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WORM GEAR SCREW JACK
COLUMN LOADING, MOUNTING CONDITION & LIFE EXPECTANCY
INCH WORm GEAR SCREW JACKS METRIC WORm GEAR SCREW JACKS
HOW TO USE THESE JACK CHARTS

Column strength is the ability of the lift shaft to hold compressive loads without buckling. With longer screw lengths, column strength may be substantially lower than nominal jack capacity.

If the lift shaft is in tension only, the screw jack travel is limited by the available screw material or by the critical speed of the screw. Refer to the screw technical sections for critical speed limitations. If there is any possibility for the lift shaft to go into compression, the application should be sized for sufficient column strength.

  • Charts are used to determine the required jack size in applications where the lift shaft is loaded in compression. To use this chart:
  • Determine the mounting condition and mark a point on the “Maximum length” line.
  • Mark a point on the “Load” line, applying an appropriate design factor.
    CAUTION: chart does not include a design factor.
  • Draw a line connecting the two marked points. Select a jack above the point where the line drawn crosses the “Jack Sizes” line.

The chart assumes proper jack alignment with no bending loads on the screw. Effects from side loading are not included in this chart. Jacks operating horizontally with long lift shafts can experience bending from the weight of the screw. Consult Nook Industries, Inc. if side thrust is anticipated, operating horizontally, or maximum raise is greater than 30 times the screw diameter.

AVAILABLE LIFT SCREW LENGTHS As a major manufacturer of industrial ball, acme and lead screws, Nook Industries stocks a broad selection of screws. Nook Industries has the capacity to make long screws for special applications. Rotating screw jacks can be built with a larger diameter lift shaft for greater column strength or a different lead to change the jack operating speed.

INCH BALL SCREW AND MACHINE SCREW JACK CHARTS

INCH BALL SCREW JACK
COLUMN LOAD & MOUNTING CONDITION

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INCH BALL SCREW JACk LIFE EXPECTANCY

The following Chart provides the minimum life expectancy in total inches of travel for the ball screws.

LEAD ACCURACY
The rolled thread ball screw, as employed in ActionJac™ products, is held within ±0.004" per foot cumulative from nominal dimension. Lift Shafts can be matched to within ±0.002" per foot when ordered as matched sets. Special ground threads having lead accuracies of ±0.0005" per foot can be provided.

BACKLASH
Axial backlash ranges from 0.005" to 0.012". Specify optional selective fit lift shaft for 0.003" to 0.005" backlash.

MATERIAL HARDNESS
Ball screws have a race hardness of Rockwell C 58 minimum. Core hardness will run from Rc 20 to 35.

NOTES: Refer to Lubrication Instructions in order to obtain maximum life from ball screw assemblies. These values may be greatly reduced if the units are subjected to misalignment, shock loads, side thrust, contamination or lack of proper lubrication and maintenance.


INCH MACHINE SCREW JACK
COLUMN LOAD & MOUNTING CONDITION

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INCH STAINLESS STEEL JACK
COLUMN LOAD & MOUNTING CONDITION

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METRIC BALL SCREW AND TRAPEZOIDAL SCREW JACK CHARTS

METRIC BALL SCREW JACK
COLUMN LOAD & MOUNTING CONDITION

The following Chart provides the minimum life expectancy in total inches of travel for the ball screws.

LEAD ACCURACY
The metric rolled thread ball screw, as employed in ActionJac™ products, is held within .1mm per 300 mm cumulative from nominal dimension. Jacks can be matched to within ±.05mm per 300mm when ordered as matched sets. Special ground threads having lead accuracies of .013mm per 300mm can be provided if necessary.

BACKLASH
Axial backlash ranges from 0.2 to 0.5 mm. Specify optional selective fit lift shaft for 0.13 to 0.2mm backlash.

MATERIAL HARDNESS
Ball screws have a race hardness of Rockwell C 58 minimum. Core hardness will run from Rc 20 to 35.

NOTES: Refer to Lubrication Instructions in order to obtain maximum life from ball screw assemblies. These values may be greatly reduced if the units are subjected to misalignment, shock loads, side thrust, contamination or lack of proper lubrication and maintenance.

METRIC BALL SCREW LIFE EXPECTANCY

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METRIC TRAPEZOIDAL JACK
COLUMN LOADING & MOUNTING CONDITION

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