EP0803053B1

Circularly magnetized non-contact torque sensor and method for measuring torque using same

Abstract

This record has no abstract on file.

EP0803053B1, drawing sheet 1
Sheet 1 of 22

Term

Term ended

Expired 2 June 2015, 11.3 years ago.

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

56 claims: 6 independent, 50 dependent

  1. 1
    A magnetoelastic torque sensor for providing an output signal indicative of the torque applied to a member about an axially extending axis, of said member, comprising:a ferromagnetic, magnetostrictive magnetoelastically active element (4;104, 105;121;131) directly or indirectly attached to/or forming a part of the surface of said member in such a manner that torque applied to said member is proportionally transmitted to said element;said ferromagnetic, magnetostrictive magnetoelastically active element (4;104, 105;121;131) being endowed with an effective uniaxial magnetic anisotropy having the circumferential direction as the easy axis, so that when torque is applied to said member, said magnetoelastically active element produces a magnetic field varying with said torque;and magnetic field sensor means (6;106) mounted proximate to said magnetoelastically active element and oriented with respect thereto to sense the magnitude of said magnetic field and provide said output signal in response thereto, charcterized in that said ferromagnetic, magnetostrictive magnetoelastically active element (4;104, 105;121;131) comprises two or more axially distinct circumferential regions which are magnetically contiguous and oppositely and remanently magnetically polarized in a circumferential direction, each said region being arranged for individually generating a magnetic field varying with said torque, said fields causing poles of like polarity to arise within each region at the boundary between said regions, and said magnetic filed sensor means is positioned for providing an electrical signal indicative of the torque applied to said member.
  2. 8
    The torque sensor of any of the preceding claims wherein said element comprises a ferromagnetic, magnetostrictive layer at the surface of said member.
  3. 9
    The torque sensor of any of the claims 1 - 7 wherein said element comprises a region of the surface of said member.
  4. 10
    The torque sensor of any of the claims 1 - 7 wherein said element comprises at least one ring.
  5. 36
    A method of sensing a torque applied to a torqued member extending in an axial direction, comprising the steps of (a) providing a ferromagnetic, magnetostrictive magnetoelastically active element endowed with an effective uniaxial magnetic anisotropy having the circumferential direction as the easy axis, said element being directly or indirectly attached to or forming part of the surface of said torqued member such that torque applied to the member is proportionally transmitted to said element;(b) producing a magnetic field as a consequence of the application of torque to said member;and (c) sensing the magnitude of the magnetic field at a position proximate to said magnetoelastically active element as an indication of the magnitude of the torque applied to said member, characterized by    providing said element as an element comprising two or more axially distinct circumferential regions which are magnetically contiguous and oppositely and remanently magnetically polarized in a circumferential direction, each said region individually generating a magnetic field varying with said torque, said fields causing poles of like polarity to arise within each region at the boundary between said regions, and said magnetic filed sensor means is positioned for providing an electrical signal indicative of the torque applied to said member.
  6. 56
    A transducing ring adapted to be attached directly or indirectly on the surface of a member to which a torque is applied about an axis extending axially thereof in such a manner that torque applied to said member is proportionally transmitted to said ring, said ring comprising a ferromagnetic, magnetostrictive magnetoelastically active element (4;104, 105;121;131) which is endowed with an effective uniaxial magnetic anisotropy having the circumferential direction as the easy axis, characterized in that said element comprises two or more axially distinct circumferential regions which are magnetically contiguous and oppositely and remanently magnetically polarized in a circumferential direction, each said region being arranged for individually generating a magnetic field varying with said torque, said fields causing poles of like polarity to arise within each region at the boundary between said regions.