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BERYLLIUM STABLE PLATFORM for INERTIAL NAVIGATION AND GUIDANCE SYSTEMS 3/27/2015 Don Blanchet 3B Associates 339-234-3544 For Reference only
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Stable platform inertial guidance

Apr 14, 2017

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Engineering

Don Blanchet
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Page 1: Stable platform inertial guidance

BERYLLIUM STABLE PLATFORMfor

INERTIAL NAVIGATION ANDGUIDANCE SYSTEMS

3/27/2015Don Blanchet3B Associates339-234-3544

ForReference

only

Page 2: Stable platform inertial guidance

GOAL Compute the mechanical stiffness

of a candidate inertial platform design using finite element analysis

Loading is 20G steady state

Triad compensation can be estimated

Page 3: Stable platform inertial guidance

Design – 14 inch Beryllium cube

Weight 70 lbs

Page 4: Stable platform inertial guidance

Design cross section

Page 5: Stable platform inertial guidance

FEA mesh – 10 node tetras

Page 6: Stable platform inertial guidance

FEA mesh – 10 node tetras

Page 7: Stable platform inertial guidance

Mechanical properties

Page 8: Stable platform inertial guidance

Results deformation UX

Page 9: Stable platform inertial guidance

Results deformation UY

Page 10: Stable platform inertial guidance

Results deformation UZ

LoadDirection Y

Page 11: Stable platform inertial guidance

Results summary

Platform axis Acceleration deflection, inches

X .0000008009

Y .0000039840

Z .0000003582

Page 12: Stable platform inertial guidance

Footnote Automatic meshing compute time

approximately 20 Seconds

1974 manual meshing time 4 months

Page 13: Stable platform inertial guidance

1974 Mainframe