Apparatus and method for checking tyres

US11215567B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11215567-B2
Application numberUS-202017069337-A
CountryUS
Kind codeB2
Filing dateOct 13, 2020
Priority dateApr 5, 2016
Publication dateJan 4, 2022
Grant dateJan 4, 2022

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

Apparatus ( 1 ) for checking tyres, comprising: a support frame ( 2 ); a flange ( 3 ); and an acquisition system ( 4 ) of three-dimensional images of a surface of a tyre, the acquisition system being mounted on the support frame and comprising: a matrix camera ( 5 ), a linear laser source ( 7 ), and a reflecting surface ( 12 ) which intersects the propagation axis ( 9 ) of the linear laser beam and the optical axis ( 6 ) of the matrix camera ( 5 ), wherein a first angle ( 50 ) formed between a first section ( 14 ) and a second section ( 31 ) of the optical axis ( 6 ) mutually symmetrical with respect to a normal to the reflecting surface in the respective point of incidence to the reflecting surface, is obtuse, and wherein a second angle ( 51 ) formed between a first section ( 16 ) and a second section ( 32 ) of the propagation axis ( 9 ) mutually symmetrical with respect to a normal to the reflecting surface in the respective point of incidence to the reflecting surface, is obtuse.

First claim

Opening claim text (preview).

The invention claimed is: 1. A method for checking tyres, comprising: arranging a tyre to be checked; arranging an apparatus for checking tyres, wherein the apparatus for checking tyres comprises: a support frame; a flange fixed on the support frame for attaching the support frame to a movement member of the apparatus; and an acquisition system for acquiring three-dimensional images of a surface of a tyre, wherein the acquisition system is mounted on the support frame and comprises: a matrix camera with an optical axis, a linear laser source to emit a linear laser beam having a propagation plane and a propagation axis, and a reflecting element with a reflecting surface which intersects both the propagation axis and the optical axis to respectively identify a first section and a second section of the propagation axis and a first section and a second section of the optical axis, wherein: the first section and the second section of the propagation axis are rectilinear sections incident on the reflecting surface in a respective point of incidence and mirror each other with respect to a line perpendicular to the reflecting surface in the respective point of incidence; the first section and the second section of the optical axis are rectilinear sections incident on the reflecting surface in a respective point of incidence and mirror each other with respect to a line perpendicular to the reflecting surface in the respective point of incidence; the first section of the propagation axis is situated on the side of the matrix camera with respect to the point of incidence and the first section of the optical axis is situated on the side of the linear laser source with respect to the respective point of incidence; a first angle formed between the first section and the second section of the optical axis is obtuse; and a second angle formed between the first section and the second section of the propagation axis is obtuse, inserting at least the reflecting element in a space inside the tyre; illuminating a linear portion of an internal surface of the tyre with the linear laser beam to generate a laser line; acquiring a matrix image of an internal surface portion containing the linear portion of the internal surface, wherein the matrix image comprises a reflected laser line representing the laser line; identifying the reflected laser line in the matrix image; and processing the reflected laser line via triangulation to obtain a three-dimensional image of the linear surface portion representing an altimetric profile of the linear surface portion. 2. The method according to claim 1 , further comprising selecting a sub-portion of the acquired matrix image along a direction substantially orthogonal to the reflected laser line in the matrix image itself, and identifying the reflected laser line and processing via triangulation the reflected laser line on the image sub-portion. 3. The method according to claim 1 , further comprising: translating a first internal surface region of the tyre with respect to the apparatus to generate a series of distinct linear portions of the first internal surface region situated in succession within a depth of field of the matrix camera at least at the propagation plane, and activating the acquisition system in sequence during the translation to sequentially repeat the steps of illuminating with the linear laser beam, acquiring the respective matrix image, identifying the respective reflected laser line, and processing the respective reflected laser line to obtain the respective three-dimensional image and to acquire a respective series of three-dimensional images of the series of distinct linear portions of the first internal surface region, wherein a complete three-dimensional image is obtained of the first internal surface region by combining the series of three-dimensional images obtained on the series of linear internal surface portions, and wherein the first internal surface region is an internal surface region of a shoulder of the tyre. 4. The method according to claim 3 , further comprising: translating a second internal surface region of the tyre with respect to the apparatus to generate a series of distinct linear portions of the second internal surface region situated in succession within the depth of field of the matrix camera at least at the propagation plane, and activating the acquisition system in sequence during the translation to sequentially repeat the steps of illuminating with the linear laser beam, acquiring the respective matrix image, identifying the respective reflected laser line, and processing the respective reflected laser line to obtain a respective three-dimensional image, and to acquire a respective series of three-dimensional images of the series of distinct linear portions of the second internal surface region, wherein a complete three-dimensional image of the second internal surface region is obtained by combining the series of three-dimensional images obtained on the series of linear internal surface portions, and wherein the second internal surface region is an internal surface region of a sidewall of the tyre. 5. The method according to claim 4 , further comprising: translating a third internal surface region of the tyre with respect to the apparatus to generate a series of distinct linear portions of the third internal surface region situated in succession within the depth of field of the matrix camera at least at the propagation plane, and activating the acquisition system in sequence during the translation in order to sequentially repeat the steps of illuminating with the linear laser beam, acquiring the respective matrix image, identifying the respective reflected laser line, and processing the respective reflected laser line to obtain a respective three-dimensional image, and to acquire a respective series of three-dimensional images of the series of distinct linear portions of the third internal surface region, wherein a complete three-dimensional image of the third internal surface region is obtained by combining the series of three-dimensional images obtained on the series of linear internal surface portions, and wherein the third internal surface region is an internal surface region of a bead of the tyre. 6. The method according to claim 5 , wherein arranging the tyre to be checked comprises arranging the tyre horizontally on a sidewall and inserting at least the reflecting element in the internal space of the tyre occurs from the top. 7. The method according to claim 6 , wherein at least one of the first internal surface region, the second internal surface region, and the third internal surface region belongs to an upper half-portion of the tyre with respect to a middle line plane. 8. The method according to claim 7 , further comprising: acquiring, by the matrix camera, a matrix image of a portion of the surface of the tyre; identifying a reflected laser line in the matrix image representing a laser line generated by the illumination of a linear portion of the surface portion with the linear laser beam; and processing, via triangulation, the reflected laser line to obtain a three-dimensional image of information relative to an altimetric profile of the linear portion of the surface portion. 9. The method according to claim 8 , further comprising: selecting a sub-portion of the acquired matrix image, along a direction substantially orthogonal to the reflected laser line in the matrix image itself, wherein the operations of identifying the laser line and processing the reflected laser line are conducted on the image sub-portion. 10. The method according to claim 9 , wherein, after the operation of selecting the sub-portio

Assignees

Inventors

Classifications

  • provided with illuminating means · CPC title

  • inside surface · CPC title

  • using a probe · CPC title

  • Objects of complex shape, e.g. examined with use of a surface follower device (measuring contours and curvatures G01B11/24) · CPC title

  • by projecting a pattern, e.g. {one or more lines,} moiré fringes on the object (G01B11/255 takes precedence {; image analysis for depth or shape recovery G06T7/50}) · CPC title

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What does patent US11215567B2 cover?
Apparatus ( 1 ) for checking tyres, comprising: a support frame ( 2 ); a flange ( 3 ); and an acquisition system ( 4 ) of three-dimensional images of a surface of a tyre, the acquisition system being mounted on the support frame and comprising: a matrix camera ( 5 ), a linear laser source ( 7 ), and a reflecting surface ( 12 ) which intersects the propagation axis ( 9 ) of the linear laser beam…
Who is the assignee on this patent?
Pirelli
What technology area does this patent fall under?
Primary CPC classification G01N21/9515. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Jan 04 2022 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).