High Quality Api 610 Chemical Pump - high pressure horizontal multi-stage centrifugal pump – Liancheng Detail:
Outline
SLDT SLDTD type pump is, according to API610 eleventh edition of the “oil, chemical and gas industry with centrifugal pump” standard design of single and double shell, sectional horizonta l multi-stag e centrifugal pump, horizontal center line support.
Characterstic
SLDT (BB4)for single shell structure, bearing parts can be made by casting or forging of two kinds of methods for manufacturing.
SLDTD (BB5)for double hull structure, external pressure on the parts made by forging process, high bearing capacity, stable operation. Pump suction and discharge nozzles are vertical, the pump rotor, diversion, midway through integration of inner shell and inner shell for sectional multilevel structure, can be in the import and export pipeline under the condition of not mobile within the shell can be taken out for repairs.
Application
Industrial water supply equipments
Thermal power plant
Petrochemical industry
City water supply devices
Specification
Q:5- 600m 3/h
H :200-2000m
T :-80 ℃~180℃
p :max 25MPa
Standard
This series pump comply with the standards of API610
Product detail pictures:
Related Product Guide:
“Quality is the most important”, the enterprise develops by leaps and bounds
No matter new customer or outdated client, We believe in extensive phrase and trusted relationship for High Quality Api 610 Chemical Pump - high pressure horizontal multi-stage centrifugal pump – Liancheng, The product will supply to all over the world, such as: Surabaya, Jeddah, Sweden, We also have the strong ability of integration to supply our best service, and plan to build the warehouse in the different countries around the world, that will probably be more conveniently to service our customers.
By Hazel from Latvia - 2018.05.22 12:13
This is a reputable company, they have a high level of business management, good quality product and service, every cooperation is assured and delighted!
By Geraldine from Bahrain - 2017.09.30 16:36