Claims
- 1. A compensating device for providing axial and spatial misalignment compensation between a rotatable component mounted within an enclosure and a rotating means being generally external to the enclosure, said compensating device comprising:
- a shaft member having a first end, formed to be snugly but slidably received within a receiving portion of the rotating means such that said shaft member is maintained in a fixed angular position with respect to the rotating means and its rotational axis which is generally perpendicular to a surface of the enclosure through which the receiving portion of the rotating means passes, said shaft being axially slidable with respect to the rotating means such that axial misalignment between the rotatable component and the rotating means can be compensated for, and a second end, said second end engaging the rotatable component such that a rotation of the rotating means will produce a like rotation of the rotatable component; and
- a spatial compensation means, integrally formed from said shaft member between said first and second ends such that a compensating angle can be formed between said first and second ends of said shaft member, said shaft member being rotatable about its axis while maintaining said compensating angle such that compensation for spatial misalignment between the rotational axis of the rotatable component and the rotational axis of the rotating means is provided.
- 2. The compensating device of claim 1, wherein said spatial compensation means further comprises:
- a first pair of opposed grooves partially defined by a first common plane which is generally perpendicular to the axis of said shaft member;
- a first flexible web also partially defined by said first common plane, said first flexible web defining a first solid portion of said shaft member which extends through the rotational axis of said shaft member axis proximate the intersection of said first common plane and the rotational axis of said shaft member, thereby separating said first pair of opposed grooves;
- a second pair of opposed grooves partially defined by a second common plane which is also generally perpendicular to the rotational axis of said shaft member;
- a second flexible web also partially defined by said second common plane, said second flexible web defining a second solid portion of said shaft member which extends through the rotational axis of said shaft member proximate the intersection of said second common plane and the rotational axis of the shaft member, thereby separating said second pair of opposed grooves; and
- said first and second solid portions of said shaft member, defined by said first and second flexible webs, respectively, being generally disposed at right angles to one another.
- 3. The compensating device of claim 2, wherein said compensating angle is formed by closing one groove of said first or second pairs of opposed grooves while opening the other groove of that pair of opposed grooves.
- 4. The compensating device of claim 3, wherein said compensating angle is rotated by closing one groove of the other of said first or second pairs of opposed grooves and opening the other of that pair of said opposed grooves in the direction of rotation of said shaft member, said opening and closing of said grooves alternating between said first and second pairs of grooves as said shaft member is rotated, thereby maintaining said compensating angle.
- 5. A compensating device for providing axial and spatial misalignment compensation between a rotatable component mounted within an enclosure and a rotating means generally external to and rotatably supported by a surface of the enclosure such that its rotational axis maintains a generally perpendicular relationship with the supporting surface, said compensating device comprising:
- a shaft member having a first end and a second end, said first end adapted to be snugly but slidably received within a receiving portion of the rotating means such that said shaft member is maintained in a fixed angular position with respect to the rotating means and its rotational axis, said first end of said shaft member further being adapted to be axially slidable with respect to the receiving portion of the rotating means such that axial misalignment between the rotatable component and the rotating means can be compensated for, said second end configured to engage the rotatable component for rotation thereof; and
- a spatial compensation means, integrally formed from said shaft member between said first and second ends such that a compensating angle can be formed between said first and second ends of said shaft member, said shaft member being rotatable about its axis while maintaining said compensating angle, thereby providing compensation for spatial misalignment between the axis of the rotatable component and the axis of the rotating means.
- 6. The compensating device of claim 5 wherein said spatial compensation means further comprises:
- a first pair of opposed grooves partially defined by first common plane which is generally perpendicular to the rotational axis of said shaft member;
- a first flexible web also partially defined by said first common plane, said first flexible web defining a first solid portion of said shaft member which extends through the rotational axis of said shaft member axis proximate the intersection of said first common plane and the rotational axis of said shaft member, thereby separating said first pair of opposed grooves;
- a second pair of opposed grooves partially defined by a second common plane which also is generally perpendicular to the rotational axis of said shaft member;
- a second flexible web also partially defined by said second common plane, said second flexible web defining a second solid portion of said shaft member which extends through the rotational axis of said shaft member proximate the intersection of said second common plane and the rotational axis of the shaft member, thereby separating said second pair of opposed grooves; and
- said first and second solid portions of said shaft member, defined by said first and second flexible webs, respectively, being generally disposed at right angles to one another.
- 7. The compensating device of claim 6 wherein said compensating angle is formed by closing one groove of said first or second pairs of opposed grooves while opening the other groove of that pair of opposed grooves.
- 8. The compensating device of claim 7 wherein said compensating angle is rotated by closing one groove of the other of said first or second pairs of opposed grooves and opening the other groove of that pair of said opposed grooves in the direction of rotation of said shaft member, said opening and closing of said grooves alternating between said first and second pairs of grooves as said shaft member is rotated, thereby maintaining said compensating angle.
- 9. A connecting device for connecting a rotatable indicator to a rotatable component for precise common movement thereof, the rotatable indicator and the rotatable component having generally parallel axes of rotation while being spatially displaced one from the other in both the horizontal and the vertical direction, the rotatable component being enclosed within a housing having at least one surface lying in a plane substantially perpendicular to the rotational axis of the rotatable component and defining an opening therein for access to the rotatable component, said connecting device comprising:
- a portion of the rotatable indicator defining a receiving tube adapted to pass through the access opening defined in the at least one surface of the housing; and
- a shaft member being continuous along its rotational axis between a first end and a second end, said first end adapted to be indexed with said receiving tube of the rotatable indicator and said second end adapted to be indexed with the rotatable component such that a precise movement of the rotatable indicator about its rotational axis produces a corresponding precise movement of the spatially displaced rotatable component about its rotational axis;
- said first end of said shaft member, while maintaining said shaft member in precise rotational registry with the rotatable indicator, also permitting said shaft member to be slidingly displaced in an axial manner within said receiving tube of the rotatable indicator, and further, to be articulated such that an angle can be formed between the rotational axis of the rotatable indicator and said rotational axis of said shaft member, said angle being maintained as the rotatable indicator is rotated about its rotational axis and said shaft member is rotated about its said rotational axis;
- said shaft member further defining a spatial compensation means located between said first and second ends, said spatial compensation means permitting said rotational axis of said shaft member to form an angle between said first and second ends of said shaft member, said angle being maintained as said shaft member is rotated about its rotational axis; and
- said spatial compensation means and said first end of said shaft member permitting said shaft member to connect the rotatable indicator to the vertically and horizontally displaced rotatable component for common movement thereof.
- 10. The device of claim 9, wherein said receiving tube of said portion of the rotatable indicator has a generally C-shaped cross-section formed by an axially extending slot in said receiving tube.
- 11. The device of claim 10, wherein said first end of said shaft includes a tongue extending outwardly from and generally perpendicular to said rotational axis of said shaft, said tongue being snugly but slidably received within said axially extending slot such that an angular relationship between the rotational axis of the rotatable indicator and said rotational axis of said shaft is maintained.
- 12. The device of claim 11, wherein said tongue include rounded sides forming a radius from its axis such that its width is maintained regardless of its angular position with respect to said alignment slot thereby ensuring a snug slidable fit within said alignment slot.
- 13. The device of claim 9, wherein said spatial compensation means further comprises:
- a first pair of opposed grooves partially defined by a first common plane which is generally perpendicular to said rotational axis of said shaft member;
- a first flexible web partially defined by said first common plane intermediate said first pair of opposed grooves, said first flexible web being integral with and perpendicular to said rotational axis of said shaft member;
- a second pair of opposed grooves partially defined by a second common plane which is generally perpendicular to said rotational axis of said shaft member;
- a second flexible web also partially defined by said second common plane intermediate said second pair of opposed grooves, said second flexible web being integral with and perpendicular to said axial axis and generally disposed at right angles to said first flexible web.
- 14. The device of claim 13, wherein said compensating angle is formed by closing one groove of said first or second pairs of opposed grooves while opening the other groove of that pair of opposed grooves as said shaft is rotated about said rotational axis of said shaft member.
- 15. The device of claim 14, wherein said compensating angle is rotated by closing one groove of the other of said first or second pairs of opposed grooves and opening the other groove of that pair of said opposed grooves in the direction of rotation of said shaft member, said opening and closing of said grooves alternating between said first and second pairs of grooves as said shaft member is rotated thereby maintaining said compensating angle.
- 16. A device for connecting a rotatable indicator to a rotatable component for common movement thereof, the rotatable indicator and rotatable component having generally parallel axes of rotation while being spatially displaced one from the other in both the horizontal and the vertical directions, said device comprising:
- a shaft member having a rotational axis continuously extending between a first indexing means and a second indexing means and defining a spatial compensation means between said first and second indexing means, said first indexing means adapted to precisely index said shaft member with the rotatable indicator and said second indexing means adapted to precisely index said shaft member with the rotatable component such that a precise movement of the rotatable indicator about its rotational axis produces a movement of said shaft member about its said rotational axis and thereby a corresponding precise movement of the rotatable component about its rotational axis;
- said first indexing means, while maintaining said shaft member in precise rotational registry with the rotatable indicator, also permitting said first end of said shaft member to be slidably displaceable along the rotational axis of the rotatable indicator thus providing vertical spatial misalignment compensation, and, further, permitting articulation of said first indexing means such that an angle can be formed and maintained between the rotational axis of the rotatable indicator and said rotational axis of said shaft member at said first indexing means, said spatial compensation means permitting said shaft member to form an angle along said rotational axis of said shaft member and maintain said angle as said shaft member is rotated about its said rotational axis;
- said first indexing means and said spatial compensation means providing horizontal spatial misalignment compensation between the rotatable indicator and the rotatable component.
- 17. The device of claim 16, wherein said first and second indexing means are integrally formed from said shaft member such that said first indexing means is dimensioned to snugly but slidably engage a portion of the rotatable indicator coinciding with its rotational axis and said second indexing means is dimensioned to snugly but slidably engage a portion of said rotatable component coinciding with its rotational axis.
- 18. The device of claim 17, wherein said first indexing means can only be engaged by the rotatable indicator when the first indexing means is in a particular angular position with respect to the rotational indicator.
- 19. The device of claim 16, wherein said spatial compensation means further comprises:
- a first pair of opposed grooves partially defined by a first common plane which is generally perpendicular to the rotational axis of said shaft member;
- a first flexible web also partially defined by said first common plane intermediate said first pair of opposed grooves, said first flexible web being integral with and perpendicular to the rotational axis of said shaft member;
- a second pair of opposed grooves partially defined by a second common plane which is generally perpendicular to the rotational axis of said shaft member;
- a second flexible web also partially defined by said second common plane intermediate said second pair of opposed grooves, said second flexible web being integral with and perpendicular to the rotational axis of said shaft member and generally disposed at right angles with said first flexible web.
- 20. The compensating device of claim 19, wherein said compensating angle is rotated by closing one groove of the other of said first or second pairs of opposed grooves and opening the other groove of that pair of said opposed grooves in the direction of rotation of said shaft member, said opening and closing of said grooves alternating between said first and second pairs of grooves as said shaft member is rotated, thereby maintaining said compensating angle.
Parent Case Info
This application is a continuation of application Ser. No. 08/542,216 filed Oct. 12, 1995 and issued as U.S. Pat. No. 5,735,179, on Apr. 7, 1998.
US Referenced Citations (6)
Continuations (1)
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Number |
Date |
Country |
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542216 |
Oct 1995 |
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