Eine junge Frau arbeitet an einer Glovebox im Chemielabor des IFW Dresden.


Infrastructure

The institute’s research is supported by a comprehensive range of facilities and infrastructure, providing advanced capabilities for synthesis, processing, and characterization of materials. These resources encompass specialized equipment and analytical platforms that enable high-quality experimental and technological work across disciplines. Together, they form the foundation for innovative research and the development of advanced material systems.

Induction melting system with a round vessel, control panel featuring a display and multiple buttons, and various pipes and gauges in a technical room.

ALD Vacuum Technologies GmbH VIM4

Induction melting

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Open cold crucible furnace showing the interior and open lid in an industrial setting.

Cold crucible melting

in-house development of IFW-Research Technology Department

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 Laboratory device with control elements, knobs, and displays for a vacuum casting system in a workshop setting

Co. E. Buehler

Suction casting

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An arc furnace in a melting plant for arc-melting processes.

ALD Vacuum Technologies GmbH

Arc melting

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Centrifugal casting plant, pressure gauge and metal housing in a melting plant for arc processes.

Linn High Therm

Centrifugal casting

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Close-up of a rotating disc with a spiral-shaped copper coil during the melt-spinning process.

E. Buehler

Melt spinning

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SLM®280 2.0 powder-bed-based laser beam melting system with an open working area on the left and a control unit with a screen and keyboard on the right.

PBF-LB/M device: SLM®280 2.0 Dual

Laser-based Additive Manufacturing

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Open SLM®250HL device showing internal chambers, control panel, and monitor on the right side.

PBF-LB/M device: SLM®250HL

Laser-based Additive Manufacturing

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A benchtop unit for the powder-bed laser sintering process, fitted with a microscope attachment and a viewing window, positioned on a table next to a computer screen in a well-lit room.

PBF-LB/M device: Realizer SLM®50

Laser-based Additive Manufacturing

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Industrial robot arm with a laser attachment for deposit welding of metals in a manufacturing environment.

DED-LB/M device: ProFocus 1 kW

Laser-based Additive Manufacturing

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A Retsch planetary ball mill with its cover open, showing three cylindrical stainless steel grinding jars arranged on a circular platform. Each jar is wrapped in a slotted metal cage with rectangular cutouts. The components are silver-gray against a dark chamber interior.

Retsch PM400 planetary ball mills

Powder Metallurgy and Powder Characterization

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Two linked images of a hot press. On the left, a photograph of the press with its die assembly circled in red. On the right, a labeled diagram of the vacuum chamber's internal components, stacked top to bottom: thermocouple, rams, die supports, punches, and a central induction coil surrounding the die. Dashed red lines connect the diagram labels to the corresponding parts in the photograph.

Electro-hydraulic Weber PWV 30 EDS uniaxial pressing machine

Powder Metallurgy and Powder Characterization

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Powder analyzer Camsizer X2 by Retsch with X-DRY module in a laboratory setting.

Powder analyzer: Camsizer X2

Laser-based Additive Manufacturing

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Powder analyzer Camsizer X2 by Retsch with X-DRY module in a laboratory setting.

Powder flow analyzer: GranuDrum

Laser-based Additive Manufacturing

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Metal powder atomization system ATO Lab Plus consisting of a white rectangular main unit with a black front door and a blue cubic auxiliary unit with cables in a laboratory room.

Metal powder atomization system: ATO Lab Plus

Laser-based Additive Manufacturing

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Laboratory setup with an electron microscope, two monitors on a desk, and another monitor on a rolling cart in a room with scientific posters on the wall.

Zeiss GEMINI Leo 1530, incl. EDX- and EBSD-system

Scanning electron microscope (SEM) 

incl. EDX- and EBSD-system

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Microscope with connected monitor displaying a magnified black-and-white image of round structures.

Keyence VHX-7000

Optical digital microscope

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A laboratory equipped with a computerized X-ray tomograph, several computers displaying 3D scans on monitors.

General Electric Phoenix Nanotom M

X-ray absorbtion CT

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Instron 8502 testing machine with a cylindrical test specimen clamped inside in a laboratory room.

Instron 8502 servo-hydraulic testing machine

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Instron 8562 testing machine in a laboratory room.

Instron 8562 electro-mechanical testing maschine

(room temperature)

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An open-top high-temperature furnace mounted in an Instron test frame.

Instron 8562 electro-mechanical testing machine

(high temperatures)

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 Instron 5969 testing machine with clamped specimen.

Instron 5969 electro-mechanical testing machine

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Zwick Z050 testing machine for material testing.

Zwick Z050 electro-mechanical testing machine

Materials Testing

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Zwick Z050 testing machine for material testing.

Zwick Z005

Electro-mechanical testing machine for material testing.

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A Bose 3510 universal testing machine in a laboratory.

Bose ElectroForce 3510

Universal testing machine for material testing.

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A Zwick HIT 450P impact bending tester with a round front window in a laboratory, with a computer workstation next to it.

Zwick HIT 450P pendulum impact testing machine

 Pendulum impact testing machine for material testing.

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Black laboratory device with transparent lid, yellow emergency stop button, and green button on the front, standing on gray floor.

Nanovea Tribometer T50 (Pin & Disc)

Wear test for material testing.

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Laboratory device with measuring probe on round black housing in front of a monitor displaying graphs.

Quantum Design PPMS

Magnetic Characterisation Techniques

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electrical characterisation under inert conditions

method at “Sustainable Nanomaterials”

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Zeta potential/dynamic light scattering

method at “Sustainable Nanomaterials”

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Mobile Electromagnetic Levitator

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Resistive Joule Heating Device

Resistive (Joule) fast-heating setup

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Mechanical Testing Device

Mechanical testing setup for in situ XRD

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High-temperature viscosimeter Device

High-temperature viscosimeter

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Sessile Drop Scheme

Setup for wetting tests by sessile drop method

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PANalytical X´Pert Pro, XRD 2183, XRD 3290 diffractometers

Laboratory X-ray diffraction

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STOE StadiP Dual Source diffractometers

Laboratory X-ray diffraction

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Panalytical X‘PertPro MRD diffractometer

Laboratory X-ray diffraction

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TEM Tecnai F30 in our lab.

TEM Tecnai F30

transmission electron microscope 

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TEM CM20 FEG in our lab.

TEM CM 20 FEG

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FIB in our lab

FIB Helios 5 CX

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SEM in our lab

SEM Zeiss Ultra Plus

(FEG, EDX, WDX, EBSD)

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XPS device in our lab

XPS PHI 5600-CI

(Physical Electronics)

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AES device in our lab

Auger Microprobe JEOL JAMP 9500F

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XPS-SIMS device in our lab

Combined SIMS/XPS PHI6300/Phoibos 100MCD

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View into the lab

Cluster tool Creavac Creamet 350 CI 6 ("CARMEN")

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FIB device in our lab

Focussed Ion Beam Helios 5 CX

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Photo of NanoMill 1040 in our lab

Focussed Ar-ion thinning with NanoMill 1040

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Tenupol device in our lab

Electrolytic thinning with TenuPol-5

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plasma cleaning device in our lab

Plasma cleaner TPS 216

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Micro pipette puller device in our lab

Micropipette Puller PC-10

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