Stratasys® Diran™ 410MF07 is a nylon-based engineering thermoplastic with 7% mineral fill by weight. It demonstrates exceptional toughness and impact strength and has a smooth lubricious surface with low sliding resistance.

Particularly effective for applications requiring a non-marring interface between the tool and the workpiece, Diran 410MF07 is well suited for jigs, fixtures, and other general manufacturing aids.

System Overview and Compatibility

Diran 410MF07 is currently available on the F370™ and F370®CR 3D printers with 0.007 in. (0.178 mm), 0.010 in.(0.254 mm) and 0.013 in. (0.330 mm) layer heights. It uses SUP4000B™ as a breakaway support system, the only breakaway support offered on the F370 and F370CR. This support material is easier to remove than other Stratasys breakaway support systems. Diran 410MF07 requires the high-temperature build tray and uses a standard F123 print head for the model and support materials. Diran 410MF07 is available on the F370 and F370CR in 90-cubic-inch spools, and SUP4000B is available in the F370 and F370CR standard 60-cubic-inch spools.

  • Stratasys FDM Materials

Overview of Stratasys FDM 3D Printers and Materials

FDM® (fused deposition modeling) 3D printers offer unparalleled versatility to turn your CAD files into durable parts. These parts are tough enough to be used as advanced conceptual models, functional prototypes, manufacturing tools, and production parts. Engineers can produce various products just by loading different files and materials. No traditional machining process can do that.

  • Stratasys ABS-ESD7

Handling & Finishing ABS-ESD7 Parts

Overview

ABS-ESD7 (static dissipative) material is among the many great materials available for the Fortus systems. This paper will walk you through the handling considerations for ABSESD7, including finishing, safety, and packaging guidelines.

Finishing

This material's most common finishing techniques are bonding and smoothing. For smoothing, sanding is the recommended method. As with all FDM materials, standard sanding processes can be followed. Unlike our standard ABS materials, note that this material cannot be smoothed using the finishing touch station. ABS-ESD7 can easily bond through typical methods, including solvents, epoxies, hot-air welding, ultrasonic welding, and superglue.

  • Stratasys ABS-ESD7

ABS-ESD7™ (acrylonitrile butadiene styrene-electrostatic dissipative) is an ABS thermoplastic with static dissipative properties suited for static discharge-sensitive applications. ABS-ESD7 prevents static electricity buildup, so it will not produce a discharge or attract other materials like powders, dust, and fine particles.

The material is ideal for jigs and fixtures used to fabricate and assemble electronic components and associated production line and conveyor parts. It is also useful for producing functional prototypes, enclosures, and packaging.

  • Stratasys ABS-M30

ABS-M30™ filament combines the design freedom of FDM® technology with the versatility and capability of ABS (acrylonitrile butadiene styrene). ABS is characterized by its strength and toughness, while being lightweight and resilient, suitable for most general-purpose 3D printing use cases.
  • Stratasys ABS-M30i Data Sheet

ABS-M30i is a high-strength material well-suited for the medical, pharmaceutical and food packaging industries. Parts manufactured with ABS-M30i material are biocompatible (ISO 10993)* and can be gamma or EtO sterilized. In addition, ABS M30i has passed ISO 18562 testing for gas and airway parts for use in respiratory and ventilation medical devices. When combined with Fortus® 3D Printers, ABS-M30i gives you biocompatible parts with excellent mechanical properties well suited for conceptual modeling, functional prototyping, manufacturing tools and production parts.

  • Stratasys Antero 840CN03

Antero™ 840CN03 is a PEKK-based FDM thermoplastic combining the excellent physical and mechanical qualities of PEKK with electrostatic dissipative (ESD) properties. The material is filled 3% by weight with carbon nanotubes.

As a high-performance polymer, Antero 840CN03 exhibits exceptional chemical and wear resistance, ultra-low outgassing properties and consistent ESD performance. ESD values range from 104 – 109 ohms per square inch. This makes the material particularly suitable for space and industrial applications where these qualities are critical.

  • Stratasys Antero 840CN03

Antero™ 840CN03 is a high-performance PEKK-based FDM® thermoplastic with strong mechanical properties and exceptional material properties, such as electro-static dissipation, temperature resistance, chemical resistance, exceptional wear properties, and ultra-low outgassing. This makes it ideal for low-volume, highly-customized production parts and functional prototypes that must withstand more intemperate conditions. Antero 840CN03’s primary advantages over other Stratasys high-performance materials – such as ULTEM™ 9085 resin, ULTEM™ 1010 resin, and PPSF – are its ESD, high chemical resistance, and low outgassing properties.

System Overview and Compatibility

Antero 840CN03 is available on the Stratasys F900™ and Fortus 450mc™ with a 0.010 inch (0.254 mm) slice height. It uses SUP8000B™ as a breakaway support system, similar to other Stratasys high-temperature material offerings. This support material is easier to remove than the other breakaway support systems. Antero 840CN03 requires the hardened head upgrade and utilizes a custom T20F tip for the model material. Both systems use a standard T16 tip for the support material.

Antero 840CN03 and SUP8000B are available in standard 92.3 cubic inch Fortus Plus™ canisters only, and the material will use the existing high-temperature material build sheets.

  • Stratasys Antero 800NA

Antero™ 800NA is a PEKK-based FDM® thermoplastic. It combines FDM’s design freedom and ease of use with the excellent strength, toughness, and wear-resistant properties of PEKK material.

Antero 800NA exhibits high heat resistance, chemical resistance, low outgassing, and dimensional stability, particularly in large parts.

Appropriate applications include aircraft components exposed to jet fuel, oil, and hydraulic fluid, spacecraft parts that demand low outgassing, and chemical-resistant industrial parts. Using Antero 800NA with FDM technology avoids the waste associated with subtractive manufacturing of high-cost bulk PEKK material.

Antero 800NA is available on Fortus 450mc™ and F900™ 3D Printers and is compatible with breakaway support material SUP8000B™.

  • Stratasys FDM Materials ASA

ASA (acrylonitrile styrene acrylate) FDM® filament is a broad-use commodity thermoplastic. It is similar to ABS (acrylonitrile butadiene styrene) but exhibits better UV resistance, mechanical properties, and aesthetics than ABS.

ASA suits most general-purpose 3D printing applications involving prototyping, jigs and fixtures, and low-volume production parts. ASA filament is available in the most colors of any FDM material.

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  • DAC Model: 272-981
    DAC Worldwide's Pressure Switch Sample Dissectible (272-981) is a realistic dissectible sample of a common industrial pressure switch.
  • DAC Worldwide Model: 278-195
    Item Number:
    278-195
    DAC Worldwide’s Progressive Cavity Pump Cutaway – Moyno/Roper (278-195) depicts a sectioned industrial progressing cavity pump that allows for convenient classroom or laboratory training in the operating characteristics, construction, and maintenance of these common process pumps used in a variety of sectors.
  • Chemical Engineering Training Equipment
    Item Number:
    ELL/4000
    The unit is used manually, with flows controlled by manual valves and flowmeters. The unit has a 2"-diameter glass column, which enhances the visual experience of the extraction process. A pneumatic pulsator increases the contact between the two phases and mass transfer. Students learn how to determine the interphase level, material balance, efficiency of the column, and more.
  • DAC Sample Boards
    Item Number:
    869-PAC
    DAC Worldwide’s Pump Impeller Sample Board (869-PAC) is a hands-on teaching aid that is designed to supplement courses in pump operation and maintenance. This rack-mounted identification panel accommodates magnetic identification tags relating to the impellers supplied, allowing association with the appropriate impeller by the student.
  • DAC Worldwide 275-PAC
    Item Number:
    275E-PAC
    DAC Worldwide’s Pump Maintenance and Alignment Training System Plus (275E-PAC) is a realistic benchtop training system for industrial pumps. Using an actual standard ANSI centrifugal pump, the training system allows for instruction in the complete tear-down and assembly procedure for this common pump type.
  • Pump Packing Mechanical Seal Trainer (280-000)
    Item Number:
    280-000
    Hands-On Technical TrainersDAC Worldwide’s Pump Packing / Mechanical Seal Trainer (280-000) is a unique, multi-purpose demonstration device related to training in industrial pump sealing systems. The trainer supports basic introductory training in pump packing / mechanical seal operation, and gives learners a first-hand view into a component that is found in various maintenance applications worldwide.
  • Item Number:
    295-408
    DAC Worldwide's Pumpjack Package Model (295-408) is a highly detailed, professionally crafted technical scale model of a common oilfield production pump.
  • End of Arm Tooling for Collaborative Robots
    Item Number:
    QC10
    The OnRobot Quick Changer enables easy and fast tool changing, can handle 20kg payload, and has a low built-in height and weight. Patented reliable and with an easy-to-use locking mechanism, extra safety locking structure and locking springs make the Quick Changer a unique product, ideal for all collaborative robot applications.
  • Cutaway Valve Trainer
    Item Number:
    273-510
    DAC's Rack and Pinion Pneumatic Actuator Cutaway (273-510) is a detailed valve actuator cutaway that depicts a rack and pinion-type pneumatic valve actuator commonly used as a closure device on industrial 1/4-turn valves.
  • Simlog Personal Simulators
    Item Number:
    RLT
    Training scenarios are typical of warehouses and distribution centers where racking systems are tall and spaced closely together to increase storage density. There are many software options to configure what you see and do, to reproduce the operator controls and steering behavior of the most common kinds of (real) reach lift trucks.

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