LS-050-80 BANJO ½" X ½" Y Strainer With 80 Mesh Stainless Steel Screen
Maximum operating pressure 225 psi
Clean-out plug.
Corrosion resistant.
Easy grip end cap.
EPDM gaskets.
Female NPT &mdash: Female NPT.
Fiberglass reinforced.
Heavy duty end cap threads.
Lightweight.
Poly ribbed 316 stainless steel screen.
Precision molded construction.
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LS-050-80 BANJO ½" X ½" Y Strainer With 80 Mesh Stainless Steel Screen
Maximum operating pressure 225 psi
Clean-out plug.
Corrosion resistant.
Easy grip end cap.
EPDM gaskets.
Female NPT &mdash: Female NPT.
Fiberglass reinforced.
Heavy duty end cap threads.
Lightweight.
Poly ribbed 316 stainless steel screen.
Precision molded construction.
Excellent chemical resistance.
Glass reinforced polypropylene.
Heavy duty (Schedule 80).
Lightweight with excellent strength.
NPT threads.
Maximum operating pressure 300 psi
BANJO E-L200-90 1" POLY PIPE ELBOW 90 DEGREE POLYPROPYLENE PIPE ELBOW 22" NPT FEMALE
90-DEGREE ELBOW FOR CONNECTING TWO PIPES OR FITTINGS AT AN ANGLE. FEMALE NOT THREADS FOR CONNECTING TO MALE NOT THREADED PIPES. PRECISION MOLDED IN STERILIZABLE POLYPROPYLENE FOR DIMENSIONAL STABILITY AND REINFORCED WITH FIBERGLASS FOR ADDED DURABILITY, STRENGTH, AND CHEMICAL RESISTANCE. HANDLES PRESSURES UP TO 150 PSI AT 70- DEGREES F.
-BAJEL20090 >
Banjo 1 inch Mpt x 1/8 inch Female, Polypropylene Thread Red Bushing
Browning® 1006113 Type D Arm Multiple Sheave, 1/2 to 2-15/16 in QD® Bore, 10.9 in OD, 2 Grooves, 10.9 in Dia Pitch, 2-1/4 in W Face
Browning® offers an extensive multi-groove sheave offering. This includes Browning® Split-Taper® and QD® bushing designs. This means maximum economy and versatility for your application. Truly the right drive every time our exclusive B5V® sheaves have a patented design that offers 5V horsepower in the economy of a B section sheave. B5V® sheaves serve 90% of all applications from 10 to 150 hp. This can reduce cost up to 40% over traditional designs.
Synchronous belt drives help reduce the problems of slippage, belt stretch, lubrication and metal to metal contact. They provide superior performance because power is transmitted by positive engagement of belt teeth rather than by friction, as in conventional belt drives.

