EP2674045A2 - Module de mesure et dispositif de mesure pour la mesure de tiges et/ou de sections de tige fabriquées dans des machines de fabrication de tiges de l'industrie de traitement du tabac ainsi que machines de fabrication de tiges dotées de tels modules de mesure ou d'un tel dispositif de mesure - Google Patents

Module de mesure et dispositif de mesure pour la mesure de tiges et/ou de sections de tige fabriquées dans des machines de fabrication de tiges de l'industrie de traitement du tabac ainsi que machines de fabrication de tiges dotées de tels modules de mesure ou d'un tel dispositif de mesure Download PDF

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Publication number
EP2674045A2
EP2674045A2 EP13171706.8A EP13171706A EP2674045A2 EP 2674045 A2 EP2674045 A2 EP 2674045A2 EP 13171706 A EP13171706 A EP 13171706A EP 2674045 A2 EP2674045 A2 EP 2674045A2
Authority
EP
European Patent Office
Prior art keywords
measuring
strand
module
measuring module
section
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP13171706.8A
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German (de)
English (en)
Other versions
EP2674045B1 (fr
EP2674045A3 (fr
Inventor
Simon Fischer
Jürgen Goetz
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Koerber Technologies GmbH
Original Assignee
Hauni Maschinenbau GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hauni Maschinenbau GmbH filed Critical Hauni Maschinenbau GmbH
Priority to PL13171706T priority Critical patent/PL2674045T3/pl
Publication of EP2674045A2 publication Critical patent/EP2674045A2/fr
Publication of EP2674045A3 publication Critical patent/EP2674045A3/fr
Application granted granted Critical
Publication of EP2674045B1 publication Critical patent/EP2674045B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24CMACHINES FOR MAKING CIGARS OR CIGARETTES
    • A24C5/00Making cigarettes; Making tipping materials for, or attaching filters or mouthpieces to, cigars or cigarettes
    • A24C5/32Separating, ordering, counting or examining cigarettes; Regulating the feeding of tobacco according to rod or cigarette condition
    • A24C5/34Examining cigarettes or the rod, e.g. for regulating the feeding of tobacco; Removing defective cigarettes

Definitions

  • the invention relates to a measuring module, designed and arranged for measuring produced in strand machines of the tobacco processing industry and transported in the conveying direction strands and / or strand sections comprising a housing, at least one strand passage channel, at least one arranged in the housing and on the or each strand passage channel directed measuring means and a means for introducing cleaning air in the strand passage channel.
  • the invention further relates to a measuring arrangement, designed and set up for measuring strands and / or strand sections produced in extrusion machines of the tobacco processing industry, comprising a measuring head with at least one measuring module for forming a measuring section M, wherein at least one measuring head is provided in the measuring head a continuous strand passage channel extending in the conveying direction F through the entire measuring head and all measuring modules is formed, and at least one strand guiding device is associated with the measuring head, and an evaluation unit to which each measuring module is connected via a connection.
  • the invention also relates to a stranding machine for producing at least one strand and / or strand sections of the tobacco processing industry with a measuring arrangement.
  • measuring modules and measuring arrangements are known from the prior art.
  • the measuring modules can be used as a single device. Preferred and However, these measuring modules are usually part of a measuring arrangement, which in turn is part of a stranding machine.
  • the stranding machines used in the tobacco processing industry are well known and filter for example in the WO 2011/083406 A2 described.
  • a stranding machine for tobacco strands is for example the EP 1 516 545 A1 to be taken from the applicant.
  • the measurement arrangements serve to clean the strands or strand sections made of tobacco, filter material or other materials and material mixtures suitable for the production of (filter) cigarettes, cigarillos, monofiltration rods, multisegment filter rods or the like with respect to selected parameters in the single-strand or multi-strand stranding machine
  • the density, the humidity, the diameter, the presence of predetermined constituents or foreign bodies and the presence of contaminants must be mentioned, investigated or determined.
  • the optionally wrapped or wrapping-free strands are continuously transported through the measuring arrangement as a continuous strand or as strands separated from the endless strand in single or multiple use lengths.
  • the term strand is used both for a quasi-endless strand and for finite-length strand sections.
  • the measurement modules During transport through the measuring arrangement, the measurement modules record the measurement data which are forwarded to the evaluation unit.
  • the measuring arrangement there is the requirement to adapt the measuring arrangement in order to interrogate different measuring functions depending on the order and / or depending on the framework conditions.
  • different formats of the strands that is to say the different lengths and in particular the changing diameters of the strands and strand sections, are to be grasped constructively and metrologically, which likewise requires an adaptation of the measuring arrangement.
  • the interfaces of the measuring modules are individually adapted to the hardware and software requirements.
  • the measuring modules themselves are adapted to the different formats, in particular the different strand diameters, and measuring functions.
  • Such an individualized Measuring arrangement is eg in the WO 2011/083406 A2 described.
  • This measuring arrangement has a plurality of measuring modules arranged one behind the other in the conveying direction to form a single measuring section, which are each arranged in a separate housing. Through the housing leads a strand passage channel in which the strand or the strand sections are promoted.
  • a measuring means for example in the form of a sensor is arranged.
  • Each sensor may be associated with a cleaning nozzle for introducing cleaning air.
  • This cleaning air should ensure that the measuring equipment is kept free from contamination. However, this can be achieved only to a limited extent, for example because of turbulences, so that the measuring means become dirty despite the cleaning air.
  • the measuring module and the entire measuring arrangement must then be disassembled and cleaned consuming.
  • Another problem is that the measuring modules in the measuring arrangement on the one hand closely to each other, which makes insertion and removal difficult when changing the measuring modules, and on the other hand are not sealed against each other, which increases the degree of contamination especially between the measuring modules and makes cleaning difficult.
  • the measuring arrangement described in the said WO document is limited in terms of flexibility in the change of the measuring modules, in particular in a multi-strand machine with several measuring sections.
  • the invention is therefore based on the object to propose a compact and simplified in handling measuring arrangement with an improved cleaning concept.
  • a measuring module with the features mentioned above in that in each strand passage channel exclusively a protective module associated protective tube section is arranged, wherein the protective tube section from an inlet region of the or each strand in the strand passage channel to a discharge area of the or each strand extends the strand passage channel.
  • the protective pipe section does not protrude out of the strand passage channel.
  • the protective tube section is fastened in the strand passage channel and adapted individually to the respective measuring function of the measuring device.
  • the protective tube section which is permanently but detachably associated with the respective measuring module, allows the individual assembly of several measuring modules with different measuring functions within a measuring arrangement.
  • measuring modules with new measuring functions can be integrated into an existing measuring arrangement without further adjustments.
  • Each protective tube section thus forms, as it were, a measuring tube which is specific with respect to the measuring function, whereby the specification is described e.g. on the material, the geometry, the profile, etc. can relate.
  • a nozzle element for introducing cleaning air RL is arranged in the protective pipe section in the inlet region E of each strand in the strand passage channel, wherein each nozzle element for radially directed feeding the cleaning air RL to the protective pipe section and longitudinal axial directed conduction of the cleaning air RL is formed and arranged in the protective pipe section.
  • a directed introduction of the cleaning air is ensured in the strand passage channel.
  • Each cleaning air extend to a measuring window of the protective pipe sections.
  • the cleaning air is ideally directed vortexing exactly in the area in which the actual cleaning function is needed, namely in the area of the measurement window.
  • each nozzle member is secured to an inlet plate, wherein the inlet plate is releasably secured to the housing and the nozzle member comprises the hollow cylindrical nozzle portion with a closed lateral surface.
  • This embodiment allows easy replacement of the nozzle member and easy cleaning.
  • the hollow cylindrical body with the closed lateral surface forms the nozzle section for longitudinal axial guidance of the cleaning air RL within the protective pipe section.
  • a further advantageous embodiment of the invention is characterized in that each nozzle element is connected via a supply line to a compressed air supply, wherein the supply line is guided past the measuring means.
  • the cleaning air RL is targeted and introduced with the necessary flow rate.
  • the compressed air and its guidance / guidance through the measuring module have several positive effects.
  • the compressed air initially serves as cooling air KL, by absorbing heat as it flows past, in particular at the measuring means.
  • the compressed air ie the heated cooling air KL, the cleaning air RL, the condensation in the strand area.
  • sealing means for sealing the measuring module to a measuring module F following in the conveying direction F and / or a housing wall of a measuring arrangement are arranged in the outlet region A of each strand from the strand passage channel.
  • the sealant further reduces the level of contamination.
  • the measuring module according to the invention further developed in that the sealing means is designed and configured for active sealing, wherein the sealing means is an inflatable sealing ring.
  • the active or even dynamic sealing prevents the entry of contaminants into the measuring module or into the measuring arrangement formed by a plurality of measuring modules and facilitates the assembly of the measuring modules within a measuring arrangement.
  • a development of the invention is characterized in that the inflatable sealing ring is connected to a controller for venting and venting.
  • a control is ensured in a simple manner, by means of which the inflated sealing ring remains inflated even when the compressed air is switched off in its sealing position and function, ie.
  • the invention is preferably further developed in that the sealing means acts perpendicular to the mounting direction of the measuring modules, namely in the conveying direction F. Due to the sealing effect in the conveying direction F, the measuring modules can be easily removed from the measuring arrangement in the uninflated state of the sealing means and inserted again. Furthermore, the sealant during removal and insertion is not subjected to shear forces, since the sealant is retracted in the uninflated state and thus virtually releases the measuring module.
  • the sealing means is integrated in a discharge plate, wherein the discharge plate is releasably secured to the housing.
  • This embodiment allows the easy replacement of the sealant and the easy cleaning of the measuring module.
  • the outlet plate which is arranged on the inlet plate opposite side of the housing, associated with a hollow cylindrical body with perforated lateral surface.
  • the hollow cylindrical body with the perforated lateral surface provides for a ventilation possibility for the cleaning air RL.
  • a preferred embodiment of the invention is characterized in that the inlet plate and the outlet plate are formed identically with respect to their geometric dimensions. This allows any change between the inlet area and the outlet area.
  • both the inlet plate and the outlet plate can be inserted into both openings of the strand passage channel, whereby the flexibility with respect to the use and positioning of the measuring modules within a measuring arrangement is improved.
  • each measuring module can be used in a two-line machine both in the measuring section for the rear strand as well as in the parallel measuring section for the front strand.
  • two separate compressed air supply lines are provided, wherein the compressed air for the cleaning air RL flows continuously and the compressed air for the sealing means is constant. This ensures a completely self-sufficient supply of the measuring module with cooling and cleaning air on the one hand and sealing air on the other hand.
  • the continuous compressed air flow of the cooling and cleaning air can also speak of a dynamic feed, while the stationary compressed air in the sealant, which is variable with respect to the pressure level, can be referred to as static.
  • each measuring module is designed and set up according to one of claims 1 to 14.
  • the resulting advantages have already been described in connection with the measuring module, which is why reference is made to the corresponding passages to avoid repetition.
  • the measuring modules according to one of claims 1 to 14 a particularly flexible and easily adaptable to individual measurement requirements measuring arrangement is created.
  • the measuring modules are almost interchangeable between different positions within a measuring section and between adjacent measuring sections.
  • all measuring modules are arranged in a common housing of the measuring head, wherein measuring modules, in the conveying direction F to form a
  • Measuring section M 1 and M 2 are arranged one behind the other, with their protective pipe sections and the sealing means form a protective tube.
  • larger and arbitrarily combinable measuring arrangements can be formed from two or more measuring modules, each of which is already operational and functional.
  • the sealing means an inflatable sealing ring can be plugged, wherein modulo module-free sections of the module carrier in the measuring section M 1 and M 2 each with a Empty housing are equipped, and the connections for introducing the cooling and cleaning air and / or the sealing air in each measuring module are also formed and set up on the module carrier. This facilitates handling especially when changing the measuring modules.
  • the empty housing which correspond in size to the measuring modules and also have at least one strand passage, it is ensured that even if not at all positions of the module carrier a measuring module is plugged, a continuous strand passage channel is formed.
  • the empty enclosures each form a dummy module and fill in the gaps between the measuring modules.
  • An expedient development of the measuring arrangement is characterized in that a strand cutting unit is arranged upstream of the respective first measuring module of the measuring sections M 1 or M 2 . This means that with the strand cutting unit arranged on the input side in the conveying direction F, endless strands can be divided into strand sections.
  • the drawing describes measuring modules, measuring arrangements and a rod making machine for producing and measuring tobacco rods and tobacco rod sections, the so-called tobacco rods.
  • the invention is equally applicable to the manufacture and measurement of filters, filter rods or other rod-shaped articles of the tobacco processing industry.
  • a measuring module 10 is shown, which is designed and set up for measuring strands 12 and / or strand sections produced in extrusion machines 11 of the tobacco-processing industry and transported in the conveying direction F.
  • Each measuring module 10 comprises a housing 13, at least one strand passage 14, at least one arranged in the housing 13 and directed to the or each strand passage 14 measuring means 15 and a means 16 for introducing cleaning air RL in the strand flow channel 14th
  • Each of these measuring modules 10 is characterized according to the invention in that in each strand passage 14 an exclusively the measuring module 10 associated protective tube section 17 is arranged, wherein the protective tube section 17 from an inlet region E of the or each strand 12 in the strand flow channel 14 to a discharge area A of or each strand 12 extends from the strand passageway 14.
  • This protective tube portion 17 is fitted in the strand passageway 14 such that the or each strand 12 is guided within the protective tube portion 17 and shields the measuring means 15 from the or each strand 12.
  • the protective pipe section 17 is in the strand passage 14, which is laterally offset within the housing 13 relative to the center of the housing, that is asymmetrical, attached and adapted individually to the respective measurement function of the measuring means 15.
  • the strand passage channel 14 is arranged eccentrically with respect to a central axis K of the measuring module 10 in order, in the case of adjacent measuring modules 10, to be connected to the e.g. be adjusted by a two-strand machine 11 defined distance between the two strands 12.
  • the attachment is preferably detachable, so that the protective tube sections 17, e.g. easily replaceable when worn.
  • Each protective tube sections 17 is arranged completely inside the housing 13. In other words, the protective tube section 17 does not protrude beyond the housing 13.
  • the protective tube sections 17 can be adapted to the respective measuring function, e.g. With regard to the material selection and properties and / or the profile cross-sections and / or the size and diameter specific to the respective measuring means 15 may be formed differently in the measuring module 10.
  • each nozzle element 18 for introducing cleaning air (see, for example, arrow RL in FIG. 2 ) are arranged in the protective pipe section 17.
  • Each nozzle element 18 is preferably for radially directed feeding the cleaning air RL to the protective pipe section 17 and longitudinally directed axial direction of the cleaning air RL in the protective pipe section 17 and set up. Accordingly, the cleaning air RL initially strikes the protective pipe section 17 perpendicular to the strand 12, in order then to be conducted in the conveying direction F parallel to the strand 12 in the protective pipe section 17.
  • the nozzle element 18 is designed to divert the cleaning air RL.
  • the nozzle element 18 has a flange portion 19 and a hollow cylindrical nozzle portion 20.
  • the nozzle section 20 for longitudinal axial guidance of the cleaning air RL extends to a measuring window of the protective pipe section 17, but does not cover it.
  • the measuring window is the region of the protective tube section 17 in which the measuring means 15 or its measuring signals, such as laser beams, infrared rays, etc., strike the protective tube section 17 and the strand 12 transported in the protective tube section 17.
  • Such measuring windows are provided or designed in particular when the measuring means 15 is, for example, an optical sensor. However, the measuring window can also simply be a region of the protective tube section 17 in which the measurement takes place.
  • the inner diameter of the nozzle portion 20 is so large that the strand 12 can be transported without damage therein.
  • the outer diameter of the nozzle portion 20 is selected so that there is a gap between the nozzle portion 20 and the protective pipe portion 17, in which the cleaning air RL is guided along.
  • Each nozzle member 18 is fixed to an inlet plate 21, wherein the inlet plate 21 is releasably secured to the housing 13.
  • the nozzle member 18 may be secured to the inlet plate 21 by means of the flange portion 19.
  • the flange portion 19 is an integral part of the inlet plate 21.
  • At the inlet plate 21 of the nozzle portion 20 is arranged, wherein the nozzle portion 20 has a closed lateral surface.
  • Each nozzle element 18 is connected via a supply line 22 to a compressed air supply not explicitly shown.
  • the supply line 22 extends from the bottom of the housing 13 to the nozzle member 18.
  • the supply line 22 is guided past the measuring means 15.
  • the supply line 22 on the one hand is placed close to the measuring means 15 and on the other hand optionally extends over the longest possible distance within the housing 13 in order to be produced in the measuring module 10 Absorb heat and dissipate.
  • the outgoing air from the compressed air supply thus has two major effects. On the one hand, it serves as cooling air KL (see arrow KL in FIG. 2 ) for the measuring module 10.
  • the air that heats up is then the cleaning air RL (see arrow RL in FIG. 2 ).
  • the fact that the cleaning air RL is already heated by the same through the measuring module 10 in the region of the protective tube section 17, the formation of condensation in the region of the strand 12 is avoided.
  • sealing means 23 for sealing the measuring module 10 are arranged opposite a measuring module 10 following in the conveying direction F and / or a housing wall 24 of a measuring arrangement 25.
  • sealing means 23 for active, ie controllable or variable density are preferred.
  • Particularly preferred are those sealing means 23 which ensure an active, pneumatic seal.
  • An example of this is an inflatable sealing ring 26. In the inflated state, ie in its sealing function, the sealing ring 26 seals two successive measuring modules 10 against each other. In a non-inflated state, the sealing ring 26 is completely arranged in the housing 13.
  • the sealing ring 26 is connected to a controller in addition to a compressed air supply.
  • the sealing ring 26 can be controlled individually, for example, in that the inflated sealing ring 26 continues to remain in its sealing function when the compressed air is switched off and seals.
  • venting for example, for the removal of a measuring module 10 from the measuring arrangement 25, the sealing ring 26 can be actively vented by means of the control. Due to the described design and arrangement of the sealant 23 this acts perpendicular to the mounting direction M of the measuring modules 10, namely in the conveying direction F.
  • the sealing means 23 is integrated in a discharge plate 27, wherein the discharge plate 27 is releasably secured to the housing 13.
  • the outlet plate 27 is arranged on the inlet plate 21 opposite side of the housing 13.
  • the outlet plate 27 is associated with a hollow cylindrical body 28, the lateral surface perforated, preferably provided with slots, is formed.
  • This body 28 can For example, to protect the measuring tube and / or for directed venting or diverting the cleaning air RL serve from the strand flow channel 14.
  • the cleaning air RL can flow back into the strand passage 14 (as indicated by the arrows). As a result, air and / or dirt pockets in the body 28 are avoided.
  • the inner diameter of the body 28 is so large that the strand 12 can be transported without damage therein.
  • the outer diameter of the body 28 is selected so that there is a clearance between the body 28 and the protective tube portion 17.
  • the inlet plate 21 and the outlet plate 27 are formed substantially identical in terms of their geometric dimensions. This means that both the inlet plate 21 and the outlet plate 27 can be mounted on both sides of the housing 13. The importance of identical training for the alternating positioning of inlet plate 21 and outlet plate 27 in both openings, ie both in the inlet region E and in the outlet region A, the strand flow channel 14 will be described below.
  • the measuring module 10 preferably comprises two separate compressed air supply lines.
  • a compressed air supply is used to flow compressed air as cooling and / or cleaning air continuously.
  • the other compressed air supply serves to supply the sealing means 23 with compressed air, wherein the compressed air in the sealing means 23 is constant.
  • the amount of pressure is variable.
  • the compressed air supply can have a common control. Preferably, however, separate controls are provided.
  • each measuring module 10 may also have two or more strand passage channels 14. Also, two or more measuring means 15 may be arranged in a housing 13 of a measuring module 10.
  • the measuring module 10 can be used as a single part, for example as a supplementary or replacement module. Further particular advantages with regard to the flexibility of the use of the measuring modules 10 according to the invention also unfold in connection with the measuring arrangement 25, as exemplified in US Pat FIG. 3 is shown.
  • a measuring arrangement 25, designed and arranged for measuring strands 12 and / or strand sections produced in extrusion machines 11 of the tobacco processing industry comprises a measuring head 29 having at least one measuring module 10 for forming a measuring section M, wherein in the measuring head 29 at least one, in the conveying direction F through the entire measuring head 29 and all measuring modules 10 extending, continuous strand passage channel 30 is formed.
  • the measuring head 29 is associated with at least one strand guide device not explicitly shown.
  • the measuring arrangement 25 comprises an evaluation unit 31, to which each measuring module 10 is connected via a connection 32. According to the invention, each measuring module 10 is designed as described above.
  • two measuring sections M 1 and M 2 are formed, wherein the measuring section M 1 for the rear leg 12 has a plurality of measuring modules 10, while the measuring section M 2 for the front leg 12 only one measuring module 10 is assigned.
  • the number of measuring modules 10, the number of measuring sections M 1 to Mn and the positioning of the measuring modules 10 within the measuring arrangement 25 can vary. All measuring modules 10 are arranged in a common housing 33 of the measuring head 29, wherein the measuring modules 10 are plugged via electrical and / or pneumatic connectors on a module carrier 34.
  • all measuring modules 10 in the measuring arrangement 25 with the two measuring sections M 1 and M 2 within a measuring section M 1 or M 2 and between the two measuring sections M 1 and M 2 in any position and number can be plugged.
  • the measuring modules 10 can also be changed from a rear strand position to a front strand position or vice versa.
  • the measuring module 10 is detachable from the module carrier 34 of the measuring arrangement 25 and rotatable about a vertical axis (central axis K) by 180 °, so that the previous inlet region E becomes the new outlet region A and vice versa.
  • the inlet plate 21 and outlet plate 27 must then be replaced with each other.
  • the inlet plate 21 and the outlet plate 27 are 180 ° before the again Insertion about a horizontal axis which is parallel to the conveying direction F of the strand 12, rotatable and then reusable.
  • this gap can be equipped by corresponding empty housing.
  • so-called measuring module rubbers whose outer dimensions correspond to those of the unitary housing of the measuring modules 10 may be plugged into the module module-free places / sections on the module carrier 34 to form a continuous strand passage channel 14.
  • these empty housings have at least one strand passage 14 and, in the outlet area A, the sealing means 23 described above.
  • the successive measuring modules 10 and / or empty housings of a measuring section M 1 , M 2 form with their protective tube sections 17 and the sealing means 23 a protective tube which extends continuously through the strand passage channel 30.
  • the successive measuring modules 10 seal against each other.
  • the last measuring module 10 in the measuring section M 1 , M 2 in the conveying direction F is sealed against the housing wall 24 of the housing 33 of the measuring arrangement 25.
  • each measuring module 10 The connections for introducing the cooling and cleaning air on the one hand and / or the sealing air on the other hand in each measuring module 10 are preferably also arranged on the module carrier 34, so that all supply lines of the measuring modules 10 are arranged on one side, preferably on the underside. This simplifies firstly the assembly / disassembly of individual measuring modules 10 and secondly the configuration of the measuring arrangement 25. In particular, measuring modules 10 with new and / or additional measuring functions can also be easily integrated into the measuring arrangement 25.
  • the measuring arrangement 25 can furthermore be assigned at least one strand cutting unit. This is arranged upstream of the respective first measuring module 10 of the measuring sections M 1 and M 2 . In other words, the or each strand cutting unit is arranged in the inlet region E.
  • the measuring arrangement 25 can be used as a separate component. However, the measuring arrangement 25 is preferably integrated in a stranding machine 11, as is the case of the FIG. 4 can be seen. In the training as a tobacco rod machine on the input side is a
  • a filter tow conditioning unit is provided.
  • Such extrusion machines 11 are well known, which is why a detailed description is omitted.
  • the stranding machine 11 according to the invention is now characterized in that the measuring arrangement 25 described above is integrated into the stranding machine 11, so that an online measurement with rapidly variable configuration of the measuring arrangement 25 is achieved.

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  • Manufacturing Of Cigar And Cigarette Tobacco (AREA)
EP13171706.8A 2012-06-13 2013-06-12 Module de mesure et dispositif de mesure pour la mesure de tiges et/ou de sections de tige fabriquées dans des machines de fabrication de tiges de l'industrie de traitement du tabac ainsi que machines de fabrication de tiges dotées de tels modules de mesure ou d'un tel dispositif de mesure Active EP2674045B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL13171706T PL2674045T3 (pl) 2012-06-13 2013-06-12 Moduł pomiarowy i układ pomiarowy do mierzenia pasm i/lub odcinków pasm wytwarzanych w maszynach do wytwarzania pasm przemysłu przetwórstwa tytoniu oraz maszyny do wytwarzania pasm z takimi modułami pomiarowymi bądź takim układem pomiarowym

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102012105121A DE102012105121A1 (de) 2012-06-13 2012-06-13 Messmodul und Messanordnung zum Messen von in Strangmaschinen der Tabak verarbeitenden Industrie hergestellten Strängen und/oder Strangabschnitten sowie Strangmaschine mit solchen Messmodulen bzw. einer solchen Messanordnung

Publications (3)

Publication Number Publication Date
EP2674045A2 true EP2674045A2 (fr) 2013-12-18
EP2674045A3 EP2674045A3 (fr) 2017-05-10
EP2674045B1 EP2674045B1 (fr) 2019-12-11

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EP13171706.8A Active EP2674045B1 (fr) 2012-06-13 2013-06-12 Module de mesure et dispositif de mesure pour la mesure de tiges et/ou de sections de tige fabriquées dans des machines de fabrication de tiges de l'industrie de traitement du tabac ainsi que machines de fabrication de tiges dotées de tels modules de mesure ou d'un tel dispositif de mesure

Country Status (5)

Country Link
EP (1) EP2674045B1 (fr)
JP (1) JP2013255493A (fr)
CN (1) CN103478898B (fr)
DE (1) DE102012105121A1 (fr)
PL (1) PL2674045T3 (fr)

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DE102014222465A1 (de) 2014-11-04 2016-05-04 Hauni Maschinenbau Ag Verfahren zum Überwachen eines modularen Messsystems sowie Leermodul, modulares Messsystem und Strangmaschine der Tabak verarbeitenden Industrie
WO2020058871A1 (fr) * 2018-09-21 2020-03-26 G.D S.P.A. Détecteur électromagnétique pour la détection de propriétés de produits de l'industrie du tabac
CN114923878A (zh) * 2022-03-16 2022-08-19 中交一公局集团有限公司 一种便携式瓦斯检测装置

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JP6056743B2 (ja) 2013-12-10 2017-01-11 株式会社デンソー 圧縮自着火式内燃機関の制御装置
CN111380870A (zh) * 2018-12-28 2020-07-07 上海尤图智能科技有限公司 一种实时检测线材的防护装置和方法
DE102019135129B3 (de) 2019-12-19 2021-05-20 Lisa Dräxlmaier GmbH Prüfsystem zum optischen überprüfen einer elektrischen leitung

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DE102014222465A1 (de) 2014-11-04 2016-05-04 Hauni Maschinenbau Ag Verfahren zum Überwachen eines modularen Messsystems sowie Leermodul, modulares Messsystem und Strangmaschine der Tabak verarbeitenden Industrie
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CN114923878B (zh) * 2022-03-16 2024-04-30 中交一公局集团有限公司 一种便携式瓦斯检测装置

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DE102012105121A1 (de) 2013-12-19
EP2674045B1 (fr) 2019-12-11
PL2674045T3 (pl) 2020-06-01
JP2013255493A (ja) 2013-12-26
EP2674045A3 (fr) 2017-05-10
CN103478898A (zh) 2014-01-01
CN103478898B (zh) 2017-03-01

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