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Type | Brazed Plate Heat Exchanger |
---|---|
Max Pressure | 30 bar |
Max Temperature | 225 °C (437 °F) |
Connections | Threaded, Flanged, Welding |
Applications | HVAC, Refrigeration, Oil Cooling, Industrial Processes |
Temperature range | -196°C to 550°C |
Guidelines for recycling or energy recovery of packing materials like wood, plastics, and cardboard.
Procedures for disposing of used oil, wear parts, and electronic components during maintenance.
Instructions for equipment recycling and hazardous residue management according to local regulations.
Defines terms like AlfaFusion, plate, port, and describes the plate pack and heat transfer area.
Details on lifting device, bonded seal, support structure, connections, and cover plates.
Detailed breakdown of the information found on a Type 1 PED Standard nameplate.
Detailed breakdown of the information found on a Type 2 PED Stainless Steel nameplate.
Detailed breakdown of the information found on a Type 3 ASME nameplate.
Detailed breakdown of the information found on a Type 4 PED Customer Designed nameplate.
Explains media flow, bonded plates, seals, and typical applications for heat exchangers.
Describes the 100% stainless steel fusion bonding process using filler activation.
Covers pipe forces, foundation, overheating protection, and general safety during installation.
Shows vertical installation for evaporators and condensers, with connection considerations.
Recommends TIG/MIG welding and heat-sink use for welding connections.
Warning against lifting by connections/studs, advising use of straps.
Step-by-step guide for safely and correctly starting up the heat exchanger.
Covers freezing, clogging, thermal/pressure fatigue, and corrosion protection during operation.
Step-by-step guide for safely shutting down the heat exchanger.
Advice on plate material, avoiding chlorine, and proper rinsing techniques.
Explains how chlorine affects the corrosion resistance of stainless steel.
Details CIP capabilities and lists various cleaning liquids with their descriptions.
Troubleshooting steps for diagnosing and resolving increased pressure drop in the heat exchanger.
Troubleshooting steps for identifying and resolving a drop in heat transfer capacity.