Specifications
Dimensions
- Angle30 °
- Dash Size24
- End 1 Size1.5000 in
- End 2 Size1.5000 in
- End Size/Type24FLC
- Flange Diameter2.5000 in
- Flange Thickness0.5600 in
- Hose Cut-Off Factor5.4920 in, 139.50 mm
- Hose Dash Size24
- Hose Diameter1.5000 in
- Hose Inside Diameter1-1/2 in
- Inside Diameter1.5000 in, 38.10 mm
- Length9.2520 in
- SAE Size-24
- Size1.5000 in
- Thread Size#24 Code 62 O-Ring Caterpillar Flange
- Weight4.63 lbs
Details
- Additional DetailsAs mobile equipment platforms become more compact and powerful, they require larger diameter hydraulic hose with higher working pressures to meet performance demands. Large equipment used in industries like mining, oil and gas, and construction are pushing current hose size and pressure limits. To meet this demand, Gates introduces an industry first: the 32GSM no-skive coupling.
- CoatingTuffCoat™
- ConfigurationBent Tube
- Connection 1 Short NameBarbed
- Connection 2 Short NameFlanged
- Connection TypeFlange Head
- Country of OriginUS
- End 1 StyleFlange Head
- End GenderFlange
- End Type 1FLC
- Fitting Connection FamilyCode 62 Flange
- Fitting Shape30° Bent Tube 23mm Drop
- Fitting TypeFlange - Code 62 Caterpillar
- For Use WithEFG6K - SAE 100R15, EFG5K - SAE 100R13
- Manufacturer Catalog Number24GSM-24FLC30-023 XBULK
- Manufacturer CompatibilityGates GlobalSpiral
- Manufacturer Upc Number770075414254
- MaterialSteel
- O-Ring LocationFlange Face
- Product TypesCoupling
- Seal TypeO-Ring
- Standards MetSAE J1459, SAE J2432, SAE J1596
- Style30 °Elbow
- SwivelNo
- Thread StandardGSM
- Thread TypeFlange Head
- TypeCode 62 Flange
- UPC_NO770075414254
Overview
Mfr description
24GSM-24FLC30-023XBULK
- Greater power and capacity from existing equipment by replacing 2 in; , 5000 psi hose assemblies; A flexible, easier-to-route hose assembly to replace 2 in; rigid pipe on crowded equipment platforms; A stem machined from a single piece of solid steel for greater strength and integrity; A no-skive design requiring no special equipment and skills, reducing the risk of blow-offs or leaks;