WO2017103806A1 - Système permettant d'accoupler des appareils de sécurité à des machines - Google Patents

Système permettant d'accoupler des appareils de sécurité à des machines Download PDF

Info

Publication number
WO2017103806A1
WO2017103806A1 PCT/IB2016/057606 IB2016057606W WO2017103806A1 WO 2017103806 A1 WO2017103806 A1 WO 2017103806A1 IB 2016057606 W IB2016057606 W IB 2016057606W WO 2017103806 A1 WO2017103806 A1 WO 2017103806A1
Authority
WO
WIPO (PCT)
Prior art keywords
plate
tubular element
coupling system
idle
fixing bracket
Prior art date
Application number
PCT/IB2016/057606
Other languages
English (en)
Inventor
Francesco PASQUI
Original Assignee
Nuova Elettronica Snc Di Pasqui F. & C.
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 Nuova Elettronica Snc Di Pasqui F. & C. filed Critical Nuova Elettronica Snc Di Pasqui F. & C.
Publication of WO2017103806A1 publication Critical patent/WO2017103806A1/fr

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16PSAFETY DEVICES IN GENERAL; SAFETY DEVICES FOR PRESSES
    • F16P3/00Safety devices acting in conjunction with the control or operation of a machine; Control arrangements requiring the simultaneous use of two or more parts of the body
    • F16P3/12Safety devices acting in conjunction with the control or operation of a machine; Control arrangements requiring the simultaneous use of two or more parts of the body with means, e.g. feelers, which in case of the presence of a body part of a person in or near the danger zone influence the control or operation of the machine
    • F16P3/14Safety devices acting in conjunction with the control or operation of a machine; Control arrangements requiring the simultaneous use of two or more parts of the body with means, e.g. feelers, which in case of the presence of a body part of a person in or near the danger zone influence the control or operation of the machine the means being photocells or other devices sensitive without mechanical contact
    • F16P3/144Safety devices acting in conjunction with the control or operation of a machine; Control arrangements requiring the simultaneous use of two or more parts of the body with means, e.g. feelers, which in case of the presence of a body part of a person in or near the danger zone influence the control or operation of the machine the means being photocells or other devices sensitive without mechanical contact using light grids
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16MFRAMES, CASINGS OR BEDS OF ENGINES, MACHINES OR APPARATUS, NOT SPECIFIC TO ENGINES, MACHINES OR APPARATUS PROVIDED FOR ELSEWHERE; STANDS; SUPPORTS
    • F16M11/00Stands or trestles as supports for apparatus or articles placed thereon ; Stands for scientific apparatus such as gravitational force meters
    • F16M11/02Heads
    • F16M11/04Means for attachment of apparatus; Means allowing adjustment of the apparatus relatively to the stand
    • F16M11/043Allowing translations
    • F16M11/046Allowing translations adapted to upward-downward translation movement
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16MFRAMES, CASINGS OR BEDS OF ENGINES, MACHINES OR APPARATUS, NOT SPECIFIC TO ENGINES, MACHINES OR APPARATUS PROVIDED FOR ELSEWHERE; STANDS; SUPPORTS
    • F16M11/00Stands or trestles as supports for apparatus or articles placed thereon ; Stands for scientific apparatus such as gravitational force meters
    • F16M11/20Undercarriages with or without wheels
    • F16M11/24Undercarriages with or without wheels changeable in height or length of legs, also for transport only, e.g. by means of tubes screwed into each other

Definitions

  • the present invention concerns a system for coupling safety apparatuses, in particular safety apparatuses configured to create a protecting barrier, optionally an intangible barrier, for instance an optical barrier, to mechanical working machines, e.g. press brakes, comprising at least one movable part configured to move with respect to at least one fixed part,
  • a coupling system allows in an efficient, reliable, simple and inexpensive way to position with high precision at least one component of a safety apparatus in correspondence with the at least one movable part of the machine and to simultaneously protect an operator from the consequences of possible undue impacts of the same safety apparatuses, for instance on parts of the operator's body, on tools or materials malpositioned on the machine, or objects inappropriately introduced and/or positioned in proximity of the machine, further avoiding possible breakages, faults and positioning changes of the safety apparatuses caused by such impacts.
  • the coupling system according to the invention may be applied to any mechanical working machine having at least one movable part that, during the machine operation intended for mechanical working and/or during a preliminary phase of delimiting a protection zone, moves according to a translational and/or rotational motion with respect to at least one fixed part (in particular, along at least one direction along which the weight force acting on the safety apparatus has a nonzero component), such as for instance guillotine shears, milling machines, and polishing machines, still remaining within the scope of protection of the present invention as defined by the attached claims.
  • system according to the invention may be used for coupling any safety apparatus to the mechanical working machine, both a safety apparatus with intangible barrier different from a laser optical barrier (e.g. with highly directional radiofrequency beams which sense modification of a capacitance of an electric circuit) and a safety apparatus with physical barrier (e.g.
  • an interlocked barrier mounted on at least one movable part of the machine that remains still during the operation of the latter and that moves, along at least one direction along which the weight force acting on the safety apparatus has a non-zero component, during a preliminary phase of delimiting a protection zone for closing the access to an hazardous area of the machine before the latter starts to operate - in this case the movable part of the machine on which the interlocked barrier is mounted may be different from the machine parts operating the mechanical working), still remaining within the scope of protection of the present invention as defined by the attached claims.
  • press brakes are employed in processes for bending sheet metal.
  • a press brake comprises a top movable part, provided with a top tool called punch, that during the machine operation moves according to a translational motion in vertical direction with respect to a bottom fixed part, provided with a bottom tool called die.
  • a control electronic unit connected to an interface, e.g. a control panel provided with one or more buttons, through which interface an operator interacts with the control electronic unit to operating the controls for the operation and stop of the press brake.
  • both the punch and the die are not integral part of the movable part and the fixed part, respectively, rather they are mounted on these, so as to allow the press brake to be equipped with a punch-die pair selected from a set comprising a plurality of such pairs, so as to permit to bend various thickness metal sheet obtaining different bending outlines.
  • the bending process is performed by an operator positioning the sheet metal to bend on the die (where the exact positioning of the sheet metal to bend may be obtained with the aid of positioning elements) and interacting with the control panel (or other interface) per causing the punch to move down towa rds the die, so as to deform the sheet metal and obtain the bending according to an outline determined by the profiles of the specific punch-die pair used. Afterwards, the punch is moved up and spaced apart from the die, allowing the operator to move the sheet metal, so as to proceed to obtain a new bending line on the same sheet metal or another sheet metal that is positioned on the die after that the previous one has been removed.
  • an operator's hand or finger may undergo a crushing or even a shearing by the punch, or an operator's body part, such as the head, shoulder or torso, may suffer an impact from the punch and/or the movable part.
  • the press brakes are equipped with safety apparatuses forming physical and/or intangible protecting barriers.
  • Physical barriers may comprise shields and shelters delimiting a protection zone and preventing unauthorised personnel from accessing the hazardous area of the press brake during press brake operation.
  • the intangible barriers are generated by optoelectronic apparatuses forming optical barriers by means of one or more light beams delimiting the protection zone in correspondence with the hazardous area (wherein a hazardous situation is detected when a light beam is interrupted), and/or by electronic apparatuses forming barriers through highly directional radiofrequency beams delimiting the protection zone in correspondence with the hazardous area (e.g., wherein a hazardous situation is detected when a capacitance in an electronic circuit of the apparatus is modified).
  • a laser beam safety apparatus generally comprises a device emitting one or more laser beams and a device receiving said one or more laser beams, which are mounted laterally on the movable part so that said one or more laser beams are in proximity of the punch to form a protecting barrier (since the volume surrounding the punch is a hazardous area), as well as a control electronic device that is connected to the control electronic unit of the press brake so as to stop and prevent the movement of the movable part of the press brake when the receiving device senses an interruption of one of said one or more laser beams.
  • control electronic device may receive from the control electronic unit of the press brake information related to the position of the punch from the die, i.e. related to the distance of the former from the latter, whereby the operating configuration of the laser safety apparatus may be set so as to allow such stop intervention by the control electronic device only when the punch (or the movable part) is at a distance from the die (or from the fixed part) lower or not larger than a threshold value.
  • coupling systems provided with manual or powered positioning devices are used for appropriately positioning the emitting and receiving devices, which must be aligned with each other so that the laser beams emitted by the first one are correctly received by the second one.
  • Figure 1 shows a prior art coupling system, similar to those disclosed by documents
  • the coupling system of Figure 1 couples a device 1 of a laser safety apparatus to the movable part 2, on which a punch 3 is mounted, of a press brake, of which also the fixed part 4 is shown, provided with a die 5; in particular, the device 1 may be both the laser beam emitting device and the laser beam receiving device of the laser safety apparatus, the coupling system being in any case the same for the two devices (at least in relation to the mechanical components thereof).
  • the coupling system of Figure 1 that is provided with a powered positioning device, comprises a fixing bracket 106 having a first end 107 fixed to the movable part 2 of the press brake and a second end 108 housed within a tubular element 109 at the lower end 110 of which the device 1 of the laser safety apparatus is fixed.
  • the second end 108 of the fixing bracket 106 is connected to the powered positioning device, that comprises a worm 111 interacting with the internal thread of a through hole (not shown) of the second end 108, which worm 111 is rotated by a motor 112 housed in the upper end of the tubular element 109 (even if the motor 112 could be mounted in any position inside or outside the tubular element 109).
  • the tubular element 109 is shaped so as to allow its translational motion with respect to the fixing bracket 106 (e.g., the tubular element 109 may comprise a vertical groove on the side wall facing the movable part 2 of the press brake, within which vertical groove the fixing bracket 106 may slide).
  • the device 1 of the laser safety apparatus is anchored to the movable part 2 of the press brake.
  • This entails that, during the translational motion of the movable part 2 with respect to the fixed part 4, represented in Figure 1 by bidirectional arrow B, the whole assembly comprising the device 1, the tubular element 109 and the fixing bracket 106, that is integrally coupled to the movable part 2, moves along with it.
  • a coupling system for coupling safety apparatuses to a movable part of a mechanical working machine comprising:
  • a fixing bracket having a first end configured to be fixed to a movable part of a mechanical working machine
  • tubular element configured to be coupled to at least one component of a safety apparatus
  • the fixing bracket further has a second end provided with an idle slider assembly configured to slide along one or more first linear guide elements of at least one side wall of the tubular element, wherein the tubular element comprises a worm interacting with the internal thread of the through hole of the plate, and wherein the plate is provided with one or more sliding elements configured to slide within respective one or more second linear guide elements with which the tubular element is provided, which are parallel to said one or more first linear guide elements, whereby the plate slides within the tubular element when the worm rotates, the plate being configured to be stably resting on the fixing bracket when the plate is subject to a weight force of the plate and of the tubular element, whereby the tubular element is constrained to follow a translationa! motion of the fixing bracket only in one direction going from the fixing bracket to the plate.
  • the idle slider assembly may comprise one or more idle rotating elements and said one or more first linear guide elements may comprise one or more linear rails, each one of said one or more idle rotating elements being configured to slide on a respective linear rail.
  • said one or more idle rotating elements may be selected from the group comprising idle wheels and idle rollers.
  • the idle slider assembly may comprise one or more sliders and said one or more first linear guide elements may comprise one or more linear bars provided with bearings, each one of said one or more sliders being configured to slide on a respective bar or inside a respective bar.
  • said one or more sliding elements may comprise one or more protruding elements of the plate operating as sliders each one of which is configured to slide inside a respective second linear guide element.
  • At least part of said one or more sliding elements may be provided with respective idle rotating elements and/or at least part of said one or more second linear guide elements may be provided with bearings.
  • said idle rotating elements may be selected from the group comprising idle wheels and idle rollers.
  • said through hole, having an internal thread, with which the plate is provided may belong to a sleeve that is integrally coupled to the plate or that is an integral part of the plate.
  • the coupling system may further comprise a motor to which the worm is coupled, whereby the worm is configured to be rotated by the motor.
  • the coupling system may further comprise a server unit controlling the motor configured to receive a drive command from an external main controlling unit, so as to implement a servo control of the motor.
  • the coupling system may further comprise manually operable gears configured to rotate the worm.
  • the tubular element may be configured to be coupled to at least one component of a safety apparatus in correspondence with an end of the same tubular element.
  • the coupling system permitting an accurate (optionally powered) positioning of at least one component of a safety apparatus, for instance an emitting device or a receiving device of one or more laser beams of a safety apparatus for press brakes, eliminating the rigid coupling of the safety apparatus component to the machine.
  • a safety apparatus for instance an emitting device or a receiving device of one or more laser beams of a safety apparatus for press brakes
  • eliminating the rigid coupling of the safety apparatus component to the machine eliminating the rigid coupling of the safety apparatus component to the machine.
  • Figure 1 shows a schematic front view of a prior art coupling system that couples a device of a laser safety apparatus to a movable part of a press brake;
  • Figure 2 shows a schematic front view of the coupling system of Figure 1 in a hazardous situation
  • Figure 3 shows a schematic front view of a preferred embodiment of the coupling system according to the invention that couples a device of a laser safety apparatus to a movable part of a press brake in a first configuration
  • Figure 4 shows a schematic perspective view of the coupling system of Figure 3 in a second configuration
  • Figure 5 shows a schematic top plan view of the coupling system of Figure 3; and Figure 6 shows a schematic front view of the coupling system of Figure 3 that, in a hazardous situation similar to that of Figure 2, ensures the protection of the operators.
  • the coupling system for safety apparatuses may be employed for coupling only one component of a safety apparatus to the mechanical working machine; for instance, in the case of a safety apparatus creating a laser optical barrier to apply to a press brake, the system may couple only the laser emitting device or only the laser receiving device of the safety apparatus to the movable part of the press brake.
  • a preferred embodiment of the coupling system comprises a fixing bracket 206 having a first end 207 configured to be fixed to the movable part 2 of a press brake (or of another mechanical working machine) and a second end 208 provided with an idle slider assembly configured to slide along respective guide elements of the open side wall 213 of a tubular element 209, which open side wall 213 is configured to be facing the movable part 2 of the press brake; consequently, the fixing bracket 206 is configured to slide along the open side wall 213.
  • the lower end 210 of the tubular element 209 is configured to be fixed to a device 1 of a laser safety apparatus (or to at least one component of a different safety apparatus), such as for instance a device for emitting or receiving one or more laser beams.
  • the idle slider assembly comprises two pairs of idle wheels 214, the axes 215 of which are coupled to and protrude from the second end 208 of the fixing bracket 206, each pair of idle wheels 214 being configured to rotate along a respective vertical linear rail 216 (operating as guide element) with which the tubular element 209 is provided in correspondence with the open side wall 213; in particular, the two vertical linear rails 216 delimit the aperture of the open side wall 213 along the direction parallel to that along which the translational motion of the movable part 2 of the press brake occurs, i.e. along the vertical direction, and that is the direction along which the weight force of the assembly formed by the tubular element 209 (and of the components with which the latter is provided) and by the device 1 of the laser safety apparatus acts.
  • FIG. 3-5 Other embodiments of the coupling system according to the invention may have idle slider devices and respective guide elements different from those shown in Figures 3-5; by way of example and not by way of limitation, at least some of the idle wheels 214 may be replaced with other idle rotating elements, such as idle rollers, and/or the number of the idle rotating elements (e.g. idle wheels or rollers) may be any number larger than two, i.e. three or more idle rotating elements (sliding along two or more rails, and the number of idle rotating elements per rail may be one or more, optionally up to sixteen, more optionally up to eight, still more optionally up to seven), and/or the rails may be more than two (i.e.
  • the side wall along which the idle slider assembly slides instead of being completely open, is provided with grooves into which idle rotating elements configured to rotate along a respective vertical linear rail insert, and/or at least part of the idle rotating elements (e.g. idle wheels or rollers) and of the respective vertical linear rails may be replaced with sliders sliding on bars provided with bearings (operating as guide elements) or inside bars provided with bearings (also operating as guide elements) and/or at least part of the guide elements may be positioned on one or more side walls of the tubular element different from the side wall configured to be facing the movable part 2 of the press brake (for instance, the slider assembly could comprise shaped arms surrounding the tubular element and from which idle rotating elements protrude and insert into respective guide elements present on two or more of the side walls of the tubular element).
  • the idle rotating elements e.g. idle wheels or rollers
  • the guide elements may be replaced with sliders sliding on bars provided with bearings (operating as guide elements) or inside bars provided with bearings (also operating as guide elements) and/or at least part
  • FIG. 3-5 Further embodiments of the coupling system according to the invention may have the tubular element configured to be coupled to at least one component of a safety apparatus in a different manner from what shown in Figures 3-5, for instance the component of the safety apparatus may be fixed, rather than to the lower end of the tubular element, to a different portion of this optionally through a bracket properly shaped to be adapted to this purpose.
  • the coupling system according to the comprises invention shown in Figures 3-5, it may be observed that it further a worm 211 interacting with the internal thread of the through hole of a sleeve 217 of a plate 218 (in particular, the sleeve is not shown in Figure 4); in particular, the sleeve 217 may be integrally coupled to the plate 218 or it may be an integral part of the plate 218.
  • the worm 211 is coupled to a motor 212 (that is not shown in Figure 4, where however the joint 219 between worm 211 and motor is shown) housed in the upper end of the tubular element 209, whereby the worm 211 is configured to be rotated by the motor 212.
  • FIG. 2 may depict a first embodiment of the coupling system according to the invention.
  • FIG. 2 may depict a first embodiment of the coupling system according to the invention.
  • FIG. 2 may depict a first embodiment of the coupling system according to the invention.
  • FIG. 2 may depict a first embodiment of the coupling system according to the invention.
  • FIG. 2 may depict a first embodiment of the coupling system according to the invention.
  • FIG. 2 may depict a plate devoid of sleeve, whereby the worm 211 interacts with the internal thread of a through hole of the plate.
  • the plate 218 is configured so as to come out of the open side wall 213 of the tubular element 209 and to stably rest on the upper surface of the fixing bracket 206, as shown in Figure 3; the plate 218 is not integrally coupled to the (upper surface of the) bracket 206, as shown in Figure 5 wherein the coupling system is shown in a different configuration wherein the plate 218 is not resting on the upper surface of the fixing bracket 206.
  • the plate 218 is configured to slide within the tubular element 209; to this end, in the preferred embodiment of the coupling system according to the invention, the plate 218 comprises two protruding elements 220 operating as sliders sliding inside two vertical linear guides 221 within the tubular element 209.
  • FIG. 1 Other embodiments of the coupling system according to the invention may have the plate provided with a different number of protruding elements operating as sliders sliding inside respective vertical linear guides within the tubular element 209, i.e. one or three or more protruding elements.
  • Further embodiments of the coupling system according to the invention may have sliding elements different from the protruding elements 220 of Figures 3-5 configured to slide on respective linear guide elements different from the vertical linear guides 221 of Figures 3-5; for instance, at least part of the protruding elements of the plate may be provided with respective idle rotating elements, e.g. idle wheels or rollers, and/or at least part of the vertical linear guides within the tubular element 209 along which the protruding elements of the plate slide may be provided with bearings.
  • idle rotating elements e.g. idle wheels or rollers
  • the idle slider assembly of the fixing bracket 206 (comprising the two pairs of idle wheels 214 configured to rotate along respective vertical linear rails 216 of the tubular element 209) permits a reciprocal translational motion of the same fixing bracket 206 and the tubular element 209 to which the device 1 of the laser safety apparatus is fixed.
  • the weight force of the assembly formed by the same plate 218, the tubular element 209 (and the components with which the latter is provided, such as the vertical linear rails 216, the vertical linear guides 221, the worm 211 and the motor 212) and the device 1 of the laser safety apparatus tends to cause the coupling system to assume the configuration shown in Figure 3, wherein the plate 218 is stably resting on the upper surface of the fixing bracket 206 (actually, the weight force of the same plate 218 and of tubular element 209, as well as of the components with which these are provided, is sufficient to make the coupling system assume the configuration shown in Figure 3).
  • the direction of rotation of the worm 211 determines the direction of the vertical translational motion of the plate 218, and consequently of the tubular element 209, that may be upwards or downwards. Therefore, the tubular element 209 is configured to vertically translate with respect to the fixing bracket 206.
  • FIG. 6 A similar hazardous situation is shown in Figure 6, wherein the bottom tool 5 is malpositioned on the fixed part 4 and the device 1 remains resting on the bottom tool 5 pushing on the latter only with the weight force of the assembly formed by the plate 218, the tubular element 209 and the device 1, even when the movable part 2 continues its own translational motion towards the fixed part 4 of the press brake.
  • the optical barrier formed by the laser beams emitted by the safety apparatus is interrupted by the punch 3 of the same movable part 1, whereby the control electronic device of the laser safety apparatus connected to the control electronic unit of the press brake stops and prevents any further lowering of the movable part 2 of the press brake (when such stopping intervention by the control electronic device is provided by the operating configuration of the same laser safety apparatus).
  • the device 1 and, consequently, the tubular element 209 encounter an obstacle exerting a greater resistance than (said non-zero component) of the weight force of the assembly formed by the plate 218, the tubular element 209 and the device 1 of the safety apparatus, the device 1 and the tubular element 209 stop, resting on the obstacle.
  • the fixing bracket 206 drags the plate 218 and, consequently, the device 1 and the tubular element 209 upwards.
  • the plate 218 and the tubular element 209 and, consequently, the device 1 are constrained to follow the translational motion of the fixing bracket 206 only in the direction going upwards, i.e. in the direction going from the fix ng bracket 206 to the plate 218.
  • the coupling system according to the invention allows to avoid that the operator undergoes crushing or impacts directly or indirectly caused by the hit of a device of the laser safety apparatus (or of at least one component of a different safety apparatus) coupled to the movable part of the press brake (or of another mechanical working machine) with an obstacle that were present below the same.
  • the weight of the assembly formed by the tubular element 209 and the device 1 that would burden on the obstacle in correspondence with the impact zone is low and is not capable to cause significant impacts and/or overturning, in particular any overturning of heavy objects such as the bottom tool 5 of the press brake (as shown in Figure 6) or damages to the operator even if the latter directly came into contact with the device 1, because the latter would stop its own downward run as soon as it would come into contact with the obstacle (possibly with the same operator).
  • a server (or slave) unit controlling the motor 212 configured to receive a drive command from a main (or master) unit controlling a motor of an external coupling system (optionally another coupling system according to the invention), so as to implement a servo control of the motor 212 configured to position the plate 218 so that the device 1 fixed to the tubular element 209 is at the same height at which the external coupling system couples another device of the safety apparatus to the movable part 2 of the press brake (in the case where the external coupling system is another coupling system according to the invention, such servo control of the motor 212 is configured to position the plate 218 at the same height at which the external coupling system positions its own plate).

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Spinning Or Twisting Of Yarns (AREA)
  • Turning (AREA)
  • Confectionery (AREA)
  • Bending Of Plates, Rods, And Pipes (AREA)

Abstract

L'invention concerne un système d'accouplement pour accoupler des appareils de sécurité à une partie mobile (2) d'une machine de travail mécanique, comprenant : un support de fixation (206) ayant une première extrémité (207) conçue pour être fixée à une partie mobile (2) d'une machine de travail mécanique, un élément tubulaire (209) conçu pour être accouplé à au moins un élément (1) d'un appareil de sécurité et - une plaque (218) dotée d'un trou traversant ayant un filetage interne, le support de fixation (206) comportant en outre une seconde extrémité (208) dotée d'un ensemble coulisseau (214, 215) inactif conçu pour coulisser le long d'un ou de plusieurs premiers éléments (216) de guidage linéaire d'au moins une paroi latérale (213) de l'élément tubulaire (209), l'élément tubulaire (209) comprenant une vis sans fin (211) coopérant avec le filetage interne du trou traversant de la plaque (218) et la plaque (218) comportant un ou plusieurs éléments coulissants (220) conçus pour coulisser dans un ou plusieurs seconds éléments (221) de guidage linéaire respectifs dont est doté l'élément tubulaire (209), qui sont parallèles auxdits un ou plusieurs premiers éléments (216) de guidage linéaire, moyennant quoi la plaque (218) coulisse dans l'élément tubulaire (209) lorsque la vis sans fin (211) tourne, la plaque (218) étant conçue pour reposer de façon stable sur le support de fixation (206) lorsque la plaque (218) est soumise à une force de poids de la plaque (218) et de l'élément tubulaire (209), moyennant quoi l'élément tubulaire (209) est contraint de suivre un mouvement de translation du support de fixation (206) uniquement dans un sens allant du support de fixation (206) à la plaque (218).
PCT/IB2016/057606 2015-12-17 2016-12-14 Système permettant d'accoupler des appareils de sécurité à des machines WO2017103806A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
ITUB2015A009667 2015-12-17
ITUB2015A009667A ITUB20159667A1 (it) 2015-12-17 2015-12-17 Sistema di accoppiamento per apparati di sicurezza di macchine

Publications (1)

Publication Number Publication Date
WO2017103806A1 true WO2017103806A1 (fr) 2017-06-22

Family

ID=55699698

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/IB2016/057606 WO2017103806A1 (fr) 2015-12-17 2016-12-14 Système permettant d'accoupler des appareils de sécurité à des machines

Country Status (2)

Country Link
IT (1) ITUB20159667A1 (fr)
WO (1) WO2017103806A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113819387A (zh) * 2021-10-22 2021-12-21 周礼浍 一种智能制造用光幕保护装置
CN114165691A (zh) * 2021-12-07 2022-03-11 深圳晨芯时代科技有限公司 一种具有防冲击能力的运动相机装置

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109163178B (zh) * 2018-09-26 2023-08-29 中铁第一勘察设计院集团有限公司 野外监测系统保护设备

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020104958A1 (en) * 2000-05-31 2002-08-08 Dr. Lutz Fiessler Protective device for machines such as bending presses, cutting machines, punching machines or the like
US20030132371A1 (en) * 2001-12-13 2003-07-17 Lutz Fiessler Guard device for machines such as bending presses, cutting machines, stamping machines or the like
EP1632707A1 (fr) * 2004-09-02 2006-03-08 Fiessler Elektronik GmbH & Co. KG Elément de support équipé d'une barrière lumineuse

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020104958A1 (en) * 2000-05-31 2002-08-08 Dr. Lutz Fiessler Protective device for machines such as bending presses, cutting machines, punching machines or the like
US20030132371A1 (en) * 2001-12-13 2003-07-17 Lutz Fiessler Guard device for machines such as bending presses, cutting machines, stamping machines or the like
EP1632707A1 (fr) * 2004-09-02 2006-03-08 Fiessler Elektronik GmbH & Co. KG Elément de support équipé d'une barrière lumineuse

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113819387A (zh) * 2021-10-22 2021-12-21 周礼浍 一种智能制造用光幕保护装置
CN114165691A (zh) * 2021-12-07 2022-03-11 深圳晨芯时代科技有限公司 一种具有防冲击能力的运动相机装置

Also Published As

Publication number Publication date
ITUB20159667A1 (it) 2017-06-17

Similar Documents

Publication Publication Date Title
WO2017103806A1 (fr) Système permettant d'accoupler des appareils de sécurité à des machines
EP3393709B1 (fr) Dispositif d'usinage
EP1747825B1 (fr) Dispositif de pliage
EP2741888B1 (fr) Machine de traitement laser comportant une porte de protection et un dispositif de commande
EP1417050B1 (fr) Dispositif de fabrication, notamment presse plieuse, et procede pour l'exploitation d'un dispositif de fabrication
WO2016178047A1 (fr) Appareil et procédé permettant de régler des verrous de porte palière depuis l'intérieur d'une cabine d'ascenseur
CA2552805A1 (fr) Appareillage a fonctionnement tubulaire
EP0789182A1 (fr) Dispositif de sécurité dans une machine-outil à main, notamment d'une presse plieuse
CN102826267A (zh) 全自动款箱开箱机
JP7418398B2 (ja) 曲げプレス機及び曲げプレス機を操作する方法
CN103958812B (zh) 电动安全帘
JP5934063B2 (ja) 折曲げ加工機
KR102169351B1 (ko) 비드의 비산을 방지하는 밀링기용 가이드커버의 구조
US9682416B2 (en) Mechanical contact device, such as a back stop for a press brake
EP1015148B1 (fr) Presse a cintrer pour la fabrication de courbures en u sur les bords d'un panneau en tole
US10197219B1 (en) Secondary light curtain for detecting crush zone intrusion in a secondary process and associated method for use
DE102008033195B4 (de) Bearbeitungszentrum mit einer Werkstücktransporteinrichtung und einem Werkstückbereitstellungsplatz mit opto-elektronischer Schutzeinrichtung
CN209238885U (zh) 一种高速精密冲压设备安全保护装置
CN108482773B (zh) 一种用于防止纸箱提手头误插入分层缝的护片机构
KR101019284B1 (ko) 디지털 커터의 안전가이드
CN106180857B (zh) 一种长边修边剪板机
US8156864B2 (en) Workpiece deforming press including a safety device
CN215614297U (zh) 一种型材折弯成型装置
JPH04147719A (ja) 板材加工装置
JP2010000541A5 (fr)

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 16826168

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 16826168

Country of ref document: EP

Kind code of ref document: A1