A high-pressure shell and tube heat exchanger is a shell-and-tube heat exchanger specifically designed for high-pressure conditions. It consists of a series of tubes (tube bundles) enclosed in a...
High-efficiency Water Cooled Heat Exchanger is engineered to transfer heat from process fluids, oils, or gases into a cooling water circuit
High-performance Oil Cooling Heat Exchanger is designed to stabilize hydraulic and lubrication oil temperatures.
The Nickel Brazed Plate Heat Exchanger (NPHE) utilizes 100% vacuum-brazed nickel filler with SUS316L corrugated plates.
Finned tube heat exchangers are the type of heat exchangers in which fins are attached to the outer tube of the exchanger.
Aluminum finned heat exchangers are efficient, lightweight indirect heat exchange devices that greatly expand the heat transfer area by tightly fitting or welding aluminum fins (secondary heat...
Hydraulic oil coolers are indispensable key heat dissipation devices in hydraulic and lubrication systems, specifically designed to control the operating temperature of hydraulic oil.
Shell and tube heat exchangers are core equipment in the oil and gas industry. They achieve functions such as evaporation, condensation, heating, cooling, and heat recovery through indirect heat...
A tubular heat exchanger is a highly efficient heat exchange device that transfers heat between two fluids through the tube walls. It consists of one or more small tubes enclosed in a shell. Its...
Oil cooler heat exchangers are critical thermal management components specifically designed to regulate engine oil temperature. They maintain the oil temperature within its optimal operating range...
A titanium shell and tube heat exchanger is a high-pressure, high-efficiency heat exchange device using titanium and titanium alloys as the core heat exchange tube material. Its basic structure...
A double-tube heat exchanger is a shell-and-tube heat exchange device consisting of two concentric tubes. One medium flows through the inner tube, and another medium flows through the annular...