IP Library › Granted Patent US 9,335,318
Granted Patent B2
US 9,335,318 · App. 13/950,204 · Granted May 10, 2016

Apparatus for recognizing the discard state of a high-strength fiber rope in use in lifting gear

Inventors: Mupende Ilaka (Neu-Ulm, DE); Horst Zerza (Biberach, DE)
Assignee: Liebherr-Components Biberach GMBH
G01N33/36B66C13/16B66C15/00B66C15/06B66D1/54G01N3/08
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Quick Facts
Patent No.
US 9,335,318
App. No.
13/950,204
Granted
May 10, 2016
Kind
B2
Abstract

The present invention relates generally to lifting gear such as cranes which use high-strength fiber ropes instead of steel ropes. In this respect, the invention in particular relates to an apparatus for recognizing the discard state of a high-strength fiber rope in use at such lifting gear comprising a detection device for detecting at least one rope parameter as well as comprising an evaluation unit for evaluating the rope parameter and for providing a discard signal in dependence on the rope parameter evaluation. In accordance with the invention, the detection device of the apparatus for recognizing the discard state comprises a plurality of differently configured detection means for a magnetic, mechanical, optical and/or electronic detection of a plurality of different rope parameters which can be evaluated by the evaluation unit individually and/or in combination with one another for recognizing the discard state.

Claims (14)

1. An apparatus for recognizing the replacement state of a high-strength fiber rope in use at lifting gear, in particular a crane, comprising:

a detection device for detecting at least one rope parameter; and

an evaluation device for evaluating the rope parameter and for providing a discard signal in dependence on the rope parameter evaluation,

wherein the detection device has a transverse compressive stiffness determiner and/or a cross-sectional determiner for determining the transverse compressive stiffness and/or cross-sectional area and/or cross-sectional shape of the rope, and wherein the evaluation device evaluates the discard signal in dependence on the determined transverse compressive stiffness and/or cross-sectional area and/or cross-sectional area of the rope;

wherein the evaluation device monitors the transverse compressive stiffness and/or the cross-sectional area and/or cross-sectional shape of the rope for changes and also provides the discard signal on an exceeding of a predefined change and/or compares the determined transverse compressive stiffness and/or the cross-sectional area with a predefined limit value for the transverse compressive stiffness and/or cross sectional area and provides the discard signal on an exceeding/falling below the limit value; and

wherein the transverse compressive stiffness determiner and/or the cross-section determiner comprises a detector that comprises at least one elastically preloadable clamper pair, wherein the clamper pair comprises clamping jaws or rope rollers configured to be pressed against the fiber rope and movably suspended transversely to the longitudinal direction of the rope and a distance measurer for measuring the distance of the clamper pair from one another.

2. The apparatus of claim 1 , wherein the transverse compressive stiffness determiner is configured such that the rope is subjected to a predefined tensile load in a transverse compressive stiffness determination, wherein the rope under the predefined tensile load is configured to be acted on by a transverse force acting transversely to the longitudinal direction of the rope, and wherein the apparatus is configured to determine the cross-sectional deformation and/or diameter deformation of the rope arising from the transverse force action.

3. The apparatus of claim 1 , wherein the transverse compressive stiffness determiner and/or cross-section determiner comprise the detector for detecting the transverse compressive stiffness and/or a rope diameter in at least two different planes and determines the transverse compressive stiffness and/or the rope cross-sectional area from the at least two determined transverse compressive stiffnesses and/or rope diameters.

4. An apparatus for recognizing the replacement state of a high-strength fiber rope in use at lifting gear, in particular a crane, comprising:

a detection device for detecting at least one rope parameter, wherein the detection device comprises an elastically preloadable damper pair configured to be movably suspended transversely to the longitudinal direction of the rope; and

an evaluation device for evaluating the rope parameter and for providing a discard signal in dependence on the rope parameter evaluation,

wherein the detection device has a transverse compressive stiffness determiner and/or a cross-sectional determiner for determining the transverse compressive stiffness and/or cross-sectional area and/or cross-sectional shape of the rope, and wherein the evaluation device evaluates the discard signal in dependence on the determined transverse compressive stiffness and/or cross-sectional area and/or cross-sectional area of the rope;

wherein the evaluation device monitors the transverse compressive stiffness and/or the cross-sectional area and/or cross-sectional shape of the rope for changes and also provides the discard signal on an exceeding of a predefined change and/or compares the determined transverse compressive stiffness and/or the cross-sectional area with a predefined limit value for the transverse compressive stiffness and/or cross-sectional area and provides the discard signal on an exceeding/falling below of the limit value; and

wherein the evaluation device is configured to provide the discard signal on an occurrence or exceeding a predefined increase in the transverse compressive stiffness and/or on reaching or exceeding a predefined transverse compressive stiffness limit value.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 10, 2013
From: ILAKA, MUPENDE; ZERZA, HORST
To: LIEBHERR-COMPONENTS BIBERACH GMBH
Reel/Frame 031385/0479 →
Priority Claims (1)
DE 20 2011 001 846 U · Jan 24, 2011 · national
Continuity (2)
Continuation PCTEP2012000311 · Jan 24, 2012
Related Publication 20140027401A1 · Jan 30, 2014