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Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value...

Date post: 19-Dec-2015
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Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving parts or tools any more than necessary One metal machining batch factor: 95% of a parts time is spent moving or waiting, 5% of time is on tool, of which only 30% is spent cutting.
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Page 1: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Generating Motion

• Moving a part adds no value (except in packaging)

• Moving a tool adds no value unless work is done on part.

• So, we want to avoid moving parts or tools any more than necessary– One metal machining batch factor: 95% of a

parts time is spent moving or waiting, 5% of time is on tool, of which only 30% is spent cutting.

Page 2: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Linear Motion

• Linear translation is most common motion

• Linear movement can be caused by:– Pneumatic or hydraulic cylinders– Rotary motion converted to linear– Vibratory systems– Electric solenoids– Linear electric motors– Piezoelectric actuators

Page 3: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Pneumatic Systems

• Pneumatic power very popular in industry– High force, economical linear motion– Non-flammable, compressible,

storable medium– Compact, low heat production

actuators

• Pneumatics best suited to discrete motion (not proportional)

Page 4: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Pneumatic Systems

• Ideal Gas Law: PV=mRT

• Boyle’s Law: P1V1 = P2V2

Page 5: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Pneumatic System Layout

Page 6: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Air Preparation

Page 7: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Single-Acting Cylinder

Page 8: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Single-Acting Cylinder

Page 9: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Double-Acting Cylinder

Page 10: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Pneumatic Cylinder Mounting

• Off-axis loading must be prevented!• Pivoting mounts can eliminate axial

loading:– Clevis mount– Trunnion mount– Universal joints

• Shaft may rotate unless antirotation model is used

Page 11: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Trunnion Mount

Page 12: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Pneumatic Twin Cylinder

Page 13: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Pneumatic Bellows

Page 14: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Pneumatic Bellows

Page 15: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Pneumatic Rotary Actuators

Page 16: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Pneumatic Rotary Actuators

Page 17: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Pneumatic Schematics

Page 18: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Pneumatic Schematics

Page 19: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Electric Solenoids

Force stroke-1

Page 20: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Electric Rotary Actuator (solenoid)

Page 21: Generating Motion Moving a part adds no value (except in packaging) Moving a tool adds no value unless work is done on part. So, we want to avoid moving.

Electric Rotary Actuators (motors)

• DC motors• AC motors

– stepper (2-phase synchronous)– brushless (3-phase synchronous)– induction


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