can be obtained at the following addresses:
Nizhny Novgorod (production and main warehouse):
st. Pamirskaya, 11n

Moscow:

Major Express - st. Dobrolyubova, d. 2, building 1 CDEK - Aviamotornaya st., 67/8, building 1
Business Lines - st. Lobnenskaya, 18, building 2
DPD - Kirovogradskaya street, 15
Baikal Service - st. Plekhanova, 11, building 6
PEK - 1st Vyazovsky pr., 4, building 19

St. Petersburg:

Major Express - st. Dvinskaya, 23 CDEK - st. Rossiyskiy Ave., 8
Business Lines - 1st Verkhniy Lane, 12 B
DPD - st. Domostroitelnaya, 1, Letter B
Baikal Service - 1st Upper Lane, 12 E
PEK - st. Tosina, 9

Samara:

Major Express - st. Stara Zagora, 25 CDEK - st. Volskaya, 71
Business Lines - st. Democratic, 45A
DPD - st. Vrubel, 11
Baikal Service - st. Tovarnaya, d. 8, building 1
PEK - st. Zemetsa, d. 32, bldg. 354

Kazan:

Major Express - st. Vosstaniya, d. 100, building. 211a CDEK - st. Dekabristov, 156
Business Lines - st. Adelya Kutuya, 151
DPD - st. Hlebozavodskaya, 7 V
Baikal Service - st. Bukharskaya, 3
PEK - st. Tikhoretskaya, 19

Novosibirsk:

Major Express - st. Family Shamshin, 30 CDEK - st. Krivoshchekovskaya, 15, bldg. 1
Business Lines - st. Sukharnaya, 35/1
DPD - st. Bolshaya, d. 256 B, building. one
Baikal Service - st. Chukotskaya, d. 2B, bldg. 1
PEK - st. Planetnaya, 30, bldg. 2A

Photo of finished product

Photo of finished product

Leasing Possibility of leasing

Commissioning works Install equipment and start production

Profile specialists Qualified specialists in their field


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TPM3D S800DL 3D Printer

Key Features

The 's functional LCD display makes the S800DL 3D printer intuitive to use.

Large build area and high scan speed allow you to get large-sized products in one working session.

TPM3D S800DL is an efficient production tool small and medium batches of products .

The S800DL 3D printer is equipped with two lasers, each of which can reach anywhere in the workspace. The lasers work simultaneously, which speeds up the printing process and improves productivity.

Efficient control of the working environment inside the build chamber ensures optimal mechanical properties of printed products.

The retrievable build module, together with a hand loader, greatly simplifies the process of post-processing models. After printing is completed, the build module can be placed in a special cleaning station, where the printed product is cooled to 60°C to prevent shrinkage. To reduce the downtime of the 3D printer, it is possible to purchase an additional build module, which will be used to start the next print session when another module is in the cleaning station.

Intelligent powder feed system. The smart design of the plastic powder storage bins makes loading material into the printer quick and easy. As you print, the S800DL delivers just the right amount of filament layer by layer, preventing excess material from forming that could damage your product.

Printed models are actively cooled inside the workspace, providing a stable and safe environment.

The intelligent software is intuitive to use and greatly simplifies the process of working with a 3d printer. Additional parts can be added to or removed from the build area even while the S800DL is running.

Cleaning station included in the package makes post-processing even more convenient. The unit is used to extract the product from the raw powder, and is also equipped with a mixer. The sifted powder is fed into the integrated mixer, where it is mixed with clean material, after which it can be used for a new printer work session. Due to the fact that the whole process takes place inside one device, the operator's labor costs are significantly reduced, as well as the degree of contamination of the surrounding space with powder material.

Integrated nitrogen generator. All TPM3D S-Series printers are equipped with a nitrogen generator that removes oxygen from the build chamber before printing. This is necessary to ensure high accuracy and print quality, as well as to prevent fire from contacting the laser with oxygen. An integrated generator reduces the overall cost of an SLS printer by eliminating the need for the user to find and purchase a separate device.

SLS 3d printing applications

TPM3D additive machines are widely used in various industries and businesses. Due to high operating temperatures, 3D printers are able to work with engineering materials that provide high performance properties of the created products. Thus, TPM3D equipment can be used for the manufacture of functional prototypes, tooling, small-scale production of end products that are durable and heat resistant.

SLS 3D printing is used in the automotive, aerospace, instrumentation, robotics, defense, and medical industries, allowing engineers and designers to reduce the cost and time of developing new products, as well as providing new opportunities in terms of product design and geometry.

PA11 is a high impact and high temperature resistant polyamide. The material is suitable for 3D printing of functional prototypes and final products with enhanced mechanical properties.

PA12 - polyamide with low shrinkage sensitivity, the use of this material allows to achieve high precision 3D printing. The polymer is used for the production of prototypes, cases, functional parts with complex geometry elements.

PA12GF - glass fiber reinforced polyamide. Fiberglass gives the material greater strength and heat resistance; products printed from this plastic are resistant to deformation under the influence of temperature loads.


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