Flowmeter Wholesale

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Ningbo Feiyu Welding Instrument Co., Ltd.
Since 2014

Ningbo Feiyu Welding Instrument Co., Ltd. is located in the scenic Shayan Industrial Zone of Wuxiang Town in the east of Ningbo, near the tourist resort Tiantong Temple and Ashoka Temple. As China Flowmeter Manufacturers and OEM Flowmeter Factory, The factory covers an area of more than 15,000 square meters, with a construction area of 10,000 square meters. The plant is shady with trees and pleasant scenery, and is known as a garden-style ecological enterprise. The company has more than 100 employees and more than 30 million yuan in fixed assets. The company undertakes various OEM orders at home and abroad.
The company has accumulated more than 25 years of experience in various types of gas pressure reducers, gas heaters, welding torches, medical oxygen pressure reducers and medical gas terminals with sufficient and comprehensive talent reserves and complete production and testing equipment. production experience. The products sell well all over the country and overseas countries, and have won unanimous praise from the industry. supply OEM Flowmeter wholesale.
The company follows the business philosophy of "enterprise survival, quality-oriented", and carries out strict quality control on all kinds of products produced. The company serves our customers with talents, equipment, service and quality.
  • 15000

    Factory area

  • 100+

    Technical staff

  • 10+

    Exporting country

  • 100000

    Annual Capacity

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Industry Knowledge

A flowmeter is a device used to measure the rate at which a fluid (liquid or gas) is flowing through a pipe or other conduit. Flowmeters are commonly used in industrial and commercial applications where precise flow rate measurements are necessary for process control, quality assurance, or regulatory compliance.
There are several different types of flowmeters, each with its own advantages and limitations. Some common types of flowmeters include:
Differential pressure (DP) flowmeters: These measure the difference in pressure between two points in a pipe, which is proportional to the flow rate. Examples include orifice plates, Venturi meters, and flow nozzles.
Positive displacement (PD) flowmeters: These measure the volume of fluid passing through the meter, typically by means of a rotating or reciprocating mechanism. Examples include piston meters, gear meters, and nutating disk meters.
Turbine flowmeters: These measure the flow rate by means of a rotor that spins as the fluid passes through the meter. The speed of the rotor is proportional to the flow rate, and can be detected by sensors to provide an accurate measurement.
Electromagnetic flowmeters: These measure the flow rate by means of a magnetic field that is generated by the flow of the fluid through a conductor. The voltage induced by the magnetic field is proportional to the flow rate and can be used to calculate the flow rate.
Ultrasonic flowmeters: These measure the flow rate by means of ultrasonic waves that are transmitted through the fluid. The speed of the waves is affected by the flow rate, and can be used to calculate the flow rate.
Overall, the choice of flowmeter depends on the specific requirements of the application, such as the type of fluid being measured, the flow rate range, the accuracy required, and the operating conditions. Proper selection and installation of a flowmeter is important for accurate and reliable measurement of flow rates.

There are several factors that should be considered when selecting a flowmeter for a particular application. Here are some key factors to consider:
Flow rate range: The range of flow rates that need to be measured will help determine the type of flowmeter that is appropriate for the application. Some flowmeters are better suited for high flow rates, while others are designed for low flow rates.
Fluid type: The type of fluid being measured (e.g. liquid or gas) will impact the choice of flowmeter. Different flowmeters are designed to measure different types of fluids, and the properties of the fluid (e.g. viscosity, density, temperature) can also affect flowmeter performance.
Accuracy requirements: The level of accuracy required for the flow measurements will impact the choice of flowmeter. Some flowmeters are more accurate than others, but may also be more expensive.
Operating conditions: The operating conditions of the application (e.g. temperature, pressure, humidity, corrosiveness) will impact the choice of flowmeter. Some flowmeters may not be suitable for extreme or harsh environments.
Installation requirements: The installation requirements for the flowmeter (e.g. space constraints, mounting location) will also impact the choice of flowmeter. Some flowmeters require a certain amount of straight pipe run to ensure accurate measurements, while others can be installed in tight spaces.
Cost: The cost of the flowmeter is an important consideration, as it can vary widely depending on the type of flowmeter and the features it offers. It is important to balance cost with performance requirements to ensure that the selected flowmeter meets the needs of the application without exceeding the budget.
Overall, selecting the appropriate flowmeter requires careful consideration of the specific needs of the application, as well as an understanding of the capabilities and limitations of different flowmeter types. Consulting with a flowmeter expert or supplier can help ensure that the right flowmeter is selected for the application.

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