apps-dso.sws.iastate.edu · web viewradius of gyration: kx= i xx /a ky= i y /a polar moment of...

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Page 1: apps-dso.sws.iastate.edu · Web viewradius of gyration: kx= I XX /A ky= I y /A polar moment of inertia: J= I xx + I yy
Page 2: apps-dso.sws.iastate.edu · Web viewradius of gyration: kx= I XX /A ky= I y /A polar moment of inertia: J= I xx + I yy

Find force in member EF, HI

Page 3: apps-dso.sws.iastate.edu · Web viewradius of gyration: kx= I XX /A ky= I y /A polar moment of inertia: J= I xx + I yy
Page 4: apps-dso.sws.iastate.edu · Web viewradius of gyration: kx= I XX /A ky= I y /A polar moment of inertia: J= I xx + I yy

Moment of Inertia

Page 5: apps-dso.sws.iastate.edu · Web viewradius of gyration: kx= I XX /A ky= I y /A polar moment of inertia: J= I xx + I yy

Parallel Axis Theorem: IXX=I X+A dy2 I yy=I y+Adx

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IX : From the table in the back of your textbookdx ,dy❑ :Distance between centroid of the part and the centroid of the whole object

Shape Area IX I y dx dy Adx2 Ady2

Rectangle ab 112bh3 1

12hb3 = |x−xc| = |y− yc|

Circle π r2 14πr 4 1

4πr 4

Triangle 12bh

136bh3 1

36hb3

Sum up the total values and apply into the equations: IXX=I X+A dy2 I yy=I y+Adx

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radius of gyration: kx=√❑ ky=√❑ polar moment of inertia: J=I xx+ I yy

Page 6: apps-dso.sws.iastate.edu · Web viewradius of gyration: kx= I XX /A ky= I y /A polar moment of inertia: J= I xx + I yy