Hexonic HEAT EXCHANGERS BRAZED PLATE HEAT EXCHANGERS
Open the catalog to page 1Brazed plate heat exchangers are the perfect solution that allows to maintain high thermal performance at low operating costs. HIGH PERFORMANCE Wide range of types, sizes, and numbers of plates and connections Heat exchangers are designed allows for optimizing the selection to particular application. for very efficient operations within a wide range of applications. Copper or stainless brazing option offer additional application They guarantee compact possibilities. Brazed plate heat exchangers guarantee reliable, long-term operation. RELIABILITY Advanced technology and high quality materials...
Open the catalog to page 2B RAZED PL AT E H E AT EXCH A N G ER S D EDICAT E D TO H E AT I N G O R COOLIN G SYST E M S . HIGH HEAT TRANSFER RESISTANCE TO COMPACT SIZE HIGH TEMPERATURE AND PRESSURE ASYMMETRIC OPTION AVAILABLE DOMESTIC HOT WATER SYSTEMS SOLAR AND GEOTHERMIC HEATING SYSTEMS INSTALLATIONS WITH FIREPLACE WITH WATER JACKET CENTRAL HEATING SYSTEMS INSTALLATIONS WITH HEAT PUMP
Open the catalog to page 3MICROCHANNEL BRAZED EXEMPLAR DESIGNATION PLATE HEAT EXCHANGER L A1 2 - 6 0 -2 S -3 /4 ” . U M INCREASE OF HEAT EXCHANGE EFFICIENCY BY UP TO 8% COMPARING TO OTHER COMPETITIVE MICROCHANNEL HEAT EXCHANGERS brazed plate heat exchanger ASME certification REDUCTION OF FLOW RESISTANCE BY UP TO 9% PRODUCT LINE COMPARING TO THE MOST EFFICIENT MICROCHANNEL HEAT EXCHANGER ON THE MARKET INCREASE OF HEAT EXCHANGE EFFICIENCY BY 35% COMPARING TO EXCHANGERS WITH STANDARD HEAT PLATES HIGHER FLOW TURBULENCE ENHANCES HEAT EXCHANGE THANKS TO OPTIMIZATION OF FLOW VELOCITY LM 110
Open the catalog to page 4STANDARD LOCATION OF CONNECTIONS 1- PASS HEAT EXCHANGER K1 / K4 — inlet / outlet hot side K3 / K2 — inlet / outlet cold side 2- PASS HEAT EXCHANGER D4 / K4 — inlet / outlet hot side K3 / D3 — inlet / outlet cold side 2-PASS WITH 6 CONNECTIONS ADDITIONALLY: K1 — vent connection / inlet of central heating return K2 — vent connection / inlet of domestic hot water circulation return MATERIALS — STAINLESS STEEL — PROPYLENE GLYCOL SOLUTIONS — OTHER (CONSULT THE M AN U FACTU R E R) WORKING PARAMETERS MAX. TEMPERATURE — 446°F All dimensions and technical data are approximate only and may be changed without...
Open the catalog to page 5B RAZED PL AT E H E AT EXC H A N G E R S ENTI RE LY M AD E O F STA I N L E S S M ATE RIALS D E S I G N E D TO M A I N TA I N HIGH S ANITARY STA N DA R D S . STAINLESS BRAZING ALLOWS HOMOGENEOUS CONSTRUCTION HIGH SANITARY STANDARDS APPLICATION WHEN HIGH LEVEL WHEN RELIABILITY IS ESSENTIAL RESISTANCE TO HIGH TEMPERATURE AND PRESSURE SYSTEMS WITH CENTRAL HEATING DEMINERALIZED WATER RESISTANCE TO CORROSION DOMESTIC HOT SYSTEMS WITH WATER SYSTEMS AGGRESSIVE MEDIA HIGH COOLING SYSTEMS SYSTEMS WITH WITH HIGH HYGIENIC INDUSTRIAL COOLING SYSTEMS WIDE RANGE OF APPLICATIONS
Open the catalog to page 6EXEMPLAR DESIGNATION brazed plate 2S - 2-pass with 6 connections ASME certification heat exchanger 2 - 2-pass with 4 connections PRODUCT LINE
Open the catalog to page 7TECHNICAL DATASTANDARD LOCATION OF CONNECTIONS 1-PASS HEAT EXCHANGER K1 / K4 — inlet / outlet hot side K3 / K2 — inlet / outlet cold side D4 / K4 — inlet / outlet hot side K3 / D3 — inlet / outlet cold side 2-PASS WITH 6 CONNECTIONS ADDITIONALLY: K1 — vent connection / inlet of central heating return K2 — vent connection / inlet of domestic hot water circulation return MATERIALS — STAINLESS STEEL — STAINLESS BRAZING — PROPYLENE GLYCOL SOLUTIONS — OTHER (CONSULT THE MAN U FACTU R E R) All dimensions and technical data are approximate only and may be changed without further notice.
Open the catalog to page 8B RAZED PL AT E H E AT EXC H A N G E R S D ES I G NE D FOR U S E I N CO O L I N G OR H E AT ING INSTA L L AT I O N S . REF RIG E RANT EVA P O R ATO R S , CO ND E NS E RS AN D ECO N O M I Z E R S . OUTSTANDING RELIABILITY OPTIMIZED FOR MODERN REFRIGERANTS APPLICATION RESISTANCE TO CYCLIC FATIGUE CHILLERS SPECIAL CHANNEL PAT TERN ENSURES EFFECTIVE EVAPORATION REFRIGERATION RESISTANCE TO FREEZING HEAT PUMPS DOUBLE WALL OPTION AVAILABLE ICE WATER GENERATORS L U N A TM O P T I O N AVAILABLE COOLING SYSTEMS WITH SPECIAL CONSTRUCTION
Open the catalog to page 9EVAPORATORS A two-phase refrigerant is sent to the bottom welded connection of the exchanger. Flowing through the channels it evaporates completely while acquiring the required degree of overheating. Water or glycol flows in counter-current flow. CONDENSERS Hot refrigerant vapours are sent to the top welded connection of the exchanger. Flowing through the channels they condense while acquiring the required degree of subcooling. Water and glycol flows in counter-current flow. RDS SYSTEM Hexonic developed the unique refrigerant distribution system RDS, for evaporators with potentially higher cooling...
Open the catalog to page 10EXEMPLAR DESIGNATION brazed plate heat exchanger for refrigerating systems V - for evaporators C - for condensers S - for subcoolers/economizers/ desuperheaters PRODUCT LINE
Open the catalog to page 11TECHNICAL DATA TECHNICAL PARAMETERS STANDARD LOCATION OF CONNECTIONS (DEPENDING ON WHETHER IT IS EVAPORATOR OR CONDENSER K4 / K1 — inlet/ outlet of refrigerant K3 / K2 — inlet/ outlet of water or glycol All dimensions and technical data are approximate only and may be changed without further notice.
Open the catalog to page 1225 COOLING CAPACITY TABLE FOR LOW POWER INSTALLATIONS COOLING CAPACITY TABLE FOR HIGH POWER INSTALLATIONS EVAPORATOR [d-l-GROUNp SOURCE=5K] [dT EVAPORATOR [dT ground SOURCE = 5K] CONDENSER [dT,NSTALLATION=10°F]
Open the catalog to page 13THE HIGH-PERFORMANCE PLATE Our product range of brazed plate heat exchangers stands out for its extensive assortment and adaptable features, offering unmatched diversity in size, brazing material, connection types, flow arrangements, and accessory options. Now, we have gone one step further and created a reinforced heat exchanger dedicated to cooling and heating solutions. These ultra-efficient heat exchangers feature special heating plates "X", providing enhanced heat transfer efficiency and increased turbulence flow of the medium. Consequently, this leads to increased thermal efficiency, lower...
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