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Kawai-type Large Cavity Press

 Kawai-type Large Cavity Press

1, Kawai type 6-8 two-stage pressure HTHP device.

2, Convenient multi-lead measurements by open structure.

3, >20GPa pressure and >2000℃ can be applied on the sample through WC anvil.


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Introduction

1, Kawai type 6-8 two-stage pressure HTHP device.

2, Convenient multi-lead measurements by open structure.

3, >20GPa pressure and >2000℃ can be applied on the sample through WC anvil.





Technical advantages


Ø The automatic control system monitors and controls the pressure, and communicates with the upper computer through the network. The actual pressure value is measured by a digital pressure sensor and transmitted to the control system.

Ø The segmented control program of the control system sets the pressure and time separately for each segment, generating the pressure curve required by the user, and transmitting the actual pressure and equipment status information to the computer. PLC adjusts the servo motor to adjust the actual pressure to approach the set pressure.

Ø Under automatic control, only the servo motor regulates the pressure, and the noise of high-temperature and high-pressure equipment is minimal, making it very suitable for use in scientific research laboratories. The equipment has high stability and extremely low maintenance costs.


System parameter

Features:


1, Kawai-type, Multi-Anvil Apparatus

2, Sample temperature >2000℃, pressure >20 GPa

3, Maximum tonnage: 1000 or 2000

4, Stroke: 150 mm

5, Low pressure range, using traditional hydraulic system, with high stability. Can drive the working piston to move quickly in the low-pressure range.

6, The pressure control in the high-pressure range is adjusted by a servo motor, with a maximum pressure error of+/-0.5 bar.

7, Equipped with an automatic control system to monitor and control pressure, and communicate with the upper computer through the network. The actual pressure value is measured by a digital pressure sensor and transmitted to the control system.

8, The control system is divided into segmented control programs, with each segment setting pressure and time to generate the pressure curve required by the user. At the same time, the actual pressure and equipment status information are transmitted to the computer. PLC adjusts the servo motor to adjust the actual pressure to approach the set pressure.

9, Under automatic control, only the servo motor can adjust the pressure, and the noise of high-temperature and high-pressure equipment is minimal, making it very suitable for use in scientific research laboratories. The equipment has high stability and extremely low maintenance costs.


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