WO2020052696A1 - Fermeture de sécurité de type capsule avec alerte superficielle de ligne de sécurité verticale visuelle à position aléatoire unique - Google Patents

Fermeture de sécurité de type capsule avec alerte superficielle de ligne de sécurité verticale visuelle à position aléatoire unique Download PDF

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Publication number
WO2020052696A1
WO2020052696A1 PCT/CO2019/000012 CO2019000012W WO2020052696A1 WO 2020052696 A1 WO2020052696 A1 WO 2020052696A1 CO 2019000012 W CO2019000012 W CO 2019000012W WO 2020052696 A1 WO2020052696 A1 WO 2020052696A1
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WO
WIPO (PCT)
Prior art keywords
translucent
internal
cap
vertical
safety
Prior art date
Application number
PCT/CO2019/000012
Other languages
English (en)
Spanish (es)
Inventor
Daniel Eduardo ACEVEDO MADRID
Original Assignee
Acevedo Madrid Daniel Eduardo
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 Acevedo Madrid Daniel Eduardo filed Critical Acevedo Madrid Daniel Eduardo
Publication of WO2020052696A1 publication Critical patent/WO2020052696A1/fr

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D55/00Accessories for container closures not otherwise provided for
    • B65D55/02Locking devices; Means for discouraging or indicating unauthorised opening or removal of closure

Definitions

  • the present invention consists of a vertical safety line that complements a capsule-type closure for containers and packaging of valuable liquids, which consists of an internal tubular cap divisible and open at one end that can be attached to any existing capsule-type closure, the which as main invention has on its surface a vertical safety line printed or adhered in its initial manufacture with a random position and isolated from external manipulation by a translucent safety cover and a translucent protective bushing, both assembled on the surface of the tubular cap internal by means of a set of assembly devices that allow a division of the internal tubular cap and the vertical safety line to be generated at the moment of opening, generating with this division that any of the two fractional parts resulting from the internal tubular cap and the vertical security line does not match Go with two other halves resulting from another package.
  • the present invention due to its condition of inaccessible and non-alterable vertical security line, generates evidence of incompatibility if unscrupulous persons try to modify the vertical security line or join the two halves of the internal tubular cap with the corresponding security line. to different containers or packages.
  • W02011133067 which refers to a closure with an opening indicator that through a series of internal mechanisms allows a part with an indicator to rise and generate a visual alert along with a physical change
  • W02011133067 which refers to a closure with an opening indicator that through a series of internal mechanisms allows a part with an indicator to rise and generate a visual alert along with a physical change
  • Figure (1) shows an isometric view of the capsule-type security closure with surface alert of the visual vertical security line with unique random position of the present invention, comprising an internal tubular cap with a vertical security line with isolated random position of external tampering provided by a translucent safety overcap on top.
  • Figure 2A and 2B show an extruded schematic of the capsule-type security closure with surface alert of visual security line with unique random position of the present invention, which comprises an internal tubular cap with a vertical security line with isolated random position of external tampering provided by a translucent safety overcap on top.
  • Figure 3 shows a cross-section of the capsule-type safety lock with visual safety line surface alert with unique random position hereof.
  • invention which comprises an internal tubular cap with a vertical safety line with a random position isolated from external manipulation provided by a translucent safety top cap.
  • Figure 4 shows an isometric view of the capsule type safety closure with surface alert of visual security line with unique random position of the present invention, which comprises an internal tubular cap with a vertical security line with random position isolated from manipulation External granted by a translucent safety cover on its upper part and an external translucent protective bushing that protects the vertical safety line on its lower part.
  • Figure 5A, 5B, and 5C shows an extruded schematic of the capsule type safety closure with surface alert of visual security line with unique random position of the present invention which comprises an internal tubular cap with a vertical security line with random position. Isolated from external manipulation provided by a translucent safety cover on the upper part and an external translucent protective bushing that protects the safety line on the lower part.
  • Figure 6 shows an isometric view of the capsule-type security closure with surface alert of the visual security line with unique random position of the present invention, which comprises an internal tubular cap with a vertical security line with random position isolated from manipulation. external provided by a translucent bushing type cover.
  • Fig. 7A and 7B show an extruded schematic of the capsule-type security closure with surface alert of visual security line with unique random position of the present invention, which comprises an internal tubular cap with a vertical security line with isolated random position of external manipulation provided by a translucent bushing-type cover.
  • Figure 8A, 8B and 8C show the randomness and position difference of the vertical security line of the capsule type security closure with surface alert of visual security line with unique random position of the present invention, which comprises an internal tubular cap with a vertical safety line with a random position isolated from external manipulation provided by a translucent safety cover.
  • Figure 9 shows the incompatibility when attempting to join the two inner tubular cap halves of the capsule-type security closure with a single random position visual security line surface alert of the present invention with any other half of another closure, which comprises a Internal tubular cap with a vertical safety line with a random position isolated from external manipulation provided by a translucent safety cover.
  • Figure 10A, 10B, and 10C show the randomness and position difference of the vertical security line of the capsule type security closure with surface alert of visual security line with unique random position of the present invention, which comprises an internal tubular cap with a vertical safety line with random position isolated from external manipulation provided by a translucent safety cover and a translucent protective bushing.
  • Figure 11 shows the incompatibility when attempting to join the two inner tubular cap halves of the capsule-type security closure with a single random position visual security line surface alert of the present invention with any other half of another closure, which comprises a Internal tubular cap with a vertical safety line with random position isolated from external manipulation provided by a translucent safety cover and a translucent protective bushing.
  • Figure 12A, 12B, and 12C show the randomness and position difference of the vertical security line of the capsule-type security closure with surface alert of visual security line with unique random position of the present invention, which comprises a tubular cap internal with a vertical safety line with random position isolated from external manipulation provided by the translucent hub-type cover.
  • Figure 13 shows the incompatibility when attempting to join the two inner tubular cap halves of the capsule-type security closure with a single random position visual security line surface alert of the present invention with any other half of another closure, which comprises a Inner tubular cap with a line of vertical safety with random position isolated from external manipulation provided by a translucent hub-type cover.
  • Figure 14 shows an isometric view of the capsule type safety closure with surface alert of visual security line with unique random position of the present invention, which comprises an internal tubular cap with central coupling hub and with a vertical safety line with Random position isolated from external tampering provided by a translucent safety overcoat.
  • Figure 15 shows a diagram exempted from the capsule-type security closure with superficial alert of the visual security line with unique random position of the present invention, which comprises an internal tubular cap with a central coupling hub and with a vertical security line with Random position isolated from external tampering provided by a translucent safety overcoat.
  • Figure 16 shows the opening sequence of the capsule-type security closure with surface alert of the visual security line with unique random position of the present invention, which comprises an internal tubular cap with a vertical security line with random position isolated from the external manipulation provided by a translucent safety cover.
  • the capsule-type safety lock with surface alert of a single random position visual safety line is bordered by an internal tubular cap (l), a vertical safety line (2), triangular ratchets (4), weakened joints (10) (12) and (23), translucent safety cover (3), upper capsule cover (8), directional stops (7), internal axial ribs (5), open tubular sleeve (9), translucent bushing type cover (l9) and translucent protective bushing (l8) guaranteeing the non-combination of different parts closures, which allow the reuse of the packages through the reconstruction of the main visual alert elements of the security closures.
  • Figure 1 shows the closure comprising an internal tubular cap (1), which has on its surface the vertical safety line (2) that forms the main axis of this invention and has a random position with respect to others safety closures when it is adhered during its manufacture and before the assembly of the seal, it has been isolated from the outside in its upper part since its manufacture by the translucent security cover (3) that is coupled to the internal tubular cap (1) in its upper part by triangular ratchets (4).
  • triangular ratchets (4) are the complement of some internal axial ribs (5) that fit inside the vertical walls (6) of the directional stops (7), the triangular ratchets (4) and the internal axial ribs (5) after coupling, they remain within the directional stops (7), which allows transfer of the opening movement of the translucent safety cover (3) to the upper capsule cover (8), which has an internal thread on its inner surface (l6).
  • the translucent safety cover (3) has, in turn, a safety ring (ll) on the underside, joined by the weakened joint (12) that complements the opening cycle, this safety ring (l 1) has, in turn, a set of anti-rotation ribs (l4) that are coupled with the anti-rotation ribs (l3) of the internal tubular cap (l); likewise, this internal tubular cap (l) on its inner surface (l5) has the appropriate surface to be coupled with any valve, dosing systems and nozzle for glass
  • FIG 2A and 2B it shows an extruded diagram of the closure where the translucent safety cover (3) and the internal tubular cap (1) can be seen independently, which has on its surface the vertical safety line (2 ) that forms the axis main of this invention and has a random position with respect to other security closures when it is adhered during its manufacture and before the assembly of the closure, it is isolated from the outside in its upper part since its manufacture by the translucent security cover (3 ) which is attached to the internal tubular cap (1) on its upper part by triangular ratchets (4).
  • triangular ratchets (4) are the complement of some internal axial ribs (5) that fit inside the vertical walls (or) of the directional stops (7), the triangular ratchets (4) and the internal axial ribs (5) after coupling, they remain within the directional stops (7), which allows transferring the opening movement of the translucent safety cover (3) to the upper capsule cover (8), which has an internal thread on its inner surface (l6).
  • the translucent safety cover (3) has, in turn, a safety ring (ll) on its lower part, joined by the weakened joint (12) that Complementing the opening cycle, this safety ring (l 1) has, in turn, a set of anti-rotation ribs (l4) that are coupled with the anti-rotation ribs (l 3) of the internal tubular cap (l) ; likewise, this internal tubular cap (l) on its inner surface (l5) has the appropriate surface to be coupled with any valve, dosing systems and
  • Figure 3 shows a cross section where the assemblies between the pieces that allow the safety line to meet its objective can be seen more accurately, in this cut the translucent safety cover (3) and the internal tubular cap (1), which has on its surface the vertical safety line (2) that forms the main axis of this invention and has a random position with respect to other safety closures when it is adhered during its manufacture and before From the closure assembly, it is isolated from the outside in its upper part since its manufacture by the translucent safety cover (3) that is coupled to the internal tubular cap (1) in its upper part by triangular ratchets (4).
  • triangular ratchets (4) are the complement of some internal axial ribs (5) that fit inside the vertical walls (or) of the directional stops (7), the triangular ratchets (4) and the internal axial ribs (5) after their coupling, they remain within the directional stops (7), which allows transferring the opening movement of the translucent safety cover (3) to the upper capsule cover (8), which has an internal thread on its inner surface (ló ) that engages with any thread (l7) of nozzles of dosing systems, once the upper capsule cap (8) rotates against the open tubular sleeve (9) in a static state, the weakened joint is fractionated (10) dividing the inner tubular cap (l) and the vertical security line (2) into two parts, which are incompatible with the other halves of other closures, this incompatibility generated by the vertical security line (2) which is adhered in a way random a in all closures and is inaccessible by the translucent security cover (3), the translucent security cover (3) in turn has at its bottom a security
  • Figure 4 shows a closure formed by a translucent protective bushing (18) and the internal tubular cap (1), the latter has on its surface the vertical safety line (2) that forms the main axis of this invention due to its position Random with respect to other safety closures which is adhered during its manufacture before the assembly of the closure, this vertical safety line (2) is isolated from the outside at its lower part located in the open tubular sleeve (9) by a bushing.
  • Translucent protector (18) that is coupled to the open tubular sleeve (9) at the lower tubular end (20) by the radial stop (2l) and the supporting ribs (22), in the same way the vertical safety line (2) in its upper part from its assembly is isolated from the outside by the translucent safety cover (3) which is coupled by triangular ratchets (4) to the upper capsule cover (8) and to the internal tubular cap (1).
  • triangular ratchets (4) are the complement of some internal axial ribs (5) which fit inside the vertical walls (or) of the directional stops (7), the triangular ratchets (4) and the internal axial ribs (5 ) after coupling, they remain inside the directional stops (7), which allows transferring the opening movement of the translucent safety cover (3) to the upper capsule cover (8), once the upper capsule cover (8) which has on its inner surface an internal thread (ló) that is coupled with any thread (l7) of nozzles of dosing systems, rotates against the open tubular sleeve (9) in a static state, the weakened joint fractionation is generated (10), dividing the inner tubular cap (l) and the vertical safety line (2) into two parts, which are incompatible with the other halves of other closures, this incompatibility is generated by the vertical safety line (2) which is attached to It is random in all closures and is inaccessible due to the translucent safety cover (3) and the translucent protective bushing (18), the translucent safety cover (3) in turn has a
  • FIG. 5 A, 5B and 5C show an extruded diagram of the closure where the translucent safety cover (3), the translucent protective bushing (18) and the internal tubular cap (1) can be seen independently, the latter features in its surface with the vertical safety line (2) that forms the main axis of this invention due to its random position with respect to other safety locks which is adhered during its manufacture before the assembly of the lock, this vertical safety line (2 ) is isolated from the outside at its lower part located in the open tubular sleeve (9) by a translucent protective bushing (18) which is coupled to the open tubular sleeve (9) at the lower tubular end (20) by the radial stop ( 2l) and the supporting ribs (22), in the same way the vertical safety line (2) in its upper part since its assembly is isolated from the outside by the translucent safety cover (3) which is coupled by triangular ratchets (4) to the upper capsule cover (8) and to the internal tubular cap (1).
  • triangular ratchets (4) are the complement of some internal axial ribs (5) which fit inside the vertical walls (or) of the directional stops (7), the triangular ratchets (4) and the internal axial ribs (5 ) after coupling, they remain inside the directional stops (7), which allows transferring the opening movement of the translucent safety cover (3) to the upper capsule cover (8), once the upper capsule cover (8) which has on its inner surface an internal thread (ló) that is coupled with any thread (l7) of nozzles of dosing systems, rotates against the open tubular sleeve (9) in a static state, the weakened joint fractionation is generated (10), dividing the inner tubular cap (l) and the vertical safety line (2) into two parts, which are incompatible with the other halves of other closures, this incompatibility is generated by the vertical safety line (2) which is attached to f It is random in all closures and is inaccessible due to the translucent safety cover (3) and the translucent protective bushing (l8), the translucent safety cover (3) in
  • Figure 6 shows a closure made up of a translucent hub-type cover (l9) and the internal tubular cap (l), the latter has on its surface the vertical safety line (2) that forms the main axis of this invention due to its Random position with respect to other safety closures which is adhered during its manufacture before the closure assembly, this vertical safety line (2) is isolated from the outside at its lower part located in the open tubular sleeve (9) by a translucent protective bushing (18) which is the lower part of the translucent bushing cap (l9) that is coupled to the open tubular sleeve (9) at the lower tubular end (20) by the radial stop (2l) and the supporting ribs ( 22), likewise the vertical safety line (2) in its upper part from its assembly is isolated from the outside by the translucent safety cover (3) which is coupled by triangular ratchets (4) to the upper capsule cover (8) and to the internal tubular cap (1).
  • a translucent protective bushing 18
  • the vertical safety line (2) in its upper part from its assembly is isolated from the outside by the translucent safety cover (3) which
  • triangular ratchets (4) are the complement of some internal axial ribs (5) which fit inside the vertical walls (or) of the directional stops (7), the triangular ratchets (4) and the internal axial ribs (5 ) after coupling, they remain inside the directional stops (7), which allows transferring the opening movement of the translucent safety cover (3) to the upper capsule cover (8), once the upper capsule cover (8) which has on its inner surface an internal thread (l6) that is coupled with any thread (l7) of nozzles of dosing systems, rotates against the open tubular sleeve (9) in a static state, the fragmentation of the weakened joints is generated (23) and (10), dividing the translucent bushing-type cap (l9), the internal tubular cap (l) and the vertical safety line (2) into two parts, which are incompatible with the other halves of other closures, this incompatibility is generated by the following line verticality (2) that is randomly attached to all closures and is inaccessible by the translucent safety cover (2) and the translucent protective bushing
  • FIG. 7 A and 7B show an extruded diagram of the closure where the translucent bushing-type cover (l9) and the internal tubular cap (l) can be seen independently, the latter having on its surface the vertical safety line (2 ) that forms the main axis of this invention due to its random position with respect to other safety closures which is adhered during its manufacture before the assembly of the closure, this vertical safety line (2) is isolated from the outside in its lower part located in the open tubular sleeve (9) by a translucent protective bushing (18) which is the lower part of the translucent bushing type cap (l9) which is coupled to the open tubular sleeve (9) at the lower tubular end (20) by the radial stop (2l) and the supporting ribs (22), likewise the vertical safety line (2) in its upper part from its assembly is isolated from the exterior by the translucent safety cover (3) which is coupled by triangular ratchets (4) to the upper capsule cover (8) and to the internal tubular cap (1).
  • triangular ratchets (4) are the complement of some internal axial ribs (5) which fit inside the vertical walls (or) of the directional stops (7), the triangular ratchets (4) and the internal axial ribs (5 ) after coupling, they remain inside the directional stops (7), which allows transferring the opening movement of the translucent safety cover (3) to the upper capsule cover (8), once the upper capsule cover (8) which has on its inner surface an internal thread (l6) that is coupled with any thread (l7) of nozzles of dosing systems, rotates against the open tubular sleeve (9) in a static state, the fragmentation of the weakened joints is generated (23), dividing the translucent bushing type cap (l9), the internal tubular cap (l) and the vertical safety line (2) in two parts, which are incompatible with the other halves of other closures, this incompatibility is generated by the security line vertical (2) that is randomly attached to all closures and is inaccessible by the translucent safety cover (3) and the translucent protective bushing (18), the translucent
  • Figure 8A, 8B and 8C show the randomness and difference in position of the vertical safety line (2) of three capsule-type safety locks with superficial alert of visual vertical safety line with unique random position, said randomness will be equal form in the manufacture of the same, in each of the closings you can see the translucent safety cover (3) and the internal tubular cap (l), the latter has on its surface the vertical safety line (2) that It forms the main axis of this invention due to its random position with respect to other safety closures which is adhered during its manufacture before the closure is assembled.
  • This vertical safety line (2) is isolated by the translucent safety cover (3 ), which is coupled by triangular ratchets (4) to the upper capsule cap (8) and to the cap internal tubular (1).
  • triangular ratchets (4) are the complement of some internal axial ribs (5) which fit inside the vertical walls (6) of the directional stops (7), the triangular ratchets (4) and the internal axial ribs (5 ) after coupling, they remain inside the directional stops (7), which allows transferring the opening movement of the translucent safety cover (3) to the upper capsule cover (8) belonging to the internal tubular cap (1), of In the same way, this internal tubular cap (l) on its inner surface (l5) has the adequate surface to be coupled with any valve, dosing systems and nozzle for glass bottles or any material.
  • Figure 9 shows the resulting incompatibility if after consumption an attempt is made to join two halves of different closures already open with different vertical safety lines (2), which are attached in a random position at different times of manufacture on the internal tubular cap (l) of the closure ..., in each of the closings you can see the translucent safety cover (3) and the internal tubular cap (l), the latter has on its surface the vertical safety line (2) that forms the main axis of this invention due to its random position with respect to other security closures which is adhered during its manufacture before the assembly of the closure, this vertical security line (2) is isolated by the translucent security cover (3), which is coupled by triangular ratchets (4) to the upper capsule cap (8) and the internal tubular cap (1), these triangular ratchets (4) are the complement of some ribs internal axial (5) which engage inside the vertical walls (6) of the directional stops (7), the triangular pawls (4) and the internal axial ribs (5) after their coupling remain inside the directional stops ( 7), which allows transferring
  • Figure IOA, IOB, and 10C show the randomness and position difference of the vertical safety line of three capsule-type safety locks with surface line alert. visual vertical security with a unique random position, said randomness will occur in the same way in the manufacture thereof, in each of the closings you can see the translucent safety cover (3), the translucent protective bushing (18) and the cap internal tubular (l), the latter has on its surface the vertical safety line (2) that forms the main axis of this invention due to its random position with respect to other safety closures which is adhered during its manufacture before assembly
  • this vertical safety line (2) is isolated by the translucent safety cover (3) and the translucent protective bushing (l 8), the translucent safety cover (3) is coupled by triangular ratchets (4) to the upper capsule cap (8) and to the inner tubular cap (1).
  • triangular ratchets (4) are the complement of some internal axial ribs (5) which fit inside the vertical walls (6) of the directional stops (7), the triangular ratchets (4) and the internal axial ribs (5 ) after coupling, they remain inside the directional stops (7), which allows transferring the opening movement of the translucent safety cover (3) to the upper capsule cover (8) belonging to the internal tubular cap (1), of Likewise, the translucent protective bushing (l8) guarantees the non-alteration of the lower part of the safety line located on the open tubular sleeve (9), this translucent protective bushing (l8) is coupled to the open tubular sleeve (9) on the lower tubular end (20) through the radial stop (2l) and the supporting ribs (22).
  • Figure 11 shows the resulting incompatibility if, after consumption, an attempt is made to join two halves of different closures already open with different vertical safety lines (2), which are attached in a random position at different times of manufacture on the internal tubular cap (l) of the capsule-type safety lock with a superficial warning of a vertical visual safety line with a unique random position with a translucent protective bushing (l8) that is coupled to the open tubular sleeve (9) at the lower tubular end (20) by the radial stop (2l ) and the supporting ribs (22), in the same way, this internal tubular cap (l) on its inner surface (l5) has the adequate surface to be coupled with any valve, dosing systems and mouthpiece of glass bottles or any material.
  • Figure 12 A, 12B and 12C show the randomness and position difference of the vertical safety line of three capsule-type safety locks with visual vertical safety line surface alert with unique random position, said randomness will be given in the same way in the manufacture of the same, in each of the closures can be seen with a translucent hub-type cap (19) and an internal tubular cap (1) that is coupled to the open tubular sleeve (9), in the same way this internal tubular cap ( l) on its inner surface (l5) it has the adequate surface to be coupled with any valve, dosing systems and nozzle of glass bottles or any material.
  • Figure 13 shows the resulting incompatibility if, after consumption, an attempt is made to join two halves of different closures already open with different vertical safety lines (2), which are attached in a random position at different times of manufacture on the internal tubular cap (l). of the capsule-type safety closures with a superficial warning of the vertical visual safety line with a unique random position, with a translucent bushing-type cap (19) that engages the open tubular sleeve (9) at the lower tubular end (20) by the radial stop (2l) and the supporting ribs (22), in the same way this internal tubular cap (l) on its inner surface (l5) has the adequate surface to be coupled with any valve, dosing systems and nozzle of glass bottles or any material.
  • Figure (14) shows the closure comprising an internal tubular cap (l), which has on its surface the vertical safety line (2) that forms the main axis of this invention and has a random position with respect to to other safety closures when it is adhered during its manufacture and before the assembly of the seal, it is isolated from the outside in its upper part since its manufacture by the translucent safety cover (3) that is coupled to the internal tubular cap (1) by triangular ratchets (4).
  • triangular ratchets (4) are the complement of some internal axial ribs (5) that fit inside the vertical walls (or) of the directional stops (7), the triangular ratchets (4) and the internal axial ribs (5) after coupling, they remain within the directional stops (7), which allows transferring the opening movement of the translucent safety cover (3) to the upper capsule cover (8) on the central coupling hub (24), in its inner surface with a thread intema (ló) that couples with any thread (l7) of nozzles of dosing systems, once the upper capsule cap (8) rotates against the open tubular sleeve (9) in a static state, the weakened joint is generated.
  • the translucent safety cover (3) in turn has a safety ring (l 1) attached at the bottom by the union weakened (12) that complements the opening cycle, this security ring (l 1) has, in turn, a set of anti-rotation ribs (l4) that are coupled with the anti-rotation ribs (l3) of the tubular cap internal (l); likewise, this internal tubular cap (l) on its inner surface (l5) has the appropriate surface to be coupled with any valve, dosing systems and nozzle for glass bottles or any material.
  • FIG (15) shows a cross section where the assemblies between the pieces that allow the safety line to fulfill its objective can be seen more accurately
  • the translucent safety cover is shown independently (3 ) and the internal tubular cap (1), which has on its surface the vertical safety line (2) that forms the main axis of this invention and has a random position with respect to other safety closures when it is adhered during Manufacture and before the assembly of the closure, it is isolated from the outside in its upper part since its manufacture by the translucent safety cover (3) that is coupled to the internal tubular cap (1) in its upper part by triangular ratchets
  • the translucent safety cover (3) in turn has a security ring (l 1) attached at its bottom by the weakened union (12) that complements the opening cycle, this security ring (ll)
  • the figure shows the opening sequence of the capsule-type security closure with a visual vertical security line surface alert with a single random position where you can see the translucent security cover (3) and the internal tubular cap (l), the latter features on its surface with the vertical safety line (2) that forms the main axis of this invention due to its random position with respect to other safety locks which is adhered during its manufacture before the assembly of the lock, this vertical safety line ( 2) It is isolated by the translucent safety cover (3), which is coupled by triangular ratchets (4) to the upper capsule cover (8) and to the internal tubular cap (1). These triangular ratchets (4) are the complement of some internal axial ribs (5) which fit inside the vertical walls (6) .

Abstract

L'invention est basée sur une fermeture de sécurité de type capsule, laquelle en tant qu'invention principale présente sur sa périphérie une ligne de sécurité verticale imprimée ou collée lors de sa fabrication initiale à un capuchon tubulaire interne à position aléatoire et isolée de la manipulation externe par un surcouvercle de sécurité translucide et un manchon protecteur translucide, tous deux assemblés sur la surface d'un capuchon tubulaire interne au moyen d'un ensemble de dispositifs d'assemblage qui permettent, lors de l'ouverture, la génération d'une division du capuchon tubulaire interne et de la ligne de sécurité verticale, cette division faisant que n'importe laquelle des deux parties divisées obtenues du capuchon tubulaire interne et de la ligne de sécurité verticale ne coïncident pas avec les deux autres moitiés obtenues d'un autre emballage. Ainsi, la présente invention de par sa condition de ligne de sécurité verticale inaccessible et inviolable, génère une preuve d'incompatibilité si les personnes non scrupuleuses tentent de modifier la ligne de sécurité verticale ou de réunir les deux moitiés de capuchon tubulaire interne avec une ligne de sécurité appartenant à des contenants ou des emballages distincts.
PCT/CO2019/000012 2018-09-10 2019-09-08 Fermeture de sécurité de type capsule avec alerte superficielle de ligne de sécurité verticale visuelle à position aléatoire unique WO2020052696A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CONC2018/0009438 2018-09-10
CO2018009438 2018-09-10

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WO2020052696A1 true WO2020052696A1 (fr) 2020-03-19

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Citations (5)

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WO1994018087A1 (fr) * 1993-02-11 1994-08-18 A.G. (Patents) Limited Recipient pourvu de moyens garantissant l'authenticite d'origine d'un produit qui y est contenu
GB2385321A (en) * 2002-02-14 2003-08-20 Dragon Plastics Ltd Tamper evident closure
GB2397295A (en) * 2002-11-08 2004-07-21 Rue De Int Ltd Tamper evident closure with translucent window
WO2006117505A1 (fr) * 2005-04-29 2006-11-09 Obrist Closures Switzerland Gmbh Fermeture avec systeme d'indication d'alteration
WO2018015219A1 (fr) * 2016-07-19 2018-01-25 Guala Closures S.P.A. Fermeture inviolable

Patent Citations (5)

* Cited by examiner, † Cited by third party
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WO1994018087A1 (fr) * 1993-02-11 1994-08-18 A.G. (Patents) Limited Recipient pourvu de moyens garantissant l'authenticite d'origine d'un produit qui y est contenu
GB2385321A (en) * 2002-02-14 2003-08-20 Dragon Plastics Ltd Tamper evident closure
GB2397295A (en) * 2002-11-08 2004-07-21 Rue De Int Ltd Tamper evident closure with translucent window
WO2006117505A1 (fr) * 2005-04-29 2006-11-09 Obrist Closures Switzerland Gmbh Fermeture avec systeme d'indication d'alteration
WO2018015219A1 (fr) * 2016-07-19 2018-01-25 Guala Closures S.P.A. Fermeture inviolable

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