Standard | API 610 (ISO 13709) |
Casing | Radial Casing |
Stage | Single |
Capacity | Up to 1000 m³/h / 4400 US gpm |
Head | Up to 120m / 390ft |
Frequency | 50/60Hz |
Temperature | Up to 250℃/500℉ |
Discharge size | 25 to 250 mm / 1 to 10 inches |
Pressure | Up to 25 bar / 360 psi |
Drive | Motor |
Accessories support
Motor | ABB/Siemens/WEG |
Coupling | TRUMY |
Mechanical seal | John Crane |
Flushing system | Colossus |
Bearing | SKF/FAG |
Electric | ABB/Siemens/DELIXI |
Transport media: various acidic, alkaline, oxidizing, and oily media
Product Features
The plastic lining material is made of polyethylene propylene FEP, which has good thermal stability, outstanding chemical inertness, excellent mechanical processing performance, and low friction coefficient. It can withstand various strong corrosives, strong oxidants, and alternating or simultaneous corrosion of strong organic solvents.
The pump body is made of high-strength gray cast iron lined with plastic and molded in one go. The pump cover, impeller and other overcurrent components are made of metal inserts and lined with plastic and molded in one go. The plastic layer thickness leaves sufficient corrosion allowance, and the lining plastic surface is closely adhered to the metal parts. The inner flow channel is smooth, uniform and defect free.
When transporting acidic media, WB2 type external single end face multi spring corrugated tube mechanical seal is selected. The static ring is made of alumina ceramic or silicon carbide material, and the dynamic ring is filled with four materials; When transporting alkaline media, the 169 type external single end face multi elastic polytetrafluoroethylene corrugated pipe mechanical seal is selected, and the dynamic and static rings are made of corrosion-resistant hard alloy or silicon carbide material. Ensure the reliable sealing of the pump when transporting various corrosive media and the convenience of shaft seal maintenance.
Adopting a dry shaft structure, the pump shaft is installed in the impeller skeleton lined with plastic, isolating the pump shaft from the corrosive medium being transported.
The hydraulic model of the pump is developed and designed using CFD technology, and the pump structure is subjected to strength verification using finite element analysis. The product operates reliably and stably.
The rear door structure allows the impeller or shaft seal components to be removed from the pump body without disassembling the pump inlet and outlet pipelines, making maintenance and repair convenient.
APPLICATION
Seawater booster for critical services
Light hydrocarbon boosting
Low-pressure unit charge
Pump around services
Tank farm boosting
Pipe/inline pump
Contact With Us:
E-mail: bo@lubor-pump.com
Have a Questions? Call Us:
Add:
No.901 Shuangsheng Road,Lvshunkou District,Dalian
Please contact Hengchuang for your waste management solutions!