Gasketed Plate Heat Exchanger
Energy Saving Industrial Plate Heat Exchanger , Plate Frame Heat Exchanger
Gasketed Heat Exchanger for Chemical Industry Fluid To Fluid with Energy Saving Gasketed Plate Heat Exchanger Application: 1. Food Industry: Milk pasteurization, Milk and beverage pasteurization , Wine tempering, Bottled water treatment , CIP (Cleaning-in-Place) heating , Reverse osmosis water. 2. Marine Application: Central cooling of the main or auxiliary engines or turbines, Lubrication oil cooling, Recooling of circulated water for cooling cylinders, pistons, injection
NBR / EPDM Gasketed Plate Heat Exchanger Carbon Steel For Mineral Water
Industrial NBR / EPDM Gasket Phe Heat Exchanger Carbon Steel For Mineral Water The plate heat exchanger is a series of gasketed, embossed metal plates arranged alternately and bolted together between end frames to form channels through which hot and cold media flow. The unit's velocity profile and induced turbulence causes dirty product deposits to be continually removed from the heat transfer surface during operation, thereby reducing fouling. The plate turbulence also
Rising Film Gasketed Electric Plate Heat Exchanger Low Energy Consumption
Rising Film Gasket Plate Heat Exchanger Evaporator PHE Type For Milk Juice Concentration Advantages 1, High quality and competitive price , fast delivery. 2, One year life time guarantee. 3, As manufacturer, we can supply the best quality replace parts for some brands to help you save cost. 4, Customized service, According to the specific requirements of new products,contact us With its high efficiency, the Plate Heat Exchanger conserves footprint and floor loading far beyond
Beverage Juice Refinery Gasketed Plate Heat Exchanger Evaporator Climbing Film
Plate gasket Heat Exchanger Evaporator Climbing Film for Beverage Juice Refinery Structure of Gasket Plate Heat Exchanger: Plate heat exchanger is made up by heat transfer plate, sealing gasket, compression plate, up and down guide bar, pillar, grip bolts and other major parts. Why plate heat exchanger? High heat transfer coefficient Compact structure with less foot print Convenient for maintenance and cleaning Low fouling factor Small end-approach temperature Light weight
Gasketed Plate And Frame Heat Exchanger , Steam Plate Heat Exchanger 2.0 Mpa
Plate Gasket Heat Exchanger Evaporating Device Energy Saving for Juice Refinery Fluid To Fluid Structure of Gasket Plate Heat Exchanger: Plate heat exchanger is made up by heat transfer plate, sealing gasket, compression plate, up and down guide bar, pillar, grip bolts and other major parts. Maximum pressure and temperature All models are available with different frame designs and different plate thickness depending on the required design pressure. The maximum temperature
Compact Structure Gasketed Plate Heat Exchanger Sensitive Temperature Control
Climbing Falling Film Panel Heat Exchanger For Juice Milk Structure of Gasket Plate Heat Exchanger: Plate heat exchanger is made up by heat transfer plate, sealing gasket, compression plate, up and down guide bar, pillar, grip bolts and other major parts. Working principles 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
NBR Gasketed Plate And Frame Heat Exchanger , Plate Type Cooler Sus Plate
SUS Plate NBR Gasket Plate Heat Exchanger Small Size Space Saving Low Energy Consumption Easy cleaning and easy to service Our plate heat exchangers come with features that make cleaning and service easy. Small ports, for example, make Cleaning-In-Place (CIP) possible without requiring the use of specialized pumps. Another great feature is our unique glue-less gasket system using FDA-compliant materials. Gaskets can easily be replaced while plates still hang on the frame,
SS Gasketed Plate Heat Exchanger Small Size Space Saving Low Energy Consumption
NBR Gasket Plate Heat Exchanger SS Plate Small Size Space Saving Low Energy Consumption Features The occupied space is small and can be vertical, horizontal Skew symmetric channel, turbulent heat transfer efficiency is higher The short and wide channel combination, suitable for easy blocking condition Safety and reliability in use Small area and easy maintenance Adjust to changing circumstances Less resistance loss Favorable for the Utilization of Low Temperature Heat Sources
Hastelloy Titanium Plate Heat Exchanger , PHE Heat Exchanger Food Processing
Material and operating conditions of gasket: Material Application working temperature NBR Water, sea water, mineral oil, salt water -15—130℃ HNBR High temperature mineral oil, high temperature water 15—140℃ EPDM/HEPDM Water,Hot water, steam, acid, alkali,caustic -25—150℃ Viton/Fluorine Rubber Strong acid, strong alkali, mineral oil, grease and fuel oil, etc 5—200℃ NEOPRENE Acid, alkali, mineral oil, low molecular weight aliphatic hydrocarbon 35—130℃ Silicon Rubber High
Industrial Equipment 0.5mm Heat Plate Exchanger Stainless Steel Material HU10L1
Product Description 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 inter plate channel and directs the fluids into alternate channels. The number of plates is determined by the flow rate,
M6M Gasketed Plate Heat Exchanger For Food And Chemical Industry
Product Description 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 inter plate channel and directs the fluids into alternate channels. The number of plates is determined by the flow rate,
Stainless Steel M10M Heat Plate Exchanger For Industrial Equipment
Product Description 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 inter plate channel and directs the fluids into alternate channels. The number of plates is determined by the flow rate,
Titanium Plate Heat Exchanger Boat For Starch Syrup
Product Description 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 inter plate channel and directs the fluids into alternate channels. The number of plates is determined by the flow rate,
Stainless Steel Heat Plate Exchanger For Industrial Equipment
Supply heat plate exchanger for Industrial equipment Product Description 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 inter plate channel and directs the fluids into alternate channels. The
Customize Food Grade Gasketed Plate Heat Exchanger For Air Dryers
Product Description 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 inter plate channel and directs the fluids into alternate channels. The number of plates is determined by the flow rate,