PVC Pipe Fittings
Charlotte PVC 02301 0600, 1/2 in nominal, Socket x FNPT end style, SCH 40, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02300 3600, 3/4 x 1/2 in nominal, Socket end style, SCH 40, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02300 2000, 4 in nominal, Socket end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02300 1800, 3 in nominal, Socket end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02300 1400, 1-1/2 in nominal, Socket end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02300 1200, 1-1/4 in nominal, Socket end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02300 0800, 3/4 in nominal, Socket end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02300 0600, 1/2 in nominal, Socket end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02118 1800, 2 in nominal, Spigot end style, SCH 40, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02118 1200, 1 in nominal, Spigot end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02118 0800, 1/2 in nominal, Spigot end style, SCH 40, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02117 1800, 2 in nominal, FNPT end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02117 1600, 1-1/2 in nominal, FNPT end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02117 1400, 1-1/4 in nominal, FNPT end style, SCH 40, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02117 1200, 1 in nominal, FNPT end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02117 1000 2117, 3/4 in nominal, FNPT end style, SCH 40, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02117 0800, 1/2 in nominal, FNPT end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02116 2000, 4 in nominal, Socket end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02116 1800, 3 in nominal, Socket end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02116 1600, 2 in nominal, Socket end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02116 1400, 1-1/2 in nominal, Socket end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02116 1200, 1-1/4 in nominal, Socket end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02116 1000, 1 in nominal, Socket end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
Charlotte PVC 02116 0800, 3/4 in nominal, Socket end style, SCH 40/STD, PVC, Domestic
PVC Schedule 40 fitting that is for pressure systems where temperatures will not exceed 140° F. They are highly resilient, with high-tensile and high-impact strength. PVC Schedule 40 has better sound deadening qualities than
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Gates® Power Transmission Hi-Power® II B99 Banded Heavy Duty V-Belt, B Section, 21/32 in W Top, 102 in L Outside, 13/32 in THK, EPDM
The wrapped classical section Hi-Power™ V-belt has a long reputation for reliability on agricultural and industrial applications. The arched top of the Hi-Power belt provides superior strength to prevent "dishing" and distortion of the tensile section. The cords are properly aligned, each of them carrying its full share of the load.
Gates® Power Transmission Polyflex® 11M2180 Light Duty V-Belt, 11M Section, 7/16 in W Top, 85.83 in L Outside, 9/32 in THK, High Modulus Polyurethane
Developed by Gates and produced to patented manufacturing processes, these belts provide more load-carrying capacity at higher speeds to small multiple V-belt precision drives. This results in significant cost savings and improved design freedom.