IP Library › Granted Patent US 7,293,365
Granted Patent B2
US 7,293,365 · App. 11/510,687 · Granted Nov 13, 2007

Probe or stylus orientation

Assignee: Renishaw PLC
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Quick Facts
Patent No.
US 7,293,365
App. No.
11/510,687
Granted
Nov 13, 2007
Kind
B2
Abstract

Re-orientation of a stylus 30 or measurement probe 12 can be accomplished by engaging a part of the stylus or probe with a fixed part 50 and moving the probe in a spherical path centred at the engagement. The engagement 50 is spaced from the stylus tip 34 and avoids bending of the stylus during re-orientation. The re-orientation can take place into a plurality of e.g. repeatable rest positions by virtue of a kinematic array (e.g. balls 122 and rollers 120 FIG. 2 ).

Claims (42)

1. A coordinate measurement machine comprising:

a first part and a second part, the second part being movable relative to the first part;

a measurement device having a workpiece inspection portion;

a joint for interconnecting the measurement device and the second part, the joint comprising at least one rotatable member rotatably repositionable relative to the second part;

an engagement comprising two mutually engageable portions, one on the first part and one on the rotatable member;

wherein a first one of said mutually engageable portions comprises a holder for holding the other one of said mutually engageable portions in engagement therewith;

and wherein the said one of the mutually engageable portions on the rotatable member is spaced from the workpiece inspection portion.

2. A coordinate measurement machine as claimed in claim 1 , wherein the workpiece inspection portion comprises an element for contacting the workpiece.

3. A coordinate measurement machine as claimed in claim 1 wherein the rotatable member is repositionable to a plurality of repeatable positions.

4. A coordinate measurement machine as claimed in claim 1 wherein the said other one of the mutually engageable portions comprises a spherical surface and the holder comprises a spherical surface accepting area.

5. A coordinate measurement machine as claimed in claim 4 wherein the spherical surface is formed on the rotatable member and the holder is formed on the first part.

6. A coordinate measurement machine as claimed in claim 5 wherein the holder includes a vacuum conduit.

7. A coordinate measurement machine as claimed in claim 4 wherein the spherical surface is formed on the first part and the holder is formed on the rotatable member.

8. A measurement device comprising:

a workpiece inspection portion;

a movable joint for connecting the workpiece inspection portion to a support,

the joint having a movable member;

a repositioning device for the workpiece inspection portion; and

an engagement comprising two mutually engageable portions, one on the movable member and one on the repositioning device;

wherein a first one of the said mutually engageable portions comprises a holder for holding the other one of the said portions in engagement therewith and wherein the said one of the mutually engageable portions on the movable member is spaced from the workpiece inspection portion.

9. A measurement device as claimed in claim 8 , wherein the workpiece inspection portion comprises an element for contacting the workpiece.

10. A measurement device as claimed in claim 8 wherein the movable member is rotatably repositionable into a plurality of repeatable positions relative to the repositioning device.

11. A measurement device as claimed in claim 8 wherein the said other one of the portions of the engagement comprises a spherical surface and the holder comprises a spherical surface accepting area.

12. A measurement device as claimed in claim 11 wherein the spherical surface is formed on the movable member and the holder is formed on the repositioning device.

13. A measurement device as claimed in claim 12 wherein the holder includes a vacuum conduit.

14. A measurement device as claimed in claim 11 wherein the spherical surface is formed on the repositioning device and the holder is formed on the movable member.

15. A measurement device as claimed in claim 8 wherein the joint allows the movable member to be repositionable into the said plurality of repeatable positions in two rotational axes.

16. A method of reorientating a measurement device mounted to a coordinate measurement machine, the coordinate measurement machine having:

a first part and a second part being movable relative to the first part; and

a first portion of an engagement;

the measurement device having:

a workpiece inspection portion;

a joint for interconnecting the workpiece inspection portion with the second part and for reorientating the workpiece inspection portion;

the measurement device further comprising a second portion of an engagement for mutual engagement with the first portion;

one of the two mutually engageable portions of the engagement comprising a holder for holding the other one of the said mutually engageable portions in engagement therewith, the second portion of the engagement being spaced from the workpiece inspection portion, the method comprising:

moving the first and second parts in order to engage the first and second mutually engageable portions;

moving the second part relative to the first part in a path centred on the engagement thereby to reposition the workpiece inspection portion relative to the first and second parts; and

disengaging the first and second mutually engageable portions by relative movement of the first and second parts.

17. A method as claimed in claim 16 , wherein the workpiece inspection portion comprises an element for contacting the workpiece.

18. A method as claimed in claim 16 wherein the joint allows the repositioning of the workpiece inspection portion into a plurality of repeatable positions relative to the second part.

19. A method as claimed in claim 16 , including the step of:

unlocking the joint to allow its repositioning.

Continuity (2)
Continuation 1051766000 · Dec 13, 2004
Related Publication 20060283034A1 · Dec 21, 2006