BN70-6L seepex BN

BN70-6L seepex BN

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Parameters

Drive mode:ElectricFlow rate:13-83Discharge diameter:DN125Shaft power:15
Performance:Wear-resistantLift:60mEfficiency:98%Material:Stainless steel
Conveying medium:Sewage pumpSpeed:270Power:15kWModel:BN70-6L
Number of impellers:Single stageSuction diameter:DN125Operating temperature:Normal temperature
BN70-6L seepex BN

Advantages

BN70-6L has better self-priming ability and negative pressure bearing capacity. It can work from a very low liquid level and withstand high back pressure, which makes it perform well in many harsh industrial occasions.

Its excellent self-priming ability makes it very suitable for handling media containing gas or solid particles, such as sewage, slurry, etc. BN70-6L is also very easy to maintain. The rotor and stator can be replaced separately without disassembling the entire pump body. This greatly shortens the repair time and reduces maintenance costs.
At the same time, it is also very wear-resistant and has a long service life, which further reduces the user’s operating costs.

BN70-6L seepex BN

BN70-6L has a unique rotor and stator design.The rotor is a spiral metal component that cooperates with the internal rubber stator. Driven by the rotation of the rotor, the liquid is sucked in from the inlet end in a progressive manner and delivered to the outlet end. This unique design can not only effectively transport liquids, but also seal well and reduce leakage.

people also ask

SEEPEX open hopper pumps are used to discharge thickened and dewatered sludges for onward processing. SEEPEX can also directly mount pumps under storage silos that have a capacity to backmix to control sludge dry solids content.

Progressing cavity pumps work on the positive displacement principle, in which an eccentrically rotating rotor forms a progressive cavity within an elastic stator. In the inlet phase, the pumped medium is sucked into this cavity.

Simply stated: a pump’s head is the maximum height that the pump can achieve pumping against gravity. Intuitively, if a pump can produce more pressure, it can pump water higher and produce a higher head.

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