Bruker 9.4 T MRI
| 9.4 Tesla MRI for in vivo small animal (rodent) anatomical and functional MRI, cardiac imaging, dynamic contrast enhancement, functional brain imaging and angiography.
| MRI
| Biomedical Core Facility (BCF)
| Galit Saar |
|  |
|
Biosafety Level 2+ Virus Room
| Biosafety level 2+ virus room
| Virus Room
| Biomedical Core Facility (BCF)
| Amir Grau |
|  |
|
Bile Acids identification and relative quantification (Orbitrap Exploris 240/Q Exactive)
| Identification and relative quantification of 30 bile acids in diverse sample types
| Mass Spectrometry
| Biomedical Core Facility (BCF)
| Ifat Abramovich |
|  |
|
BD FACS Melody
| 4-way sorting. Lasers: 405, 488, 640 nm
| FACS Sorter
| Biomedical Core Facility (BCF)
| Amir Grau |
|  |
|
BD FACS ARIA III
| 4-way sorting. Lasers: 375nm, 405nm, 488nm, 561nm, 633nm
| FACS Sorter
| Biomedical Core Facility (BCF)
| Amir Grau |
|  |
|
Axio observer inverted
| Inverted microscope for transmitted and fluorescence widefield microscopy of fixed specimens and time lapse of live samples
| Fluorescence Microscope
| Biomedical Core Facility (BCF)
| Maya Holdengreber |
|  |
|
Axio Imager Z2 upright
| Upright microscope. Suited for fixed specimens. Motorized stage and X-cite metal halide light illumination, High resolution monochrome Zeiss Axiocam 807 camera , and Zeiss Axiocam 105 color camera for brightfield and polarized light.
| Fluorescence Microscope
| Biomedical Core Facility (BCF)
| Maya Holdengreber |
|  |
|
Aspect M2 1 T MRI
| 1 Tesla MRI for in vivo small animal (rodent) and ex vivo studies
| MRI
| Biomedical Core Facility (BCF)
| Galit Saar |
|  |
|
Amino acids identification and relative/absolute quantification (Orbitrap Exploris 240/Q Exactive)
| Identification and relative quantification of polyamines and acetylated form in diverse sample types
| Mass Spectrometry
| Biomedical Core Facility (BCF)
| Ifat Abramovich |
|  |
|
Alveole -Primo
| DMD, laser 375
| Micropatterning
| Biomedical Core Facility (BCF)
| Maya Holdengreber |
|  |
|
Abbelight SAFe 360
| Lasers: 405, 488, 555, 640 Inverted microscope TIRF\Hilo\EPI illumination 2D and 3D SMLM super resolution with Astigmatsim lens
| Super resolution PALM dSTORM
| Biomedical Core Facility (BCF)
| Maya Holdengreber |
|  |
|
Wave Basin
| CAMERI -Coastal and Marine Engineering Research Institute
| Wave Basin
| CAMERI- Coastal and Marine Engineering Research Institute Ltd.
| Rotem Cohen |
|  |
|
Various Grinder and Millers
| | Food Technology - Size reduction
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
UF Filtration
| 0.54 square meter Membrane
| Food Technology - Separation
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
Tweedy Mixer for Dough
| High shear strength. up to 15 Kg
| Food Technology - Dough
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
Stirred falling film evaporator
| 30 l/hr
| Food Technology - Evaporation
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
Stephan mixer
| 15L
| Food Technology - Mixing
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
Steam food Autoclave
| Measured Inner Package tmp via Process
| Food Technology - Sterilization
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
Spray Dryer
| Drying liquids into powder. 1~2 Kg/hr
| Food Technology - Drying
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
Sensory Evaluation Lab
| Designed per ISO 8589 standards
| Food Technology - Food
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
Pulsed Electric Field (PEF)
| 24KV 20µs 300Hz
| Food Technology - Cell Perforation
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
Plate Heat Exchanger
| Up to 6 lit/min, 100 °C
| Food Technology - Pasteur
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
HPP
| Up to 8000 bar
| Food Technology - High pressure processing
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
High Pressure Homogenizer
| 1500 bar. 0.25 lit/min
| Food Technology - Size Reduction
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
Freeze Driers
| Drying liquids into powder. up to 3 Kg batch
| Food Technology - Drying
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
Food high moisture extruder
| 1 kg/hr. Dual screw
| Food Technology - Shape Processing
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
Electro heating – Ohmic heater
| | Food Technology - Sterilization
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
Dry extruder (TVP) + coextrusion
| | Food Technology - Shape Processing
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
Drum Dryer Vaccum
| 4 l/hr
| Food Technology - Drying
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
Double jacket mixing steam pot
| 15L
| Food Technology - Mixing
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
Continuity Centrifuge
| Liquid liquid. Solid liquid. 17000 g. 5 lit/min
| Food Technology - Separation
| Carasso FoodTech Innovation Center
| Yair Glick |
|  |
|
Thermo Scientific CHNS Analyzer (Flash2000)
| Thermo Scientific CHNS Analyzer (Flash2000)
| Chemical and Surface Analysis
| Chemical and Surface Analysis Lab
| Rachel Edrei |
|  |
|
TESCAN (Vega-II) Scanning Electron Microscopy (SEM)
| TESCAN (Vega-II) Scanning Electron Microscopy (SEM)
| Chemical and Surface Analysis
| Chemical and Surface Analysis Lab
| Rachel Edrei |
|  |
|
Shimadzu (UV-1800) Spectrophotometer
| Shimadzu (UV-1800) Spectrophotometer
| Chemical and Surface Analysis
| Chemical and Surface Analysis Lab
| Rachel Edrei |
|  |
|
Rigaku XtaLAB Synergy-S
| The Cypher ES Environmental AFM provides an exceptional performance in resolution, speed and stability in standard contact and tapping modes. It is compatible with a complete range of modes and accessories. In addition, it enables studying samples in controlled gas or liquid environments, doing electrochemical experiments and measuring conductivity of samples.
| X-ray diffraction
| Chemical and Surface Analysis Lab
| Natalia Fridman |
|  |
|
Rigaku diffractometer
| Determination of the crystal structures of the small organic molecules
| X-ray lab
| Chemical and Surface Analysis Lab
| Natalia Fridman |
|  |
|
Q-TOF LCMS Waters
| ESI
| Chromatography, Mass Spectrometry
| Chemical and Surface Analysis Lab
| Larisa Panz |
|  |
|
Q-TOF LCMS Bruker
| ESI APCI Solid prob APPI
| Chromatography, Mass Spectrometry
| Chemical and Surface Analysis Lab
| Larisa Panz |
|  |
|
MALDI
| | Masspectrometry
| Chemical and Surface Analysis Lab
| Larisa Panz |
|  |
|
Jobin Yvon (Fluorolog-3) Fluorometer
| Jobin Yvon (Fluorolog-3) Fluorometer
| Chemical and Surface Analysis
| Chemical and Surface Analysis Lab
| Rachel Edrei |
|  |
|
Horiba Jobin Yvon (LabRAM HR Evolution) Micro-Raman
| Horiba Jobin Yvon (LabRAM HR Evolution) Micro-Raman
| Chemical and Surface Analysis
| Chemical and Surface Analysis Lab
| Rachel Edrei |
|  |
|
GC-MS
| | Chromatography Mass Spectrometry
| Chemical and Surface Analysis Lab
| Larisa Panz |
|  |
|
CEM Cop. (Discover) microwave reactor
| CEM Cop. (Discover) microwave reactor
| Chemical and Surface Analysis
| Chemical and Surface Analysis Lab
| Rachel Edrei |
|  |
|
Bruker AV III 600MHz NMR Spectrometer
| Broad band solution NMR
| Solution NMR Spectrometry
| Chemical and Surface Analysis Lab
| Shifi Kababya/Ira Ben Shir |
|  |
|
Bruker AV III 400MHz NMR Spectrometer
| Broad band automated solution NMR
| Solution NMR Spectrometry
| Chemical and Surface Analysis Lab
| Shifi Kababya/Ira Ben Shir |
|  |
|
Bruker AV III 300MHz NMR Spectrometer
| 1H 13C 29Si solution NMR
| Solution NMR Spectrometry
| Chemical and Surface Analysis Lab
| Shifi Kababya/Ira Ben Shir |
|  |
|
Bruker (Tensor 27) Fourier Transform InfraRed (FTIR)
| Bruker (Tensor 27) Fourier Transform InfraRed (FTIR)
| Chemical and Surface Analysis
| Chemical and Surface Analysis Lab
| Rachel Edrei |
|  |
|
TEM - FEI Tecnai G2 T20 S-Twin TEM
| EDS, STEM
| Transmission electron microscopy
| EMC - The Electron Microscopy Center
| Yaron Kauffmann |
|  |
|
SEM - FEI E-SEM Quanta 200
| EDS. WDS
| Scanning electron microscopy
| EMC - The Electron Microscopy Center
| Maria Koifman |
|  |
|
SEM - FEI E-SEM Prisma
| EDS. WDS, Low-vacuum
| Scanning electron microscopy
| EMC - The Electron Microscopy Center
| Maria Koifman |
|  |
|
PFIB - Helios 5 PFIB Cxe
| HRSEM, EDS, TEM lamella preparation (large cross sections), nano-patterning
| Plasman Focused Ion Beam
| EMC - The Electron Microscopy Center
| Galit Atiya |
|  |
|
Olympus BX51 Light Microscope
| light microscopewith a CCD camera
| Light Microscope
| EMC - The Electron Microscopy Center
| Yaron Kauffmann |
|  |
|
HRTEM - FEI Titan Cubed Themis G2 60-300
| Double corrected, Monochromated, EDS, EELS, In-situ holders, 4D-STEM
| Transmission electron microscopy
| EMC - The Electron Microscopy Center
| Yaron Kauffmann |
|  |
|
Real-time qPCR system
| | Real-time PCR
| Grand Water Research Institute (GWRI)
| Ilana Barzilay |
|  | |
Microscope system Axioskop 40, ZEIS
| | Confocal Microscope
| Grand Water Research Institute (GWRI)
| Ilana Barzilay |
|  | |
Vapor Sorption Analyser (VTA-SA+, TA instruments)
| The VTI-SA+ Vapor Sorption Analyzer is a continuous vapor flow sorption instrument for obtaining precision water and organic vapor isotherms at temperatures ranging from 5°C to 150°C at ambient pressure. The maximum weight of a sample that can be tested is 750mg.
| Vapor Sorption Analyser
| GTEP Fuel Cells Lab
| Irena Levin |
|  |
|
Solid Oxide Fuel Cells test station (X-20, Greenlight)
| The Greenlight X20 SOFC test station is a testing platform that is equipped with a button cell fixture for testing coin cell samples of 25mm diameter. The maximum temperature of tests is 1000 °C. The power range of the test station is up to 100W.
| Solid Oxide Fuel Cells test station
| GTEP Fuel Cells Lab
| Irena Levin |
|  |
|
Screen printer (MSP-485, HIM)
| Screen printing is a printing technique whereby a mesh is used to transfer ink onto a substrate, except in areas made impermeable to the ink by a blocking stencil. Mesh/stencil is uniq for each work, so every user is requered to prepare his/her own mesh(s) and stencil(s). The maximum printing area is 8 x 8 inch.
| Screen printer
| GTEP Fuel Cells Lab
| Irena Levin |
|  |
|
Rotating Ring Disk Electrode (RRDE) -3A Apparatus,
| RRDE-3A is a constant rotation system for use in hydrodynamic modulation rotating ring disk electrochemistry. It could be operated also as RDE. Rotation speed range is 100-8000 rpm. Electrodes are compact and rapidly interchangeable. The unit provides an adjustable valve system for inert gas purging inside the cell vial.The system is connected to VSP potentiostat (BioLogic), allowing performance of electrochemical measurements.
| Rotating Ring Disk Electrode (RRDE)
| GTEP Fuel Cells Lab
| Irena Levin |
|  |
|
Planetary mono mill (PULVERISETTE 6, Fritsch)
| Planetary Mill is used for fine grinding of hard, medium-hard, soft, brittle, tough and moist materials. The maximum rotational speed of the mill in FC lab is 650 rpm. The minimum volume of a grinded sample is 10 ml. Two grinding bowls, 80 ml and 250 ml volume, and grinding balls of 5mm and 10mm diameter, all made of Zirconium Oxide are available.
| Planetary mono mill
| GTEP Fuel Cells Lab
| Irena Levin |
|  |
|
PEM Fuel Cells test stations (850e, Scribner)
| The 850e system is a complete test station for operation and measurement of PEM/DMFC fuel cells. 4 test stations are available in the laboratory. The system can be operated in 5/25/50 A current ranges, maximum load power is 100W. The available cell fixtures are suitable for testing cells with active aresa of 5cm2 and 25 cm2. Three test stations are equipped with a humidifyer bypass for wet/dry testing and with a multygas system for switching between various gases during one test. Two are equiped with automatic back pressure unit.
| PEM Fuel Cells test station
| GTEP Fuel Cells Lab
| Irena Levin |
|  |
|
Membrane Test System (MTS) (Scribner)
| The 740 MTS is intended for studying new ionomers and solid electrolyte materials. It offers rapid and accurate measurements of membrane resistance and conductivity as a function of temperature, humidity and pressure without a need of catalyzing a membrane and preparing a membrane-electrode assembly. The size of a membrane sample that is necessary for a measurement is 6X30 mm.
| Membrane Test System
| GTEP Fuel Cells Lab
| Irena Levin |
|  |
|
Laser cutter (VLS 4.60, Universal Laser Systems)
| Laser cutting technology enables cutting complex shapes without the need for tooling. During the laser cutting procedure, there is laser beam used to cut different materials like plastic, wood, rubber, etc. The technology also can be used for marking and engraving. The laser cutter is equipped with 60W power laser and a standard 2 inch focusing lens, the average size of a focus point is 0.127mm. High-Power Density-Focusing Optics (HPDFO) lens that gives much smaller focus point (0.025mm) is also available.
| Laser cutter
| GTEP Fuel Cells Lab
| Irena Levin |
|  |
|
Glove Box (VTI)
| The glove box provides a high quality controlled environment, designed for handling materials sensitive to oxygen and water. The attainable purity of this system is H2O < 1ppm, O2 < 1ppm. The workstation is equipped with large and small antechambers and a user-friendly PLC controller.
| Glove Box
| GTEP Fuel Cells Lab
| Irena Levin |
|  |
|
Dilatometer (DIL 402 Expedis Select, Netzsch)
| Dilatometry is the method of choice for highly precise measurement of dimension changes to solids at a programmed temperature change and with negligible sample strain. The dilatometer in the FC lab is equipped with a dual pushrods system that enables doing measurements in a dual or a differential mode. The maximum sample temperature is 1150°C, the range of heating rates is 0.001-50 K/min. Measurements could be done in vaccuum, nitrogen or argon atmospheres. Samples of diameters 4,6 and 8 mm and lengths up to 52 mm could be tested. Several reference samples made of Aluminium Oxide are avalable.
| Dilatometer
| GTEP Fuel Cells Lab
| Irena Levin |
|  |
|
Ultrasonic Spray Deposition (ExactaCoat, Sono-Tek)
| A fully-enclosed, programmable 3-axis robot integrated ultrasonic spraying system designed for depositing active layer solutions to produce thin film.
| Ultrasonic Spray Deposition
| GTEP Hydrogen Technologies Lab
| Karam Yassin |
|  |
|
TGA SETSYS Evolution
| Thermogravimetry analysis- The system is equipped with a microbalance that has a capacity of 35g (electronic resolution 0.02mg), temperature range of ambient to 1600°C with scanning temperature rate from 0.01 to 99.99°C/min, and an advanced gas panel, which allows mixing a carrier gas with an auxiliary/reactive gas.
| TGA
| GTEP Hydrogen Technologies Lab
| Karam Yassin |
|  |
|
Solar Simulator (Abet, USA)
| The Solar Simulator is a light source for testing photoelectrodes and photocatalysts under standard illumination conditions.
| Solar Simulator
| GTEP Hydrogen Technologies Lab
| Karam Yassin |
|  |
|
Profilometer (DekTak Bruker)
| A stylus (contact) profilometer that is used to measure height differences (steps) on samples, and serves as a characterization tool for measuring thin film thickness and surface roughness.
| Profilometer
| GTEP Hydrogen Technologies Lab
| Karam Yassin |
|  |
|
PEM and AEM Water Electrolyzers
| Comprehensive testing of membrane and catalyst integration under controlled conditions to evaluate performance metrics such as current density, efficiency, and durability.
Hardware size: up to 5 cm2.
| Water Electrolyzers
| GTEP Hydrogen Technologies Lab
| Karam Yassin |
|  | |
Nicolet iS50 FTIR Spectrometer (Thermo Scientific)
| The Nicolet iS50 FTIR is equipped with VeeMAX III specular reflection accessory with ATR (PIKE Technologies), offering continuous variable angle of incidence and a variety of crystal plates to selectively control the depth of penetration of the IR beam into the sample. ATR applications include the study of layered samples, coatings, release agents, monolayers on silicon and chemical migration studies.
| FTIR
| GTEP Hydrogen Technologies Lab
| Karam Yassin |
|  |
|
Kelvin Probe (NRH020 KP Technologies)
| The Nitrogen Relative Humidity Chamber is equipped with a non-scanning Kelvin Probe, which is a non-contact, non-destructive vibrating capacitor device used to measure the work function of conducting materials or surface potential of semiconductors. This system is equipped with a high intensity monochromator light source (Horiba Jobin Yvon S.A.S) that enables measuring CPD at different wavelengths.
| Kelvin Probe
| GTEP Hydrogen Technologies Lab
| Karam Yassin |
|  |
|
Gas-Chromatograph (GC) – Agilent 7890A
| It is used to analyze and identify volatile substances in the gas or liquid phase. The GC is equipped with TCD and FID detectors as well as CTC auto sampler unit and a controlled valve system for continuous sampling. Development of techniques to evaluate H2 and O2 in complicated system is also possible.
| GC Chromatography
| GTEP Hydrogen Technologies Lab
| Karam Yassin |
|  |
|
Dry/ Wet Electrochemical Characterization Station
| Ivium nStat is a multi-channel Potentiostat/Galvanostat with an integrated impedance analyzer. The nStat has four potentiostats, each potentiostat is a completely independent instrument. The instrument is designed for a wide range of applications, such as battery/fuel cell-testing, electrode development, biotechnology and other Electrochemical Research applications.
| Potentiostat/galvanostat
| GTEP Hydrogen Technologies Lab
| Karam Yassin |
|  |
|
Controlled Intensity Modulated Photocurrent Spectroscopy
| CIMPS is a photo-electrochemical system for the advanced characterization of photoelectrodes. It measures the response of the photoelectrodes to modulated light intensity by generating an AC current.
| Photo-electrochemistry
| GTEP Hydrogen Technologies Lab
| Karam Yassin |
|  |
|
AutoChem II 2920 Chemisorption Analyzer
| The instrument enables the researcher to obtain valuable information about the physical properties of catalysts, catalyst support, and a variety of other materials. Researchers can investigate active metal surface area, surface acidity, distribution and strength of active sites, BET surface area, and more. The AutoChem II performs pulse chemisorption, temperature-programmed reduction (TPR), desorption (TPD), oxidation (TPO), and reaction analyses. Multiple experiments can be run using the same sample.
| Chemisorption Analyzer
| GTEP Hydrogen Technologies Lab
| Karam Yassin |
|  |
|
Atomic Force Microscope with electrochemical capabilities
| The Cypher ES Environmental AFM provides an exceptional performance in resolution, speed and stability in standard contact and tapping modes. It is compatible with a complete range of modes and accessories. In addition, it enables studying samples in controlled gas or liquid environments, doing electrochemical experiments and measuring conductivity of samples.
| AFM
| GTEP Hydrogen Technologies Lab
| Karam Yassin |
|  |
|
3D Metal printing Arcam A2X
| High-temperature capability, 200x200x380mm , metal alloy support.
| Electron Beam Melting (EBM)
| IMT- Israel Institute of Materials Manufacturing Technologies
| Leonid Chernobylskiy |
|  |
|
Z-Corp (3D printer)
| Powder bed Binder Jetting 3D printer (Z-Corp)
| Bibder Jet 3D printing
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
XRF Thermofisher
| Portable, accurate measurements of metal alloys and coatings
| X-ray fluorescence
| IMT- Israel Institute of Materials Manufacturing Technologies
| Leonid Chernobylskiy |
|  |
|
Wolpert Charpy Impact
| Charpy V,U. Two scales [0-150J and 0-300J] (from -196 deg C up to room temperature)
| Charpy Impact, Analog
| IMT- Israel Institute of Materials Manufacturing Technologies
| Roman Biletskiy |
|  |
|
Vim Furnace
| Vacuum induction melting furnace. Max. temp. 1600 °C
| Induction heating
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
Vibro sieving
| Sieving
| Sieving
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
VH Powder Mixers
| Preparation of powder mixture, capacity 500 liters
| Bibder Jet 3D printing
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
Versastat 3 Potentiostat / Galvanostat
| low currents
| Electrochemical research/corrosion tesing
| IMT- Israel Institute of Materials Manufacturing Technologies
| Gennady Kozyukin |
|  | |
Vacuum Furnace SecoWarwick
| Temperature range up to 1200 degrees , advanced cooling options.
| Heat treatment, Vacuum Furnace
| IMT- Israel Institute of Materials Manufacturing Technologies
| Leonid Chernobylskiy |
|  |
|
Tube Furnace
| Furnace, max. temp. 1600 °C
| Heating
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
Struers, Tegramin-25
| Grinding / Polishing, Automatic
| Metallographic samples preparation
| IMT- Israel Institute of Materials Manufacturing Technologies
| Keren Zohar Hauber |
|  |
|
Struers, ProntoPress
| Automatic, low speed, 15mm / 30mm / 45mm samples
| Metallographic samples hot mounting press
| IMT- Israel Institute of Materials Manufacturing Technologies
| Keren Zohar Hauber |
|  |
|
Struers, Lavamin
| Automatic, effective cleaning, drying
| Metallographic samples cleaning
| IMT- Israel Institute of Materials Manufacturing Technologies
| Keren Zohar Hauber |
|  |
|
Struers, Discotom-10
| Large chamber, constant cooling
| Metallographic cut-off machine
| IMT- Israel Institute of Materials Manufacturing Technologies
| Keren Zohar Hauber |
|  |
|
Struers, CitoPress-5
| Automatic, high speed, 15mm/ 30mm samples
| Metallographic samples hot mounting press
| IMT- Israel Institute of Materials Manufacturing Technologies
| Keren Zohar Hauber |
|  |
|
Struers LaboForce 100 Polishing Machine
| Polishing machine with variable speed for 300 mm dia. disk.
| Polishing
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
Spray dryer
| Used to dry liquids to powder by means of an atomizer.
| Powders granulation
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
SLA (3D printer)
| SLA polymer 3D printer
| Bibder Jet 3D printing
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
Sandblasting machine
| Removing rust, paint, corrosion from materials.
| Blasting
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
Salt Spray Cabinet
| 450L, prohesion option
| Corrosion testing
| IMT- Israel Institute of Materials Manufacturing Technologies
| Gennady Kozyukin |
|  | |
Pyrolyse retort
| Debinding system (phenolic binder)
| Heating
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
Printhead, 80pL
| Binder jetting 3D printer prithead (Ex One. M-Flex)
| Bibder Jet 3D printing
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|
Press Beckwood 200 Tons
| 200-ton hydraulic press
| Pressing
| IMT- Israel Institute of Materials Manufacturing Technologies
| Alex Katz |
|  |
|