High-Efficiency Heat Exchange of Plate & Shell Heat Exchangers
Product Structure and Working Principle
Core Structure
The T20B-5 Detachable Plate Heat Exchanger features modular assembly design with three key components:
- Heat Exchange Plates: Stamped thin metal sheets with corrugated grooves to enhance heat transfer efficiency and structural rigidity
- Sealing Gaskets: Installed around plates to seal gaps, prevent medium leakage, and divide flow channels
- Clamping Assembly: Includes clamping studs and components that fix all plates through clamping force to ensure sealing performance and structural stability
Plate corners feature holes that form continuous medium channels for fluid flow paths.
Working Process
The equipment achieves heat exchange through countercurrent heat exchange and plate heat conduction:
- Medium Distribution: Hot and cold fluids enter dedicated channels and distribute into independent flow channels between plates
- Countercurrent Heat Exchange: Hot and cold media flow countercurrently to maximize temperature difference and improve heat transfer efficiency
- Heat Transfer: Plates act as intermediate heat-conducting carriers, transferring absorbed heat to the cold medium
- Temperature Regulation: Hot medium temperature decreases (cooling) while cold medium temperature increases (heating)