Rotating piston flowmeter

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DateTime 07/08/2026 Show 144
Which rotor flowmeter is good? Seeking recommendations? |What are the advantages and disadvantages of volumetric flow meters? | Structure of volumetric flow meters|

Price:¥1.00Quantity:9999

Market Price:¥1.00Reduced Price:¥1.00

Effevtive Time:7/7/2026

Sale Address:SilverProduction Address:Silver automation instruments

Keywords:Which rotor flowmeter is good? Seeking recommendations? |What are the advantages and disadvantages of volumetric flow meters? | Structure of volumetric flow meters|

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Company:Aksu ultrasonic flowmeter manufacturer

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1. Which rotor flowmeter is good? Seeking recommendations?

2. Structure of Positive Displacement Flow Meter

In order to meet the requirements of various media and working conditions for flow measurement in production, various types of positive displacement flow meters have been developed. Among them, the more common types are gear type, scraper type, and rotary piston type, which are introduced as follows. 1. Gear type positive displacement flow meter has two rotors inside the housing, which directly or indirectly mesh with each other and rotate under the pressure difference between the inlet and outlet of the flow meter. Through the rotation of the gears, the fluid filled in the "measuring space" between the gears and the housing is continuously discharged. By measuring the number of gear rotations, the fluid volume passing through the flow meter can be obtained. Figure 1 The figure shows an elliptical gear type volumetric flowmeter (also known as an Obal volumetric flowmeter) The schematic diagram of the elliptical gear flowmeter in Figure 1 shows that the flowmeter works by two elliptical gears meshing with each other. The working process is briefly described as follows: P1 in the figure represents the inlet fluid pressure of the flowmeter; Indicating the outlet fluid pressure, it is evident that the pressure P1 is greater than P2. In Figure 1 (a), although the lower travel mold surface rotor is disassembled and slowly subjected to the pressure difference of the fluid, it does not generate rotational torque, while the upper gear generates rotational torque and rotates under the differential pressure of two examples. Due to the meshing of the two gears, they rotate in the direction of the arrow arou

Rotating piston flowmeter
nd O1 and O2 as the axis, and at the same time, gear O1 discharges the fluid in the half moon shaped measuring space to the outlet. In the state of Figure 1 (a), the upper gear is the driving wheel and the lower gear is the driven wheel. In the position of Figure 1 (b), both gears generate rotational torque under the differential pressure of the fluid and rotate in the direction of the arrow under this torque, transitioning to The position shown in Figure 1 (c). At this point, the gear position is the same as Figure 1 (a) On the contrary, the lower gear is the driving wheel and the upper gear is the driven wheel. The lower gear rotates under the differential pressure of the inlet and outlet fluids, and once again discharges the fluid in the half moon shaped "measuring space" between it and the housing. With this continuous motion, the elliptical gear discharges four volumes of fluid in the "measuring space" for each revolution. Therefore, as long as the number of revolutions of the gear is read, the amount of liquid discharged can be calculated. Referring to Figure 2-2, the total amount of fluid discharged can be calculated as V=4nv, where n - the number of rotations of the gear; a. B - The long half sleeve and short half sleeve of the elliptical gear; δ-- The thickness of the elliptical gear. Another type of gear type volumetric flowmeter is the waist wheel volumetric flowmeter, also known as the Roots type volumetric flowmeter. The working principle and process of this flowmeter are basically the same as those of the elliptical gear type, which relies on the pressure difference between the inlet and outlet fluids to generate motion, and discharges four volumes of fluid in the "normal and simple measurement space" for e

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