Spindle Shaft

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(Difference between revisions)
(Spindle Shaft Design, 7th April)
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* Developed a model to predict the peak cutting force and shaft torque
* Developed a model to predict the peak cutting force and shaft torque
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* Wrote a [http://web.mit.edu/mmcbrien/Public/2-72/Spindle/shaft_stress_slope.m matlab tool] to determine peak forces and bending moments in spindle
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* Wrote a [http://web.mit.edu/mmcbrien/Public/2-72/Spindle/shaft_stress_slope.m matlab tool] to determine peak forces and bending moments in spindle shaft and bearings
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shaft and bearings
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* Wrote a [http://web.mit.edu/mmcbrien/Public/2-72/Spindle/bearings.m matlab tool] to specify bearing from cutting force, torque, and desired life and reliability (via the Weibull Equation)
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* Wrote a [http://web.mit.edu/mmcbrien/Public/2-72/Spindle/bearings.m matlab tool] to specify bearing from cutting force, torque, and desired life
+
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and reliability (via the Weibull Equation)
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* Specified a collet from sheets provided in lab
* Specified a collet from sheets provided in lab
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* Used results from above tools and supplied lathe solid model to specify shaft
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* Used results from above tools and supplied lathe solid model to specify shaft dimensions:
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dimensions.
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** 30 mm shaft outer diameter, 50mm diameter for center section
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** 30 mm shaft outer diameter, 50mm diameter for centre section
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** 10 mm inner diameter
** 10 mm inner diameter

Revision as of 18:48, 10 April 2007

Spindle Shaft Design, 7th April

  • Developed a model to predict the peak cutting force and shaft torque
  • Wrote a matlab tool to determine peak forces and bending moments in spindle shaft and bearings
  • Wrote a matlab tool to specify bearing from cutting force, torque, and desired life and reliability (via the Weibull Equation)
  • Specified a collet from sheets provided in lab
  • Used results from above tools and supplied lathe solid model to specify shaft dimensions:
    • 30 mm shaft outer diameter, 50mm diameter for center section
    • 10 mm inner diameter
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