Flip-top cap for dispensing flowable dental substances

A thermoplastic flip-top cap with a sealing ridge and bistable hinge addresses the need for a reliable, easy-to-use, and cost-effective dental dispenser that provides a secure seal and controlled dispensing of dental materials.

JP7740877B2Active Publication Date: 2025-09-17SOLVENTUM INTELLECTUAL PROPERTIES CO
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Patent Information

Application Number
JP2020551999
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2018-03-28
Filing Date
2019-03-20
Publication Date
2025-09-17
Estimated Expiration
2039-03-20

AI Technical Summary

Technical Problem

Existing dental dispensers are not reliable, easy to use, and cost-effective, particularly for flowable dental materials, and often fail to provide a secure seal and controlled dispensing.

Method used

A monolithic flip-top cap made of thermoplastic material with a sealing ridge and a bistable hinge, allowing easy cleaning, providing a tight seal and controlled dispensing of dental substances through a conical outlet channel and multiple sealing mechanisms.

Benefits of technology

The solution ensures a secure, easy-to-clean, and cost-effective dispenser that maintains a tight seal and controls the flow rate of dental materials, facilitating precise dispensing and preventing leakage.

✦ Generated by Eureka AI based on patent content.

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Abstract

A flip-top cap (83) for dispensing a flowable dental substance is monolithically formed of a thermoplastic material. The flip-top cap has a base (4) from which a dropper nose (8) protrudes, and a sealing portion, the sealing portion being hinged to the base so as to pivot between a closed position in which the sealing portion closes the dropper nose and an open position in which the dropper nose is not covered by the sealing portion. The sealing portion has an end wall (20) forming an outer planar end surface (21) and an inner surface (22) having a sealing ridge (23) opposite the end wall. The end wall forms a first thickness (T1) between the apex of the sealing ridge and the end surface, and a second thickness (T2) between a peripheral region adjacent the sealing ridge and the end surface. The ratio of the first thickness to the second thickness is 1.4 to 1.6.
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Description

[Technical Field]

[0001] The present invention relates to a flip-top cap for dispensing a flowable dental substance, the flip-top cap being monolithically formed of a thermoplastic material, wherein a sealing ridge is monolithically formed with the flip-top cap and is provided to seal an outlet of a dropper nose of the flip-top cap. [Background technology]

[0002] Dental materials are often provided in packaging designed to facilitate preparation and / or application of the material in a dental practice. Flowable dental materials are often provided in dropper bottles that dispense the material in droplets so that the user can easily measure the desired amount.

[0003] For example, WO 2011 / 056814 A1 discloses a dispenser having a body with an outlet and a flip-top cap for the outlet. The flip-top cap and body are pivotally movable relative to each other between an open position in which the outlet is open and a closed position in which the flip-top cap closes the outlet. The flip-top cap and body are adapted to engage with each other in a locking manner in the closed position. The flip-top cap has a locking member for locking and unlocking the flip-top cap and the body in the closed position. A force applied to the locking member to unlock the flip-top cap urges the flip-top cap toward the open position.

[0004] Although existing dropper bottles are used and useful in dentistry, there remains a need for a dispenser that is reliable, easy to use, and relatively inexpensive. Summary of the Invention

[0005] The present invention relates to a flip-top cap for dispensing a flowable dental substance. The present invention also relates to a dispenser including the flip-top cap. The flip-top cap is monolithically formed from a thermoplastic material. The flip-top cap includes a base from which a dropper nose protrudes and a sealing portion hingedly connected to the base, specifically by a hinge. The hinge pivots between a closed position in which the sealing portion closes the dropper nose and an open position in which the dropper nose is not covered by the sealing portion. Thus, the sealing portion and the base are movable between the open and closed positions by the hinge. The sealing portion includes an end wall forming an outer planar end surface and an inner surface including a sealing ridge on the opposite side. The end wall forms a first thickness between the apex of the sealing ridge and the end surface. Furthermore, the end wall forms a second thickness between a peripheral region adjacent to the sealing ridge and the end surface. The ratio of the first thickness to the second thickness is 1.4 to 1.6.

[0006] The present invention is advantageous in that it provides a flip-top cap that is easy to clean and therefore suitable for use in dentistry. Further, the present invention is advantageous in that it provides a flip-top cap that provides a tight seal in the closed position. Further, the present invention provides a flip-top cap that can be made from a single material. Caps so formed are relatively inexpensive.

[0007] In one embodiment, the dropper nose has a free end that forms an outlet channel. The outlet channel preferably widens conically toward the free end. Thus, the outlet channel is shaped to allow droplets to form from the flowable dental material during dispensing. Furthermore, the conical shape of the outlet channel cooperates with the shape of the sealing ridge to provide a tight seal when the flip-top cap is in the closed position.

[0008] In one embodiment, the outlet channel forms a dispensing outlet with a diameter of 2.8 mm. Preferably, the narrowest portion of the outlet channel is 0.6 mm. Thus, the outlet channel is sized to restrict the flow rate of the flowable dental material, thereby controlling the input of the flowable dental material and preventing the flowable dental material from flowing out. Furthermore, the outlet channel is sized to provide droplets of a predetermined volume that can be dispensed.

[0009] In one embodiment, the sealing ridge protrudes in a direction away from the inner surface of the sealing portion. The sealing ridge preferably protrudes with a circular cross-section that decreases in diameter in a direction away from the inner surface. Specifically, the sealing ridge is preferably dome-shaped. The dome shape may include a spherical surface with a radius of 4 mm. The spherical surface preferably forms the apex of the sealing ridge. Furthermore, the spherical surface may form a first portion of the entire surface of the sealing ridge, and a second portion of the sealing ridge may be aspherical.

[0010] In one embodiment, the base forms a cylindrical shoulder. The shoulder and the sealing portion preferably fit snugly together in the closed position. Thus, the sealing portion and the base combine to form a second seal in addition to the first seal provided by the sealing ridge that seals the dropper nose in the closed position. Thus, the flip-top cap provides two seals based on different sealing principles, which can maximize the sealing effect.

[0011] In one embodiment, the flip-top cap includes a first retention structure at the closure and a second retention structure at the base, the first and second retention structures snap-fit ​​together in the closed position.

[0012] In one embodiment, the flip-top cap includes internal threads that mate with the external threads of the container bottle. The flip-top cap may include the container bottle. The container bottle and flip-top cap may combine to form a dispenser for the dental material. Furthermore, the flip-top cap or the dispenser may include the dental material contained within the container bottle.

[0013] In one embodiment, the hinged connection between the sealing portion and the base is formed by a bistable living hinge that biases the sealing portion and the base to either the closed or open position. Preferably, the sealing portion and the base are pivotable 180 degrees to establish the open and closed positions. This means that the open and closed positions are angularly offset 180 degrees from each other. This allows the sealing portion to be positioned completely away from the dropper nose. Thus, the dropper nose can be freely positioned during dispensing of dental substance, while the sealing portion is positioned sufficiently outside the surrounding area of ​​the dropper nose. Preferably, the dropper nose protrudes along the longitudinal axis over a length from the lower end at the base to the free end (forming the dispensing outlet). The hinge is preferably positioned radially from the lower end. The pivot provided by the hinge preferably forms a pivot axis perpendicular to the longitudinal axis. The length of the dropper nose is preferably 14.5 mm, and the radial distance of the pivot axis is preferably 10.75. The geometrical arrangement of the hinge relative to the sealing ridge allows the sealing ridge to slide laterally from the free end away from the longitudinal axis as the closure moves from the closed position toward the open position. The dome shape and the geometrical arrangement of the hinge relative to the sealing ridge (as defined herein) are configured to allow smooth opening and closing of the closure and to create pretension between the sealing ridge and the dropper nozzle in the closed position. Preferably, the flip-top cap is made (e.g., injection molded) from polypropylene.

[0014] In one embodiment, the closure completely encloses the dropper nose in the closed position, thus preventing contact of the dropper nozzle with the environment during storage of the flip-top cap or dispenser. [Brief explanation of the drawings]

[0015] [Figure 1] 1 is a perspective view of a dispenser with a flip-top cap in a closed position according to an embodiment of the present invention. [Figure 2]FIG. 2 is a perspective view of the dispenser of FIG. 1 in an open position. [Figure 3] FIG. 3 is a cross-sectional view of the dispenser shown in FIGS. 1 and 2. DETAILED DESCRIPTION OF THE INVENTION

[0016] 1 and 2 show a dispenser 1 for a flowable dental substance. The dispenser 1 includes a bottle 2 and a flip-top cap 3. The flip-top cap 3 includes a base 4 and a closure 5 interconnected by a hinge 7, allowing the closure 5 and base 4 to pivot relative to one another between a closed position (shown in FIG. 1 ) and an open position (shown in FIG. 2 ). The closure 5, base 4, and hinge 7 are injection molded together (monolithically formed). The hinge 7 specifically forms a living hinge, which provides pivoting based on deformation of a thin band of plastic material (rather than two parts moving relative to one another through a sliding fit). In this example, the hinge 7 is also a bistable hinge that biases the closure 5 and base 4 toward either the closed or open position and prevents the closure 5 and base 4 from automatically positioning themselves in an intermediate position between the closed and open positions.

[0017] As shown in FIG. 2a, dropper nose 8 projects from base 4. Dropper nose 8 projects from base 4 over a length of 14.5 mm, from lower end 8a to free end 8b, where dispensing outlet 6 is provided. Dispensing outlet 6 is provided for dropwise dispensing of the flowable dental substance stored in bottle 2. To dispense the flowable substance, dispenser 1 is typically held with dispensing outlet 6 facing downwards (and bottle 2 facing upwards). Bottle 2, so held in place, can be (slightly) squeezed to dispense the substance. Outlet 6 is formed by dropper nose 8 (described in more detail below).

[0018] The base 4 has a shoulder 9 for sealing with the closure 5. Specifically, the sidewall 10 formed by the closure 5 and the shoulder 9 are sized to provide a snug, sealing fit with one another when the dispenser 1 is in the closed position.

[0019] Additionally, the sidewall 10 has a first retention structure 12, and the base 4 (specifically, the shoulder 9) has a second retention structure 11. In this example, the first retention structure 12 is a depression, and the second retention structure 11 is a protuberance. The first retention structure 11 and the second retention structure 12 are positioned and configured to engage with each other in the closed position of the dispenser 1. Thus, the first retention structure 11 and the second retention structure 12 hold the closure 5 and the base 4 in the closed position by a snap-fit. Those skilled in the art will recognize that the first retention structure may similarly be a protuberance or other convex structure, and the second retention structure may be a depression or other concave structure. Other retention structures are possible.

[0020] Dispenser 1 extends along longitudinal axis A. Furthermore, dispenser 1 has a generally cylindrical shape (visible in FIG. 1 ) except for actuator portion 14. Actuator portion 14 is shaped to allow a user to press closure portion 5 toward the open position, for example, with a thumb. To press closure portion 5 toward the open position, a user can hold dispenser 1 in one hand, hold the dispenser on bottle 2 with the fingers of that hand, and use the thumb of the same hand to press closure portion 5 toward the open position. Thus, dispenser 1 can be operated one-handed. Actuator portion 14 specifically forms a protrusion that protrudes in a dimension transverse to longitudinal axis A. Furthermore, actuator portion 14 forms recessed portion 17. Recessed portion 17 serves to position and hold a user's thumb or other finger in a desired position to reliably press closure portion 5 toward the open position.

[0021] The hinge 7 is disposed offset from the longitudinal axis A and defines a pivot axis B oriented laterally, in particular perpendicular to the longitudinal axis A, the pivot axis B being defined in an imaginary hinge level plane 15 perpendicular to the longitudinal axis A. It should be noted that those skilled in the art will appreciate that in some embodiments the pivot axis B defined by the hinge may undergo a slight parallel or near-parallel displacement during pivoting, however this is within the scope of the present invention.

[0022] The flip top cap 3 has a first end 18 and a second end 19. In an embodiment, the hinge level surface 15 is located between the first end 18 and the second end 19.

[0023] FIG. 3 shows dispenser 1 in cross section. Enclosure 5 includes end wall 20 defining an outer, planar end surface 21 and an opposing inner surface 22 including sealing ridge 23. End wall 20 defines a first thickness T1 between the apex of sealing ridge 23 and end surface 21. End wall 20 also defines a second thickness T2 between end surface 21 and a peripheral region 22a of inner surface 22 adjacent sealing ridge 23. In this example, the ratio of first thickness T1 to second thickness T2 (T1 divided by T2) is approximately 1.5. It has been found that end surface 21 can be molded flat up to this ratio. If the ratio is greater than 1.6 (e.g., by providing a sealing ridge that protrudes away from end wall 20), end surface 21 is prone to forming a depression or slight cavity opposite sealing ridge 23 due to material shrinkage after injection molding. However, it is desirable for the end surface 21 to be flat (planar) so that it can be efficiently and easily disinfected. This is achieved by the present invention. On the other hand, it has been found that a ratio of the first thickness T1 to the second thickness T2 of less than 1.4 affects the sealing effectiveness of the sealing ridge when sealing the dispensing outlet 6. In particular, flat seals, such as those used in the form of rubber seals in the prior art, may deteriorate during long storage periods if made of thermoplastic materials. This is because thermoplastic materials tend to deform slightly over time when held under mechanical tension.

[0024] In this example, the bottle 2 has a neck 30 with external threads 31 mounted within a receptacle 32 in the base 4. The receptacle 32 has internal threads 33 that are counter-threaded to correspond to the external threads 31 on the bottle 2. While a threaded connection between the bottle 2 and the flip-top cap 3 is preferred, those skilled in the art will recognize other connections that may also be used in the present invention. Other examples include snap or plug connections, welded connections, adhesive connections, and other suitable connections. In this example, the dispenser 1 has a plug connection in combination with a threaded connection. Specifically, the bottle 2 has a sealing rim that forms the free end of the bottle 2.

[0025] The bottle 2 has an opening 34 (which is the only opening of the bottle 2). The opening 34 of the bottle 2 is in fluid communication with an outlet channel 25 located within the dropper nose 8. In this example, the outlet channel 25 has a first portion 25a. The first portion 25a tapers generally from the opening 34 of the bottle 2 in a direction toward the outlet 6. The outlet channel 25 further has a second portion 25b and a third portion 25c. The third portion 25c begins at the second portion 25b and widens toward the outlet 6. Specifically, the third portion 25c forms a funnel-shaped inner surface that forms the outlet 6 at the end of the third portion 25c. The combination of the outlet 6 and the funnel-shaped inner surface, together with the physical properties of the flowable material, ensures the formation of droplets of a reproducible size during dispensing.

Claims

1. 1. A flip-top cap for dispensing a flowable dental substance, the flip-top cap comprising: a base portion from which a dropper nose projects; and a sealing portion, the sealing portion being monolithically formed of a thermoplastic material; the base portion being hingedly connected to the base portion so as to pivot between a closed position in which the sealing portion closes the dropper nose and an open position in which the dropper nose is not covered by the sealing portion; the sealing portion having an end wall forming an outer planar end surface and an opposite inner surface including a sealing ridge; the end wall forming a first thickness between the apex of the sealing ridge and the end surface; and a second thickness between a peripheral region adjacent the sealing ridge and the end surface; the ratio of the first thickness to the second thickness being 1.4 to 1.

6.

2. The flip-top cap of claim 1 , wherein the dropper nose has a free end that defines an exit channel, the exit channel widening conically toward the free end.

3. 3. The flip-top cap of claim 2, wherein the outlet channel forms a dispensing outlet having a diameter of 2.8 mm.

4. 4. The flip-top cap according to claim 1, wherein the sealing ridge projects away from the inner surface in a circular cross-section that decreases in diameter away from the inner surface.

5. 5. The flip-top cap of claim 1, comprising a first retention structure at the sealing portion and a second retention structure at the base portion, the first and second retention structures snap-fit ​​together in the closed position.

Citation Information

Patent Citations

  • Dental adhesive container drip system

    JP2002513665A

  • Storage bottle for contact lens cleaning solution having a self closing valve assembly

    US4739906A

  • Device for dispensing a flowable material

    WO2011056814A1