The present invention lies in the field of quality control in the textile laboratory. It relates to an apparatus for determining features, especially the hairiness, of a yarn, according to the preambles of the independent claims. Such apparatuses are typically used in a textile laboratory.
In the case of staple fiber yarns, which are spun of many fibers, individual fibers are not incorporated completely into the actual yarn body. They partly protrude from the yarn body, which is known as hairiness of the yarn. The hairiness is an important yarn property, which is why the textile industry is highly interested in reliably and reproducibly measuring and classifying the same.
Apparatuses for determining the hairiness of yarns are known, e.g. the device USTER® ZWEIGLE HAIRINESS TESTER 5 of the applicant, which has been described for example in “USTER® ZWEIGLE HAIRINESS TESTER 5 Application Handbook”, V1.0, September 2009, or the device USTER® TESTER 5-S800 of the applicant, which has been described for example in the brochure “USTER® TESTER 5-5800 Brilliant Testing—Superior Analysis”, August 2007. The specifications EP-0,271,728 A2, EP 1,621,872 A2, DE-198,18,069 A1 and DE 199,24,840 A1 also disclose hairiness measuring devices.
U.S. Pat. No. 3,566,194 A describes an electrical distribution board with an especially flat housing. The four housing walls are provided with inwardly bent lugs on which a front plate is fastened.
EP-0,266,612 A2 discloses a yarn testing device with two feed rollers which rest on each other for conveying the yarn to be tested. During testing operation, a bearing arm of the one feed roller presses a safety switch. As soon as the bearing arm with the feed roller is pivoted away, the safety switch switches off the drive motors of the feed rollers.
U.S. Pat. No. 4,213,056 A discloses an apparatus for testing interlaced multifilament yarns. The apparatus contains an optical sensor unit, in which a contact body is disposed. The multifilament yarn to be tested is guided with a predetermined contact pressure over the contact body and is optically scanned. A curved insertion slit is provided in the bottom and top cover plate of the sensor unit for introducing the multifilament yarn in such a way that it is guided wrapped around the contact body.
It is an object of the present invention to further improve the known apparatuses for determining features of a yarn concerning various aspects.
This and further objects are achieved by the apparatus in accordance with the invention, as defined in the independent claims. Advantageous embodiments are provided in the dependent claims.
In a first embodiment, the apparatus in accordance with the invention for determining features of a yarn contains a housing and a sensor device attached to the housing for measuring at least one parameter of the yarn. The housing substantially consists of a front plate, a rear plate and a frame disposed between the front plate and the rear plate. The frame is produced integrally and separately from the front plate and the rear plate. The frame is preferably made of a bent sheet metal. The front plate and the rear plate can be designed as flat plates and be fastened by means of screw connections to lugs which are bent inwardly on the frame. The housing has therefore an especially simple configuration in this first embodiment.
In a second embodiment, the apparatus in accordance with the invention for determining features of a yarn contains a housing with a front plate standing substantially perpendicularly on a base, a sensor device attached in or to the housing for measuring at least one parameter of the yarn and further components. The front plate of the housing is used as a carrier element for the sensor device and several further components. In an especially preferred embodiment, the several further components are chosen from the set which contains the following elements: guide elements for yarn guidance, a sensor cover for the sensor device, an electronic circuit controlling parts of the apparatus and/or for evaluating the signals of the sensor device, a yarn conveying device, a roller cover for the yarn conveying device, a drive device for driving the yarn conveying device, a control of the drive device, a traversing device, a yarn suction device and a pressing cylinder for a yarn conveying roller. The sensor device and the several further components can be attached directly to the front plate and/or indirectly to angle sections, which on their part are attached to the front plate. This second embodiment also contributes to a simple and well-structured configuration of the apparatus and to its simple maintainability.
In a third embodiment, the apparatus in accordance with the invention for determining features of a yarn contains a sensor device for measuring at least one parameter of the yarn and a sensor cover for protecting the sensor device. The sensor cover comprises a measuring gap, through which the yarn is movable in its longitudinal direction, and an insertion slit through which the yarn is insertable into the measuring gap. The projection of the insertion slit into a plane perpendicular to the longitudinal direction is curved. In a preferred embodiment, the sensor device is an optoelectronic sensor device and the insertion slit is curved in such a way that light from the outside will not directly reach the yarn and/or a light-sensitive element of the sensor device, and/or that light emitted by a light-emitting element of the sensor device will not directly reach the exterior and/or via the yarn. As a result, the optoelectronic sensor device is shaded as well as possible from undesirable external light and the measuring signal is improved. On the other hand, work safety is improved because persons in the ambient environment of the apparatus cannot be injured by any escaping light. The term of “light” used in this specification relates not only to the visible range (VIS) of the electromagnetic spectrum, but also the adjacent ranges of ultraviolet (UV) and infrared (IR).
In a fourth embodiment, the apparatus in accordance with the invention for determining features of a yarn contains a sensor device for measuring at least one parameter of the yarn and a yarn conveying device for conveying the yarn through the sensor device. The yarn conveying device is arranged as a roller delivery mechanism with two cooperating conveying rollers. The axes of the conveying rollers are disposed in parallel with respect to each other and have a variable distance from one another, and at least one of the conveying rollers is driven. The apparatus further contains a limit sensor or a limit switch which interrupts the drive of the different conveying roller when the distance between the two axes exceeds a predetermined threshold value. This fourth embodiment therefore offers effective protection from undesirable ribbon formation and jamming of fingers, hair, and articles of clothing or jewelry.
In a fifth embodiment, the apparatus in accordance with the invention for determining features of a yarn contains a sensor device for measuring at least one parameter of the yarn and a yarn conveying device for conveying the yarn through the sensor device. The yarn conveying device is arranged as a roller delivery mechanism with two cooperating conveying rollers, with the axes of the conveying rollers being disposed in parallel with respect to each other. The apparatus further contains a traversing device which temporally changes the position of the yarn in the direction of the axes of the conveying rollers in the region of the yarn conveying device during yarn conveyance. For this purpose, the traversing device can contain a traversing element arranged as a yarn guide eye which is movable in a reciprocating fashion in the direction of the axes of the conveying rollers, e.g. by means of a pneumatic traversing cylinder. As a result of this fifth embodiment, the lateral surfaces of the conveying rollers are subjected to loads in an even fashion in the axial direction instead at only one position, thereby increasing their service life.
In a sixth embodiment, the apparatus in accordance with the invention for determining features of a yarn contains a sensor device for measuring at least one parameter of the yarn and a yarn conveying device for conveying the yarn through the sensor device. The yarn conveying device is arranged as a roller delivery mechanism with two cooperating conveying rollers, with at least one of the conveying rollers being drivable by a drive device. The at least one drivable conveying roller is drivable directly by the drive device. This provides the apparatus with a simple and cost-effective configuration. A flexible coupling can be attached between the drive device and the at least one drivable conveying roller, which coupling is arranged as a spiral coupling or a bellows coupling. This ensures even running properties of the yarn.
The aforementioned embodiments can be combined with one another at will. Such combinations lead to further especially advantageous embodiments.
The apparatus in accordance with the invention can be used for determining different features of a yarn. It can be suitable for determining only one single feature or several different features. An especially advantageous use of the apparatus in accordance with the invention is the optoelectronic measurement of the hairiness of the yarn.
Various aspects of the invention will be explained in closer detail by reference to the drawings.
The sensor cover 49 of the apparatus 1 is shown in
The axis 54 of the pressure roller 52 is movable in the direction y perpendicular to the axial direction z and perpendicular to the longitudinal direction x of the yarn within a small range of 3 mm for example, which is indicated in
A further aspect of the invention relates to yarn traversing. This is understood to be a temporal change in the position of the yarn in the direction z of the shaft 53 and the axis 54 in order to evenly load the lateral surfaces of the conveying rollers 51, 52 in the axial direction z instead of only one position. Yarn traversing is achieved in accordance with the invention in such a way that in the region of the conveying device 5 the position of the yarn 9 is changed in the axial direction z by means of a traversing device 7 containing a traversing element 71. The traversing movement is indicated with a double arrow 75 in
The drive roller 51 is driven directly by the drive device 6, i.e. without the otherwise usual transmission belts or gears. This provides the apparatus 1 with an especially simple and cost-effective configuration. It is advantageous to provide a flexible coupling 8 on the shaft 53 between the drive device 6 and the drive roller 51, which coupling compensates a possible local offset and/or angular offset between the drive shaft 57 and the output shaft 58, and thereby ensures even run of the yarn. Such a flexible coupling 8 is shown in
It is understood that the present invention is not limited to the embodiment as discussed above. The person skilled in the art will be able to derive further variants with knowledge of the invention which also belong to the subject matter of the present invention as defined in the independent claims.
Number | Date | Country | Kind |
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924/10 | Jun 2010 | CH | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CH2011/000131 | 6/1/2011 | WO | 00 | 11/2/2012 |