app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the...

220
1" .75 .75 1"

Transcript of app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the...

Page 1: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

1"

.75

.75

1"

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1"

.75

.75

1"

TM

� � � �

�����������

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.75".75"

1"

1"

� � � �

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shaping the future of measurement

© 1998 Brown&Sharpe Manufacturing Company

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.75".75"

1"

1"

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C-1

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C-2

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C-3

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C-4

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Maple

A1

2

3

4

5

B

C

D

E

Birch

Chestnut

Sycamore

Elm

Oak

Ritz Hotel

Restaurant

Train Station

Museum

Figure 1

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Origin or Datum

X Axis

Y Axis

Z A

xis

X AxisY Axis

Z A

xis

Figure 2

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X Axis

Y Axis

Z Axis

Figure 3

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Figure 4

X AxisY Axis

Z A

xis

Page 15: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

Figure 5

Y Axis

Z Axis

X Axis

Y Axis

Z Axis

X Axis

X AxisY Axis

Z Axis

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Maple

A1

2

3

4

5

B

C

D

E

Birch

Chestnut

Sycamore

Elm

Oak

Ritz Hotel (Datum)

Restaurant (Datum)

Train Station (Datum)

Museum (Datum)

Figure 6

Datum Point

Datum Line

Datum CircleDatum Surface

Figure 7

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Translated Origin

First OriginFigure 8

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Maple

A1

2

3

4

5

B

C

D

E

Birch

Chestnut

Sycamore

Elm

Oak

Ritz Hotel

Restaurant

Train Station

Museum

Figure 9

4

0

1

2

3

4

0

1

2

3

4 3 2 1 0

45ϒ

Origin

Figure 10

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Measured Circles

Measured Circles

Constructed Circle

Figure 11

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Measured FeaturesMeasured Features

Constructed Intersect Point

Figure 12

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True North

Magnetic North

315°

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Z

Y

X

P1 P2

P3

P4P5

P1P2

P3

P4

P5

Figure 16

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Probe Offset

Center of ProbCenter of Meas

Probe Tip

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PART SURFACE

PROBE PATH

APPROACH OF THE PROBE

SHOULD BE WITHIN ±80

OF THE PERPENDICULAR

TO MINIMIZE SKIDDING ERROR

POINT TO BE PROBED

Note that probe approachvectors are perpendicularto the surface of the sphere

Page 27: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

Shanking

Correct Probe Contact

Shanking

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Effective Working Length (EWL)

Ball/Stem Clearance

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0.0 05+

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1 Pts. Req'd

2

3

3 0.000

10

10

10

X: 278.171

Y: 218.030

Z: -284.781

mm

1

Press Done When Finished

Good 4Pts. Too Fast

1

2

TTP

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Maximum Velocity 9.25 mm/sec Average Velocity 8.75 Current Velocity 8.52

X: 278.171

Y: 218.030

Z: -284.781

X

mm

Press Done When Finished

Good 36Pts. Fast

1 1

Y

Page 75: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

mm

28

26

Cylinder

1

27

X: 2.359

Y: 4.034

Z: 128.842

Y

X

x

0.003X

0.000Y

1/8

0.008

18.028

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1 1 1/7

1

1-9

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0.0 05+

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XYZUVØr

YZ

XYYZZX

XYZ

X Y Z

XY YZ ZX

Ø MØ S

Ø

GD&T

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0.0 05+

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1

0

x

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(XY)

(ZX)

(YZ)

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D

1234

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RefleX

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0: Z

ZY

X?

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ZY

X?

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ZY

X?0: X 0: Y 0: Z

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0.0 05+

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0.0 05+

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Page 131: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
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Page 134: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 135: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 136: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 137: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 138: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 139: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 140: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 141: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 142: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 143: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 144: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 145: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 146: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 147: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 148: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 149: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 150: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 151: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 152: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
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A1-1

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A1-2

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A1-3

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A1-4

Page 157: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

A1-5

0.010

-0.002

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A1-6

Ref. Length:

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A1-7

0.010

0.080

-0.002

1 1/61

Roundness:

Roundness

Number Of Points:

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Page 161: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

A1-9

0

0.010

0.010

-0.002

1 1/61

Flatness:

Flatness

Number Of Points:

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A1-11

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A1-12

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A1-13

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A1-14

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A1-15

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A1-16

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A1-17

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A1-18

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A1-19

Page 172: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

A1-20

Page 173: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

A1-21

Ref. Length:

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A1-23

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A1-24

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A1-25

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A1-26

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A1-27

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A1-28

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A1-29

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A1-30

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A1-31

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A1-32

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A1-33

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A1-34

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A1-35

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A1-36

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A1-37

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A1-38

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A1-39

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A1-40

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A1-41

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A1-42

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A1-43

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A1-44

Page 197: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

A2-1

+1 =.00

-1

0.0 05+ 0: Z

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0: X

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A2-2

x

1

0

D

1234

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Page 200: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

A3-2

Page 201: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

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Page 203: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 204: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 205: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 206: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 207: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
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A6-2

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Page 210: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

A7-2

Page 211: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 212: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

A7-4

Page 213: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 214: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach
Page 215: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

I-3

A

B

C

Page 216: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

I-4

D

E

F

G

Page 217: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

I-5

H

J

K

L

M

Page 218: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

I-6

P

Q

R

S

T

W

X

Page 219: app1 - ok-tech.com · part surface probe path approach of the probe should be w ithin ±80 of the perpendicular to minim ize skidding erro r po int to be pro bed note that probe approach

I-7

Y

Z

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I-8