EP2631048B1 - Tête rotative de porte-outils multifonctionnelle pour applications de travail du verre et système de découpage de plaques de verre utilisant cette tête - Google Patents

Tête rotative de porte-outils multifonctionnelle pour applications de travail du verre et système de découpage de plaques de verre utilisant cette tête Download PDF

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Publication number
EP2631048B1
EP2631048B1 EP20130000576 EP13000576A EP2631048B1 EP 2631048 B1 EP2631048 B1 EP 2631048B1 EP 20130000576 EP20130000576 EP 20130000576 EP 13000576 A EP13000576 A EP 13000576A EP 2631048 B1 EP2631048 B1 EP 2631048B1
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EP
European Patent Office
Prior art keywords
water
abrasive
rotary head
container
glass
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.)
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Application number
EP20130000576
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German (de)
English (en)
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EP2631048A1 (fr
Inventor
Davide Gariglio
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.)
Forvet Srl
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Forvet Srl
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Publication date
Priority claimed from IT000151A external-priority patent/ITTO20120151A1/it
Priority claimed from IT000150A external-priority patent/ITTO20120150A1/it
Application filed by Forvet Srl filed Critical Forvet Srl
Publication of EP2631048A1 publication Critical patent/EP2631048A1/fr
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Publication of EP2631048B1 publication Critical patent/EP2631048B1/fr
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28DWORKING STONE OR STONE-LIKE MATERIALS
    • B28D1/00Working stone or stone-like materials, e.g. brick, concrete or glass, not provided for elsewhere; Machines, devices, tools therefor
    • B28D1/003Multipurpose machines; Equipment therefor

Definitions

  • the present invention refers to a multi-functional tool-carrier rotary head for glass working applications as per the preamble of claim 1 and to a system for cutting glass through high-pressure water using such rotary head.
  • a device and system are known from FR 1 422 266 .
  • the glass cutting technique through pressurised water is also known, together with handling glass on dynamic vacuum belts.
  • Object of the present invention is solving the above prior art problems, by providing a multi-functional tool-carrier rotary head for glass working applications comprising the combination of features of independent claim 1.
  • the two technologies interact without mutually limiting, and instead are a mutual complement, and each one benefits from the capabilities of the other, widening the production capacity.
  • the preferred automatic glass positioning allows a water cutting aligned with other production processes that do not require manual interventions for placing the slabs.
  • Handling of glass on preferred dynamic vacuum belts allows positioning the slab without contact with the upper surface, and therefore makes the machine safe and quick for every type of glass, including low emissive glass.
  • Vacuum in any belt sector is activated/deactivated depending on glass position.
  • the automatic managing system takes also into account the geometry of shaped glasses, thereby obtaining, in any situation, the maximum capacity for containing slabs.
  • connection of the high-pressure jet onto the glass is performed in an hole obtained with diamond tools, instead of with the water jet with differentiated pressure. This, in addition to extend the pump life, prevents the abrasive material from bouncing onto the glass surface.
  • the system allows integrating the milling and drilling processes in automatic production lines, since loading, positioning and unloading the glass are completely automatic.
  • the preferred use of the automatic collecting assembly for scraps, following a cutting, has made this plant completely automatic and capable of being integrated in a production line free from human interventions during the whole production cycle.
  • the multi-functional tool-carrier rotary head 1 of the invention is mainly used for glass 3 working applications and is equipped with a plurality of diamond tools 5, 7, 9, 11 and with at least one water-cutting type spindle 13 composed of at least one high-pressure valve 15, at least one abrasive head 16 and at least one nozzle 18 for the exit of high-pressure water 19 with abrasive.
  • the diamond tools 5, 7, 9, 11 are composed of flaring tools 5, milling tools 7, 11 or drilling tools 9.
  • the innovation of the present invention therefore consists in inserting the spindle 13 for water cutting integrated in the rotary head 1 with diamond tools 5, 7, 9, 11 of any shape/size.
  • the tools 5, 7, 9, 11, as well as the spindles 13, can be used in any sequence and placed in any position.
  • the rotary head 1 can be equipped with means 20 for reducing energy of the high-pressure water 19 with abrasive, wherein such means 20 operate such reduction by impacting water 19 against hard solid material 22 in pieces contained therein.
  • the means 20 are composed of a container 24, preferably of a cylindrical shape, internally coated with a sheath 26 adapted to protect the container 24 from the action of water with abrasive 19;
  • the container 24 contains therein the hard solid material 22 in pieces and is equipped with an upper cover 28 (preferably of the overhanging type with triangular section, as shown in Figures 4 and 5 ) equipped with at least one hole 29 for entering water with abrasive 19.
  • the container 24 is equipped with at least one lower discharge hole 30 suitable to outflow water with abrasive 19 after it has come in contact with the hard solid material 22 in pieces and after it has dissipated its own energy.
  • the container 24 can be of a metallic type, while the sheath 26, in case of container 24 with a cylindrical shape, can be a hollow ceramic cylinder and the hard solid material 22 in pieces can be composed of a multitude of ceramic balls 22 (even if other equivalent materials are possible).
  • the means 20 dampen/convert the residual energy of the jet of high-pressure water 19, after having impacted upon and cut the glass 3.
  • the residual energy is transformed into heat following the impact against polyhedrical and/or spherical and/or cylindrical objects 22 made of solid material present inside the container 24.
  • the collecting means 20 placed by an axle controlled by the CNC are placed perfectly axial with the spindle 13.
  • the balls 22 made of ceramic material allow dampening the energy with the advantage of outflowing water 19 with abrasive between the interstices created thereby.
  • the above described rotary head 1 due to its versatility, is among others able to operate with a dynamic vacuum transport system 30 composed of at least one vacuum transport belt assembly 42, 44 suitable to support and operatively translate at least one glass slab 3, as shown in Figure 6 .
  • the glass slab 3 Due to the dynamic vacuum system 30, the glass slab 3 is blocked, allowing an accurate positioning without the help of mechanical members in contact with the glass 3 surface.
  • the above described rotary head 1 can be suitable to be used in an automatic assembly 50 for taking and managing glass scraps 52 equipped with means 54 (preferably of the suction cup 56 type), for taking and unloading the scraps 52, as shown in Figures 7 and 8 , following a cutting operation of the slab 3 through the abrasive diamond tools 5, 7, 9, 11 or after a cutting with water with abrasive perforned with the spindle 13.
  • means 54 preferably of the suction cup 56 type
  • This assembly 50 has an automatic positioning managed by software and perfectly integrated in the plant. Usually, in on-line machines, this operation is performed by men: due to the use of this assembly 50, it can be stated that the plant, in all its workings (meant as drilling, flaring, milling and water cutting) is able to be completely automatic and free from human interventions during its whole production process.
  • the assembly 50 is composed of a positioning performed by two controlled axes (X and Y directions), a pneumatic actuator for movements along the Z axis and a venturi system 54 with its related suction cup 56 for taking and unloading the scraps 52.
  • the invention relates to a system for cutting the glass slabs 3 according to claim 9.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mining & Mineral Resources (AREA)
  • Mechanical Engineering (AREA)
  • Processing Of Stones Or Stones Resemblance Materials (AREA)
  • Re-Forming, After-Treatment, Cutting And Transporting Of Glass Products (AREA)

Claims (9)

  1. Tête tournante porte-instruments multifonctions (1) pour applications d'usinage du verre (3) caractérisée par le fait d'être dotée d'une pluralité d'instruments diamantés (5, 7, 9, 11) et d'au moins un mandrin de coupe à eau (13) composé d'au moins une valve à haute pression (15), au moins une tête abrasive (16) et au moins une buse (18) pour la sortie d'eau (19) à haute pression avec abrasif.
  2. Tête tournante (1) selon la revendication 1, caractérisée par le fait que lesdits instruments diamantés (5, 7, 9, 11) sont constitués d'instruments d'usinage (5), instruments de fraisage (7, 11) ou instruments de perçage (9).
  3. Tête tournante (1) selon la revendication 1 ou 2, caractérisée par le fait d'être dotée en outre de moyens (20) pour la réduction de l'énergie de l'eau (19) à haute pression avec abrasif, lesdits moyens (20) en opérant ladite réduction au moyen de choc de l'eau (19) contre matériel solide dur (22) en pièces contenu dans ceux-ci.
  4. Tête tournante (1) selon la revendication 3, caractérisée par le fait que lesdits moyens (20) sont constitués d'un conteneur (24), de préférence de forme cylindrique, revêtu à l'intérieur d'une chemise (26) apte à protéger ledit conteneur (24) contre l'action de l'eau avec abrasif (19), ledit conteneur (24) contenant à l'intérieur ledit matériel solide dur en pièces (22) et étant doté d'une couverture supérieure (28) dotée d'au moins un trou (29) pour l'entrée de l'eau avec abrasif (19), ledit conteneur (24) étant doté en outre d'au moins un trou d'évacuation inférieur (30) apte à faire couler l'eau avec abrasif (19) après qu'elle soit entrée en contact avec ledit matériel solide dur en pièces (22) et après qu'elle a dissipé sa propre énergie.
  5. Tête tournante (1) selon la revendication 4, caractérisée par le fait que ledit conteneur (24) est de type métallique, ladite chemise (26) est un cylindre céramique creux et ledit matériel solide dur en pièces (22) est constitué d'une multitude de sphères en céramique (22).
  6. Tête tournante (1) selon une quelconque des revendications précédentes, caractérisée par le fait d'être apte à opérer avec un système de transport à vide dynamique (30) constitué d'au moins un groupe de courroie de transport sous vide (42, 44) apte à soutenir et faire transférer en mode opératif au moins une plaque de verre (3).
  7. Tête tournante (1) selon une quelconque des revendications précédentes, caractérisée par le fait d'être apte à l'emploi dans un groupe automatique (50) de prélèvement et gestion de déchets de verre (52) doté de moyens (54) de prélèvement et déchargement desdits déchets (52).
  8. Tête tournante (1) selon la revendication 7, caractérisée par le fait que lesdits moyens (54) de prélèvement et déchargement desdits déchets (52) sont du type à ventouse (56).
  9. Système pour la coupe de plaque de verre (3) au moyen d'eau à haute pression, caractérisé par le fait que le système comprend:
    - au moins une tête tournante porte-instruments multifonctions selon la revendication 1; et
    - au moins un dispositif (20) pour la réduction de l'énergie d'eau à haute pression (19) avec abrasif pour la coupe de plaque de verre, ledit dispositif (20) en opérant ladite réduction au moyen de choc de l'eau (19) contre matériel solide dur (22) en pièces contenu dans celui-ci, ledit dispositif (20) étant constitué d'un conteneur (24), de préférence de forme cylindrique, revêtu à l'intérieur d'une chemise (26) apte à protéger ledit conteneur (24) contre l'action de l'eau (19) avec abrasif, ledit conteneur (24) en contenant à l'intérieur ledit matériel solide dur en pièces (22) et étant doté d'une couverture supérieure (28) dotée d'au moins un trou (29) pour l'entrée de l'eau (19) avec abrasif, ledit conteneur (24) étant doté en outre d'au moins un trou de déchargement inférieur (30) apte à faire couler l'eau (19) avec abrasif après qu'elle soit entrée en contact avec ledit matériel solide dur en pièces (22) et après qu'elle a dissipé sa propre énergie.
EP20130000576 2012-02-21 2013-02-05 Tête rotative de porte-outils multifonctionnelle pour applications de travail du verre et système de découpage de plaques de verre utilisant cette tête Active EP2631048B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
IT000151A ITTO20120151A1 (it) 2012-02-21 2012-02-21 Dispositivo per la riduzione dell'energia dell'acqua ad alta pressione per il taglio di lastre di vetro.
IT000150A ITTO20120150A1 (it) 2012-02-21 2012-02-21 Testa rotante porta-utensili multi-funzione per applicazioni di lavorazione del vetro.

Publications (2)

Publication Number Publication Date
EP2631048A1 EP2631048A1 (fr) 2013-08-28
EP2631048B1 true EP2631048B1 (fr) 2014-03-19

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EP20130000576 Active EP2631048B1 (fr) 2012-02-21 2013-02-05 Tête rotative de porte-outils multifonctionnelle pour applications de travail du verre et système de découpage de plaques de verre utilisant cette tête

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Families Citing this family (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3204204B1 (fr) 2014-10-09 2019-02-27 Forel Spa Machine automatique et méthode pour percer et fraiser automatiquement des feuilles de verre placées verticalement
EP3045281B1 (fr) * 2015-01-16 2017-11-01 Forel Spa Machine automatique pour forer et usiner des feuilles de verre disposées verticalement et son utilisation
EP3426436B1 (fr) * 2016-03-11 2020-05-13 Forvet R&D S.r.L. Machine pour usiner des dalles de verre avec un ensemble de commande numérique informatisé et procédé de production associé
ITUA20161575A1 (it) * 2016-03-11 2016-06-11 Forvet S R L Macchina per la lavorazione di lastre di vetro con un gruppo a controllo numerico computerizzato e relativo procedimento di produzione
CN106003434B (zh) * 2016-06-27 2017-09-05 浙江飞越汉禾坊新材料有限公司 一种用于玻璃的高压切割打孔装置
CN106363816B (zh) * 2016-09-30 2018-07-10 贵州省铜仁市万山区丹缘朱砂工艺品有限公司 一种多钻头阶梯分布的朱砂工艺品加工装置
CN106272994B (zh) * 2016-09-30 2018-07-10 贵州省铜仁市万山区丹缘朱砂工艺品有限公司 一种多钻头对齐的朱砂工艺品加工装置
CN106239744B (zh) * 2016-09-30 2018-07-10 贵州省铜仁市万山区丹缘朱砂工艺品有限公司 一种钻铣一体的朱砂工艺品加工装置
IT201600132808A1 (it) * 2016-12-30 2018-06-30 Giorgio Donatoni Impianto per il taglio multiutensile di lastre in materiale lapideo
IT201900020424A1 (it) 2019-11-05 2021-05-05 Biesse Spa Centro di lavoro a controllo elettronico, per la lavorazione di lastre di vetro, lastre di materiale lapideo, o lastre di materiale sintetico

Family Cites Families (6)

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Publication number Priority date Publication date Assignee Title
FR1422266A (fr) * 1964-11-09 1965-12-24 Perfectionnements apportés aux machines à polir
KR930008692B1 (ko) * 1986-02-20 1993-09-13 가와사끼 쥬고교 가부시기가이샤 어브레시브 워터 제트 절단방법 및 장치
US4827679A (en) * 1987-11-24 1989-05-09 Ltv Aerospace & Defense Company Fluid jet cutting system with self orienting catcher
US5535496A (en) * 1994-02-25 1996-07-16 Sugino Corporation Machine tool with parts
AT412197B (de) * 2002-11-22 2004-11-25 Lisec Peter Vorrichtung zum bearbeiten von werkstoffplatten
US9427843B2 (en) * 2008-02-21 2016-08-30 Mori Seiki Co., Ltd Measuring apparatus and method

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