JET® JT9-453317 JHJ Heavy Duty Hydraulic Bottle Jack, 17.5 ton Load, 10-3/8 in H Min, 20 in H Max, 6-1/2 in, 3-1/8 in L Screw
JET®JHJ series hydraulic bottle jacks have capacities from 2 to 100 tons and are available in standard and low profile heights. The pump piston and ram are chrome plated for added corrosive resistance increasing durability. Each JHJ model functions in upright, angled or horizontal positions for increased versatility.
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BrandJET®
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UPC662755103162
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Manufacturer Part NumberJT9-453317
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CountryUSA
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Load Capacity17.5 ton
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Piston Stroke6-1/2 in
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Maximum Height20 in
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Minimum Height10-3/8 in
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TypeHeavy Duty
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Screw Length3-1/8 in
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SeriesJHJ
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Base Length7-1/8 in
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Base Width4-5/8 in
- Precision machined and polished cylinders provide non-abrasive, leak-free, durable performance
- Heavy duty bases are electrically welded providing a stable platform
- Hydraulic system is protected from damage by internal by-pass mechanism
- Chrome plated piston and ram are corrosion resistant for use in any industrial environment
- Industrial duty construction permits use in extreme climates
- Upright, horizontal or angled operating positions increase versatility
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Alternative Part Number453317
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UNSPSC24101612
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IncludesPump Handle
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Standards/ApprovalsANSI/ASME B30.1|PALD-1
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Specification Sheet
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Owners/User Manual
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JET® JT9-453317 JHJ Heavy Duty Hydraulic Bottle Jack, 17.5 ton Load, 10-3/8 in H Min, 20 in H Max, 6-1/2 in, 3-1/8 in L Screw
JET®JHJ series hydraulic bottle jacks have capacities from 2 to 100 tons and are available in standard and low profile heights. The pump piston and ram are chrome plated for added corrosive resistance increasing durability. Each JHJ model functions in upright, angled or horizontal positions for increased versatility.
JET® JT9-441310 SJ Series Heavy Duty Screw Jack, 10 ton Load, 11-1/2 in H Min, 17-13/16 in H Max, 8-5/16 in L Screw
Jet® SJ series screw jack is available in five capacities ranging from 5 to 25 tons that hold the load without creeping. The cast bell shaped housing provides stability while the jack design requires less effort to raise the load increasing productivity.

