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Visualization Instrument for Saturated Steam Temperature, Pressure, And Supercritical Phase

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The Xiangke XK-RG88 saturated steam temperature, pressure, and supercritical phase visualization meter can be used for teaching experiments in thermodynamics, thermal engineering fundamentals, refrigeration principles, and other related courses for college students. The experimental platform can be replaced with different working fluids, meeting the needs of ordinary teaching while also allowing students to conduct supercritical phase and critical opalescence experiments with different working fluids.

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  • 产品描述
    • Commodity name: Visualization Instrument for Saturated Steam Temperature, Pressure, And Supercritical Phase
    • Model: XK-RG88

    The Xiangke XK-RG88 saturated steam temperature, pressure, and supercritical phase visualization meter can be used for teaching experiments in thermodynamics, thermal engineering fundamentals, refrigeration principles, and other related courses for college students. The experimental platform can be replaced with different working fluids, meeting the needs of ordinary teaching while also allowing students to conduct supercritical phase and critical opalescence experiments with different working fluids.

    Xiangke XK-RG88 Visualization apparatus for saturated vapor temperature, pressure, and supercritical phase

    I. Overview:

    The saturated vapor temperature, pressure, and supercritical phase visualization instrument can be used for teaching experiments in thermodynamics, thermal engineering fundamentals, and refrigeration principles for college students. The experimental platform can be used with different working fluids, meeting the needs of ordinary teaching while allowing students to conduct experiments on the supercritical phase and critical opalescence of different working fluids. The experimental platform has a beautiful and generous appearance, a compact and reasonable design structure, high measurement accuracy, and a wide test range, which helps to enhance students' innovative practical abilities, broaden their horizons, and improve teaching quality.

    II. Experimental Content

    1. Experiment on the saturated vapor pressure and temperature of the working fluid;

    2. Observation of the critical opalescence phenomenon when the working fluid transitions from subcritical to critical and supercritical states, and the corresponding temperature and pressure conditions.

    III. Main Features

    1) Wide test range, supporting multiple working fluids (R600a, R134a, R410A, CO2, water, etc.);

    2) Large-diameter visualization, LED backlight, convenient for observing the working fluid state;

    3) Built-in heating/cooling system, can quickly heat or cool, can be temperature controlled; low temperature can reach around -4 degrees Celsius.

    4) Beautiful interface, can generate experimental reports, can export experimental data via USB.

    IV. Main Technical Parameters

    1. The visible pressure vessel is composed of a thick-walled stainless steel tank and a double-layer high-strength quartz glass assembly. The system's maximum pressure resistance is up to 10 MPa, allowing the working fluid to reach subcritical and supercritical states. Pressure range: 0~10 MPa, with pressure alarm and overpressure protection system;

    2. Temperature range: room temperature~150℃, the experimental platform has a temperature alarm and overtemperature protection system, ensuring the safety and reliability of the experiment;

    3. High-precision pressure sensor (0-10MPa), temperature sensor (0-300°C), testing accuracy better than 1%;

    4. The touch screen displays system temperature, pressure, power, and other data and data curves in real time, and can generate experimental reports. Experimental data can be exported via U disk, facilitating data analysis by students;

    5. The heater fits the tank structure, the heating heat transfer is uniform, and the heating capacity (0-500W) can be steplessly adjusted;

    6. To ensure visual experience, the rear cover of the box is equipped with a new type of LED light, the visual effect is soft and uniform. Pictures can be placed behind the window as a background to understand the interface changes during the critical process, facilitating the observation of experimental phenomena;

    7. The box has a built-in cooling system to ensure quick start and stop of the experiment, improving experimental efficiency.

    8. External dimensions: length 1000 mm × width 400 mm × height 600 mm

    9. A set of air-cooled processing system, equipped with an external small compressor, can cool the gas-solid conversion process of methane gas and water or carbon dioxide gas hydrates, and the cooling temperature can be reduced to around -4 degrees Celsius. The gas-to-solid experimental conversion takes about 10 minutes to complete.

    10. The test pressure value range can be displayed through the pressure digital display, and it is also displayed on the touch screen.

    Xiangke XK-RG88 Visualization apparatus for saturated vapor temperature, pressure, and supercritical phase Configuration: Includes one XK-RG88 visualization instrument host, one software, and one air compressor.

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Visualization Instrument for Saturated Steam Temperature, Pressure, And Supercritical Phase


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XK-RG88

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The Xiangke XK-RG88 saturated steam temperature, pressure, and supercritical phase visualization meter can be used for teaching experiments in thermodynamics, thermal engineering fundamentals, refrigeration principles, and other related courses for college students. The experimental platform can be replaced with different working fluids, meeting the needs of ordinary teaching while also allowing students to conduct supercritical phase and critical opalescence experiments with different working fluids.


You can send us an email:xtyqyb@163.com

+86 13007446928

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Product Details

Xiangke XK-RG88 Visualization apparatus for saturated vapor temperature, pressure, and supercritical phase

I. Overview:

The saturated vapor temperature, pressure, and supercritical phase visualization instrument can be used for teaching experiments in thermodynamics, thermal engineering fundamentals, and refrigeration principles for college students. The experimental platform can be used with different working fluids, meeting the needs of ordinary teaching while allowing students to conduct experiments on the supercritical phase and critical opalescence of different working fluids. The experimental platform has a beautiful and generous appearance, a compact and reasonable design structure, high measurement accuracy, and a wide test range, which helps to enhance students' innovative practical abilities, broaden their horizons, and improve teaching quality.

II. Experimental Content

1. Experiment on the saturated vapor pressure and temperature of the working fluid;

2. Observation of the critical opalescence phenomenon when the working fluid transitions from subcritical to critical and supercritical states, and the corresponding temperature and pressure conditions.

III. Main Features

1) Wide test range, supporting multiple working fluids (R600a, R134a, R410A, CO2, water, etc.);

2) Large-diameter visualization, LED backlight, convenient for observing the working fluid state;

3) Built-in heating/cooling system, can quickly heat or cool, can be temperature controlled; low temperature can reach around -4 degrees Celsius.

4) Beautiful interface, can generate experimental reports, can export experimental data via USB.

IV. Main Technical Parameters

1. The visible pressure vessel is composed of a thick-walled stainless steel tank and a double-layer high-strength quartz glass assembly. The system's maximum pressure resistance is up to 10 MPa, allowing the working fluid to reach subcritical and supercritical states. Pressure range: 0~10 MPa, with pressure alarm and overpressure protection system;

2. Temperature range: room temperature~150℃, the experimental platform has a temperature alarm and overtemperature protection system, ensuring the safety and reliability of the experiment;

3. High-precision pressure sensor (0-10MPa), temperature sensor (0-300°C), testing accuracy better than 1%;

4. The touch screen displays system temperature, pressure, power, and other data and data curves in real time, and can generate experimental reports. Experimental data can be exported via U disk, facilitating data analysis by students;

5. The heater fits the tank structure, the heating heat transfer is uniform, and the heating capacity (0-500W) can be steplessly adjusted;

6. To ensure visual experience, the rear cover of the box is equipped with a new type of LED light, the visual effect is soft and uniform. Pictures can be placed behind the window as a background to understand the interface changes during the critical process, facilitating the observation of experimental phenomena;

7. The box has a built-in cooling system to ensure quick start and stop of the experiment, improving experimental efficiency.

8. External dimensions: length 1000 mm × width 400 mm × height 600 mm

9. A set of air-cooled processing system, equipped with an external small compressor, can cool the gas-solid conversion process of methane gas and water or carbon dioxide gas hydrates, and the cooling temperature can be reduced to around -4 degrees Celsius. The gas-to-solid experimental conversion takes about 10 minutes to complete.

10. The test pressure value range can be displayed through the pressure digital display, and it is also displayed on the touch screen.

Xiangke XK-RG88 Visualization apparatus for saturated vapor temperature, pressure, and supercritical phase Configuration: Includes one XK-RG88 visualization instrument host, one software, and one air compressor.

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