B9W107 Allicdata Electronics
Allicdata Part #:

BEL31312-ND

Manufacturer Part#:

B9W107

Price: $ 1.67
Product Category:

Uncategorized

Manufacturer: Belden Inc.
Short Description: DISTR 24F OS2 OFNR-ZH TB
More Detail: Fiber Optic Cable
DataSheet: B9W107 datasheetB9W107 Datasheet/PDF
Quantity: 1000
1 +: $ 1.52460
Stock 1000Can Ship Immediately
$ 1.67
Specifications
Series: *
Part Status: Active
Description

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B9W107 is a type of centrifugal pump used predominantly in the oil and gas, chemical, power, and water industries. The B9W107 is also known as a multi-stage, vertical and high pressure pump. The pump\'s components are composed of a spindle and cam assembly, an impeller, and a bearing housing. It is designed to provide a steady flow of fluid at a constant pressure and speed. The B9W107 is capable of pumping oil and other fluids such as gasoline and other industrial fluids.

The B9W107 centrifugal pump is a rotodynamic machine in which energy is imparted to a liquid by the centrifugal force generated by the rotation of an impeller. When a liquid enters the B9W107 pump, its pressure is reduced at entrance which puts the liquid into the suction side of the impeller. The impeller rotates at high speed, thereby throwing the liquid to the outside as centrifugal force. This increases the liquid pressure from the suction side to the discharge side.

The working principle of the B9W107 can be divided into four stages: suction, compression, discharge, and cutoff. During the suction stage, the liquid enters the pump, the pressure of the liquid is reduced, and the liquid is directed to the impeller. During the compression stage, the liquid is thrown away from the impeller due to the high-speed rotation, thereby increasing the pressure of the liquid. In the discharge stage, the liquid is released from the pump at a higher pressure than the suction. During the cutoff stage, the pump stops rotating, and the pressure of the liquid is reduced, thereby causing the fluid to flow back to the inlet.

B9W107 pumps are configured in a variety of ways. The main components include the spindle and cam assembly, impeller, bearing housing, and casing. The spindle and cam assembly are connected to the main body of the pump and are responsible for providing power to the pump during operation. The impeller is connected to the spindle and cam assembly and is responsible for producing the centrifugal force that drives the liquid through the pump. The bearing housing is designed to accommodate the bearing that is used to keep the impeller from wobbling. The casing is responsible for containing the pressure and the liquid within the pump. The entire pump is then connected to the power source.

B9W107 pumps are typically used to transfer liquids from low-pressure to high-pressure regions. The pump can also be used to move liquids from one storage container to another. It can also be used to transfer fluids from one location to another, such as from an offshore rig to a shore station. In addition to its use in the oil and gas industry, the B9W107 is also used in the chemical and power industries to pump liquids such as water, fuel, and chemicals. In industry, the B9W107 is used to operate boilers, pressure vessels, and turbines. It is also used in agricultural applications, such as watering systems, soil pumps, and irrigation systems.

In conclusion, the B9W107 is a multi-stage, vertical and high-pressure centrifugal pump. It is mainly used in the oil and gas, chemical, power, and water industries. The B9W107 works by reducing the pressure of the liquid at the entrance of the pump, and then throwing the liquid away from the impeller due to the high-speed rotation. This increases the pressure of the liquid from the suction side to the discharge side. The pump is composed of components such as the spindle and cam assembly, impeller, bearing housing, and casing. It can be used to transfer liquids from low-pressure to high-pressure regions, and can also be used in agricultural applications.

The specific data is subject to PDF, and the above content is for reference

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