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182 products
Furnace for melting lead SHS(G)-7.5/5.5
Furnace for melting lead SHS(G)-7.5/5.5
from 2 178 000 ₽
Designation: SHS(G)-7.5/5.5 Supply voltage, V: 380 Power, kW: 40/7 Maximum temperature, °C: 550 Useful size, mm: 720x520
Produced in: Tula
High Temperature laboratory furnace CHO 64/17
High Temperature laboratory furnace CHO 64/17
from 4 256 736 ₽
Designation SNO 64/17 Rated power Pmax, kW 18 Power supply voltage U, In 3 phases + N+PE 380 Maximum operating temperature T slave, oS 1700
Produced in: Tula
Aluminum Melting Furnace SAT-0.25/7.8
Aluminum Melting Furnace SAT-0.25/7.8
from 1 300 381 ₽
Designation SAT-0.25/7.8 Installed capacity, kW 28 Temperature stability in steady-state mode, °C ± 5
Produced in: Tula
Desktop Diffractometer HUMMINGBIRD
Desktop Diffractometer HUMMINGBIRD
The device is designed to analyze the phase composition and structural state of polycrystalline objects of various origins.
Burevestnik
Kolomyagi
Produced in: Saint Petersburg
MTP-01 Magnetic Coating Thickness Gauge
MTP-01 Magnetic Coating Thickness Gauge
from 90 000 ₽
Measuring range of thickness of protective coatings, mm: from 0.2 to 10 Digital display of measurement results: yes Power supply: from a PP3 type battery with a voltage of 9V Power consumption, MW: 100 Operating mode setting time, min: 1 Time of one measurement, sec: 3 Memory capacity, number of thickness values: 2000 Overall dimensions, mm: - electronic unit (width-depth length) 120x60x25 - measuring transducer (diameter height) 33x23 - connecting cable (length) 1500±300 Weight, g, no more: - electronic unit (without battery power) 80 - measuring converter 40 The kit includes: - Electronic unit, - Measuring converter - Plate made of non-magnetic material for setting the upper limit of measurements - Battery type PP3 - CD-ROM with the program - Prism - Cover - Spring - Case - Passport - Operation Manual
Produced in: Moscow
Thermoelectric converter THA.GPKSH.011
Thermoelectric converter THA.GPKSH.011
The thermoelectric converter THA.GPKSH.011 is designed to measure the temperature of gaseous and liquid chemical environments that do not destroy protective fittings, as well as the surfaces of solids.
Termokon
Korolev
Produced in: Moscow region, Korolev
Quenching oil tank BZM 10.12.15/06
Quenching oil tank BZM 10.12.15/06
from 2 959 292 ₽
Oil quenching tanks of the tank type are designed for quenching cooling of products heated to the quenching temperature in oil at temperatures up to 90 ° C in stationary conditions. The workspace environment is oil. Quenching oil tanks "BZM-10.12.15/0.6" are designed to remove the steam jacket from the surface of the part in oil with mixing in a laminated flow with maintaining the temperature of the liquid. Water, oil, or polymer liquid can be used as a working fluid in the quenching oil tanks "BZM-10.12.15/0.6". The tank is welded from a metal profile and is a rigid power structure. U–shaped heating elements with a capacity of up to 40 kW are installed on the inner side. Cooling is carried out by means of a heat exchanger (coil) installed in the working space. Cold process water from the mains is used for cooling. Optionally, tanks (or a complex of tanks) can be equipped with a chiller or a cooling tower. The liquid level maintenance system ensures a constant level of liquid in the tank. A level sensor is installed to monitor the level. When the liquid level in the tank decreases, the liquid is refilled automatically. Mixing of the liquid in the tank is provided by means of a stirrer located at the bottom.
Produced in: Tula
High Temperature Laboratory furnace SNO 30/17
High Temperature Laboratory furnace SNO 30/17
Designation SNO 30/17 Rated power Pmax, kW 12 Power supply voltage U, In 3 phases + N+PE 380 Maximum operating temperature T slave, oS 1700
Produced in: Tula
VD-12NFP Eddy Current Flaw Detector with 2 converters
VD-12NFP Eddy Current Flaw Detector with 2 converters
from 292 500 ₽
The device allows you to detect surface defects like cracks, visualizing the signal from the continuity interruptions on the display. The design of the flaw detector allows to determine with high reliability the exact location and depth of defects even on rough surfaces of flat and curved shape, including under a layer of corrosion or in the presence of a protective coating of the controlled area of the product with a thickness of up to 3 mm. The principle of operation of the VD-12NFP eddy current flaw detector: The principle of operation of the VD-12NFP eddy current flaw detector is based on the phenomenon of electromagnetic induction. An alternating magnetic field created in the primary coil of the converter by means of a sinusoidal voltage generator excites eddy currents in the controlled product. A parasitic magnetic field formed by eddy currents at the locations of defects affects the measuring unit (two signal coils connected in series) of the converter, creating an electromotive force in it. The amplitude and phase of the secondary signal carries information about the properties of the defect and the position of the transducer relative to the surface of the controlled product. The output signal from the measuring unit of the converter, after amplification and processing using a microprocessor, is displayed on the readout of the device, and is also stored in the memory block for subsequent transmission to a personal computer. In addition, information about the defects is displayed on a piezoelectric bell used as an audio indicator. Design, features and advantages of the VD-12NFP eddy current control device: The VD-12NFP eddy current flaw detector is a portable device capable of working both in a desktop and in a suspended position in a special bag-case. This ensures convenient operation of the device in a variety of conditions: in the laboratory, in the factory shop or during field tests. The flaw detector consists of an electronic unit with controls and display of test results, as well as three replaceable converters with wear-resistant corundum tips connected to the electronic unit using a connector. The choice of the desired converter depends on the magnetic properties of the material. For the control of parts with grooves, a converter with an inclined tip is offered. The device is powered by 4 AA batteries located in the battery compartment of the electronic unit. The advantages of the flaw detector include: - a screen for visualizing the signal during measurement; - light weight and compact dimensions that allow you to use the device in almost any conditions; - the ability to control the quality of products of various curvature and surface roughness even in the presence of a protective coating or a layer of corrosion; - wear resistance of converters, which is important when monitoring products with increased surface roughness (up to Rz£320); - automatic detection of the type of converter when connected, as well as the presence of built-in memory for storing control results; - the possibility to transfer data to a personal computer for storing or printing control protocols. Scope of application: Portability, high productivity, the ability to work with curved and rough surfaces, as well as the fact that the operation of the flaw detector is practically unaffected by humidity, pressure and contamination of the gas environment or the surface of the controlled product with non-conductive substances ensure the versatility of the device for detecting cracks in various materials. The eddy current flaw detector VD-12NFP is actively used in heavy industry for diagnostics of metal structures, assemblies and mechanisms for various purposes in factory workshops or laboratories, including at enterprises of railway transport, automotive industry, mechanical engineering, pipelines and metal structures. The VD-12NFP flaw detector can be used with equal success in the field, factory workshops, depots, laboratories and workshops to monitor the current condition, as well as to assess the degree of wear, the possibility and duration of further operation of such products made of metals and alloys as over-spring beams, wagon wheels, auto coupler housings, side frames, wheel couples and others. Distinctive features: • control of parts with surface roughness up to Rz320 due to wear-resistant corundum tips; • assessment of the degree of danger (depth) of the defect; • automatic detection of the converter type; • microprocessor control; • 5 universal programs for saving settings; • capable of detecting defects with a depth of 0.3 mm • The angle of deviation of the converter from the normal to the working surface up to 60° • Operating frequency of 70 kHz; • Maximum working clearance of 3mm; • visualization of the signal from the defect; • built-in memory for storing control results • Equipped with a Bluetooth 2.0 wireless communication module, which allows you to transmit control results and control the flaw detector at a distance of up to 20m; • The possibility of forming a control protocol based on the data transmitted to the PC; • Temperature range from 0°C to +40°C; • The design allows you to work with the flaw detector without removing it from the bag-case. Basic kit: Ia5.173.016: 1 electronic unit Ia5.125.031: 1 converter, type 1; marked as (•) Ia5.125.030: 1 converter, type 2; marked as (••) Ia2.706.002: the KOIDZ-VD set of samples with a passport (consisting of: Ia8.896.034: 1 piece; Ia8.896.035: 1 piece; Ia8.896.035-01: 1 piece) - A certificate of verification. 4 AA batteries 1 charger 1 small-sized phone 1 CD with software 1 special key 1 bag-case A calibration certificate is issued for the VD-12NFP flaw detector. 1 passport 1 operating manual 1 calibration instruction
Produced in: Moscow
Tubular furnace MA-0,25.1.1/12MR-I3 (DETACHABLE)
Tubular furnace MA-0,25.1.1/12MR-I3 (DETACHABLE)
from 47 800 ₽
Tubular furnaces MA are designed for heating chemical equipment with analytes in installations for microanalysis of organic compounds and other work at temperatures up to 1200 ° C.
Produced in: Tula
Salt electrode bath SHS 4.5.6/13
Salt electrode bath SHS 4.5.6/13
from 8 201 570 ₽
The product is designed for heating in liquid media of salts of parts for quenching, tempering, and normalization without oxidation in the temperature range from 700 OC to 1200 oC in stationary conditions. The environment of the workspace is a molten salt. Salt electroplants are most often used in the heat treatment of tool steels for rapid heating for quenching and other types of processing with minimization of the decarbonized layer. The electrode salt bath functions on the basis of the conductive properties of molten salts. From the power grid, the current flows through the transformer to the electrodes dipped in molten salt, and under this influence it heats up to the desired temperature.
Produced in: Tula