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1 Overseas Operation Osaka : , Sonezaki, Kita-ku, Osaka City, Osaka, , Japan TEL: FAX: Sales Department Osaka : , Sonezaki, Kita-ku, Osaka City, Osaka, , Japan TEL: FAX: Tokyo : Kyobashi OM Bldg., , Kyobashi, Chuo-Ku, Tokyo , Japan TEL: FAX: Nagoya : Fujifilm Nagoya Bldg. 12th Floor, , Sakae, Naka-Ku, Nagoya City, Aichi , Japan TEL: FAX: URL:

2 WORLD LEADER IN THERMAL ENGINEERING As a specialist in thermal engineering with world wide presence, our vision is to promote the rational use of thermal energy. We have been developing versatile high performance products through the years of experience in the design and manufacturing of our Plate Heat Exchangers using innovative and leading technology. Markets and Applications Challenging rationalization of thermal energy. HISAKA Plate Heat Exchangers are used for heating, cooling, heat recovery, heat exchanging, condensing, sterilization, etc. Our heat exchangers are successfully installed in all major industries such as chemical, food, steel, pulp & paper, industrial machinery, automobile, oil refinery, textile, ship, air conditioning and power plant. HISAKA Plate Heat Exchangers have always played a major role in thermal engineering as well as an energy saving equipment. Hisaka Works, Ltd. / Konoike Plant Global Network Original proprietary technology to overseas. HISAKAWORKS S.E.A. / Kuala Lumpur Since we started in 1953, a wide range of Plate Heat Exchangers have been developed, designed and manufactured using our own original technology and engineering. We have since then exported plate production technology to many foreign licensees. On the other hand, worldwide supply network through representatives and our subsidiaries such as Malaysia, Thailand, Singapore, Indonesia, Vietnam, Philippines, China, Korea and Saudi Arabia has been also established. The World largest class 40,000ton Press machine Quality Assurance Well established QMS conforming to ISO9001. We conform to the most stringent quality assurance program as demanded by our international clients. Super Jumbo PHE HISAKA WORKS (Chaina) / Changshu Effective utilization of resources, energy-saving and high production efficiency. That's the Heat Exchanger Division's concept of research and development. Our products meet with the highest engineering standards and of the highest quality. As such, we conform to various international standards such as ASME, JIS, CE, etc. Health, Safety and Environment We, HISAKA, take a proactive stance in Health, Safety and Environment issue conforming to ISO The cutting-edge full automatic 20,000 ton Press machine CONTENT Page 01 Page PLATE HEAT EXCHANGER 03 MULTI GAP PLATE 14 FEATURES 05 CONDENSING PLATE 14 PLATE 07 Hestia NX GASKET 08 DUAL WALL PLATE 15 PLATE HEAT EXCHANGERS VARIATION 09 MAINTENANCE WEB SIMULATOR 17 SEMI WELDED PLATE 13 NETWORK 18 The career 20,000 ton Press machine The latest 4,000 ton high speed automatic precision Press machine 02

3 PLATE HEAT EXCHANGER External Structure The heat transfer plates are thin sheets of corrosion resistant metal such as stainless steel or titanium that are press-formed with a corrugated pattern on the surface and sealed with synthetic rubber gaskets, which seals the flow channel and directs the fluid into alternate channels. Such plates are suspended, supported and aligned by guide bars and tightened by bolts between a fixed and a movable frame. The equipment can adjust the number of plates so as to meet the heat duty. Flow of Fluid and Heat Exchange Mechanism Heat transfer A and B-plates are of identical pattern. One simply turned upside-down becomes to the other so as to obtain a different flow channel by the gasket line. Further, by the start plate (D-plate) having its portholes with double seal gaskets and the blind last plate (E-plate), the construction is such that the fluids do not directly contact the frames. Construction Plate Heat Exchanger S-Frame The fixed frame. Pressure retaining part to the internal pressure. Nozzle The connection to piping. The stud bolts are located around the connection. Rubber and Metal are available. E-Frame The movable frame. Similar function to the S-Frame, but hung on the upper guide bar and movable. Upper Guide-bar Suspends the plates and E-Frame plate. At the same time functions as a positioning rail. D-Plate A-Plate B-Plate Upper Guide-bar E-Frame Guide-bar Support Plate Pack The heat transfer plates are designed with a variety of raised areas and channels to ensure strength and increase the heat transfer area. Tightening Bolts/Nuts Tighten the S- and E-Frames, pressing the plates and gaskets together, to seal the fluids. Guide-bar Support Lining Base Plate Fixed firmly the foundation by anchor bolts. Third leg that supports the rear ends of the top and bottom guide bars. Lower Guide-bar Lower Guide-bar E-Plate Rail that serves to position the bottom edges of the plates and E-Frame. S-Frame Tightening Bolts/Nuts Heat Transfer Plates Each heat transfer plate is corrugated to various patterns to increase its strength and heat transfer area. Furthermore, the corrugation creates high turbulence and thereby achieve high heat transfer coefficient. The plate is provided with passage hole on each corner. Each plate is tight-sealed with a gasket fitted in its peripheral groove. Hanger Heat Transfer Part Port Hole Double Seal Distribution NOZZLE SECTION Gasket Boot Boot 03 04

4 FEATURES Flow Channel The plates are divided into A-plate and B-plate, and a passage is formed between these plates. The high temperature fluid flows alternately and in the opposite direction of the other fluid. Thus high efficient transfer of heat is achieved through these plates. A-plate when reversed would become B-plate. As such only one type of plate can be used as A-plate and B-plate for most models. Wide Application Range Capability range : 0.1m 3 /h to 5,000m 3 /h Operating pressure : 4.0MPaG max. Operating temperature : 180 C max. Surface area : 0.18m 2 /unit to 2,500m 2 /unit Plate materials : Stainless steel, Titanium, High Nickel alloy, Nickel Other materials : Conforming to the Japanese and in ternational standards as applicable. Gasket materials : NBR, EPDM, IIR, FPM, Silicone, TCG, etc. Prevention of Liquid Inter-mixing Special consideration is taken into the gasket so as to protect it from direct attack by liquid. Furthermore, the gasket is of double-seal type so as to permit liquid draining outside the exchanger even in a case of liquid leak caused by its deterioration. Front View Side View High Performance The overall heat transfer co-efficient (U-value) ranges from 4,000 to 9,000 W/m 2 C in water application, since the plate corrugation provides high turbulent flow. This is one of the reasons why plate heat exchanger performs so high heat transfer coefficient. In addition, this turbulent flow also acts to prevent scales from the plate surface. Pass Design E-Frame With single-pass design, all of the connections are made on the fixed frame side only. This simplifies piping work and increases layout flexibility. With a multi-pass design, connections are located on both the S-Frame (fixed-frame) and E- Frame (movable-frame) sides making it necessary to remove and adjust the piping. E-Frame Easy Maintenance The plate heat exchanger can be easily opened for inspection and maintenance by loosening the tightening bolts and nuts. Assembly and opening of the unit are also easily performed. Steam Available as Heat Source The use of synthetic rubber gasket of special composition permits to use steam as heat source, i.e operating temperature range up to 180 C maximum. S-Frame Single-pass connection arrangement S-Frame Multi-pass connection arrangement It is necessary to remove the connected piping when disassembling the unit. Two fluids temperature difference up to its extremely close... The construction which permits heat exchanging in perfect counter-current flow with very high heat transfer efficiency makes it possible to approach the temperature difference between hot and cold fluids up to 1 C and less. Less Installation Space The lightweight and compact construction saves the installation space to 1/4 and the weight to 1/3 of shell & tube heat exchanger respectively. In addition, lightweight and thin heating plate with less liquidhold facilitates the installation work. The Plate Heat Exchanger can be disassembled for cleaning without piping work, while the shell & tube heat needs a additional space for drawing out the tube bundle. Maintenance space required Single-pass flow diagram Multi-pass flow diagram 05 06

5 PLATE GASKET The plates are specially selected from various patterns so as to achieve optimum area and cost effective heat exchanger for eachunit. These plates can be classified into three patterns, namely. 1. Versatile gasket 1. Herringbone pattern such as LX-, UX-, RX-, WX-, and SX-series 2. Wash board pattern such as EX-series 3. Special wave pattern such as GX-, and YX-series HISAKA Plate Heat Exchanger is used in almost all process industries, as such the gaskets are specifically selected based on the operating condition. A wide range of gaskets are available such as NBR, EPDM, IIR, FPM, Silicon, etc. 1. Herringbone pattern Special Hisaka (S-1) glue shall be applied for bonding The herringbone design in LX-series has corrugations with pitch which is rough and deep. In SX-series, the pitch is fine and shallow, hence LX-series are used in application where low NTU is required, and SX-series are best suited for high NTU application. UX/RX-series is in between LX-series and SX-series. NTU = 2. Glue-free gasket slit-in type Hot temp in Hot temp out NTU : Number of heat Transfer Unit LMTD : Logarithmic Mean Temp. Difference LMTD NTU of 1.5 and less is generally referred to as low NTU, and 3.0 and above is considered as high NTU Slit-in gasket These plate gaskets do not need adhesive. The slit-in gasket is especially recommended for those applications where frequent replacement of the gasket is required. Further, without the adhesives, adhesive odor is reduced. This slit-in type gasket is suitable for such as water treatment Food application. 3. NEW-EPDM (N-EPDM) UX / RX-series SX-series Even in the same series, the heat transfer characteristic is different due to plate pattern angle. H plate is suited to high NTU, while L plate to low NTU. When the plates corrugated in H plate and L plate can be mixed together in a unit, intermediate thermal characteristics can be achieved. Slit Fix the gasket Slit Life time of N-EPDM and EPDM (180 ) Sealing performance LX-series Usually, EPDM gasket is selected either for high temperature or corrosive application. Although HISAKA EPDM gasket is of high quality, the rubber gasket loses elasticity as the time passed. A newly developed cutting edge N-EPDM gasket was introduced. The N-EPDM gasket improves both the heat and chemical resistance. The life-time is two times higher than conventional EPDM. Originally invented specifically for CO2 chemical recovery process, the N-EPDM is ideal for other applications with many advantages. Gasket Above is the comparison chart between N-EPDM and conventional EPDM describing the difference of its life time. N-EPDM can realize the stability and the sustainability during the long time operation NEW-EPDM EPDM *subject to actual operation 4. PTFE Cushion Gasket (TCG) Through our own development, HISAKA has pioneered PTFE Cushion Gaskets for the Plate Heat Exchanger. It is normally used in applications where conventional synthetic rubber would have limitations due to the corrosiveness of the fluid being handled. With this new development, the Plate Heat Exchangers can be applied in much wider field than before due to the chemical resistance and the durability of PTFE. Plate TCG PTFE Liquid contacting side Synthetic rubber Special double adhesive tape shall be applied for bonding H plate 07 L plate Mixed arrangement 2. Wash board pattern 3. Special pattern As this type of plate gas less metal contact, it is normally applied to fluids containing fibers, particles or sludge. We have EX-series. YX plate is used exclusively for vapor condensation. (See Page 14) GX plate is developed for heat transfer of fluids containing much slurry or high viscosity liquids. (See Page 14) Features Synthetic rubber TCG Synthetic rubber TCG 1. Excellent chemical resistance against most chemical especially organic solvent. 2. Due to the elastic core of the TCG gasket, it does not require strong tightening torque during the assembly of the unit. Thus reducing the risks of plate deformation due to over tightening. 3. TCG gasket can be used for one side only, if the noncorrosive fluid is running in the other side where conventional gasket can be used. 08

6 PLATE HEAT EXCHANGERS VARIATION LX Series UX Series RX Series LX-00 LX-10 LX-20 LX-30 LX-40 LX-50 Model LX-01 LX-02 LX-11 LX-12 LX-21 LX-22 LX-31 LX-32 LX-41 LX-42 LX-51 LX-52 Connection Dia mm inch Max Heat Transfer Area m , , , , ,575 1, , ,075 2, ,002 4, ,995 2, ,313 UX-005 UX / UX-01 UX UX-10 UX-11 UX , ,440 UX-20 UX-21 UX , ,011 UX-30 UX-31 UX ,841 1, ,821 UX-40 UX-41 UX , ,002 3,352 UX-90 UX-91 UX ,829 2,929 1,300 1,760 5,760 UX-100 UX-102 UX-103 UX ,600 3,630 3,780 1,570 2,262 8,262 UX-112 UX-110 UX-113 UX ,630 3,780 1,570 2,262 8,262 UX-130 UX-133 UX ,600 4,270 4,300 1,570 2,262 8,262 UX-160 UX-161 UX ,300 4,250 1,900 RX-00 RX-01 RX / RX-10 RX-13 RX , ,345 RX-30 RX-31 RX ,850 1, ,836 RX-50 RX-51 RX ,182 2, ,513 RX-70 RX-71 RX ,434 2, ,760 5,760 RX-92 RX-90 RX-93 RX ,600 2,990 3,140 1,370 1,762 7,012 H mm W mm J L P mm SX Series WX Series EX Series Model Connection Dia Max Heat Transfer Area H W L mm mm inch m 2 mm mm J P SX-10 SX-11 SX , ,526 SX-20 SX-21 SX , ,020 SX-30 SX-31 SX , ,713 SX-41 SX-44 SX , ,757 SX-43 SX-45 SX-71 SX-74 SX ,692 1,070 1,090 1,510 4,510 SX-73 SX-75 SX-82S SX-80S SX-83S SX-84S 1,500 2,529 1,300 1,760 5,760 SX-82M SX-80M SX-83M ,000 2,929 1,300 1,760 5,760 SX-84M SX-82L SX-80L SX-83L SX-84L 2,600 4,192 1,300 1,760 5,760 SX-91M SX-92M SX-90M SX-93M SX-94M 1,700 3,134 SX-95M SX-96M SX-90L SX-92L SX-94L 1,900 3,438 SX-95L WX-11 WX-12 WX ,177 1, ,851 WX-13 WX-14 WX-50 WX-53 WX , ,002 3,352 WX-90 WX-91 WX ,829 1,450 1,760 5,760 EX-15 EX , ,198 EX-11 EX , ,212 W L L Plate model Frame type No. of plate RX-146A-TNHJR-24 Plate series name (LX, UX, RX, SX, EX, GX, YX) Plate size (0-13) Plate pattern (1-6, MIX case 7-9) See P.07 Plate thickness (0.5, 0.6, 0.8, 1.0) 6 means 0.6mm Gasket type (A:Slit in, B/none:Glue) No. of plate Only use for specific structure (R:Steam duty, L:Partition plate) Frame range (J, P) See P.10 Pressure range (none, H, U, S) Connection type (N, TN/KN, none) H J Type for small number plates P Type for large number plates (with Guide-bar Support)

7 MARINE STEEL MILL HVAC Central F.W. Cooler CENTRAL COOLING SYSTEM Lube. Oil Cooler G/E F.W. Cooler PETROCHEMICAL PLANT PULP & PAPER POWER STATION CausticSoda, Fertilizer, Petrochemical,Oil Refinery, Oil & Fat, Pharmaceutical Food Sugar, Starch, Sauce, Ketchup, Sodium glutamate HVAC Air-conditioning, Tap water heating Steel Mill Blast Furnace, Continuous Casting, C.O.G, Plating & Galvanizing Metal Plating, Quenching, Anodizing, Painting Pulp & Paper Black Liquor, White Liquor, Digester, Heat Recovery Textile Synthetic Fiber, Spinning, Dyeing Central Cooling System (by Sea water / Fresh water), Power Station, Co-generation, Marine and many others. Chemical 11 12

8 SEMI WELDED PLATE MULTI GAP PLATE FEATURES FEATURES High heat transfer coefficient owing to uniform distribution of flow to entire heat transfer is by special plate pattern. A couple of plates are laser welded with o-ring at port holes between the plates, thus semi-welded plate heat exchanger can be used for higher pressure compare to conventional Plate Heat Exchanger. ADVANTAGES CONSTRUCTON of SEMI WELDED PLATE GX-21 provides 10mm channel space both for hot and cold sides, so that heat recovery can be performed between hot and cold slurry. GX-22 plate is made by reversing and upside down GX-21 plates. Mixed plate arrangement of GX-21 and GX-22 is named GX-23. It gives the widest channel spacing (20mm) at one side, which is available for large size particles. GX plates have wider depth, larger corrugation pitch and less metal contact points, comparing to conventional plates. 1. High pressure resistance is about 2 to 3 times higher than all gasket type heat exchanger. 2. Save maintenance cost. 3. Chemical resistance TCG o-ring and synthetic rubber are selectively used. 4. Nozzle pitch dimensions of semi-welded plate heat exchanger are same to those of following plate heat exchangers. WX-10 and RX-10 WX-50 and RX-50 WX-90 and UX-90 Therefore, RX-10, RX-50, UX-90 can be replaced to WX series without changing location of connection pipes. 5. Different from full welded plate heat exchanger, Semi-welded plate heat exchanger can be easily added plates to increase capacity. 6. Semi-welded plates heat exchanger can be disassembled and done easy maintenance against full welded plate heat exchanger. SEMI WELDED TYPE HEAT EXCHANGER GASKET LASER WELDING PROCESS FLUID COOLING WATER ALL GASKET TYPE HEAT EXCHANGER GASKET PROCESS FLUID COOLING WATER ADVANTAGES 1. Easy to flow throughout between plates. 2. GX series provides the widest channel spacing. 3. Mixed plates arrangement gives three types of channel spacing. 4. It is better performance for slurry, sludge and crystal containing liquid. 5. Electrolytic polishing selectively used for food application. Slurry in PVC, Latex Glucose Sludge quenching oil Flesh juice Plating solution Waste water Crystal (sodium hypo-chloride, sodium alminate, etc.) GX-20 Specifications GX-21 GX-23 Combination of GX-21 & GX-22 a view of the cross section from top Max. flow rate : 900m 3 /h Max. operating pressure : 0.7MPaG Max. operating temperature : 130 C Connection (standard) : 100mm (4"), 200mm (8") Plate material : Stainless steel, Titanium etc. Gasket material : NBR, EPDM etc. BTX Recovering Process in COG Plant Sulfuric Acid Process B.P.A Recovering Process in Poly-resin Plant Quench Water Cooler in Ethylene Plant Vacuumed Condensate Cooler in Synthetic Fiber Process Pure Water Heater in Clean Room Oil and Fat CONDENSING PLATE FEATURES YX type heat exchanger is specially designed for condenser to provide high condensing performance in characteristic formed various material plates. This characteristic YX shape is enable to be light and compact construction and it has the heat transfer performance of 2 to 3 times as high as conventional S&T heat exchanger. Specifications Max flow rate : 2300m 3 /h Operating pressure : 4.0 MPaG Max operating temperature : 180 C Connection Diameter : 100mm(4")/200mm(8")/350mm(14") Plate material : Stainless steel, Titanium, High Nickel alloy etc. Gasket material : EPDM, TCG, FPM etc. WX-10 WX-50 WX-90 ADVANTAGES 1. Heat Transfer coefficient is about 2 times as high as that of shell & tube heat exchager. The condensing surface is always secured and the heat transfer coefficient is improved because condensate is immediately drained out. 2. To achieve much less vapor pressure drop than the conventional Plate type Heat Exchanger, special consideration of plate characteristic is taken in contribution. 3. Cooling water consumption is about half of S&T heat exchanger. 4. The use of TCG gasket is selectively used and it expands the application to wide field. 5. Easy change of condensing capacity by increase or reducing the number of plates. 6. Because of inlet and out let connections at the same side, YX type can be applied not only an total condenser but also to partial condenser. Specifications Water side Wort Pan Condenser in Beer Prpcess Vent Gas Condenser Cl2 N2 NH3 Gas Condenser Barometric Condenser Vapor side Max. flow rate : 30,000m 3 /h Operating pressure : MPaG ~ 0.6MPaG Max. operating temperature : 180 C Plate material : Stainless steel, Titanium etc. Gasket material : NBR, EPDM, IIR, TCG etc

9 Hestia NX-50 FEATURES MAINTENANCE Hestia NX-50 Plate The traditional single gasket pressure boundary was abandoned and replaced by an innovative two gasket system incorporating inter gasket leakage detection. The result is the Hestia NX-50 employing the world s first double-gasketed line design. Hestia NX-50 High heat-resistance and pressure-resistance Diagram of heat-resistance and pressure-resistance Seal pressure (MPa) ADVANTAGES High temperature and high pressure fluids systems like around boilers or in nuclear power plants. Dangerous or combustible fluids in chemical plants or the like. Decreasing of performance A gasket line is provided to the outermost periphery to inhibit oxidation degradation in the inner gasket (which serves a sealing role) from outside air. *Patent pending Inner gasket Prevents Clogging of the port holes inlet and/or scale deposition on the heat transfer surfaces may be supposed. It is necessary to clean the unit and remove scale. Leakage of fluids Leakage Dispersal Due to the double-gasketed line design, even if a fluid leak occurs in an inner gasket, you can quickly detect the leak using the detection holes provided between the internal and external gaskets. y Intermixing of two media It is possible that corrosion or damage to the intermediate plate has penetrated the plate. Replace the damaged plate. *Product developed jointly with Hitachi-GE Nuclear Energy, Ltd. DUAL WALL PLATE e From plate pack Insufficient tightening the plate pack, damage or deterioration of gaskets, plate gasket groove or double seal area corrosion, wrong plate arrangement, foreign object caught between gasket seal surfaces, gasket twisting or overlapping from the groove may be the supposed. Correct each fault or replace gaskets and/or plate. Leak Detection Holes Detect Leaks Outer periphery gasket It is necessary to clean the plates and remove scale, because of supposing scaling on the heat transfer surface. w Flow performance Should a leak occur in the inner gasket, this prevents the fluid from reaching outside. Detection hole q Heat transfer performance 260 Double-Gasketed Line Design Inhibits Oxidation Degradation ak Faults Heat resistance temperature ( ) Le 1. By double-gasketed line design, gasket line is provided to the outermost periphery to inhibit oxidation degradation in the inner gasket (which serves a sealing role) from outside air. 2. Prevent leakage dispersal. Should a leak occur in the inner gasket, this prevents the fluid from reaching outside. 3. To achieve high heat-resistance, compounding ratio of gasket is improved. 4. The improved gasket groove and plate pattern are increasing seal pressure and ensures high pressure-resistance. 5. Achieving a life time 5 times longer than Hisaka s conventional Plate Heat Exchangers. 6. High heat-resistance and pressure-resistance allow for environments with high temperature of 250 and seal pressure of 9.5Mpa or higher, which conventional PHE couldn t use Hestia NX-50 (Actual Performance) 8 7 Hestia NX-50 (Design Performance) Conventional Plate In order to extend the lifetime of the plate heat exchanger, it is important to watch changes in conditions. Frequently observed faults and causes are summarized below. If those faults are detected, please contact us and inform manufacturing number of the unit. r From S-Frame The D-plate gasket, rubber boots, D-plate or S-nozzle may be damaged. Replace the damaged part. t From E-Frame The E-nozzle gasket, E-nozzle, rubber boots, or E-plate may be damaged. Replace the damaged part. FEATURES Dual wall plates consist of two identical plates which are stacked and laser-welded around their port holes. This construction realizes much safer against intermixing between two fluids than conventional design. Dual wall Plate Heat Exchangers are suitable for the heat transfer processes that use fluids to be avoided intermixing because of being hazardous in operation and environment. ADVANTAGES 1. If any one of the two fluids would leak through the first plate, Dual wall design would be prevented from going any further due to the air gap and the second plate. 2. In case any one of plates were to fail, the leak can be detected from outside because of leaking through the gap of the plates. 3. To prevent intermixing of the fluids, Double seal gasket system is used. Any leakage of fluids across the gasket can be detected from the outside because of being escaped from units. Dual Wall Plate B Fluid B Fluid Laser welded parts Air gap A Fluid A Fluid A Fluid Installation of Dual wall PHE Installation of conventional PHEs 15 Two identical plates Two identical plates are stacked and laser-welded together around the port holes. Cooling of transformer oil MGO Cooling in Marine use Heat transfer of lubricant oil or hydraulic oil duty Heat transfer of food processing line Heat transfer of Bio-process line Heat transfer of two fluids which makes hazardous matter by intermixing. Double Seal Gaslet B Fluid 2 sets of heat exchangers in addition to extra pump and piping. A Fluid B Fluid Only one PHE is enough for the duty. Cracking at the gasket groove Decreasing the plate thickness due to severe erosion corrosion Heat exchanger Seawater inlet port hole Wood chips, seaweeds and shellfish are blocking the flow channel, and causing poor fiow in the unit. 16

10 WEB SIMULATOR NETWORK Simulation of Plate Heat Exchanger Now Possible on the Web HISAKA Web-Simulator (HWS) The world's first website for simulating Plate Heat Exchanger is now launched on the Internet. By accessing the following URL and entering your design requirements according to the instructions on the screen, you can get your own plate heat exchanger. In addition, you will be able to download the specification with outline drawing for installation work. The most appropriate simulation of plate heat exchanger is possible 24-hours a day anytime, anywhere according to your convenience. To output the specifications, click "Print Specifications". "Calculation Results" To request a quotation request, click "Quotation Request". Top screen on the website "Design conditions Input" Screen Click here for a direct link. Select your plate materials and enter your design conditions in the empty fields, and click "Calculate". - Original proprietary technology to the world - Global leading company, HISAKA. This is our goal. Since we started our research and development in 1953 we have been engaged in manufacturing and its improvement of Plate Heat Exchangers over 50years in Japan and supplying our equipment to the foreign countries more than 70, and as of today, our HISAKA brand becomes global to manufacture, supply and provide after-sales services at 7 countries in the world. PORTUGAL SAUDI ARABIA (DAMMAM) THAILAND (BANGKOK) THAILAND (RAYONG) MALAYSIA (PENANG) MALAYSIA (KUALA LUMPUR) MALAYSIA (JOHOR) SOUTH KOREA (SEOUL) CHINA (YANTAI) CHINA (CHANGSHU) CHINA (SHANGHAI) CHINA (GUANGZHOU) TOKYO NAGOYA OSAKA VIETNAM (HANOI) VIETNAM (HO CHI MINH) PHILIPPINES (MANILA) Headquarters / Production Base Branch Office When you do not need a quotation, click "Return to TOP" to exit. The calculation results are automatically saved for one month. When you need a quotation later (within the onemonth period), click "Send the Quotation Request Key to you by . " so that the Quotation Request Key is sent to you. An outline drawing with loading data and calculation result specification will be displayed. You can print or download the specifications. "Specification" Screen Typical specification form for quotation request is also available. If it is necessary to help for selection of Plate Heat Exchanger, please fax the form below with your design conditions. Hisaka shall reply to you. A more suitable design can be offered, if additional information such as plate material and gasket material etc. can be provided. In addition, please feel free to contact our nearest agents or sales representatives of Hisaka if you have any questions. SINGAPORE INDONESIA (JAKARTA) GROUP COMPANY MALAYSIA THAILAND PHILIPPINES SOUTH KOREA CHINA HISAKA WORKS (CHINA) CO., LTD. CHANGSHU Group Company / Production Base Group Company and Local Sales Office Technology Transferee SHANGHAI BRANCH SINGAPORE GUANGZHOU BRANCH SAUDI ARABIA INDONESIA VIETNAM Fax (Japan) TECHNOLOGY TRANSFEREE ARSOPI THERMAL S.A. (PORTUGAL) YANTAI SHINWA JOINT TECHNOLOGY CO.,LTD. (CHINA) 17 18

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