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Reflex Type Level Gauge with Isolation Valves In Delhi

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Reflex Type Level Gauge with Isolation Valves A Reflex Type Level Gauge is a reliable and widely used instrument for direct visual indication of liquid levels in boilers, tanks, and pressure vessels. The product shown features a robust steel body with reflex glass assembly and integrated isolation valves at the top and bottom, making it suitable for high-pressure and high-temperature industrial applications. This level gauge operates on the principle of reflex glass optics, where specially grooved glass creates a clear contrast between liquid and vapor. When liquid is present, the grooves appear dark, while the vapor zone appears bright, allowing operators to easily distinguish and monitor the liquid level even in challenging lighting conditions. Manufactured from high-grade carbon steel or stainless steel, reflex type level gauges offer excellent mechanical strength, pressure resistance, and durability. They are commonly used in boilers, power plants, oil & gas facilities, refineries, chemical plants, and process industries. The heavy-duty construction ensures safe operation in environments involving steam, hot water, oils, fuels, and various industrial chemicals. The gauge is supplied with manual isolation valves, which allow safe shut-off and maintenance without interrupting the process. Additional features such as drain connections, vent plugs, and protective covers enhance safety and operational reliability. These gauges are designed to withstand vibration, thermal shock, and pressure fluctuations. Key benefits include clear and continuous level visibility, rugged construction, long service life, minimal maintenance, and high accuracy. Reflex level gauges are available in different lengths, center-to-center dimensions, pressure classes, and connection types to meet diverse application requirements. Overall, reflex type level gauges provide a cost-effective and dependable solution for level measurement, ensuring operational safety and precise monitoring in critical industrial processes.
 2026-01-16T06:43:34

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