CA3175709C

Methods and apparatus for operatively mounting actuators to pipe

Abstract

An apparatus for mounting one or more transducers to a drill pipe. The apparatus comprises a sub-pipe having a bore and a transducer-holding assembly, wherein the transducer-holding assembly is insertable into the bore of the sub-pipe from an axial end of the sub-pipe. The apparatus further comprising a tension collar connected to the bore-defining surface of the sub-pipe and bearing upon the transducer-holder.

CA3175709C, drawing sheet 1
Sheet 1 of 21

Term

7.9 yearsleft in the term

Expires 22 August 2034.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

58 claims: 4 independent, 54 dependent

  1. 1
    WHAT IS CLAIMED IS:1. A transducer assembly comprising: a transducer stack comprising a plurality of generally axially aligned transducers;a pair of threaded members located at a first axial end of the transducer stack and generally axially aligned with the transducer stack;a cap located at a second axial end of the transducer stack opposed from the first axial end;a first one of the pair of threaded members connected to at least one of the transducer stack and the cap, such that threadable adjustment of a second one of the pair of threaded members relative to the first one of the pair of threaded members causes the second one of the pair of threaded members to move axially relative to the first one of the threaded members and corresponding adjustment of an axial dimension of the transducer assembly.
  2. 4
    A transducer assembly according to any one of claims 1 to 3 wherein the transducers comprise piezoelectric transducers and the transducer assembly comprises electrodes interspaced between each pair of axially adjacent transducers.
  3. 7
    A transducer assembly according to any one of claims 1 to 4 wherein polarities of the transducers are aligned such that for each adjacent pair of transducers, a positive pole of one of the adjacent pair of transducers is electrically connected to a negative pole of the other one of the adjacent pair of transducers.
  4. 8
    A transducer assembly according to any one of claims 1 to 7 wherein at least aie of the pair of threaded members comprises an axially extending protrusion.
  5. 10
    A transducer-holding assembly for mounting one or more transducers in a sub-pipe and providing intimate contact which facilitates acoustic communication between the one or more transducers and the sub-pipe, the transducer-holding assembly comprising:one or more transducer assemblies;a transducer holder comprising one or more mounting features far holding the one or more transducer assemblies;each transducer assembly comprising: a transducer stack comprising a plurality of generally axially aligned transducers;a pair of threaded members located at a first axial and of the transducer stack and generally axially aligned with the transducer stack;wherein threadable adjustment of a second one of the pair of threaded members relative to the first one of the pair of threaded members causes the second one of the pair of threaded members to move axially relative to the first one of the threaded members and to bear against at least one of the one or more mounting features for corresponding adjustment of compressive force on the transducer stack. Date Reçue/Date Received 2023-11-21
  6. 14
    A transducer-holding assembly according to any one of claims 10 to 13 wherein, for each transducer assembly, the transducers comprise piezoelectric transducers and the transducer assembly comprises electrodes interspaced between each pair of axially adjacent transducers.
  7. 17
    A transducer-holding assembly according to any one of claims 10 to 14 wherein polarities of the transducers are aligned such that for each adjacent pair of transducers, a positive pole of one of the adjacent pair of transducers is electrically connected to a negative pole of the other one of the adjacent pair of transducers.
  8. 18
    A transducer-holding assembly according to any one of claims 10 to 16 wherein the one or more mounting features comprise:a first flange comprising a first flange surface that faces in a second axial direction and in contact with first axial ends of the one or more transducer assemblies;and a second flange axially spaced apart from the first flange, the second flange comprising a second flange surface that faces generally in a first axial direction opposed from the second axial direction and in contact with second axial ends of the one or more transducer assemblies, wherein the contact between the first and second flange surfaces and the first and second axial ends of one or more transducer assemblies holds the transducer assemblies on the transducer holder.
  9. 21
    A transducer-holding assembly according to any one of claims 18 to 20 wherein at least one of the first and second flange surfaces comprises an axially extending flange protrusion and at least one of the axial ends of a corresponding one of the one or more transducer assemblies comprises a complementary axially recessed transducer assembly Date Reçue/Date Received 2023-11-21 slot for receiving the flange protrusion and thereby helping to hold the corresponding one of the transducer assemblies between the first and second flanges.
  10. 24
    A transducer-holding assembly according to any one of claims 21 to 23 wherein foe flange protrusion is non-circular in cross-section.
  11. 25
    A transducer-holding assembly according to any one of claims 18 to 20 wherein at least one of the first and second flange surfaces comprises an axially recessed flange slot and at least one of foe axial ends of a corresponding one of the one or more transducer assemblies comprises a complementary axially extending transducer assembly protrusion for extending into foe flange slot and thereby helping to hold foe corresponding one of foe transducer assemblies between foe first and second flanges.
  12. 28
    A transducer-holding assembly according to any one of claims 25 to 27 wherein the transducer assembly protrusion is non-circular in cross-section.
  13. 29
    A transducer-holding assembly according to any one of claims 25 to 28 wherein the flange slot extends to foe radially outward edge of foe at least one of foe first and second flange surfaces.
  14. 30
    A transducer-holding assembly according to any one of claims 18 to 29 wherein foe transducer holder comprises a radially outward facing surface that extends axially between foe first and second flange surfaces and wherein foe radially outward facing surface comprises one or more radially outwardly opening and axially extending concavities, each concavity shaped for accommodating a portion of a corresponding transducer assembly.
  15. 33
    A transducer-holding assembly according to any one of claims 30 to 32 wherein foe transducer defines a bore that extends axially therethrough at a location radially inwardly from foe radially outward facing surface.
  16. 34
    A transducer-holding assembly according to any one of claims 18 to 29 wherein foe transducer holder comprises a radially inward facing surface that extends axially between foe first and second flange surfaces and wherein foe radially inward facing surface comprises one or more radially inwardly opening and axially extending concavities, each concavity shaped for accommodating a portion of a corresponding transducer assembly. Date Reçue/Date Received 2023-11-21
  17. 35
    A transducer-holding assembly according to any one of claims 18 to 34 wherein the one or more transducer assemblies comprise a plurality of transducer assemblies which are evenly spaced around a circumference of the transducer holder.
  18. 36
    A method for assembling a plurality of transducers into a transducer assembly, die method comprising:axially aligning a plurality of transducers to provide a transducer stack;axially aligning a pair of threaded members at a first axial end of the transducer stack;locating a cap at a second axial end of the transducer stack, die second axial end opposed from the first axial end;and connecting a first one of the pair of threaded members to at least one of the transducer stack and the cap to provide a transducer assembly;wherein threadable adjustment of a second one of the pair of threaded members relative to die first one of die pair of flireaded members causes the second one of the pair of threaded members to move axially relative to the first one of the threaded members and corresponding adjustment of an axial dimension of the transducer assembly.
  19. 39
    A method according to any one of claims 36 to 38 wherein the transducers comprises piezoelectric transducers and the method comprises interspacing electrodes between each pair of axially aligned transducers.
  20. 41
    A method according to any one of claims 36 to 39 comprising aligning polarities of the transducers such that for each adjacent pair of transducers, a positive pole of one of the adjacent pair of transducers is electrically connected to a negative pole of the other one of the adjacent pair of transducers.
  21. 42
    A method for assembling a transducer-holding assembly for mounting one or more transducers in a sub-pipe and providing intimate contact which facilitates acoustic communication between ihe one or more transducers and the sub-pipe, the method comprising:providing one or more transducer assemblies;providing a transducer holder comprising one or more mounting features;and mounting the one or more transducer assemblies to toe transducer holder;wherein providing toe one or more transducer assemblies comprises, for each transducer assembly: axially aligning a plurality of transducers to provide a transducer stack;axially aligning a pair of threaded members at a first axial end of the transducer stack;and wherein mounting toe one or more transducer assemblies to toe transducer holder comprises, for each transducer assembly: toreadably adjusting a second one of the pair of threaded members relative to a first one of toe pair of threaded members to cause toe second one of toe pair of threaded members to move axially relative to toe first one of toe threaded members and to bear against at least one of toe one or more mounting features for corresponding adjustment of compressive force on toe transducer stack.
  22. 46
    A method according to any one of claims 42 to 45 wherein the transducers comprises piezoelectric transducers and providing the one or more transducer assemblies comprises, for each transducer assembly, interspacing electrodes between each pair of axially aligned transducers.
  23. 48
    A method according to any one of claims 42 to 46 comprising aligning polarities of the transducers such that for each adjacent pair of transducers, a positive pole of one of the adjacent pair of transducers is electrically connected to a negative pole of the other one of the adjacent pair of transducers.
  24. 49
    A method according to any one of claims 42 to 48 wherein the one or more mounting features comprise first and second axially spaced apart flanges and wherein mounting the one or more transducer assemblies to the transducer holder comprises, for each transducer assembly:positioning the transducer assembly between a first axially facing flange surface of the first flange and a second axially facing flange surface of the second flange such that the first axial end of the transducer assembly contacts the first flange surface and a second axial end of the transducer assembly contacts the second flange surface;and Date Reçue/Date Received 2023-11-21 threadably adjusting the second one of the pair of threaded members relative to the first one of the pair of threaded members to cause the second one of the pair of threaded members to move axially relative to the first one of the threaded members and to bear against the first flange surface for corresponding adjustment of compressive force on the transducer stack.
  25. 56
    A method according to any one of claims 53 to 55 comprising extending the flange slot to a radial outward edge of the at least one of tire first and second flange surfaces.
  26. 57
    A method according to any one of claims 42 to 56 comprising providing a radially outward facing surface of the transducer holder that with one or more radially outwardly opening and axially extending concavities and locating a portion of each transducer assembly in a corresponding one of the concavities.
  27. 58
    A method according to any one of claims 42 to 56 comprising providing a radially inward facing surface of the transducer holder with one or more radially inwardly opening and axially extending concavities and locating a portion of each transducer assembly in a corresponding one of the concavities. Date Reçue/Date Received 2023-11-21
Independent claims27