composite golf shaft

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Composite Golf Shaft AerE 423 Ehrich Rodgers and Nick Williams

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Composite Golf Shaft. AerE 423 Ehrich Rodgers and Nick Williams. Background. -Golf shafts provide a way for the golfer to generate force on the golf ball -To do this the golfer’s hands provide a force on one end while the golf ball provides a force on the other end - PowerPoint PPT Presentation

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Page 1: Composite Golf Shaft

Composite Golf Shaft

AerE 423 Ehrich Rodgers and Nick Williams

Page 2: Composite Golf Shaft

Background-Golf shafts provide a way for the golfer to generate

force on the golf ball-To do this the golfer’s hands provide a force on one

end while the golf ball provides a force on the other end

-The dimensions below are common among clubs that conform with USGA rules, specifically a driver

Page 3: Composite Golf Shaft
Page 4: Composite Golf Shaft

Preliminary Analysis-The composite golf shaft is modeled as a cantilever

beam with a circular cross-section-The model uses a conservative cross-sectional radius

that is equal to the average of the butt radius and tip radius.

L = 35 in

FMAX

-Design criteria for FMAX = 4000 lbs

Page 5: Composite Golf Shaft

Manufacturing1. Construct a mold2. Laid 9 layers fiberglass onto mold3. Laid 1 layer a carbon fiber on top of fiberglass4. Apply epoxy to outside 5. Lay out to cure

Page 6: Composite Golf Shaft

Manufacturing1. Construct a mold

Page 7: Composite Golf Shaft

Manufacturing2. Laid 9 layers of fiberglass onto mold3. Laid 1 layer of carbon fiber onto fiberglass

Page 8: Composite Golf Shaft

Manufacturing

Page 9: Composite Golf Shaft

Manufacturing

Page 10: Composite Golf Shaft

Manufacturing4. Apply epoxy to outside

Page 11: Composite Golf Shaft

Manufacturing5. Lay out to cure

Page 12: Composite Golf Shaft

TestingTest for bending stiffness and vibrationTest for maximum bending moment (failure)

Page 13: Composite Golf Shaft

Future ConsiderationsFind a better way to lay the fibers around the moldUse pre-preg and a larger autoclave to cure