Plate Heat Exchanger Spares M3 Plate and Gasket
Applications General heating and cooling duties. Heating by means of steam, swimming pool heating Standard design The pl;
Basic Info
Model NO. | M3,M6,M10,M15,M20,MX25B,M30 |
Application | Heater, Spare Parts |
Principle | Spare Parts |
Style | Plate |
Type | Stainless Steel Heating Equipment |
Structure Material | Metal Material |
Heat Transfer Surface | Plate Heat Exchanger |
Ceramic Heating Equipment Type | Stainless Steel Heater |
Recuperative Heat Exchanger Type | Plate Heat Exchanger |
Transport Package | Standard Plywood Box |
Specification | ISO9001, CE, UL, WRAS, ROHS and etc. |
Trademark | Baode |
Origin | China |
HS Code | 84199090 |
Production Capacity | 1000 PCS/Month |
Product Description
ApplicationsGeneral heating and cooling duties. Heating by means of steam, swimming pool heating
Standard design
The plate heat exchanger consists of a pack of corrugated metal plates with portholes for the passage of the two fluids
Between which heat transfer will take place. The plate pack is assembled between a fix frame plate and a movable pressure plate and compressed by tightening bolts. The plates are fitted with a gasket which seals the interpolate channel and directs the fluids into alternate channels. The number of plates is determined by the flow rate, physical properties of the fluids, pressure drop and temperature program.
The plate corrugations promote fluid turbulence and support the plates against differential pressure. The frame plate and the pressure plate are suspended from an upper carrying bar and located by a lower guiding bar, both of which are fixed to a support column. Connections are located in the frame plate or, if either or both fluids make more than a single pass within the unit, in the frame and pressure plates.
Typical capacities
Liquid flow rate
Up to 16 kg/s (250 gpm), depending on media, permitted
Pressure drop and temperature program.
Water heating by steam
300 to 800 kW
Working principle
Channels are formed between the plates and the corner ports are arranged so that the two media flow through alternate channels. The heat is transferred through the plate between the channels, and complete counter-current flow is created for highest possible efficiency. The corrugation of the plates provides the passage between the plates, supports each plate against the adjacent one and enhances the turbulence, resulting in efficient heat transfer.
BH60 | BH100 | BH150 | BH200 | Bh250 | |
Exchange area. m2 | 0.15 | 0.24 | 0.62 | 0.85 | 1.5 |
Width. mm | 250 | 375 | 500 | 620 | 768 |
Height. mm | 750 | 875 | 1500 | 1740 | 2268 |
Connection diameter | DN50 | DN100 | DN150 | DN200 | DN250 |
Tightening measure | N(3.0+X) | N(3.95+X) | N(3.95+X) | N(4.0+X) | N(3.5+X) |
Thermal length | D/X | D/X | D/X | D/X | D/X |
Working/Testing pressure,bar | 10/15| 16/21 | 10/15|16/21 | 10/15|16/21 | 10/15|16/21 | 10/15|16/21 |
Cross reference of ALFA LAVAL | M6/M6M | M10/M10M | M15/M15M | M20 | MX25B |
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