subject
Engineering, 14.12.2019 03:31 jiskd

The torque vs. time curve for a particular mechanical actuation system can be modeled as an offset sin wave with an average torque of 150 n-m, an amplitude of 50 n-m, and a period of 0.5 second. if the nominal speed of the input shaft is 3,000 rpm, determine the mass moment of inertia of the flywheel needed to reduce peak motor torque significantly while limiting the coefficient of fluctuation to no more than 0.05. assume the flywheel will be mounted on the 10 mm diameter input shaft of the motor, and the motor inertia can be ignored.
once you determine the required mass moment of your flywheel, design the flywheel and create a standard engineering drawing with 3'' angle orthographic views that also include an isometric view in the upper right corner of the drawing. submit a fully dimensioned engineering drawing hardcopy, along with a printout confirming your mass properties of the flywheel computed using solidworks. upload your solidworks solid model file to canvas.
extra credit: use standard gd& t callouts, symbols and datums on your engineering drawing to insure the concentricity and parallel requirements will be met when machined. all gd& t tolerances should be 0.01 mm. also, include a standard keyway in the flywheel for the bore specified.

ansver
Answers: 3

Another question on Engineering

question
Engineering, 03.07.2019 14:10
Amass of 1.5 kg of air at 120 kpa and 24°c is contained in a gas-tight, frictionless piston-cylinder device. the air is now compressed to a final pressure of 720 kpa. during the process, heat is transferred from the air such that the temperature inside the cylinder remains constant. calculate the boundary work input during this process.
Answers: 2
question
Engineering, 04.07.2019 18:10
The drive force for diffusion is 7 fick's first law can be used to solve the non-steady state diffusion. a)-true b)-false
Answers: 1
question
Engineering, 04.07.2019 19:10
10 kg of co2 is initially contained at 400 kpa and 300 k. the gas constant for carbon dioxide is 189 j/lkg k) and has a specific heat ratio, k, of 1.289. isentropic expansion then occurs until the pressure is 200 kpa. a) determine the initial volume of co2 in m. b) determine the final temperature in k. c) determine the work done by the system during the expansion kl.
Answers: 2
question
Engineering, 04.07.2019 19:10
The sum of the normal stresses does not change as the stress state rotates through an angle. a)-trune b)- false
Answers: 2
You know the right answer?
The torque vs. time curve for a particular mechanical actuation system can be modeled as an offset s...
Questions
question
Mathematics, 17.10.2020 14:01
question
Mathematics, 17.10.2020 14:01
question
English, 17.10.2020 14:01
Questions on the website: 13722367