Welcome to A.S Engineers & Fabricators, where innovation meets excellence. We are thrilled to introduce our latest breakthrough: the Heat Exchanger. Engineered with precision and crafted with care, our Heat Exchanger is poised to redefine the standards of heat transfer efficiency in diverse industrial applications. In today's dynamic industrial landscape, optimizing heat transfer is essential for enhancing productivity, reducing energy consumption, and ensuring the reliability of critical processes. With this in mind, our team at A.S Engineers & Fabricators has developed a state-of-the-art Heat Exchanger that promises unmatched performance and reliability. MOC:- SS304,SS316,SS316l,Carbon Steel Strategies by heat Exchanger Fluid Selection: Choose the right fluids based on their thermal conductivity and heat capacity to maximize heat transfer efficiency. Matching the properties of the fluids to the application ensures optimal performance. Flow Control: Implement proper flow control mechanisms to regulate the movement of fluids within the Heat Exchanger. This ensures uniform heat distribution and prevents the formation of hot spots or cold spots, enhancing overall efficiency. Temperature Monitoring: Utilize advanced temperature monitoring systems to continuously monitor the temperature of the fluids entering and exiting the Heat Exchanger. This allows for real-time adjustments to optimize heat transfer performance and maintain desired operating conditions Efficient Heat Transfer Our heat exchanger ensures efficient transfer of heat between two fluids, allowing you to maintain optimal temperatures in your processes Cost-Effective Solution By effectively utilizing heat exchange principles, our product helps you save on energy costs, making it a cost-effective solution for your operations Enhanced Performance With improved heat transfer efficiency, our heat exchanger boosts the performance of your equipment and processes, leading to increased productivity Customizable Designs We offer customizable designs tailored to your specific requirements, ensuring that our heat exchanger seamlessly integrates into your existing systems Durable Construction Built with high-quality materials and precision engineering, our heat exchanger is durable and reliable, providing long-lasting performance in demanding industrial environments Easy Maintenance Designed for easy maintenance and servicing, our heat exchanger minimizes downtime and ensures smooth operation, allowing you to focus on your core business activities
Product Introduction titanium plates are widely used in heat exchangers due to their excellent thermal conductivity, corrosion resistance, and high-temperature stability. A heat exchanger is a device that transfers heat between two fluids or materials, typically one fluid is heated while the other is cooled. titanium plates can be used as the heat transfer medium in a heat exchanger, where they efficiently transfer heat while resisting corrosion and maintaining their structural integrity. Product parameters Material: Gr1 Applicable temperature: 300 Use environment: strong acid and alkali seawater regia, etc. Features 1. Excellent corrosion resistance. Due to the extremely strong corrosion resistance of titanium, titanium plates have excellent corrosion resistance under high temperature, high pressure and strong corrosive media, which can effectively protect equipment from media erosion. 2. Good physical properties. titanium plate has high strength and hardness, and has certain toughness and wear resistance, which can well withstand the working conditions of high temperature, high pressure and strong corrosion environment. 3. Excellent processing performance. Because sinteed titanium plate has good toughness and forgeability, it is easy to form and process, and can be specially processed according to specific needs. 4. Excellent thermal conductivity. Due to the high thermal conductivity of the titanium plate, heat can be quickly transferred out in a high temperature environment, thereby ensuring the efficient operation of the equipment.
Sintered titanium plates are widely used in heat exchangers due to their excellent thermal conductivity, corrosion resistance, and high-temperature stability. A heat exchanger is a device that transfers heat between two fluids or materials, typically one fluid is heated while the other is cooled. Sintered titanium plates can be used as the heat transfer medium in a heat exchanger, where they efficiently transfer heat while resisting corrosion and maintaining their structural integrity. Product parameters Material: Gr1 Applicable temperature: 300 Use environment: strong acid and alkali seawater regia, etc. Features 1. Excellent corrosion resistance. Due to the extremely strong corrosion resistance of titanium, sintered titanium plates have excellent corrosion resistance under high temperature, high pressure and strong corrosive media, which can effectively protect equipment from media erosion. 2. Good physical properties. Sintered titanium plate has high strength and hardness, and has certain toughness and wear resistance, which can well withstand the working conditions of high temperature, high pressure and strong corrosion environment. 3. Excellent processing performance. Because sintered titanium plate has good toughness and forgeability, it is easy to form and process, and can be specially processed according to specific needs. 4. Excellent thermal conductivity. Due to the high thermal conductivity of the sintered titanium plate, heat can be quickly transferred out in a high temperature environment, thereby ensuring the efficient operation of the equipment. Application of Sintered Titanium Plate in Heat Exchanger Chemical processing: Sintered titanium plates are commonly used in heat exchangers for chemical processing applications, such as in the production of acids, bases, and salts. Power generation: Sintered titanium plates are used in heat exchangers for power generation applications, such as in , where they transfer heat from the reactor core to the secondary coolant. Food processing: Sintered titanium plates are used in heat exchangers for food processing applications, such as in the pasteurization of milk and other dairy products. Industrial processes: Sintered titanium plates are used in heat exchangers for various industrial processes, such as in the cooling of gases and liquids in petrochemical plants, oil refineries, and other manufacturing facilities.
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Plates & Gaskets For Heat Exchanger 1.Raw material purchases from the same factory with famous brands like Alfa Laval, GEA, Funke etc. 2.Plates produced by precision molds and advanced press machine that detect & correct regularly. 3.Adpot same production and technology with Gislaved Gummi to ensure gasket quality. Plates material: SS304, SS316, SS316L, Titanium, Ti-Pd, Hastelloy-C276, Nickel, 254 SMO, 904L. Plates thickness: 0.5mm - 1.2mm Gaskets material: NBR, EPDM, HNBR, HT-NBR, HEPDM, VITON/FKM, FDA sanitary Hanging method: Glued, Hang on, Clip on, Snap in, Paraclip, Sonderlock. *Other materials may be available on request.
Grand Radiators & Heat-exchangersPvt. Ltd., (Grand) Vizag, india has established its operation right from its inception in 1992 with well-equipped latest in-plant facilities & qualified engineers in offering Quality, Economy & Delivery of electro chemical equipments, Engineering equipments and Turnkey Projects under single platform .With over 2 decades of manufacturing and design expertise, it has been providing various solutions in the following fields Chlor-alkali & Desalination application.Cathodic Protection (Impressed Current) - ICCPapplication.Semi-conductors, Anodizing & Metal Finishing application.Steel processing & pickling application.Instrumentation engineering application.Defense, Atomic, Aero & Space, & Ship Building application.,Electro-chlorination application.Chemical, Paper, Petrochemical & fertilizer application.By using...Inert metals of...Titanium, Tantalum, Niobium, Zirconium, Nickel & it''s alloys.Precious metal oxides of...Iridium, Ruthenium, Platinum, Tantalum, Palladium & etc.
Plate heat exchanger
Working Temperature - +200'C ~ - 200'C Max Pressure - up to 45 Bar Thickness - 0.3 mm SS316L, Cu - 99%; SS304 - optional