Range of wall mounted, manually operated, blending valves with (brass bodies - various finishes), incorporating a ceramic cartridge headwork with single lever operating member. The inlets incorporate stainless steel strainers and approved check valve cartridges, however, the complete product has not been fully tested to demonstrate it provides backflow protection. Maximum working pressure 5.0 Bar.
Non-metallic materials and components comply with BS6920 at 60°C
Range of T-type thermostatic blending valves with chromium plated brass bodies. Temperature is controlled via a thermostatic cartridge. Compression fitting connection to be used with copper pipe to BS EN1057 only. Maximum working pressure 10 bar. Maximum operating temperature 85°C except for models CORETMV015MX & CORETMV022MX both 60°C
Range of concealed, wall mounted, thermostatic blending valves, (brass bodies, chrome trim sets). The products consist of two-way diverter cartridges and a thermostatic cartridges. All models incorporate approved check valve cartridges, however, the complete product has not been fully tested to demonstrate it provides backflow protection. Maximum working pressure 10 bar.
Non-metallic materials and components comply with BS6920 at 65°C
Wall mounted, exposed, thermostatic shower mixing valve (black plated brass). The products incorporate a ¼ turn ceramic disc. Temperature is controlled independently via a thermostatic cartridge with a manual override button. The products have a dome type operating member. Each inlet incorporates a combined EPDM washer and stainless steel strainer and an approved check valve cartridge, however, the complete product has not been fully tested to demonstrate it provides backflow protection. Maximum working pressure 6.0 bar. Maximum operating temperature 65°C.
Range of wall mounted thermostatic bar shower mixers, (chrome plated brass bodies), incorporating half turn ceramic disc headwork with a single lever operating member. The temperature is controlled independently via a thermostatic cartridge with a single lever operating member that incorporates a manual override button. The inlets incorporate approved single check valve cartridges, however, the complete product has not been fully tested to demonstrate it provides backflow protection with stainless-steel strainers. The products are supplied with shower kits that consist of a shower hose, handset and riser rail assembly. Maximum working pressure 10.0Bar Maximum operating temperature 60°C.
Range of T-type thermostatic mixing valves with brushed chrome plated DZR brass bodies. Each inlet incorporates a check valve cartridge, verified by test (suitable for backflow protection against Fluid Category 2) and stainless-steel strainers. Compression connections are for use with copper pipe (manufactured to BS EN1057). Maximum working pressure 10.0 bar.
Non-metallic materials and components comply with BS6920 at 85°C
Range of wall mounted, concealed thermostatic blending valves (brass bodies - various finishes), incorporating a non-rising spindle headwork controlling the flow and a manual diverter directing the flow between multiple shower outlets using single lever operating members. Temperature is controlled independently via a thermostatic cartridge with a dome type operating member that incorporates a manual override button. The inlets incorporate stainless-steel strainers and an approved single check valve cartridge however, the complete assembly has not been fully tested to demonstrate that it provides backflow protection. Maximum working pressure 10.0 bar.
Non-metallic materials and components comply with BS6920 at 60°C
Range of wall mounted thermostatic bar shower mixers (brass bodies – various finishes). Incorporating quarter turn ceramic disc headwork controlling the flow with a dome type operating member. The temperature is controlled independently via a thermostatic cartridge with a dome type operating member incorporating a manual override button. The inlets incorporate stainless steel strainers and approved check valve cartridges, however, the complete product has not been fully tested to demonstrate it provides backflow protection. Maximum working pressure 5.0 Bar
Non-metallic materials and components comply with BS6920 at 60°C
Range of lugged and wafer type butterfly valves with blue epoxy coated bodies, incorporating EPDM rubber ‘O’-rings and seat, and either a bronze (AB2), stainless steel (CF8 & CF8M) or blue epoxy coated or nickel plated, ductile iron (DI) disc. Maximum working pressure 25.0 bar. Maximum operating temperature 85°C.
Range of wafer and lugged butterfly valves with blue epoxy coated ductile iron bodies and stainless steel disc. DN50-DN300 are lever operated and DN350 – DN600 are handwheel operated. Maximum working pressure 16.0 bar.
Non-metallic materials and components comply with BS6920 at 85°C
Range of butterfly valves incorporating blue epoxy coated ductile iron bodies and discs, incorporating EPDM seats. Maximum working pressure 16.0 bar. Maximum operating temperature 85°C.
Range of double flanged, handwheel operated butterfly valves with blue epoxy coated ductile iron bodies, incorporating either stainless-steel or blue epoxy coated ductile iron discs and EPDM seals. Maximum working pressure 16.0 Bar (DN50 to DN300) or 10.0 Bar (DN350 to DN2000) Maximum operating temperature 23.0°C
Range of butterfly valves with blue epoxy coated ductile iron bodies and stainless-steel discs incorporating EPDM rubber seats. (DN40 - DN200) incorporate a lever type operating member and (DN250 – DN500) incorporates a hand wheel type operating member. Maximum working pressure - 16 Bar.
Non-metallic materials and components comply with BS6920 at 85°C
Range of wafer lugged and double flanged butterfly valves with blue epoxy coated ductile iron bodies, stainless steel discs and EPDM seats. The valves can either be lever, wheel or gear operated via a handwheel. Maximum working pressure 16.0 Bar
Non-metallic materials and components comply with BS6920 at 65°C
Range of deck mounted flow control valves (brass bodies - various finishes) incorporating a quarter turn ceramic disc headwork with either a single lever (V7K42-L models) or cross top (V7K42-X models) operating member. Maximum working pressure 5.0 Bar.
Non-metallic materials and components comply with BS6920 at 60°C
Range of spring loaded, non-return valves with ductile iron bodies (blue epoxy powder coated) with stainless steel discs, springs and shafts and EPDM seat. Maximum working pressure 25.0 bar. Maximum operating temperature 85°C.
Non-metallic materials and components comply with BS6920 at 85°C
Range of pilot operated pressure reducing valves with blue epoxy coated ductile iron bodies. The valves have an adjustable pressure reducing facility controlled via a pilot valve (with an operating range of 1 to 6 bar), with auxiliary components including stainless steel tubing, fittings and spherical valves. Maximum working pressure 16.0 bar. Maximum operating temperature 23°C.
Range of bronze swing gate valves with bronze bodies and discs (with a metal-to-metal seal). Maximum working pressure 20.0 Bar.
Non-metallic materials and components comply with BS6920 at 85°C
Range of spherical valves incorporating DZR brass (CORE 171 AC) or nickel-plated brass (CORE 800 ) bodies and chromium plated brass balls. For use with copper to BS EN 1057. Maximum working pressure 25.0 bar. Maximum operating temperature 85°C.
Range of in-line lever or screwdriver operated spherical valves with DZR brass bodies (nickel plated) and brass balls (chromium plated), EPDM ‘O’-rings and PTFE seats. The ball can incorporate a plastic flow regulator, or a stainless-steel strainer (within a plastic housing) inserted through the side port. Compression models are for use with copper pipe (manufactured to EN 1057). Maximum working pressure 16.0 bar. Maximum operating temperatures: Spherical valves only and those incorporating a stainless-steel strainer: 85°C. Spherical valves incorporating a plastic flow regulator: 60°C.
Page 370 of 555
We use cookies to give you the best possible experience with WRAS. Some are essential to provide website functions and ensure the website is secure. We also use cookies to help us understand how people use the site and to make improvements. Click "Accept All" to enable recommended settings or click "Manage cookies" to adjust your settings. For more details, see our Cookie Policy.