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ADVANCED MECHANICAL DRAFTING LECTURE #10

ADVANCED MECHANICAL DRAFTING LECTURE #10. RUNOUT CIRCULAR RUNOUT TOTAL RUNOUT

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Page 1: ADVANCED MECHANICAL DRAFTING LECTURE #10. RUNOUT CIRCULAR RUNOUT TOTAL RUNOUT

ADVANCED MECHANICAL DRAFTING

LECTURE #10

Page 2: ADVANCED MECHANICAL DRAFTING LECTURE #10. RUNOUT CIRCULAR RUNOUT TOTAL RUNOUT

RUNOUT

CIRCULAR RUNOUT

TOTAL RUNOUT

Page 3: ADVANCED MECHANICAL DRAFTING LECTURE #10. RUNOUT CIRCULAR RUNOUT TOTAL RUNOUT

RUNOUT feature control frames

RUNOUT FRAMESALWAYS CONTAIN:

• Geometric Characteristic Symbol

• Tolerance zone thickness

• Datum reference

RUNOUT FRAMESNEVER CONTAIN:

• Diameter Symbol

• Material Condition modifier

Page 4: ADVANCED MECHANICAL DRAFTING LECTURE #10. RUNOUT CIRCULAR RUNOUT TOTAL RUNOUT

RUNOUT tolerance zone shapes

RUNOUT

Area between twoconcentric circles

TOTAL RUNOUT

Volume between twoconcentric cylinders

Zone size is thickness of band of tolerance

Page 5: ADVANCED MECHANICAL DRAFTING LECTURE #10. RUNOUT CIRCULAR RUNOUT TOTAL RUNOUT

APPLICATION OF RUNOUT

Rotate Part

.002 tolerance zone over entire surface

DRAWING

DATUM AXIS A

DATUM PLANE B

INTERPRETATION

Page 6: ADVANCED MECHANICAL DRAFTING LECTURE #10. RUNOUT CIRCULAR RUNOUT TOTAL RUNOUT

APPLICATION OF RUNOUT

Rotate Part

DRAWING

DATUM AXIS A

DATUM PLANE B

INTERPRETATION

.005 tolerance zone at each circular element

Page 7: ADVANCED MECHANICAL DRAFTING LECTURE #10. RUNOUT CIRCULAR RUNOUT TOTAL RUNOUT

APPLICATION OF RUNOUT

Rotate Part

DRAWING

DATUM AXIS A

DATUM PLANE B

INTERPRETATION

.005 tolerance zone over entire surface

Page 8: ADVANCED MECHANICAL DRAFTING LECTURE #10. RUNOUT CIRCULAR RUNOUT TOTAL RUNOUT

COMPOUND DATUMS• Allow two different features to act as one

datum

• Both serve as one datum, neither is primary nor secondary with respect to the other

Page 9: ADVANCED MECHANICAL DRAFTING LECTURE #10. RUNOUT CIRCULAR RUNOUT TOTAL RUNOUT

FORGING

• Forging processes– Hammer – swords, horseshoes, etc.– Drop – tools, coins, etc.– Press – same as drop without hard impact– Rolling – plate steel, sheet metal– Upset – fastener heads, spark plug ends, etc.– Extrusion – window frames, wire, etc

Any process which shapes solid metal without cutting

Page 10: ADVANCED MECHANICAL DRAFTING LECTURE #10. RUNOUT CIRCULAR RUNOUT TOTAL RUNOUT

FORGING CONSIDERATIONS

• No tight tolerances• Hot or cold• Mismatch must be controlled• No sharp corners• Draft angles required in deep molds• Phantom lines show chip (areas that

must be machined later)• May require two drawings (forging &

machining)

Page 11: ADVANCED MECHANICAL DRAFTING LECTURE #10. RUNOUT CIRCULAR RUNOUT TOTAL RUNOUT

KNURLING – a forging process• Straight knurl

– Increases effective shaft diameter– Used to create a press fit

Page 12: ADVANCED MECHANICAL DRAFTING LECTURE #10. RUNOUT CIRCULAR RUNOUT TOTAL RUNOUT

Dimensioning the Straight Knurlper ANSI Y14.5

PITCH 96 STRAIGHT KNURL Ø.512 MIN AFTER KNURLING

Ø.50BEFORE KNURLING

.62 FULL KNURL

Page 13: ADVANCED MECHANICAL DRAFTING LECTURE #10. RUNOUT CIRCULAR RUNOUT TOTAL RUNOUT

KNURLING – a forging process• Raised Diamond knurl

– Provides gripping surface– 4 sizes available

• DP 160 – very fine knurl• DP 128 – fine knurl• DP 96 – medium knurl• DP 64 – coarse knurl

– Pitch 96 most common

Page 14: ADVANCED MECHANICAL DRAFTING LECTURE #10. RUNOUT CIRCULAR RUNOUT TOTAL RUNOUT

Dimensioning theRaised Diamond Knurl

per ANSI Y14.5

PITCH 96 RAISED DIAMOND KNURL

Ø.50

.62 FULL KNURL

.25

Page 15: ADVANCED MECHANICAL DRAFTING LECTURE #10. RUNOUT CIRCULAR RUNOUT TOTAL RUNOUT

Application to GSK

Page 16: ADVANCED MECHANICAL DRAFTING LECTURE #10. RUNOUT CIRCULAR RUNOUT TOTAL RUNOUT

GSK DESIGN