Main advantages:
accurate temperature/energy saving/constant pressure operation/stable performance, efficient heat exchange, energy saving and environmental protection
High heat transfer efficiency
The corrugated structure of the heat transfer plate is scientific and reasonable, which is beneficial to the enhancement of heat transfer. It can make the medium form intense turbulence at a lower flow rate, reduce the possibility of scaling, and improve the heat transfer efficiency.
Durability
The new mold closing process is used when the heat transfer plate is pressed and formed, which ensures that the plate is pressed evenly and the corrugation size is accurate, so that the corrosion resistance and mechanical strength of each part of the heat transfer plate are uniform, thereby extending the life of the plate heat exchanger.
Easy to clean
Easy to disassemble and clean. You don’t even need to completely disassemble it. Just loosen the clamping bolts to pull out the plate for cleaning. The gasket uses a hanging pad, which is convenient for replacement. Replacing the plate does not damage the rubber pad and reduces maintenance costs.
Stable operation
The heat transfer plate flow channel adopts a reinforced structure around it, and the corrugation size is reasonable, so that each contact point is evenly distributed, and the pressure resistance is improved. The corrugation adopts a streamlined shape to avoid the flow dead zone. The flow channel diameter is large and the resistance loss is small.
Model parameters | Runner type | Pipe diameter (DN) | Number of pieces assembled (N) | Heat exchange area of single chip (m²) | Height A (mm) | WidthB (mm) | Plate package thickness C (mm) | Maximum flow (m3/h) |
BBH-32B | D | 32 | 10-100 | 0.035 | 480 | 180 | N*(2.50+X) | 15 |
BBH-50B | D/X/H | 50 | 12-250 | 0.18 | 930 | 320 | N*(2.00+X) | 45 |
BBH-50H | D/X/H | 50 | 12-250 | 0.18 | 930 | 320 | N*(3.00+X) | 45 |
BBH-65H | D/X/H | 65 | 12-200 | 0.18 | 652 | 400 | N*(3.95+X) | 75 |
BBH-100B | D/X/H | 100 | 12-400 | 0.28 | 1069 | 470 | N*(2.50+X) | 170 |
BBH-100H | D/X/H | 100 | 12-400 | 0.28 | 1069 | 470 | N*(3.95+X) | 170 |
BBH-100L | D/X/H | 100 | 12-400 | 0.55 | 1888 | 480 | N*(2.0+X) | 170 |
BBH-150B | D/X/H | 150 | 12-600 | 0.68 | 1815 | 610 | N*(2.50+X) | 380 |
BBH-150H | D/X/H | 150 | 12-600 | 0.68 | 1815 | 610 | N*(3.95+X) | 380 |
BBH-150E | D/X/H | 150 | 12-600 | 0.5 | 1200 | 610 | N*(3.95+X) | 380 |
BBH-200B | D/X/H | 200 | 12-800 | 0.9 | 2145 | 780 | N*(2.50+X) | 360 |
BBH-200H | D/X/H | 200 | 12-800 | 0.9 | 2145 | 780 | N*(3.95+X) | 680 |
BBH-200E | D/X/H | 200 | 12-600 | 0.5 | 1460 | 740 | N*(3.95+X) | 680 |
BBH-250B | D/X/H | 250 | 12-800 | 1.5 | 2721 | 920 | N*(2.50+X) | 900 |
BBH-300B | D/X/H | 300 | 12-800 | 1.85 | 2788 | 1170 | N*(3.25+X) | 1600 |