EP3383791B1 - Korkenzieher mit hebel - Google Patents

Korkenzieher mit hebel Download PDF

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Publication number
EP3383791B1
EP3383791B1 EP16809913.3A EP16809913A EP3383791B1 EP 3383791 B1 EP3383791 B1 EP 3383791B1 EP 16809913 A EP16809913 A EP 16809913A EP 3383791 B1 EP3383791 B1 EP 3383791B1
Authority
EP
European Patent Office
Prior art keywords
corkscrew
axis
handle
cam
arm
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.)
Active
Application number
EP16809913.3A
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English (en)
French (fr)
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EP3383791A1 (de
Inventor
Thierry Gourand
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.)
Peugeot Saveurs
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Peugeot Saveurs
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Filing date
Publication date
Application filed by Peugeot Saveurs filed Critical Peugeot Saveurs
Publication of EP3383791A1 publication Critical patent/EP3383791A1/de
Application granted granted Critical
Publication of EP3383791B1 publication Critical patent/EP3383791B1/de
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67BAPPLYING CLOSURE MEMBERS TO BOTTLES JARS, OR SIMILAR CONTAINERS; OPENING CLOSED CONTAINERS
    • B67B7/00Hand- or power-operated devices for opening closed containers
    • B67B7/02Hand- or power-operated devices for opening closed containers for removing stoppers
    • B67B7/04Cork-screws
    • B67B7/0417Cork-screws with supporting means for assisting the pulling action
    • B67B7/0423Cork-screws with supporting means for assisting the pulling action of wine-waiter, i.e. sommelier type
    • B67B7/0429Cork-screws with supporting means for assisting the pulling action of wine-waiter, i.e. sommelier type having means for varying the effective lever arm length
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67BAPPLYING CLOSURE MEMBERS TO BOTTLES JARS, OR SIMILAR CONTAINERS; OPENING CLOSED CONTAINERS
    • B67B7/00Hand- or power-operated devices for opening closed containers
    • B67B7/02Hand- or power-operated devices for opening closed containers for removing stoppers
    • B67B7/04Cork-screws
    • B67B7/0417Cork-screws with supporting means for assisting the pulling action
    • B67B7/0423Cork-screws with supporting means for assisting the pulling action of wine-waiter, i.e. sommelier type

Definitions

  • the present invention relates to a "lever type" corkscrew comprising on the one hand a spin rotatably mounted on an area of a handle between an end section and a maneuvering section of said handle, around a first axis perpendicular to said handle and secondly a telescopic arm having a first member rotatably mounted on the end portion of said handle about a second axis perpendicular to said handle and a second member having a top end and a lower end, slidably mounted in said first member between a rest position in which its lower end is located at a distance d0 from said second axis and a second position in which its lower end is located at a distance d from said second axis greater than d0, the lower end of said second element being provided able to bear on the neck of a bottle
  • a "lever type” corkscrew conventionally makes it possible to reduce the tensile force that a user must provide to extract a plug after inserting a spin.
  • the most primitive model has a lever of fixed length allowing a single support on the neck. Such a device nevertheless has limits at the end of uncorking, when the force to be exerted to extract the plug becomes important, or in the case of plug longer than the standard length. Indeed, the handle of the corkscrew is then placed substantially vertically relative to the bottle, and the lever can not act, forcing the user to complete the unclogging operation without the help of it.
  • corkscrew is configured according to the preamble of claim 1.
  • This corkscrew comprises a lever having a first element of given length connected to the handle and whose lower end is provided with a point d 'support.
  • the lever further has a second element connected to the first element, whose lower end is also provided with a fulcrum and which is movable between a retracted position inside the first element and a position partially extracted from the first element .
  • the upper edge of the second element appears in a window formed in the front face of the first element and in which the head of the handle is adapted to be inserted during its rotational movement.
  • the movement of the second element towards its position partially extracted from the first element has the effect of lengthening it.
  • This displacement is obtained by the action of the handle inserted progressively, following its rotation, into the window of the first element and thus resting on the upper edge of said second element.
  • Such a structure simplifies the implementation of the corkscrew, because it is no longer necessary to replace a lever by another or a fulcrum by another during extraction of the plug. Nevertheless, it has been observed that the length of which the first element is lengthened is generally not sufficient to allow the extraction of the entire plug by means of the lever and that the user must generally use his only force to achieve this. finally.
  • the present invention aims to overcome all of the disadvantages mentioned above and to provide a solution for a user to easily extract, and successfully with each attempt, a plug retained in the neck of a bottle.
  • the invention aims to facilitate the unclogging of bottles by a user by means of a "lever" type corkscrew. to preserve the simplicity of the single support, while reducing the force required for uncorking while maintaining the interest of the multi-support corkscrew, that is to say a different distance from the support lever with respect to its axis of rotation on the handle of the corkscrew according to the insertion level of the plug in the bottle.
  • the invention also intends to propose a solution that makes it possible to reduce the number of steps necessary for folding / unfolding the tendril and the lever, by making it possible for these elements to fold / unfold simultaneously by a single gesture. of the user.
  • the present invention relates to a corkscrew of the type indicated in the preamble, characterized in that the second element is connected to said second axis by means of a return member so that, in a position of use of the corkscrew, its upper end is permanently maintained in contact with said cam and that its lower end continuously extends out of said first element.
  • the corkscrew 1 comprises a handle 2, for example made of wood, metal, plastic, composite material, ceramic or any other equivalent material, having an end portion 3 and a maneuvering section 4.
  • a twist 5 made of metal is rotatably mounted around a first axis A1 perpendicular to the handle 2 on an intermediate zone 6 of said handle 2 between its end portion 3 and its operating portion 4.
  • the corkscrew 1 also comprises a telescopic arm 7, made of metal, rotatably mounted on the end portion 3 of said handle 2 about a second axis A2 perpendicular to said handle 2.
  • the swirler 5 and the telescopic arm 7 are movable between a position of use of the corkscrew 1 in which they are unfolded ( Fig. 1 ) and a storage position of the corkscrew 1 in which they are folded against the lower edge of the handle 2 ( Fig. 12 ).
  • the telescopic arm 7 consists of a first element 8 having an upper part 80 and a lower part 81 and a second element 9, having an upper end 90 and a lower end 91.
  • the lower part 81 of the first element 8 has a section "C" and has two side walls in "L” 84 bordering a face 85.
  • the upper part 80 of the first element 8 comprises two tabs 82 extending each of the side walls 84 of the lower part and whose free end respective comprises an orifice 83 for assembling the telescopic arm 7 on the axis A2 of the handle 2.
  • the second element 9 of the telescopic arm 7 has an upper end 90 and a lower end 91. It has two lateral wings 92 bordering a bottom 93 and is of general section "U". The lower edge 94 of each of the lateral wings 92 has a "V" cutout adapted to bear on the neck 11 of a bottle of which it has a substantially complementary shape. Furthermore, its upper end 90 has two teeth 95 extending in the extension of the bottom 93 and side wings 92. In accordance with the invention, the second element 9 further comprises an axis 97 extending between its lateral wings 92 at its lower end 91.
  • the second element 9 is slidably mounted in the first element 8, the side walls 84 define a slide.
  • the second element 9 is also connected to the second axis A2 of the telescopic arm 7 by means of a tension spring, such as for example a helical spring 10 (cf. Fig. 7 ), a first end is fixed to said axis A2 and a second end is fixed on the element 9, for example in a notch 96 that includes the bottom 93 of the latter.
  • a tension spring such as for example a helical spring 10 (cf. Fig. 7 )
  • a first end is fixed to said axis A2 and a second end is fixed on the element 9, for example in a notch 96 that includes the bottom 93 of the latter.
  • it can also be provided to provide the element 9 with an axle mounted between its faces 92 and on which can be fixed the second end of the spring 10.
  • said axis can being slidably mounted in an oblong shaped slot formed appropriately on a wall 84 of the element 8, and advantageously defining a maximum stroke of the element 9 to prevent inadvertent disassembly of the element 7 by traction.
  • the second element 9 is mounted in the first element 8 and connected to the handle 2 by means of the spring 10 so that, in the position of use of the corkscrew 1, its teeth 95 are permanently maintained in contact with the lower edge of the end portion 3 of the handle 2, while its lower end 91 is permanently located outside the first element 8.
  • the stops 26 that includes the first element 8 also contribute to maintain the lower end 91 of the second element 9 out of the first element 8.
  • the end portion 3 of the handle 2 defines a circular cam 12 having as its center the second axis of rotation A2.
  • the invention provides that the profile of this cam 12 comprises a first curve 13 of constant radius and a second curve 14 of increasing radius succeeding between the intermediate zone 6 of the handle 2 carrying the first axis A1 and the end edge 15 of the end section 3 of the handle 2.
  • the profile of the cam 12 further comprises a stop 16 formed in the extension of the curve of increasing radius 14.
  • the circular cam 12 has two symmetrical members 12a, 12b (cf. Fig. 3 ) each in contact with a tooth 95 of the second element 9 of the telescopic arm 7.
  • the cam 12 is able to act on the upper end 90 of the second element 9 in order to move the latter element 9 to a rest position in which its edge bottom 94 is located at a distance d0 from the second axis A2 and a second position in which the lower edge 94 is located at a distance d from the second axis A2 greater than d0 (cf. Figs. 9 and 11 ).
  • the twist 5 conventionally comprises an upper portion 17 of rectangular section connected to the first axis A1 of the handle 2. It has a side face 18 (cf. Figs. 4 and 8 ) in the direction of the telescopic arm 7.
  • the upper part 17 is provided with a groove 19 of axis parallel to the longitudinal axis of the swirler 5, and whose inlet opening 20 is formed in its side face 18, separating the latter into an upper zone 18a and a lower zone 18b.
  • the groove 19 has a section "U" and has a bottom 21 defined by a front wall 22 and a rear wall 23.
  • the groove 19 is provided to accommodate the axis 97 that comprises the second element 9 of the telescopic arm 7 in the storage position of the corkscrew 1. Furthermore, the front wall 22 is connected to the upper zone 18a of the lateral face 18 by an oblique surface 24 forming with said front wall 22 an angle ⁇ less than 90 °. The rear wall 23 of the groove 19 is in turn connected to the lower zone 18b of the lateral face 18 by an oblique surface 25 forming with said rear wall 23 an angle ⁇ greater than 90 ° (cf. Fig. 8 ).
  • the particular structure of the upper part 17 of the swirler 5 and the presence of the axis 97 on the second element 9 of the telescopic arm 7 advantageously allow a concomitant folding / unfolding of the swirler 5 and the arm 7. Indeed, the deployment / folding of the telescopic arm 7, obtained following its rotation around the axis A2 in one direction or the other, causes the spin 5 in his movement.
  • the user can then screw the auger 5 into a plug 26 closing the neck 11 of a bottle by rotating the entire corkscrew 1 about the longitudinal axis of the auger 5.
  • the arm 7 is advantageously locked against the stop 16 throughout this operation under the effect of the effort exerted by the user on the handle 2 (cf. Fig. 8 ) and therefore not likely to hinder the movements of the latter.
  • the user can then extract the cap 26 of the neck 11 with reduced effort.
  • it releases first the telescopic arm 7 blocked against the stop 16 of the cam 12 of the handle 2 by pushing the operating portion 4 of the latter down towards the neck 11. It then positions the lower edge 94 in "V" of the second part 9 of the telescopic arm 7 on the neck 11 of the bottle, which will allow it to be supported on it thereafter.
  • the position of the corkscrew 1 thus obtained is illustrated in FIG. figure 9 .
  • the user By an upward pulling force on the maneuvering section 4 of the handle 2, the user then extracts the plug 26 progressively from the neck 11 in a single movement.
  • the traction force exerted first induces a rotation of the arm 7 and the twist 5 around their respective axes of rotation A1, A2.
  • the second portion 9 of the arm 7 whose teeth 95 are permanently held in contact with the profile of the cam 12, under the effect of the spring 10, follows the rotational movement of the arm 7 during a first phase of the movement, its teeth 95 then being subjected to the action of the first curve 13 of constant radius of the cam 12 (cf. Fig. 10 ). Then, during a second phase of the extraction movement, the teeth 95 of the second portion 9 of the arm 7 come into contact with the second curve 14 of increasing radius of the cam 12.
  • the user classically removes it from the swirler 5 and places the corkscrew 1 in its storage position in which the swirler 5 and the arm 7 are folded against its lower edge.
  • This last operation can be carried out in a single step, by folding concomitantly the swirler 5 and the arm 7, as shown in FIGS. Figures 15 to 17 .
  • the user simply folds the telescopic arm 7 which comes into contact with the swirler 5 and then rotates about the axis A1.
  • the axis 97 of the arm 7 which is then placed below the inlet opening 20 of the groove 19 can then come to be housed inside the latter and then reach the bottom 21 at the end of the folding.
  • the axis 97 of the second portion 9 of the arm 7 can not be housed alone directly in the groove 19 of the swirler 5, not being positioned appropriately in front of the inlet opening 20 thereof.
  • the user is forced to press the arm 7 against the swirler 5, which allows the shaft 97 to come into contact with the oblique surface 24 extending between the upper zone 18a of the side wall 18 the upper part 17 of the swirler 5 and the front wall 22 of the groove 19 (cf. Fig. 19 ).
  • the second element 9 of the arm 7 moves along said oblique surface 24 and therefore with respect to the first part 8 arm 7 causing the elongation of the latter (cf. Fig. 20 ).
  • the axis 97 can be introduced into the groove 19 (cf. Fig. 21 ).
  • the second element 9 returns to its rest position, under the effect of the spring 10, fixed between the second element 9 of the arm 7 and the axis of rotation A2, and allows the axis 97 to reach the bottom 21 of the groove 19 at the end of folding (cf. Fig. 22 ).

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Devices For Opening Bottles Or Cans (AREA)

Claims (10)

  1. Hebelkorkenzieher (1), einerseits umfassend eine Schnecke (5), die auf einem zwischen einem Endabschnitt (3) und einem Betätigungsabschnitt (4) eines Griffs (2) angeordneten Bereich des Griffs (6) um eine senkrecht zum Griff (2) verlaufende erste Achse (A1) rotierend montiert ist, und andererseits einen Teleskoparm (7) mit einem ersten Element (8), der um eine zweite Achse (A2), die senkrecht zum Griff (2) verläuft, im Endabschnitt (3) des Griffs (2) rotierend montiert ist, und einem zweiten Element (9) mit einem oberen Ende (90) und einem unteren Ende (91), das zwischen einer Ruhestellung, in der die Unterkante (94) seines unteren Endes (91) in einem Abstand d0 zur zweiten Achse (A2) angeordnet ist, und einer zweiten Stellung, in der die Unterkante (94) seines unteren Endes (91) in einem d0 übersteigenden Abstand d zur zweiten Achse (A2) angeordnet ist, gleitend im ersten Element montiert ist, wobei die Unterkante (94) des unteren Endes (91) des zweiten Elements (9) dazu geeignet ist, sich auf den Hals (1) einer Flasche zu stützen, wobei der Endabschnitt (3) des Griffs (2) derart ausgebildet ist, dass er einen kreisförmigen Nocken (12) definiert, dessen Mittelpunkt die zweite Achse (A2) ist, und der dazu geeignet ist, auf das obere Ende (90) des zweiten Elements (9) einzuwirken, wobei der Korkenzieher (1) dadurch gekennzeichnet ist, dass das zweite Element (9) durch ein Rückzugselement (10) mit der zweiten Achse (A2) verbunden ist, sodass in einer Benutzungsstellung des Korkenziehers (1) dessen oberes Ende (90) dauernd im Kontakt mit dem Nocken (12) steht und dessen unteres Ende (91) sich dauernd außerhalb des ersten Elements (8) erstreckt.
  2. Korkenzieher (1) nach Anspruch 1, dadurch gekennzeichnet, dass das Profil des Nockens (12) eine erste Kurve (13) mit konstantem Radius und eine zweite Kurve (14) mit zunehmendem Radius, die im Bereich (6) des Griffs (2), der die erste Achse (A1) und die Endkante (15) des Endabschnitts (3) enthält, aufeinander folgen.
  3. Korkenzieher (1) nach einem der Ansprüche 1 oder 2, dadurch gekennzeichnet, dass das Profil des Nockens (12) einen Anschlag (16) umfasst, der in der Verlängerung der zweiten Kurve (14) mit zunehmendem Radius ausgebildet ist.
  4. Korkenzieher (1) nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass das Rückzugelement eine Zugfeder (10) ist.
  5. Korkenzieher (1) nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass das zweite Element (9) des Arms (7) einen U-förmigen Abschnitt aufweist und zwei seitliche Flügel (92) umfasst, die einen Boden (93) einfassen, wobei die Unterkante (94) jedes der seitlichen Flügel (92) einen V-förmigen Abschnitt umfasst, der dazug eeignet ist, sich auf den Hals (11) einer Flasche zu stützen und das obere Ende (90) des zweiten Elements (9) mindestens einen Zahn (95) umfasst, der sich in der Verlängerung des Bodens (93) und der seitlichen Flügel (92) erstreckt und dazu geeignet ist, sich auf den Nocken (12) zu stützen.
  6. Korkenzieher (1) nach dem vorstehenden Anspruch, dadurch gekennzeichnet, dass das zweite Element (9) eine Kerbe (96) umfasst, die auf mindestens einem seiner seitlichen Flügel (92) ausgebildet ist und dazu geeignet ist, die Befestigung des Rückzugelements (10) zu ermöglichen.
  7. Korkenzieher (1) nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass die Schnecke (5) einen Oberteil (17) mit rechteckigem Querschnitt, der mit der ersten Achse (A1) verbunden ist und eine Seitenfläche (18) aufweist, die in Richtung des Teleksoparms (7) orientiert ist, wobei der Oberteil (17) mit einer Nut (19), deren Achse parallel zur Längsachse der Schnecke (5) verläuft und deren Eintrittsöffnung (20) in der Seitenfläche (18) ausgebildet ist.
  8. Korkenzieher (1) nach dem vorstehenden Anspruch, dadurch gekennzeichnet, dass die Nut (19) einen U-förmigen Querschnitt aufweist, der einen von einer Vorderwand (22) und einer Rückwand (23) abgegrenzten Boden (21) aufweist, und dass die Vorderwand (22) durch eine schräge Oberfläche (24), die mit der Vorderwand (22) einen Winkel kleiner 90 ° bildet, mit einem oberen Bereich (18a) der Seitenfläche (18) verbunden ist.
  9. Korkenzieher (1) nach einem der Ansprüche 7 oder 8, dadurch gekennzeichnet, dass die Rückwand (23) der Nut (19) durch eine schräge Oberfläche (25), die mit der Rückwand (23) einen Winkel p größer 90 ° bildet, mit einem unteren Bereich (18b) der Seitenfläche (18) verbunden ist.
  10. Korkenzieher (1) nach einem der Ansprüche 7 - 9, dadurch gekennzeichnet, dass das zweite Element (9) des Teleskoparms (7) eine Achse (97) aufweist, die sich zwischen dessen seitlichen Flügeln (92) auf Höhe seines unteren Endes (91) erstreckt.
EP16809913.3A 2015-11-30 2016-10-21 Korkenzieher mit hebel Active EP3383791B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR1561546A FR3044305B1 (fr) 2015-11-30 2015-11-30 Tire-bouchon a levier
PCT/FR2016/052719 WO2017093623A1 (fr) 2015-11-30 2016-10-21 Tire-bouchon à levier

Publications (2)

Publication Number Publication Date
EP3383791A1 EP3383791A1 (de) 2018-10-10
EP3383791B1 true EP3383791B1 (de) 2019-07-10

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP16809913.3A Active EP3383791B1 (de) 2015-11-30 2016-10-21 Korkenzieher mit hebel

Country Status (5)

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US (1) US10640352B2 (de)
EP (1) EP3383791B1 (de)
CA (1) CA3004993C (de)
FR (1) FR3044305B1 (de)
WO (1) WO2017093623A1 (de)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
USD845097S1 (en) * 2017-09-12 2019-04-09 Lifetime Brands, Inc. Corkscrew
USD870526S1 (en) * 2017-10-05 2019-12-24 Patrick S.R.L. Corkscrew
USD871872S1 (en) * 2017-10-05 2020-01-07 Patrick S.R.L. Corkscrew
ES1217944Y (es) * 2018-06-28 2018-12-14 Bonich Marta Brucart Palanca abatible de sacacorchos para extracción en dos pasos
USD897797S1 (en) * 2019-02-25 2020-10-06 Christian ECK Corkscrew

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Publication number Priority date Publication date Assignee Title
GB2091227B (en) * 1980-12-06 1984-05-23 Billings Geoffrey Martin Corkscrew
IT8360470V0 (it) * 1983-10-28 1983-10-28 Cellini Ferdinando Dispositivo levatappi.
ES1035671Y (es) 1996-11-21 1997-11-16 Brucart Puig Ramon Sacacorchos con doble punto de apoyo.
ES2128968B1 (es) * 1997-02-14 2000-01-16 Miguel Francisco Jo Traspuesto Sacacorchos perfeccionado.
FR2772364B1 (fr) 1997-08-29 2000-04-14 Jacques Lefebvre Tire-bouchon a appuis multiples
ES1039034Y (es) * 1997-12-15 1999-06-01 Olaneta Y Juarist S A B Sacacorchos perfeccionado.
ES2154133B1 (es) * 1998-02-17 2001-12-01 Puig Ramon Brucart Sacacorchos multiuso.
ES2152816B1 (es) * 1998-05-05 2001-08-01 Puig Ramon Brucart Sacacorchos perfeccionado.
NL1024761C2 (nl) * 2003-11-11 2005-05-12 Vacu Vin Innovations Ltd Kurkentrekker met spiraal, hefboom en steunlichaam.
NL1024791C2 (nl) 2003-11-14 2005-05-18 Koston Gelderland B V Veiligheidsinrichting.
ITPN20040006A1 (it) * 2004-01-29 2004-04-29 Farmitaly S R L Cavaturaccioli a movimento comandato

Non-Patent Citations (1)

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Title
None *

Also Published As

Publication number Publication date
EP3383791A1 (de) 2018-10-10
US10640352B2 (en) 2020-05-05
FR3044305A1 (fr) 2017-06-02
US20180346304A1 (en) 2018-12-06
WO2017093623A1 (fr) 2017-06-08
CA3004993C (fr) 2020-02-18
FR3044305B1 (fr) 2017-12-01
CA3004993A1 (fr) 2017-06-08

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