Gasketed Plate Heat Exchangers remain the workhorses of normal duty heat exchanger technology. Their intimate approach makes them able to extract the highest  possible amount of thermal energy from low-grade flows. This makes individualized plate heat exchanger solutions the prime strategy for facility energy conservation systems. Low hold-up volume and high heat transfer coefficients make for tightly controlled quick response.

Advanced plate designs and gasket compositions extend into duties that have been exclusively reserved for shell & tube units. 

Frames and Connections

Offering solid end frames that can be ASME Code stamped up to a design pressure of 27.56 barg (400 psig). ASA loose flange type nozzles as standard on reinforced end frames and studded port connections as standard on solid end frames. In addition, threaded pipe, sanitary and Victaulic connections are available.


The future of heat transfer technology rests largely with welded plate heat exchangers. Developments in thermal modeling, flow modeling, materials science and robotic welding have combined to accelerate the acceptance of these exchangers in a rapidly expanding list of retrofit and specified new duties.

Among the most exciting of new welded technologies are shell & plate units in a variety of sizes and configurations. Advanced engineering and quality construction make these units able to withstand thermal cycling and shock, pressure excursions and difficult flows without compromise. At the same time, they are reducing fuel consumption and lengthening maintenance cycles over longer life cycles than conventional heat exchangers can provide.

Plate Styles

There is a incedibly large range of plate styles with optimum flow configurations. With this design flexibility, we can accommodate individual process conditions better than any other brand of heat exchangers. When you furnish your application conditions, our applications engineers balance all constraints within our variety of tested designs. 

Pass Configurations

Most units are designed for a one pass/one pass flow arrangement resulting in all nozzles being installed on the stationary end frame; however, inserting one or more special turning plates within the plate pack makes possible multi-pass or multi-duty units.

Plate Materials and Gaskets

Plates can be produced in virtually any metal that can be cold-formed, including: stainless steels (304, 316, 317, etc.); titanium; Monel®; nickel; alloys 825, 20Cb-3, B-2 and C-276; and a variety of other materials. Plates are available in sizes ranging from 0.06 m2 (0.64 ft2) to 4.41 m2 (47.5 ft2) and in thicknesses from 0.4 mm (0.016 in.) to 1.0 mm (0.039 in.).

Quality compounded gasket materials include NBR, EPDM, Viton, Neoprene, Butyl, Hypalon, Teflon-encapsulated NBR and others, specified to match your process conditions, to maximum operating temperatures of 180°C (356°F).

Gasket Replacement?

Need a replacement Plate & Frame gasket? Let us help you find it. 

CALL NOW: 905 831-4963

Service Regions

Woodbridge Whitchurch-Stouffville Whitby Vaughan
Uxbridge Unionville Toronto Thorn Hill
Richmond Hill Pickering  Peterborough Oshawa
Oakville   North York  Newmarket Mississauga
 Milton Scarborough   Markham King
 Hamilton  Etobicoke  Cambridge Burlington
Brampton Barrie Aurora Ajax
Toronto Region Toronto GTA St. Catherines Welland
Guelph Brantford Kitchener Waterloo
Stratford London Leamington St. Thomas


EPDM rubber (ethylene propylene diene M-class rubber), a type of synthetic rubber, is an elastomer which is characterized by wide range of applications.The E refers to Ethylene, P to Propylene, D to diene and M refers to its classification in ASTM standard D-1418.

Replacement Gaskets for these manufacturer's and more!

Alfa-Laval | APV | APV-Pasilac | Barriquand | Corblin | Fischer | GEA Ahlborn | Hisaka | Nagema | Reheat | Schmidt | Silkeborg | Sondex | Sordi | Stork | Tetra Pak  | Tetra Plex | Tranter | Vicarb ... and more, just ask!

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