Dental implant packaging ampoule

The redesigned dental implant packaging ampoule with integrated stepped portions and a simplified cap assembly addresses the complexity and cost issues of conventional designs, improving efficiency and sterility.

JP2026518203APending Publication Date: 2026-06-04OSSTEMIMPLANT CO LTD

Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
OSSTEMIMPLANT CO LTD
Filing Date
2024-04-29
Publication Date
2026-06-04

AI Technical Summary

Technical Problem

Conventional dental implant packaging ampoules have complex structures with numerous components, leading to reduced production efficiency and increased costs.

Method used

A dental implant packaging ampoule design featuring an inner cylinder with integrated first and second stepped portions for attaching a guide member and support member, along with a simplified cap assembly, reduces the number of parts and simplifies the structure.

Benefits of technology

This design enhances production efficiency, reduces costs, and ensures easy handling and sterility of the implant by minimizing contamination risks during use.

✦ Generated by Eureka AI based on patent content.

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Abstract

One embodiment of the present invention provides a dental implant packaging ampoule comprising: an inner cylinder in which an implant is housed; an outer cylinder in which the inner cylinder is housed; a cap assembly for sealing the outer cylinder; a guide member provided on the inner circumference of the inner cylinder for preventing the implant from detaching horizontally; and a support member provided on the inner circumference of the inner cylinder for supporting the lower end of the implant, wherein the inner circumference of the inner cylinder is provided with a first stepped portion to which the guide member is connected and a second stepped portion to which the support member is connected, and the first stepped portion and the second stepped portion are integrally formed with the inner cylinder.
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Description

Technical Field

[0001] The present invention relates to a dental implant packaging ampoule.

Background Art

[0002] An implant originally means a substitute for restoring human tissue when the human tissue is lost, but in dentistry, it refers to the root of an artificially made tooth. Dental implant surgery means a dental treatment method in which a dental implant made of titanium or the like that does not cause a rejection reaction in the human body is implanted into the alveolar bone where a tooth has been extracted so that the lost tooth root can be replaced, and then adhered to the alveolar bone, and an abutment and a prosthesis are fixed to the dental implant.

[0003] Since such an implant must be maintained in a sterile state as it is configured to be inserted into human tissue, preventing contamination and damage during its packaging, transportation, and opening of the package is the most important issue.

[0004] Therefore, in the case of a packaging ampoule for storing an implant, the implant needs to be configured such that a series of processes can be easily performed when the packaging ampoule is opened to take out the implant, as it is directly implanted into the alveolar bone.

[0005] Figure 1 shows a conventional dental implant packaging ampoule. As shown in Figure 1, a conventional packaging ampoule 1 comprises an inner cylinder 10 in which an implant F is housed, an outer cylinder 20 in which the inner cylinder 10 is housed, and a cap portion 30 that seals the outer cylinder 20. In this case, the packaging ampoule 1 includes a structure for fixing the implant F inside the packaging ampoule 1, which includes a position fixing portion 11 coupled to the inner circumference of the inner cylinder 10 to prevent the implant F from detaching horizontally, and a support portion 12 that makes contact with the lower end of the implant F to provide substantial support. The support portion 12 includes an extension portion 12a extending from the lower end of the inner cylinder 10 to a predetermined height, a base 12b for fixing and supporting the lower end of the extension portion 12a, and a support piece 12c provided at the upper end of the extension portion 12a to support the lower end of the implant F. In other words, the conventional packaging ampoule 1 has the problem of having a large number of components, a complex structure, reduced production efficiency, and increased unit cost.

[0006] [Prior art documents] [Patent Documents]

[0007] Korean Registered Patent Publication No. 10-1439344 (2014.09.02) [Overview of the Initiative] [Problems that the invention aims to solve]

[0008] The present invention aims to solve the problems of the prior art described above, and the object of the present invention is to provide a dental implant packaging ampoule that simplifies the structure for fixing the implant, improves the production efficiency of the product, and reduces production costs. [Means for solving the problem]

[0009] To achieve the aforementioned objectives, one aspect of the present invention provides a dental implant packaging ampoule comprising: an inner cylinder in which an implant is housed; an outer cylinder in which the inner cylinder is housed; a cap assembly for sealing the outer cylinder; a guide member provided on the inner circumference of the inner cylinder for preventing the implant from detaching horizontally; and a support member provided on the inner circumference of the inner cylinder for supporting the lower end of the implant, wherein the inner circumference of the inner cylinder is provided with a first stepped portion to which the guide member is connected and a second stepped portion to which the support member is connected, and the first stepped portion and the second stepped portion are integrally formed with the inner cylinder.

[0010] In one embodiment of the present invention, the inner diameter D1 of the first stepped portion is larger than the inner diameter D2 of the second stepped portion, making it a dental implant packaging ampoule.

[0011] In one embodiment of the present invention, the support member is a dental implant packaging ampoule characterized by including a support portion that supports the lower end of the implant, and a seating portion formed around the upper end of the support portion and seated and coupled to the second stepped portion of the inner cylinder.

[0012] In one embodiment of the present invention, the seating portion of the support member is formed to be at least partially angular so as to prevent rotation when seated on the second stepped portion, making it a dental implant packaging ampoule.

[0013] In one embodiment of the present invention, the inner circumference of the inner cylinder is formed with one or more inner protrusions to prevent the support member seated on the second stepped portion from detaching above it, making it a dental implant packaging ampoule.

[0014] In one embodiment of the present invention, the second stepped portion is formed with one or more detachment prevention protrusions for preventing the support member from detaching, and the seating portion of the support member is formed with one or more detachment prevention grooves into which the detachment prevention protrusions are inserted, making it a dental implant packaging ampoule.

[0015] In one embodiment of the present invention, the second stepped portion is formed with one or more anti-detachment grooves for preventing the support member from detaching, and the seating portion of the support member is formed with one or more anti-detachment protrusions that are inserted into the anti-detachment grooves, making it a dental implant packaging ampoule.

[0016] In one embodiment of the present invention, the cap assembly is a dental implant packaging ampoule characterized by comprising: an ampoule cap for sealing the outer cylinder; an inner cap provided below the ampoule cap and connected to the inner cylinder; and a cover cap provided above the ampoule cap for distinguishing the diameter or height of the implants to be stored.

[0017] In one embodiment of the present invention, a dental implant packaging ampoule is provided, characterized in that a connecting projection is provided at the center of the inner cap, which is connected to the upper end of the implant.

[0018] In one embodiment of the present invention, the lower end of the inner cylinder is directly supported by the bottom of the outer cylinder, making it a dental implant packaging ampoule. [Effects of the Invention]

[0019] According to one aspect of the present invention, a dental implant packaging ampoule has a first stepped portion and a second stepped portion integrally formed with the inner circumference of the inner cylinder, to which a guide member and a support member can be attached. This reduces the number of parts constituting the dental implant packaging ampoule, simplifies the structure, improves production efficiency, and reduces production costs.

[0020] In addition, since the dental implant packaging ampoule has a double storage structure, it can easily prevent the implant from being contaminated by external foreign substances. Furthermore, since the cap assembly is located and connected to the upper parts of the inner cylinder and the outer cylinder, the implant can be taken out and used with only simple operations without any separate complicated operations during a series of usage processes of taking out the implant.

[0021] The effects of the present invention are not limited to the above-mentioned effects, and it should be understood that the effects include all effects that can be inferred from the configuration of the invention described in the specific description or claims of the present invention.

Brief Description of the Drawings

[0022] [Figure 1] Shows a dental implant packaging ampoule according to the prior art.

[0023] [Figure 2] It is a perspective view of a dental implant packaging ampoule according to an embodiment of the present invention.

[0024] [Figure 3] It is an exploded view showing the configuration of a dental implant packaging ampoule according to an embodiment of the present invention.

[0025] [Figure 4] It is an exploded view showing in detail the configuration of a dental implant packaging ampoule according to an embodiment of the present invention.

[0026] [Figure 5] It is a cross-sectional view taken along the line A-A' of FIG. 2.

[0027] [Figure 6] It is a cross-sectional view taken along the line B-B' of FIG. 2.

[0028] [Figure 7] It is an exploded perspective view of an inner cylinder, a guide member, and a support member according to an embodiment of the present invention.

[0029] [Figure 8] This is a cross-sectional view of the joint of an inner cylinder, a guide member, and a support member according to one embodiment of the present invention.

[0030] [Figure 9] (a) and (b) are perspective views and perspective cross-sectional views of an inner cylinder according to one embodiment of the present invention, respectively.

[0031] [Figure 10] and [Figure 11] This diagram shows, step by step, how to use a dental implant packaging ampoule according to one embodiment of the present invention.

[0032] [Figure 12] This is an exploded perspective view of the inner cylinder, guide member, and support member according to another embodiment of the present invention.

[0033] [Figure 13] This is a cross-sectional view showing the joint of an inner cylinder, a guide member, and a support member according to another embodiment of the present invention.

[0034] [Figure 14] (a) and (b) are perspective views and cross-sectional views of the inner cylinder according to another embodiment of the present invention, respectively. [Modes for carrying out the invention]

[0035] The present invention will be described below with reference to the attached drawings. However, the present invention can be embodied in various different forms and is therefore not limited to the embodiments described herein. Furthermore, in order to clearly illustrate the present invention, parts unrelated to the description have been omitted from the drawings, and similar parts throughout the specification are denoted by similar reference numerals.

[0036] Throughout the specification, when a part is described as being "connected" to another part, this includes not only cases where they are "directly connected" but also cases where they are "indirectly connected" through other components in between. Furthermore, when a part is described as "containing" a certain component, this does not exclude other components, unless otherwise stated, but rather means that it further comprises other components.

[0037] Embodiments of the present invention will be described in detail below with reference to the attached drawings.

[0038] Figure 2 is a perspective view of a dental implant packaging ampoule according to one embodiment of the present invention; Figure 3 is an exploded view showing the configuration of a dental implant packaging ampoule according to one embodiment of the present invention; Figure 4 is an exploded view showing the configuration of a dental implant packaging ampoule according to one embodiment of the present invention in detail; Figure 5 is a cross-sectional view taken along line A-A' in Figure 2; Figure 6 is a cross-sectional view taken along line B-B' in Figure 2; Figure 7 is an exploded perspective view of the inner cylinder, guide member, and support member according to one embodiment of the present invention; Figure 8 is a combined cross-sectional view of the inner cylinder, guide member, and support member according to one embodiment of the present invention; and Figures 9(a) and 9(b) are perspective views and cross-sectional views of the inner cylinder according to one embodiment of the present invention, respectively.

[0039] Referring to Figures 2 to 9, the dental implant packaging ampoule 1000 according to the present invention includes an inner cylinder 100, an outer cylinder 200, a cap assembly 300, a guide member 400, and a support member 500.

[0040] More specifically, the dental implant packaging ampoule 1000 includes an inner cylinder 100 in which an implant F is housed, an outer cylinder 200 in which the inner cylinder 100 is housed, a cap assembly 300 that seals the outer cylinder 200, a guide member 400 provided on the inner circumference of the inner cylinder 100 to prevent the implant F from detaching horizontally, and a support member 500 provided on the inner circumference of the inner cylinder 100 to support the lower end of the implant F. The inner circumference of the inner cylinder 100 is provided with a first stepped portion 110 to which the guide member 400 is connected, and a second stepped portion 120 to which the support member 500 is connected, and the first stepped portion 110 and the second stepped portion 120 are integrally formed with the inner cylinder 100.

[0041] The implant F is a predetermined structure that is inserted into the alveolar bone to support an artificial tooth. Preferably, the implant F extends vertically and has an overall columnar shape, and may be made of a material that is harmless to the human body and readily fuses with bone tissue, such as titanium, but is not limited to this. Therefore, any material having similar properties as described above can be used.

[0042] Preferably, the implant F has a screw-like shape for fixation, a structure that increases the contact area with the surroundings, and a configuration that expands or contracts its outer diameter in one direction. Furthermore, as will be described later, the implant F can be connected to a connecting projection 321 formed on the inner cap 320 of the cap assembly 300 by forming a predetermined connecting groove S on its upper part, and can be connected to a handpiece for removal, and can also be connected to an artificial tooth.

[0043] Such an implant F is housed in an inner cylinder 100. The inner cylinder 100 preferably has a cylindrical structure and has a storage space 130 formed inside. The implant F can be housed in the storage space 130 of the inner cylinder 100.

[0044] The inner cylinder 100 is housed inside the outer cylinder 200 with the implant F inside, and the lower end of the inner cylinder 100 can be supported by the bottom of the outer cylinder 200. Preferably, the outer cylinder 200 may also have a cylindrical structure. That is, a double housing structure can be achieved by housing the implant F inside the inner cylinder 100, and the inner cylinder 100 being housed inside the outer cylinder 200.

[0045] On the other hand, as shown in Figures 7 to 9, the inner circumference of the inner cylinder 100 may be provided with a guide member 400 to prevent the implant F from detaching horizontally, and a support member 500 to support the lower end of the implant F.

[0046] The guide member 400 is provided on the inner circumference of the inner cylinder 100 and may be formed in a ring shape that reduces the inner diameter of the inner cylinder 100, and the implant F may be positioned inside the guide member 400.

[0047] The support member 500 is provided on the inner circumference of the inner cylinder 100 and supports the lower end of the implant F. This support member 500 may be located below the guide member 400 on the inner circumference of the inner cylinder 100.

[0048] On the other hand, the support member 500 may include a support portion 510 that supports the lower end of the implant F, and a seating portion 520 formed around the upper end of the support portion 510 and seated and coupled to the second stepped portion 120 of the inner cylinder 100. The seating portion 520 of such a support member 500 may be formed to be at least partially angular so as to prevent rotation when seated on the second stepped portion 120. With such a support member 500, the implant F can be housed and stored inside the inner cylinder 100 at a predetermined height.

[0049] In this way, by providing the guide member 400 and the support member 500 on the inner circumference of the inner cylinder 100, when attempting to connect the handpiece and remove the implant F from the inner cylinder 100 for use, the connection between the handpiece and the implant F can be easily achieved, improving the user's convenience. In other words, the support member 500 prevents the implant F from sinking too deeply into the inner cylinder 100, the guide member 400 prevents the implant F from shifting to one side, and the connection between the handpiece and the implant F can be easily made.

[0050] As shown in Figures 7 to 9, the inner circumference of the inner cylinder 100 is provided with a first stepped portion 110 to which the guide member 400 is attached, and a second stepped portion 120 to which the support member 500 is attached. The first stepped portion 110 and the second stepped portion 120 can be formed integrally with the inner cylinder 100. For example, the inner cylinder 100 provided with the first stepped portion 110 and the second stepped portion 120 can be manufactured by injection molding. In this case, the position of the second stepped portion 120 that supports the support member 500 can be formed at an appropriate position on the inner circumference of the inner cylinder 100 according to the height of the implant F to be stored.

[0051] Referring to Figure 8, the first stepped portion 110 may be located above the second stepped portion 120 on the inner circumference of the inner cylinder 100, and in this case, the inner diameter D1 of the first stepped portion 110 may be formed to be larger than the inner diameter D2 of the second stepped portion 120. That is, when assembling the dental implant packaging ampoule 1000, the support member 500 is inserted into the inner cylinder 100 through the upper open region of the inner cylinder 100 and then seated and coupled to the second stepped portion 120, and then the guide member 400 is inserted into the inner cylinder 100 through the upper open region of the inner cylinder 100 and then seated and coupled to the first stepped portion 110.

[0052] Referring to Figures 7 and 9, one or more inner projections 160 may be formed on the inner circumference of the inner cylinder 100 to prevent the support member 500 from detaching upward. Such inner projections 160 may be located on the inner circumference of the inner cylinder 100 above the second stepped portion 120. That is, the seating portion 520 of the support member 500 can be inserted through the space between the second stepped portion 120 and the inner projections 160 and seat on the second stepped portion 120.

[0053] This coupling structure between the second stepped portion 120 of the inner cylinder 100 and the support member 500 prevents the support member 500 from rotating even at deep positions within the inner cylinder 100, thus preventing upward detachment and maintaining its coupling position with the second stepped portion 120.

[0054] In this way, by integrally forming the first stepped portion 110 and the second stepped portion 120 on the inner circumference of the inner cylinder 100, to which the guide member 400 and the support member 500 can be connected, the number of parts constituting the dental implant packaging ampoule 1000 can be reduced, thereby improving production efficiency and reducing production costs.

[0055] On the other hand, the inner cylinder 100 may include an opening 140 that allows the inside and outside of the inner cylinder 100 to communicate.

[0056] The opening 140 is formed on at least one side of the inner cylinder 100, and can be formed on both sides, for example, as shown in the drawing. With such an opening 140, when a predetermined liquid is filled into the outer cylinder 200, the inner cylinder 100 can also be filled. In this case, the liquid may be, but is not limited to, a predetermined solution such as a predetermined disinfectant solution that prevents and protects the implant F from contamination. Therefore, the inner cylinder 100 can be filled with a solution simply by filling the outer cylinder 200 with a solution, without the need to fill the inner cylinder 100 and the outer cylinder 200 separately.

[0057] Referring to Figures 7 and 9, the inner cylinder 100 allows the inside and outside of the inner cylinder 100 to communicate, and may further include an incision 150 connected to the upper side of the opening 140. Such an incision 150 may include a vertical incision 151 that continues from the upper end of the opening 140, and a horizontal incision 152 that continues from the upper end of the vertical incision 151.

[0058] The incision portion 150 is formed on at least one side of the inner cylinder 100, and may be formed on both sides, for example, as shown in the figure. The incision portion 150 may be formed at the height where the second stepped portion 120 and the inner projection 160 are located.

[0059] As a result, when the seating portion 520 of the support member 500 is inserted through the space between the second stepped portion 120 and the inner projection 160, a force may be generated in which the seating portion 520 of the support member 500 presses outward against the inner circumference of the inner cylinder 100. At this time, the incision portion 150 allows for the elastic deformation of the inner cylinder 100, making it easier to connect the support member 500 and the inner cylinder 100.

[0060] Referring to Figures 2 to 6, a cap assembly 300 is positioned on the upper part of the outer cylinder 200. The cap assembly 300 is provided to seal the outer cylinder 200, and the cap assembly 300 and the outer cylinder 200 are connected, for example, by a screw structure, so that the outer cylinder 200 can be opened and sealed by the cap assembly 300 by rotating the cap assembly 300. As an example, a male threaded portion 210 may be formed on the upper part of the outer cylinder 200, and a female threaded portion 311 may be formed on the cap assembly 300.

[0061] The cap assembly 300 is positioned above the inner cylinder 100 and the implant F, with the inner cylinder 100 housed within the outer cylinder 200 and the implant F housed within the inner cylinder 100. In this configuration, the cap assembly 300 is positioned above the outer cylinder 200, not only sealing the outer cylinder 200 but also connected to the inner cylinder 100 and the implant F, so that the inner cylinder 100 and the implant F are suspended and mounted below the cap assembly 300.

[0062] The cap assembly 300 includes an ampoule cap 310, an inner cap 320, and a cover cap 330.

[0063] More specifically, the cap assembly 300 comprises an ampoule cap 310 that seals the outer cylinder 200, an inner cap 320 provided below the ampoule cap 310 and connected to the inner cylinder 100, and a cover cap 330 provided above the ampoule cap 310 for diameter or height divisions of the implants F to be stored.

[0064] The cap assembly 300 is configured such that when the cap assembly 300 and the outer cylinder 200 are separated, the inner cylinder 100 is connected to the inner cylinder 100 so that the inner cylinder 100 can be removed from the outer cylinder 200. That is, when the cap assembly 300 and the outer cylinder 200 are separated and the outer cylinder 200 is opened, the inner cylinder 100 and the implant F housed in the inner cylinder 100 do not remain inside the outer cylinder 200, but are configured to be removed from the outer cylinder 200 along the cap assembly 300. In other words, the inner cylinder 100 is housed inside the outer cylinder 200, but is housed while connected to the cap assembly 300, so that when the outer cylinder 200 is opened and the cap assembly 300 is separated from the outer cylinder 200, the inner cylinder 100 housed inside the outer cylinder 200 can be removed from the outer cylinder 200 while still connected to the cap assembly 300.

[0065] The ampoule cap 310 is connected to the outer cylinder 200, but can be detachably connected to allow for sealing and opening of the outer cylinder 200. Preferably, a female threaded portion 311 is formed on the inside of the ampoule cap 310, and a male threaded portion 210 is formed on the upper outside of the outer cylinder 200, so that sealing and opening of the outer cylinder 200 can be achieved by rotating the cap assembly 300 as described above.

[0066] The inner cap 320 is positioned below the ampoule cap 310 and is configured to connect with the implant F and the inner cylinder 100.

[0067] The inner cap 320 can be connected to the inner cylinder 100. In this case, the connection between the inner cap 320 and the inner cylinder 100 may be a screw-type connection, similar to the connection between the outer cylinder 200 and the cap assembly 300, but preferably, it is sufficient if the connection is such that the cap assembly 300 can be detached from the inner cylinder 100 by the application of an appropriate external force.

[0068] For example, the inner cylinder 100 has predetermined shallow protrusions and irregularities formed on its interior surface, and the inner cap 320 has predetermined irregularities corresponding to these protrusions and irregularities formed on its inner circumference, thereby achieving a connection between the inner cap 320 and the inner cylinder 100. In this case, when attempting to detach the cap assembly 300 from the inner cylinder 100, the cap assembly 300 can be separated from the inner cylinder 100 simply by grasping the cap assembly 300 and the inner cylinder 100 respectively and pulling them in opposite directions or bending them at a predetermined angle, without any operation such as rotating the cap assembly 300. On the other hand, the separation between the cap assembly 300 and the inner cylinder 100 can also occur simultaneously with the separation between the cap assembly 300 and the implant F.

[0069] On the other hand, a connecting projection 321 may be provided at the lower center of the inner cap 320, which connects to the upper end of the implant F. That is, as described above, a connecting groove S is formed on the upper part of the implant F, and a connecting projection 321 corresponding to the connecting groove S may be provided at the lower center of the inner cap 320. By inserting the connecting projection 321 of the inner cap 320 into the connecting groove S of the implant F, the implant F can be safely stored without shaking inside the inner cylinder 100.

[0070] Here, the connection between the connecting projection 321 and the connecting groove S does not need to be a rigid connection; it is sufficient if the connection is such that it can be naturally released by detaching the cap assembly 300 from the inner cylinder 100.

[0071] The cover cap 330 is located above the ampoule cap 310 and is configured to distinguish the diameter or height of the implants F being stored. Specifically, such cover caps 330 are made of various colors to distinguish the diameter or height of the implants F, thereby improving the user's convenience during the process.

[0072] Figures 10 and 11 sequentially illustrate the method of using a dental implant packaging ampoule according to one embodiment of the present invention.

[0073] As shown in Figure 10, when opening and using the dental implant packaging ampoule 1000 according to the present invention, first (a) the dental implant packaging ampoule 1000 according to the present invention is placed inside, then (b) the cap assembly 300 is separated from the outer cylinder 200, and (c) the cap assembly 300 and the inner cylinder 100 can be separated.

[0074] More specifically, first, as in (a), the dental implant packaging ampoule 1000 according to the present invention is set up, and then (b) the outer cylinder 200 is grasped with one hand and the cap assembly 300 with the other hand, and the outer cylinder 200 and the cap assembly 300 are separated. At this time, if the connection between the outer cylinder 200 and the cap assembly 300 is a screw connection by a threaded portion, the cap assembly 300 can be rotated in a predetermined direction to separate the outer cylinder 200 and the cap assembly 300. Next, when the cap assembly 300 is separated from the outer cylinder 200, the inner cylinder 100, which is coupled to the cap assembly 300, is removed from the outer cylinder 200 together with the cap assembly 300 and separated. Next, (c) the inner cylinder 100 and the cap assembly 300 are grasped, and then the inner cylinder 100 and the cap assembly 300 are separated. At this time, the inner cylinder 100 and the cap assembly 300 can be separated by appropriate operations such as bending them or pulling them in opposite directions. Finally, as shown in Figure 12, after connecting the shaft DS of the handpiece D to the connecting groove S of the implant F housed in the inner cylinder 100, the implant F can be removed from the inner cylinder 100 and used.

[0075] Figure 12 is an exploded perspective view of the inner cylinder, guide member, and support member according to another embodiment of the present invention; Figure 13 is a combined cross-sectional view of the inner cylinder, guide member, and support member according to another embodiment of the present invention; and Figures 14(a) and (b) are perspective views and perspective cross-sectional views of the inner cylinder according to another embodiment of the present invention, respectively.

[0076] The inner cylinder 100' and support member 500' according to the second embodiment will be described below with reference to Figures 12 to 14.

[0077] As shown in Figures 12 to 14, the inner circumference of the inner cylinder 100' is provided with a first stepped portion 110' to which the guide member 400 is attached, and a second stepped portion 120' to which the support member 500' is attached. The first stepped portion 110' and the second stepped portion 120' can be formed integrally with the inner cylinder 100'. In one example, the inner cylinder 100' provided with the first stepped portion 110' and the second stepped portion 120' can be manufactured by injection molding. In this case, the position of the second stepped portion 120' to which the support member 500' is attached can be formed at an appropriate position on the inner circumference of the inner cylinder 100' according to the height of the implant F to be stored.

[0078] Referring to Figure 13, the first stepped portion 110' may be located above the second stepped portion 120' on the inner circumference of the inner cylinder 100', in which case the inner diameter D1 of the first stepped portion 110' may be larger than the inner diameter D2 of the second stepped portion 120'. That is, when assembling the dental implant packaging ampoule 1000, the support member 500' is inserted into the inner cylinder 100' through the upper open region of the inner cylinder 100' and then seated and coupled to the second stepped portion 120'. Next, the guide member 400 may be inserted into the inner cylinder 100' through the upper open region of the inner cylinder 100' and then seated and coupled to the first stepped portion 110'.

[0079] On the other hand, the support member 500' may include a support portion 510' that supports the lower end of the implant F, and a seating portion 520' formed around the upper end of the support portion 510' and seated and coupled to the second stepped portion 120' of the inner cylinder 100'. The seating portion 520' of such a support member 500' may be formed in a substantially circular shape.

[0080] Referring to Figures 12 and 14, one or more detachment prevention protrusions 121' are formed on the second stepped portion 120' of the inner cylinder 100' to prevent the support member 500' from detaching, and one or more detachment prevention grooves 521' are formed on the seating portion 520' of the support member 500' into which the detachment prevention protrusions 121' are inserted. Such detachment prevention protrusions 121' may be in a form that protrudes upward from the second stepped portion 120'.

[0081] Conversely, one or more anti-detachment grooves may be formed in the second stepped portion 120' of the inner cylinder 100' to prevent the support member 500' from detaching, and one or more anti-detachment projections may be formed in the seating portion 520' of the support member 500' to be inserted into the anti-detachment grooves.

[0082] This coupling structure between the second stepped portion 120' of the inner cylinder 100' and the support member 500' allows the support member 500' to maintain its coupling position with the second stepped portion 120' without rotating even at a deep position within the inner cylinder 100'.

[0083] In this way, by integrally forming the first stepped portion 110' and the second stepped portion 120' on the inner circumference of the inner cylinder 100', to which the guide member 400 and the support member 500' can be attached, the number of parts constituting the dental implant packaging ampoule 1000 can be reduced, thereby improving production efficiency and reducing production costs.

[0084] The foregoing description of the present invention is illustrative, and a person with ordinary skill in the art to which the invention pertains will understand that it can be readily modified into other specific forms without altering the technical idea or essential features of the invention. Therefore, the foregoing embodiments should be understood to be illustrative and not limiting in all respects. For example, each component described in a single form may be implemented in a distributed manner, and similarly, components described as distributed may be implemented in a combined manner.

[0085] The scope of the present invention is defined by the claims described below, and all modifications or altered forms derived from the meaning and scope of the claims and the concept of equivalents thereof should be interpreted as being included within the scope of the present invention.

[0086] [Explanation of symbols]

[0087] 1000: Dental implant packaging ampoule

[0088] 100, 100': Inner cylinder

[0089] 110, 110': First step section

[0090] 120, 120': Second step section

[0091] 130, 130': Storage space

[0092] 140, 140': Open part

[0093] 150: Incision site

[0094] 160: Inner protrusion

[0095] 200: Outer cylinder

[0096] 210: Male threaded section

[0097] 300: Cap Assembly

[0098] 310: Ampoule Cap

[0099] 320: Inner cap

[0100] 330: Cover Cap

[0101] 400: Guide member

[0102] 500, 500': Support member

[0103] 510, 510': Support part

[0104] 520, 520': Seat area

[0105] F: Implant

[0106] S: Connection groove

[0107] D1: Inner diameter of the first stepped section

[0108] D2: Inner diameter of the second step section

Claims

1. The inner cylinder in which the implant is housed, The outer cylinder in which the inner cylinder is housed, A cap assembly that seals the outer cylinder, A guide member provided on the inner circumference of the inner cylinder to prevent the implant from detaching horizontally, The inner cylinder includes a support member provided on the inner circumference and supporting the lower end of the implant, The inner circumference of the inner cylinder is provided with a first stepped portion to which the guide member is attached and a second stepped portion to which the support member is attached, and the first stepped portion and the second stepped portion are integrally formed with the inner cylinder, in a dental implant packaging ampoule.

2. The dental implant packaging ampoule according to claim 1, characterized in that the inner diameter D1 of the first stepped portion is larger than the inner diameter D2 of the second stepped portion.

3. The aforementioned support member is A support portion that supports the lower end of the implant, The dental implant packaging ampoule according to claim 1, further comprising: a seating portion formed around the upper end of the support portion and seated and coupled to the second stepped portion of the inner cylinder.

4. The dental implant packaging ampoule according to claim 3, characterized in that the seating portion of the support member is formed to be at least partially angular so as to prevent rotation when seated on the second stepped portion.

5. The dental implant packaging ampoule according to claim 1, characterized in that one or more inner protrusions are formed on the inner circumference of the inner cylinder to prevent the support member seated on the second stepped portion from detaching above it.

6. The second stepped portion is formed with one or more anti-detachment projections to prevent the support member from detaching. The dental implant packaging ampoule according to claim 3, characterized in that one or more anti-detachment grooves are formed in the seating portion of the support member into which the anti-detachment projection is inserted.

7. The second stepped portion is formed with one or more detachment prevention grooves to prevent the support member from detaching. The dental implant packaging ampoule according to claim 3, characterized in that one or more detachment prevention protrusions are formed on the seating portion of the support member, which are inserted into the detachment prevention groove.

8. The aforementioned cap assembly is The ampoule cap seals the outer cylinder, An inner cap provided below the ampoule cap and connected to the inner cylinder, The dental implant packaging ampoule according to claim 1, further comprising a cover cap provided on the upper side of the ampoule cap for distinguishing the diameter or height of the implant to be stored.

9. The dental implant packaging ampoule according to claim 8, characterized in that a connecting projection is provided at the center of the inner cap, which is connected to the upper end of the implant.

10. The dental implant packaging ampoule according to claim 1, characterized in that the lower end of the inner cylinder is directly supported by the bottom of the outer cylinder.