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Gunt Germany - Process & Control Engineering Lab

Prominent & Leading Manufacturer from Ambala, we offer ce 200 flow properties bulk solids, rt 010 training system level control, rt 040 training system temperature control hsi, rt 060 training system position control hsi, ce 117 flow through particle layers and ce 271 multi head diaphragm pump.

CE 200 Flow Properties Bulk Solids

CE 200 Flow Properties Bulk Solids
  • CE 200 Flow Properties Bulk Solids
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Product Details:

MaterialAluminum
BrandGunt
Voltage230 V
Dimensions400x240x330 mm (LxWxH)
Speed500 - 3000 min-1
Power consumption75 W
Weight18 kg approx.

The flow properties of a powder or bulk solid determine how it behaves during handling. For example, material may flow irregularly out of silos, or the flow of bulk solid may come to a stop. In order to avoid these problems in practice, silos can be designed on the basis of measurements using shear testers, such as the Jenike shear tester or a ring shear tester. In a ring shear tester, a bulk sample is contained in a ring-shaped shear cell. A normal force is exerted on the sample by way of a lid. A hanger from which a variable weight is suspended generates this normal force. A motor moves the shear cell relative to the lid in order to apply shear to the sample.

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RT 010 Training System Level Control

RT 010 Training System Level Control
  • RT 010 Training System Level Control
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BrandGunt
Dimensions600x450x800 mm (LxWxH)
Tank Capacity1200-3700 ml
Power consumption18 W
Max flow rate8 L/min
Max head6 m

This compact experimental unit offers every opportunity to learn the fundamentals of control engineering through experimentation on a level control system. The experimental setup is mounted in a housing which also accommodates all the electronics. The transparent level-controlled tank is fed from the storage tank with the aid of a speed-controlled pump. The liquid level is measured using a pressure sensor. The sensor output signal is sent to the software controller. The controller’s output signal influences the speed of the pump motor and therefore delivery flow rate. To investigate the influence of disturbance variables, an electromagnetic proportional valve in the tank outlet can be activated by the software.

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RT 040 Training System Temperature Control HSI

RT 040 Training System Temperature Control HSI
  • RT 040 Training System Temperature Control HSI
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BrandGunt
Dimensions600x450x260 mm (LxWxH)
Frequency50 Hz
Power consumption2 W
Temperature sensor100 Deg C
Voltage230 V

This compact experimental unit offers every opportunity to learn the fundamentals of control engineering through experimentation on a temperature control system. The experimental setup is mounted on a housing which accommodates all the electronics. A metal bar, which is thermally insulated with cladding, is heated or cooled at one end by a Peltier element. Three temperature  transducers along the axis of the bar allow the variation in temperature along the length of the bar, and hence the associated thermal lags, to be obtained for differing operating conditions. A dial-gauge thermometer offers the advantage that the temperature can be read off directly at any time. The temperature is measured using a thermal resistor (PTC).

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RT 060 Training System Position Control HSI

RT 060  Training System Position Control HSI
  • RT 060  Training System Position Control HSI
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BrandGunt
Phase1
Frequency50 Hz
Dimension600x450x280 mm (LxWxH)
Voltage230 V
Weight20 kg approx.

This compact experimental unit offers every opportunity to learn the fundamentals of control engineering through experimentation on a linear position control system. The experimental setup is mounted on a housing which accommodates all the electronics. A transparent protective cover permits safe observation of the experiments. A carriage can be moved by a DC motor via a toothed belt. The linear positioning is measured by a rotary encoder and delivered as a voltage signal. The output signal from the sensor is sent to the software controller. The output signal from the controller influences the motor current. The motor is automatically shut down if the carriage reaches one of the two end positions.

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CE 117 Flow Through Particle Layers

CE 117 Flow Through Particle Layers
  • CE 117 Flow Through Particle Layers
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BrandGunt
Dimension690x410x1150 mm (LxWxH)
Weight26 kg
Flow rate82-820 mL/min
Pipe MaterialPVC

Flow through particle layers is widely encountered in process engineering. In reactors, fixed and fluidised beds are subjected to through-flow by liquids and gases. The separation of solids from suspensions by cake and depth filtration is another area of application. With CE 117 the fluid mechanic principles involved in flow through fixed beds and fluidised beds can be investigated. For the purpose, a fillable test tank made of glass is provided, through which water can be made to flow from both ends. A sintered-metal plate serves as the base for bulk solids. Water from the laboratory water connection flows into the test tank. To investigate flow through fixed beds, the water enters the test tank from the top. It flows through the fixed bed and the sintered-metal plate and passes by way of a distributor to the outlet.

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CE 271 Multi Head Diaphragm Pump

CE 271 Multi Head Diaphragm Pump
  • CE 271 Multi Head Diaphragm Pump
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Product Details:

BrandGunt
Voltage400 V
Pressure range2-6 bar
Tank Capacity60 L
Weight90 kg approx.

Multi-head diaphragm pumps are used for metering in many process engineering areas. In food technology, for example, multi-head diaphragm pumps enable the precise observation of mixing ratios in order to ensure consistent high quality of the products. In addition, diaphragm pumps are leak-free and thus prevent germs from entering the piping system. This ensures that the high hygiene requirements that apply in food technology are observed.
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RT 020 Training System Flow Control HSI

RT 020 Training System Flow Control HSI
  • RT 020 Training System Flow Control HSI
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BrandGunt
Voltage230 V
Power consumption18 W
Max flow rate8 L/min
Max head6 m

This compact experimental unit offers every opportunity to learn the fundamentals of control engineering through experimentation on a flow control system. The experimental setup is mounted in a housing which accommodates all the electronics. A piping system with two flow meters is supplied with flow by a speed-controlled pump from the transparent storage tank. The rotameter offers the advantage that the flow rate can be observed directly at any time. The flow rate is measured by a turbine wheel flow sensor. The sensor output signal is sent to the software controller. The output signal from the controller influences the setting of an electromagnetic proportional valve. To investigate the influence of disturbance variables, the pump speed can be altered by way of the software.

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RT 030 Training System Pressure Control HSI

RT 030 Training System Pressure Control HSI
  • RT 030 Training System Pressure Control HSI
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BrandGunt
Voltage230 V
Max flow rate3 L/min
Max positive pressure1 bar
Tank Capacity400 ml

This compact experimental unit offers every opportunity to learn the fundamentals of control engineering through experimentation on a pressure control system. The experimental setup is mounted on a housing which accommodates all the electronics. The pressure tank is charged with compressed air by a diaphragm gas pump. The advantage of the dial-gauge manometer is that the pressure in the tank can be observed directly at any time. The pressure is measured using a pressure sensor. The sensor output signal is sent to the software controller. The output signal from the controller influences the speed of the diaphragm gas pump and hence the flow rate. An air consumer is simulated by way of a flow control valve. A solenoid valve through which air can escape can be activated by the software to investigate the influence of disturbance variables.

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RT 050 Training System Speed Control HSI

RT 050 Training System Speed Control HSI
  • RT 050 Training System Speed Control HSI
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BrandGunt
Dimension600x450x310 mm (LxWxH)
Weight18 kg approx.
Voltage230 V
Max speed4500 min -1

This compact experimental unit offers every opportunity to learn the fundamentals of control engineering through experimentation on a speed control system. The experimental setup is mounted on a housing which accommodates all the electronics. A transparent protective cover permits safe observation of the experiments. A DC motor drives a shaft with a mass flywheel. The dial gauge allows the speed to be read off directly at any time. The speed is measured inductively using a speed sensor. The output signal from the sensor is sent to the software controller. The output signal from the controller influences the motor current. A generator acting as a mechanical resistance to shaft rotation can be activated by the software to study the influence of disturbance variables.

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RT 121 Fuzzy Control Ball on Beam

RT 121 Fuzzy Control Ball on Beam
  • RT 121 Fuzzy Control Ball on Beam
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Product Details:

BrandGunt
MaterialAluminium
Voltage230 V
Beam length500 mm
Ball diameter35 mm

Fuzzy methods are particularly suitable for systems that mathematics cannot describe adequately or easily. Fuzzy algorithms can offer major advantages, as the control strategy is developed not on the basis of exact mathematical modelling, but on a linguistic description of the process. Additional input variables and the rule base can be easily added.
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