EP1443218A9

Precision sensor for a hydraulic cylinder

Abstract

A sensor (218) mountable within a hydraulic cylinder (200) provides a precision signal indicative of the position of the piston (212) utilizing a non-contacting electromechanical transducer. The sensor includes a flexible connector (216) attached between the cylinder piston and a converting element (220) for sensing the displacement of the cylinder piston. The converting element comprises a pick-up spool (310) coupled to the other end of the connector and rotatable about an axis. The spool is under tension from a spring (317) coupled to the spool. A lead screw (324) engages threads on the interior of the spool, and translates along an axis when the spool rotates. A transducer (323) is disposed to sense the position of the lead screw, and provides an output signal proportional to the motion or position of the movable element. The transducer may be an LVDT or other non-contacting transducer.

EP1443218A9, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 18 October 2019, 6.9 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

1 claim: 0 independent, 1 dependent

  1. 1
    A sensor (218) for providing a position-related signal for a first element (212) in relation to a second element (214), the sensor comprising:a flexible connector (216) having a first end attachable to the first element (212);a rotating element (220, 310) attachable to the second element (214) and coupled to a second end of the flexible connector (216);anda transducer (323, 704),characterised in that the sensor further comprises a translating member (324) cooperating with the rotating element (220, 310);andin that the transducer (323, 704) is disposed to sense a position of the translating member (324), wherein the transducer (323, 704) provides the position-related signal. The sensor (218) of claim 1 further comprising a recoil mechanism (428) coupled to said rotating element (220, 310) for imparting a rotational action on said rotating element (220, 310). The sensor (218) of claim 1 or 2 wherein the rotating element (220) defines an internal opening. The sensor (218) of any one of the preceding claims wherein said translating member (324) is in threaded communication with said rotating element (220, 310). The sensor (218) of any one of the preceding claims wherein said translating member (324) displaces along an axis of rotation of said rotating element (220, 310). The sensor (218) of any one of the preceding claims wherein said transducer (323, 704) is one selected from the group comprising a LVDT, a DVRT®, a potentiometer, an inductive transducer, a capacitive transducer, a Hall-effect transducer, an LED transducer, and a laser based transducer. The sensor (218) of claim 4 further including a mounting element (302) attached in fixed relation to the second element (214), said rotating element (220, 310) rotatably attached to said mounting element (302) The sensor (218) of any one of the preceding claims further including an anti-rotational force exerted on said translating member (324). The sensor of any one of the preceding claims wherein the translating member (324) linearly displaces upon rotation of the rotating element (220, 310). The sensor (218) of any one of the preceding claims wherein the first element (212) is a piston and said second element (214) is a cylinder, said piston disposed to translate in said cylinder. The sensor (218) of claim 10 wherein the sensor (218) is located within the cylinder. The sensor (218) of claim 10 or 11 further comprising hydraulic fluid contained within said cylinder. The sensor (218) of any one of the preceding claims further including an anti-backlash force exerted along a longitudinal axis of said translating member (324). A piece of heavy equipment comprising a sensor according to claim 12. A method for sensing a position of a first element (212) moveable within a cylinder (200), the steps comprising:in a converting element (220) in fixed relation to the cylinder (200), converting a linear displacement of the first element (212) to a proportional linear displacement of a second element (324), and providing a transducer,    characterised in that:the linear displacement of the first element (212) is converted to the proportional linear displacement of the second element (324) via a flexible connector (216) connected to the first element (212) and to the converting element (220);the transducer (323, 325, 704) is disposed within the cylinder (200);andthe method further comprises the step of sensing the linear displacement of the second element (324) with the transducer (323, 325, 704). The method of claim 15 wherein said converting step includes the steps of:converting said linear displacement of the first element (212) to an angular displacement of a rotatable element (310), and,converting said angular displacement of said rotatable element (310) to a linear displacement of said second element (324). The method of claim 15 or 16 wherein said transducer (323, 325, 704) is one selected from the group comprising a LVDT, a DVRT®, a potentiometer, an inductive transducer, a capacitive transducer, a Hall-effect transducer, an LED based transducer, and a laser based transducer. The method of any one of claims 15 to 17 wherein said transducer (323, 325, 704) is operable to provide a position related signal. The method of any one of claims 15 to 18 further comprising disposing hydraulic fluid within said cylinder (200). The sensor of claim 6 wherein the transducer comprises an LVDT. The sensor of claim 6 wherein the transducer comprises a Hall-effect transducer. The sensor of claim 3, the transducer being at least partially disposed within the internal opening. A sensor for providing a position related signal for a first element in relation to a second element, the sensor comprising:a flexible connector having a first end attached to the first element;a rotating element attached to the second element and coupled to a second end of said flexible connector;a translating member in dependence with said rotating element, wherein a displacement of the first element causes a displacement of said translating member;and,a transducer disposed to sense a position of said translating member, wherein said transducer provides the position related signal