Dental implant packaging bottle

By designing the structure of the dental implant packaging bottle, the liquid automatically flows into the liquid storage compartment, solving the problem of liquid splashing risks, and ensuring the sterility of the surgical environment and the simplicity of operation.

CN120135604BActive Publication Date: 2025-08-19SHANDONG HANZHANG MEDICAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510614631.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-14
Publication Date
2025-08-19
Estimated Expiration
2045-05-14

AI Technical Summary

Technical Problem

The existing dental implant liquid packaging technology has the risk of liquid splashing after opening at the surgical site, and the possibility of contaminating the surgical environment is high.

Method used

A dental implant packaging bottle is designed, including the bottle body, bottle cap and inner bracket. The inner bracket is connected to the sleeve, the sleeve is connected to the gate block, a gate hole is provided on the gate block, and a liquid outlet hole is provided on the bottom plug, and the liquid storage chamber is connected to the liquid outlet hole. The inner bracket and sleeve are used to follow the gate block, and liquid can flow into the liquid storage chamber to reduce the risk of splashing.

Benefits of technology

When the bottle cap is opened, liquid automatically flows into the liquid storage compartment, reducing the risk of liquid splashing, ensuring the sterile state of the surgical environment, and simplifying the bottle placement and placement process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the technical field of oral implant auxiliary instruments, and specifically relates to a dental implant packaging bottle, comprising a bottle body, a bottle cap and an inner bracket, wherein the inner bracket is arranged in the bottle body, the bottle cap is arranged on the top of the bottle body, the inner bracket is connected to the bottle cap, and the bottle body is provided with a sleeve, a gate block and a bottom plug in order from top to bottom, the inner bracket is connected to the sleeve, the gate block is provided with a gate hole, the bottom of the sleeve is snapped into the gate block, the bottom of the gate block is snapped into the bottom plug, the bottom plug is provided with a liquid outlet, and a liquid storage tank is provided between the inner bottom surface of the bottle body and the bottom plug. The liquid in the vial of the present invention can flow out through the gate hole and the liquid outlet and flow into the liquid storage tank below the bottom plug, thereby recovering the liquid in the vial, greatly reducing the risk of liquid splashing in the vial at the surgical site, and the opened vial only needs to be simply placed or displayed in a suitable location.
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Description

Technical Field

[0001] The invention relates to a dental implant packaging bottle and belongs to the technical field of oral implant auxiliary instruments. Background Art

[0002] Dental implants ("implants") are typically packaged in sterile vials, a common packaging technology currently used for dental implants. Due to the unique characteristics of dental implants, particularly their surface must be free of visible defects such as cavities, scratches, and dents, and they must be isolated from airborne substances and maintained sterile prior to oral implantation. Therefore, dental implant packaging requires special surface protection. Currently, there are two methods for placing and securing dental implants within vials: suspended packaging and titanium tube floating packaging. The suspended packaging method first connects the implant to an auxiliary fixture, known as a carrier, and then secures the carrier, thereby suspending the implant within the vial. During this process, the implant is protected from contact with other objects within the vial, providing better protection. For suspended packaging, a carrier component, also known as an "inner support," is added to the vial to house and secure the implant. This carrier is typically connected to the bottle cap and can be removed from the vial upon opening the bottle cap, allowing the implant to be removed. The titanium tube floating packaging does not require a carrier. Instead, the implant is placed in a titanium tube that is fixed in a vial. The implant can contact the inner wall of the titanium tube and is in a floating state, that is, the implant has a certain amount of space for movement in the titanium tube.

[0003] Straumann, a Swiss company, has invented liquid packaging technology for implants. This involves injecting a certain amount of preservation liquid into a sterile vial to keep the implant surface moist. This is done to maintain the hydrophilicity of the implant surface. Clinical application practice and other research have shown that this liquid packaging is very effective in maintaining the hydrophilicity of the implant surface. However, the use of liquid packaging technology presents a new technical problem: at the surgical site, after the liquid packaging vial is opened and the implant is extracted, the vial containing the liquid must be properly placed or arranged. During this period, there is a risk of spillage of the liquid in the vial. Once the liquid spills into the surgical area, there is a risk of contaminating the surgical environment. Therefore, it is necessary to recover the liquid in the implant packaging vial using liquid packaging technology to prevent spillage. Summary of the Invention

[0004] In view of the above technical problems in the prior art, the present invention provides a dental implant packaging bottle.

[0005] The technical solution of the present invention to solve the above technical problems is as follows:

[0006] A dental implant packaging bottle comprises a bottle body, a bottle cap and an inner bracket, wherein the inner bracket is arranged in the bottle body, the bottle cap is arranged on the top of the bottle body, the inner bracket is connected to the bottle cap, a sleeve, a gate block and a bottom plug are arranged in sequence from top to bottom in the bottle body, the inner bracket is connected to the sleeve, a gate hole is provided on the gate block, the bottom of the sleeve is clamped in the gate block, the bottom of the gate block is clamped in the bottom plug, a liquid outlet is provided on the bottom plug, the gate block is used to open or close the liquid outlet, a liquid storage tank is provided between the inner bottom surface of the bottle body and the bottom plug, and the liquid storage tank is communicated with the liquid outlet.

[0007] The beneficial effects of the present invention are as follows: the present invention connects the bottle cap with the inner bracket, the inner bracket with the sleeve, and the sleeve with the gate block, so that when the bottle cap is opened, the gate block can be moved by the inner bracket and the sleeve, and a gate hole is provided on the gate block and a liquid outlet is provided on the bottom plug. When the gate block is rotated until the gate hole is aligned with the liquid outlet, the liquid in the vial can flow out through the gate hole and the liquid outlet and flow into the liquid storage tank under the bottom plug, thereby recovering the liquid in the vial. In this way, when the bottle cap is opened and the implant is extracted at the surgical site, the risk of liquid splashing in the vial will be greatly reduced, and the opened vial only needs to be simply placed or placed in a suitable location.

[0008] On the basis of the above technical solution, the present invention can also make the following improvements:

[0009] Furthermore, the sleeve is provided with a large barrel section and a small barrel section, the length of the large barrel section is greater than that of the small barrel section, and separation grooves are symmetrically provided on both sides of the small barrel section, and two separation grooves are provided on each side of the sleeve. The separation groove passes through the small barrel section and extends to the large barrel section. Petals are formed between two adjacent separation grooves, and triangular teeth are provided on the petals. The gate block is cylindrical, and an annular groove is provided on the upper part of the gate block. A gear ring is provided on the inner side of the annular groove. The tooth groove of the gear ring is a triangular tooth groove, and the triangular teeth are engaged with the gear ring.

[0010] Furthermore, a circular depression is provided on the bottom plug, the inner bottom surface of the circular depression is provided with a fan-shaped depression, and a latch is provided at the bottom of the gate block. The latch is arranged at 180° with the gate hole in the horizontal direction, and the latch is arranged in the fan-shaped depression.

[0011] Furthermore, the bottle body is in the shape of a tube with one end closed, and the bottle body includes a tube body and a tube seat fixedly connected to the bottom of the tube body. The liquid storage tank is arranged in the tube seat, and the inner bottom surface of the tube seat is provided with a bottle bottom center column, and the bottom plug and the gate block are sleeved on the bottle bottom center column.

[0012] Furthermore, the center column of the bottle bottom includes a bottom column and a top column, the end of the bottom column is installed on the inner bottom surface of the tube seat, the top column is arranged at the upper end of the bottom column, the diameter of the bottom column is larger than the diameter of the top column, a square column is provided on the top column, the four corners of the square column are adapted to the curvature of the cylindrical surface of the top column, an annular ridge is provided on the outer top of the top column, a square hole is provided in the center of the bottom plug, the square hole is adapted to the size of the square column, a plug bottom center column is provided at the bottom of the square hole, a stepped hole is provided in the plug bottom center column, the stepped hole is connected with the square hole, an annular ridge is provided in the stepped hole, the annular ridge second is abutted against the annular ridge one, and a through hole is provided in the center of the gate block.

[0013] Furthermore, a pointer is provided on the upper part of the outer side surface of the gate block, and the pointer corresponds to the latch setting; an annular clamping flange 1 is provided on the lower part of the outer side surface of the gate block, and an annular clamping flange 2 is provided correspondingly on the top of the circular recessed inner side surface of the bottom plug, and the clamping flange 1 abuts against the clamping flange 2.

[0014] Furthermore, an annular sealing groove is provided at the bottom of the bottom plug, a sealing ring 1 is sleeved in the sealing groove, a sealing ring 2 is sleeved in the top column, and the sealing ring 2 is arranged between the annular ridge 1 and the annular ridge 2.

[0015] Furthermore, the inner bracket includes a semi-cylindrical trough body, a cross beam is provided on the top of the semi-cylindrical trough body, a bracket cylinder is provided in the middle of the cross beam, a bracket circular hole is provided in the center of the bracket cylinder, the diameter of the bracket cylinder is greater than the width of the cross beam, a middle partition is provided at the lower part of the semi-cylindrical trough body, an end plate is provided at the bottom of the semi-cylindrical trough body, both the middle partition plate and the end plate are provided with mounting slots, long holes are provided on the end plates, the long holes are provided on both sides of the mounting slots, the bottom of the mounting slots is semicircular, and driving arms are symmetrically provided on the upper outer side of the semi-cylindrical trough body, the driving arms are integrally arranged with the cross beam, the side faces of the driving arms are adapted to the end face shape of the cross beam, and a deep groove is provided on the upper part of the large barrel section of the sleeve corresponding to the driving arm.

[0016] Furthermore, a bracket slot is provided on the inner top surface of the bottle cap, and the shape of the bracket slot is adapted to the shape of the upper end surface of the inner bracket; a cavity is provided on the bottle cap, and a top cover is inserted into the cavity; an internal thread is provided on the inner side wall of the bottle cap, and an external thread is provided on the outer upper part of the bottle body.

[0017] Furthermore, windows are provided on both sides of the middle portion of the sleeve, and the bottle body is made of a transparent material. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0019] Figure 2 It is a cross-sectional view of the internal structure of the present invention;

[0020] Figure 3 An exploded view of the present invention;

[0021] Figure 4 is a sectional view of the three-dimensional structure of the bottle cap;

[0022] Figure 5 Schematic diagram of the three-dimensional structure of the bottle cap;

[0023] Figure 6 This is a bottom view of the bottle cap;

[0024] Figure 7 It is a sectional view of the three-dimensional structure of the bottle body;

[0025] Figure 8 Schematic diagram of the three-dimensional structure of the bottle;

[0026] Figure 9 is a cross-sectional view of the bottle;

[0027] Figure 10 Schematic diagram of the three-dimensional structure of the central column at the bottom of the bottle;

[0028] Figure 11 Schematic diagram of the three-dimensional structure of the sleeve;

[0029] Figure 12 It is the main view of the sleeve;

[0030] Figure 13 It is a schematic diagram of the three-dimensional structure of the sleeve from another angle;

[0031] Figure 14 It is a structural diagram of the matching between the sleeve and the gate block;

[0032] Figure 15 Schematic diagram of the three-dimensional structure of the gate block;

[0033] Figure 16 is a cross-sectional view of the gate block;

[0034] Figure 17 It is a top view of the gate block;

[0035] Figure 18 This is a schematic diagram of the three-dimensional structure of the gate block from another angle;

[0036] Figure 19 This is a bottom view of the gate block;

[0037] Figure 20 Schematic diagram of the three-dimensional structure of the bottom plug;

[0038] Figure 21This is a schematic diagram of the three-dimensional structure of the bottom plug from another angle;

[0039] Figure 22 is a cross-sectional view of the bottom plug;

[0040] Figure 23 is a top view of the bottom plug;

[0041] Figure 24 This is a bottom view of the bottom plug;

[0042] Figure 25 This is a schematic diagram of the installation relationship between the gate block and the bottom plug;

[0043] Figure 26 It is a schematic diagram of the three-dimensional structure of the inner bracket and the implant;

[0044] Figure 27 Schematic diagram of the three-dimensional structure of the inner bracket;

[0045] Figure 28 This is the main view of the coordination between the internal bracket and the implant;

[0046] Figure 29 for Figure 28 Side view of

[0047] Figure 30 This is a bottom view of the inner bracket;

[0048] Figure 31 The latch of the gate block moves in the fan-shaped concave of the bottom plug in the first state;

[0049] Figure 32 The second state is when the latch of the gate block moves in the fan-shaped concave of the bottom plug;

[0050] Figure 33 The third state is when the latch of the gate block moves in the fan-shaped concave of the bottom plug;

[0051] Figure 34 This is a schematic diagram of the positional relationship between the bottle body indicator arrow and the gate block pointer inside it.

[0052] The accompanying drawings are numeraled as follows: 1. top cover; 2. bottle cap; 202. internal thread; 206. bracket slot; 207. cavity; 3. bottle body; 302. external thread; 303. tube body; 304. center column at the bottom of the bottle; 305. liquid storage tank; 306. tube base; 307. ridge at the bottle mouth; 308. bottom column; 309. top column; 310. annular ridge 1; 311. square column; 312. top column Hole; 313, bottom column hole; 4, sleeve; 402, large cylinder section; 403, window; 404, small cylinder section; 406, separation groove; 407, petal; 408, triangular tooth; 409, outer ridge; 410, deep groove; 5, gate block; 501, outer side; 504, gear ring; 505, gate hole; 508, through hole; 509, snap-fit flange 1; 510, pointer; 512, latch; 6. Bottom plug; 601. Large cylinder; 603. Circular depression; 604. Inner bottom surface; 605. Second snap-on flange; 606. Rear stop surface; 607. Scalloped inner depression; 608. Front stop surface; 609. Small cylinder; 610. Side ridge; 611. Square hole; 612. Liquid outlet hole; 613. Center column at the bottom of the plug; 614. Stepped hole; 616. Second annular ridge; 7. Sealing ring; 8 , sealing ring 2; 9, carrying body screw; 10, carrying body; 11, implant; 12, inner bracket; 1201, crossbeam; 1202, bracket cylinder; 1203, bracket circular hole; 1204, driving arm; 1205, semi-cylindrical trough; 1207, middle partition; 1208, end plate; 1209, mounting slot; 1210, card convex; 1211, long hole; 13, covering screw. DETAILED DESCRIPTION

[0053] The principles and features of the present invention are described below with reference to the accompanying drawings. The examples given are only used to explain the present invention and are not used to limit the scope of the present invention.

[0054] See also Figure 1-Figure 34, a dental implant packaging bottle, comprising a bottle body 3, a bottle cap 2 and an inner bracket 12, wherein the inner bracket 12 is arranged in the bottle body 3, the bottle cap 2 is arranged on the top of the bottle body 3, and the bottle cap 2 is connected to the bottle body 3 by a thread. Specifically, an internal thread 202 is provided on the inner side wall of the bottle cap 2, and an external thread 302 is provided on the outer upper part of the bottle body 3. The inner top surface of the bottle cap 2 is in contact with the upper end surface of the bottle body 3 by screwing the internal thread 202 and the external thread 302. The inner bracket 12 is connected to the bottle cap 2, and the bottle body 3 is provided with a sleeve 4, a gate block 5 and a bottom plug 6 from top to bottom, the inner bracket 12 is connected to the sleeve 4, the gate block 5 is provided with a gate hole 505, the bottom of the sleeve 4 is snapped into the gate block 5, the bottom of the gate block 5 is snapped into the bottom plug 6, the bottom plug 6 is provided with a liquid outlet 612, the gate block 5 is used to open or close the liquid outlet 612, and a liquid storage tank 305 is provided between the inner bottom surface of the bottle body 3 and the bottom plug 6, and the liquid storage tank 305 is communicated with the liquid outlet 612.

[0055] For details, see Figure 11 - Figure 14 The sleeve 4 is provided with a large barrel section 402 and a small barrel section 404. The diameter of the large barrel section 402 is larger than the diameter of the small barrel section 404. The length of the large barrel section 402 is larger than the length of the small barrel section 404. The small barrel section 404 is symmetrically provided with separation grooves 406 on both sides. There are two separation grooves 406 on each side of the sleeve 4. The separation grooves 406 pass through the small barrel section 404 and extend to the large barrel section 402. A flap 407 is formed between two adjacent separation grooves 406. The flap 407 is provided with a triangular tooth 408. The two triangular teeth 408 are 1 The gate block 5 is cylindrical and has an annular groove on its upper part. A gear ring 504 is provided on the inner side of the annular groove. The gear ring 504 has a triangular groove as the tooth groove, and the triangular teeth 408 are engaged with the gear ring 504.

[0056] See also Figure 15 - Figure 25A circular depression 603 is provided on the bottom plug 6, and the bottom plug 6 is in the shape of a stepped cylinder, that is, it includes a large cylinder 601 and a small cylinder 609. The circular depression 603 is provided on the large cylinder 601, and the inner bottom surface 604 of the circular depression 603 is provided with a fan-shaped concave 607, and a front stop surface 608 and a rear stop surface 606 are respectively formed at both ends of the fan-shaped concave 607. A latch 512 is provided at the bottom of the gate block 5, and the latch 512 is arranged at 180° with the gate hole 505 in the horizontal direction, and the latch 512 is arranged in the fan-shaped concave 607.

[0057] With the above structure, when the bottom end of the small barrel section 404 of the sleeve 4 is inserted into the gear ring 504 of the gate block 5, the triangular teeth 408 on the two petals 407 of the sleeve 4 enter the inter-tooth grooves of the gear ring 504 and cooperate with the inter-tooth grooves (see Figure 14 ), after the two cooperate, when the sleeve 4 rotates, the triangular teeth 408 on both sides of the sleeve 4 will clamp the gear ring 504 to push the gate block 5 to rotate. In this way, the contact friction between the gate block 5 and the bottom plug 6 can be overcome, so that when the latch 512 at the bottom of the gate block 5 rotates to contact the front stop surface 608 or the rear stop surface 606, the gate block 5 is blocked and stops rotating. At this time, if a larger rotational force, i.e., rotational torque, is applied, due to the characteristics of the triangular teeth 408 themselves, its tooth surface will be subjected to a reaction force from the inter-tooth groove. This reaction can cause the petal 407 to move inward, i.e., toward the center of the sleeve 4, that is, the radial movement caused by the elastic deformation of the petal 407, then the petal 407 of the sleeve 4 will move inward while rotating with the sleeve 4, thereby causing a "tooth jumping" phenomenon, i.e., the two triangular teeth 408 on the sleeve 4 will jump into the inter-tooth groove of the next adjacent gear ring 504 in turn, and a "click-click-click..." sound can be emitted.

[0058] Therefore, the sleeve 4, the gate block 5 and the bottom plug 6 constitute a "two-stage force control mechanism", thereby realizing the mechanism of opening or closing the liquid outlet 612 through the gate block 5, that is, the opening and closing of the liquid outlet 612 can be automatically synchronized with the opening or tightening of the bottle cap 2. When the bottle cap 2 is opened, that is, when the bottle cap 2 is rotated counterclockwise, the gate hole 505 is first aligned with the liquid outlet 612, and the liquid is discharged into the liquid storage chamber 305 of the bottle body 3 (see Figure 31 ), which is the first level torque or small torque, used to overcome the friction between the gate block 5 and the bottom plug 6, and then continue to rotate the bottle cap 2 counterclockwise, when the latch 512 at the bottom of the gate block 5 hits the rear stop surface 606 of the bottom plug 6 (see Figure 32), is prevented from further rotation by the rear stop surface 606. At this time, it is necessary to increase the torque to rotate the bottle cap 2 until the bottle cap 2 is unscrewed. This is the second-level torque, i.e., the large torque, which is used to cause the flap 407 to undergo inward elastic deformation and jump the teeth. As a result, during the process of continuing to open the bottle cap 2, the liquid outlet 612 is kept closed after the gate block 5 closes the liquid outlet 612. Conversely, when tightening the bottle cap 2, the situation is similar. That is, when the bottle cap 2 is rotated clockwise, a small torque is also used to overcome the friction force, while a large torque causes the flap 407 to undergo elastic deformation and jump the teeth. As a result, the gate block 5 can also synchronously keep the liquid outlet 612 closed during the process of tightening the bottle cap 2 (see Figure 33 ), but before adding liquid, the gate block 5 must be placed in a position to close the liquid outlet 612, and it is necessary to ensure that the latch 512 is located at one end of the front stop surface 608 so that the liquid outlet 612 can be opened during the subsequent opening of the bottle cap 2.

[0059] See also Figure 7 - Figure 10 The bottle body 3 is in the shape of a tube with one end closed. The bottle body 3 includes a tube body 303 and a tube seat 306 fixedly connected to the bottom of the tube body 303. The diameter of the tube seat 306 is larger than the diameter of the tube body 303. The inner top of the tube body 303 is provided with an annular bottle mouth ridge 307, and the outer top of the sleeve 4 is provided with an annular outer ridge 409. When the sleeve 4 is placed in the bottle body 3, the outer ridge 409 of the sleeve 4 abuts against the bottle mouth ridge 307 of the bottle body 3, so that the sleeve 4 is stuck by the bottle mouth ridge 307 and limits its axial movement, but it can still rotate. The liquid storage tank 305 is arranged in the tube seat 306. The inner bottom surface of the tube seat 306 is provided with a bottle bottom center column 304, and the bottom plug 6 and the gate block 5 are sleeved on the bottle bottom center column 304.

[0060] See also Figure 9 - Figure 10The bottom center column 304 of the bottle includes a bottom column 308 and a top column 309. The end of the bottom column 308 is installed on the inner bottom surface of the tube seat 306. The top column 309 is arranged at the upper end of the bottom column 308. The diameter of the bottom column 308 is larger than the diameter of the top column 309. A bottom column hole 313 is provided on the bottom column 308, and a top column hole 312 is provided on the top column 309. The bottom column hole 313 is not connected to the top column hole 312. A square column 311 is provided on the top column 309. The four corners of the square column 311 are adapted to the curvature of the cylindrical surface of the top column 309. An annular ridge 310 is provided on the outer top of the top column 309. A square hole 611 is provided in the center of the bottom plug 6. The square hole 611 is adapted to the size of the square column 311. A stopper bottom center column 613 is provided at the bottom of 611, and a stepped hole 614 is provided in the stopper bottom center column 613. The diameter of the stepped hole 614 is small at the end close to the square hole 611, and the diameter of the stepped hole 614 is large at the end away from the square hole 611. The stepped hole 614 is connected to the square hole 611, and a second annular ridge 616 is provided in the stepped hole 614. The second annular ridge 616 abuts against the first annular ridge 310. When the bottom stopper 6 is sleeved on the bottom center column 304 of the bottle body 3, the second annular ridge 616 is below the first annular ridge 310 of the top column 309. Therefore, the second annular ridge 616 of the bottom stopper 6 will be stuck and fixed by the first annular ridge 310 on the top column 309 of the bottle body 3; a through hole 508 is provided at the center of the gate block 5.

[0061] See also Figure 5 - Figure 19, a pointer 510 is provided on the upper part of the outer side surface 501 of the gate block 5, and the pointer 510 is provided corresponding to the snap 512; an annular snap-fitting flange 1 509 is provided on the lower part of the outer side surface 501 of the gate block 5, and an annular snap-fitting flange 2 605 is provided on the top of the inner side surface of the circular recess 603 of the bottom plug 6, and the snap-fitting flange 1 509 abuts against the snap-fitting flange 2 605; due to the obstruction of the snap-fitting flange 2 605 of the bottom plug 6, the gate block 5 is constrained in the circular recess 603 of the bottom plug 6, and forms a contact pressure on the inner bottom surface 604 of the circular recess 603 of the bottom plug 6, so that when the gate hole 505 on the gate block 5 is not at the bottom When the plug 6 is above the liquid outlet hole 612, the liquid outlet hole 612 can be closed, and the liquid in the vial will not flow out into the liquid storage chamber 305 of the bottle body 3; alternatively, when the gate hole 505 on the gate block 5 is above the liquid outlet hole 612, the liquid outlet hole 612 is opened and connected with the gate hole 505, and the liquid in the vial can flow from the gate hole 505 and the liquid outlet hole 612 into the liquid storage chamber 305 of the bottle body 3. At this time, when the gate block 5 rotates and the gate hole 505 leaves the top of the liquid outlet hole 612, that is, when the liquid outlet hole 612 is covered by the back of the gate block 5, the liquid outlet hole 612 is closed, and the liquid that has entered the liquid storage chamber 305 of the bottle body 3 is sealed therein.

[0062] The gate block 5 can rotate in the circular recess 603 of the bottom plug 6, and there is friction during the rotation. In this embodiment, the gate block 5 is made of translucent PE material, so that the hardness of the gate block 5 is moderate and compression deformation can occur within the elastic deformation range, thereby blocking the liquid outlet 612 of the bottom plug 6. In addition, the PE material has self-lubricating properties; the bottom plug 6 is made of transparent nylon material with higher hardness, and both can withstand gamma ray radiation sterilization.

[0063] See also Figure 20 - Figure 25 The outer bottom of the small cylinder 609 of the bottom plug 6 is provided with an annular edge ridge 610, and an annular groove is formed between the edge ridge 610 and the bottom edge of the large cylinder 601 of the bottom plug 6, thereby forming an annular sealing groove at the bottom of the bottom plug 6, and a sealing ring 7 is provided in the sealing groove. Due to the obstruction of the edge ridge 610 on the small cylinder 609, the sealing ring 7 will be kept in place and is not easy to fall off. The top column 309 is provided with a sealing ring 2 8, and the sealing ring 2 8 is arranged between the annular ridge 1 310 and the annular ridge 2 616.

[0064] The two annular ridges of the bottom plug 6 mentioned above, namely the side ridge 610 and the annular ridge 616 on the bottom plug 6, wherein the cross-sectional shape of the annular ridge 616 is an arc shape, which is conducive to the construction of the injection mold, that is, it is conducive to the demoulding of the inner cavity. All components of the present invention are manufactured using the injection molding process, which is a highly efficient manufacturing method. Therefore, such annular ridges can also be seen on other components, such as the bottle mouth ridge 307 of the bottle body 3 and the annular ridge 310 on its top column 309, which are both ridges with an arc cross-section.

[0065] join Figure 26 - Figure 30 The inner bracket 12 includes a semi-cylindrical trough 1205, a crossbeam 1201 is provided on the top of the semi-cylindrical trough 1205, a support cylinder 1202 is provided in the middle of the crossbeam 1201, a support circular hole 1203 is provided in the center of the support cylinder 1202, the diameter of the support cylinder 1202 is greater than the width of the crossbeam 1201, a middle partition 1207 is provided at the bottom of the semi-cylindrical trough 1205, and an end plate 1208 is provided at the bottom of the semi-cylindrical trough 1205. The middle partition 1207 and the end plate 120 8 are provided with mounting slots 1209, and the end plate 1208 is provided with a long hole 1211, and the long hole 1211 is provided on both sides of the mounting slot 1209, and the bottom of the mounting slot 1209 is semicircular, and the two ends of the semicircular section of the mounting slot 1209 are respectively provided with a clamping protrusion 1210, and the upper outer side of the semi-cylindrical trough body 1205 is symmetrically provided with a driving arm 1204, and the driving arm 1204 is integrated with the cross beam 1201, and the side surface of the driving arm 1204 is adapted to the end face shape of the cross beam 1201. In the present invention, the neck of the carrying body 10 connected to the implant 11 is clamped in the semicircular section of the slot of the end plate 1208. The distance between the clamping protrusions 1210 at both ends of this semicircular section is slightly smaller than the diameter of the neck of the carrying body 10. When installing the carrying body 10 and the implant 11 assembly, the neck of the carrying body 10 must be pressed into the installation clamping groove 1209. Therefore, the installation clamping groove 1209 must be deformed moderately outward in an instant to make way for the entry path of the carrying body 10. The long holes 1211 on both sides of the installation clamping groove 1209 facilitate the outward, i.e., elastic deformation and short-distance movement of the clamping protrusion 1210 to both sides. After the inner bracket 12 with the carrying body 10 and the implant 11 assembly is correctly installed in the bottle body 3, the carrying body screw 9 and a part of the carrying body 10 enter the top column hole 312 of the bottle body 3, thereby improving the installation stability of the implant 11. The carrying body 10 and the implant 11 assembly here do not belong to the present invention. They are cited here only as an example to explain the present invention.

[0066] A deep groove 410 is provided on the upper part of the large barrel section 402 of the sleeve 4 corresponding to the driving arm 1204, and the driving arm 1204 of the inner bracket 12 is installed in the deep groove 410. When the bottle cap 2 is rotated, the inner bracket 12 moves with it, and the inner bracket 12 drives the sleeve 4 to rotate through the driving arm 1204, and the sleeve 4 drives the gate block 5 to rotate. This process is achieved by inserting the petals 407 on the sleeve 4 and the triangular teeth 408 on the petals 407 into the gear ring 504 of the gate block 5, that is, the triangular teeth 408 cooperate with the inter-tooth grooves. When the bottle cap 2 is buckled on the upper opening of the bottle body 3 (i.e., the bottle mouth), the two driving arms 1204 of the inner bracket 12 will enter the deep groove 410 of the sleeve 4, which can ensure that the inner bracket 12 and the sleeve 4 are correctly connected.

[0067] See also Figure 4 - Figure 6 , a bracket slot 206 is provided on the inner top surface of the bottle cap 2, and the bracket slot 206 is a special-shaped blind hole, that is, the shape of the bracket slot 206 is adapted to the shape of the upper end surface of the inner bracket 12, and the bracket slot 206 is adapted to the shape formed by the combination of the crossbeam 1201 and the bracket cylinder 1202 of the inner bracket 12. When the upper end of the inner bracket 12 is inserted into the bracket slot 206 of the bottle cap 2, the bracket circular hole 1203 in the bracket cylinder 1202 of the inner bracket 12 is sleeved on the bracket slot 206 of the bottle cap 2, and the inner bracket 12 is constrained and fixed by the bracket slot 206. In this way, when the bottle cap 2 rotates, the inner bracket 12 will be driven and rotate at the same time.

[0068] The bottle cap 2 is provided with a cavity 207, a cap center column is provided in the cavity 207, a cap center hole is provided on the cap center column, a top cover 1 is inserted into the cavity 207, a metal covering screw 13 is provided in the cavity 207, and the covering screw 13 is threadedly connected in the cap center hole. The diameter of the cap center hole is smaller than the thread diameter of the covering screw 13 by about 0-1 mm, and can be directly screwed in to fix the covering screw 13.

[0069] See also Figure 9 and Figure 11 , windows 403 are provided on both sides of the middle of the sleeve 4. The material of the bottle body 3 is transparent, so people can see the inside of the bottle body 3, which is convenient for people to observe the inside of the bottle body 3. When opening the bottle cap 2, the bottle body 3 must be in a vertical position. When the bottle cap 2 is rotated, the internal gate block 5 is driven by the internal bracket 12 and the sleeve 4 and rotates with the bottle cap 2. The outer surface of the bottle body 3 is laser-etched with an indicator arrow. The pointer 510 must be turned to align with the indicator arrow on the outer surface of the bottle body 3 (see Figure 34 ), at this time, the liquid outlet 612 of the bottom plug 6 is in an open state, and this position is maintained for two to three seconds. At this time, the liquid in the bottle body 3 and above the bottom plug 6 flows into the liquid storage tank 305 under the action of gravity.

[0070] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A dental implant packaging bottle, comprising a bottle body (3), a bottle cap (2) and an inner bracket (12), wherein the inner bracket (12) is arranged in the bottle body (3), the bottle cap (2) is arranged on the top of the bottle body (3), and the inner bracket (12) is connected to the bottle cap (2), characterized in that: The bottle body (3) is provided with a sleeve (4), a gate block (5) and a bottom plug (6) in sequence from top to bottom, the inner bracket (12) is connected to the sleeve (4), the gate block (5) is provided with a gate hole (505), the bottom of the sleeve (4) is clamped in the gate block (5), the bottom of the gate block (5) is clamped in the bottom plug (6), the bottom plug (6) is provided with a liquid outlet (612), the gate block (5) is used to open or close the liquid outlet (612), a liquid storage tank (305) is provided between the inner bottom surface of the bottle body (3) and the bottom plug (6), and the liquid storage tank (305) is communicated with the liquid outlet (612); The sleeve (4) is provided with a large barrel section (402) and a small barrel section (404), the length of the large barrel section (402) is greater than the length of the small barrel section (404), and separation grooves (406) are symmetrically provided on both sides of the small barrel section (404), and two separation grooves (406) are provided on each side of the sleeve (4), and the separation grooves (406) pass through the small barrel section (404) and extend to the large barrel section (402), and a flap (407) is formed between two adjacent separation grooves (406), and triangular teeth (408) are provided on the flap (407), and the gate block (5) is cylindrical, and an annular groove is provided on the upper part of the gate block (5), and a gear ring (504) is provided on the inner side surface of the annular groove, and the tooth groove of the gear ring (504) is a triangular tooth groove, and the triangular teeth (408) are meshed with the gear ring (504); When the bottle cap (2) is opened, the bottle cap (2) is rotated counterclockwise to first align the gate hole (505) with the liquid outlet hole (612) and discharge the liquid into the liquid storage chamber (305) of the bottle body (3). Then, the bottle cap (2) is rotated counterclockwise. When the latch (512) at the bottom of the gate block (5) hits the rear stop surface (606) of the bottom plug (6), it is stopped by the rear stop surface (606) from continuing to rotate. At this time, the torque must be increased to rotate the bottle cap (2) until the bottle cap (2) is unscrewed, causing the petal (407) to undergo inward elastic deformation and jump the teeth. Therefore, in the process of continuing to open the bottle cap (2), the liquid outlet hole (612) is kept closed since the gate block (5) closes the liquid outlet hole (612).

2. The dental implant packaging bottle according to claim 1, characterized in that: The bottom plug (6) is provided with a circular depression (603), the inner bottom surface (604) of the circular depression (603) is provided with a fan-shaped concave (607), and the bottom of the gate block (5) is provided with a latch (512), the latch (512) and the gate hole (505) are arranged at 180 degrees in the horizontal direction, and the latch (512) is arranged in the fan-shaped concave (607).

3. The dental implant packaging bottle according to claim 2, characterized in that: The bottle body (3) is in the shape of a tube with one end closed. The bottle body (3) comprises a tube body (303) and a tube seat (306) fixedly connected to the bottom of the tube body (303). The liquid storage tank (305) is arranged in the tube seat (306). The inner bottom surface of the tube seat (306) is provided with a bottle bottom center column (304). The bottom plug (6) and the gate block (5) are sleeved on the bottle bottom center column (304).

4. The dental implant packaging bottle according to claim 3, characterized in that: The bottle bottom center column (304) includes a bottom column (308) and a top column (309), the end of the bottom column (308) is mounted on the inner bottom surface of the tube seat (306), the top column (309) is arranged on the upper end of the bottom column (308), the diameter of the bottom column (308) is larger than the diameter of the top column (309), a square column (311) is provided on the top column (309), the four corners of the square column (311) are adapted to the curvature of the cylindrical surface of the top column (309), the outer top of the top column (309) is provided with an annular ridge (310), the A square hole (611) is provided at the center of the bottom plug (6), and the size of the square hole (611) is adapted to that of the square column (311). A plug bottom center column (613) is provided at the bottom of the square hole (611), and a stepped hole (614) is provided in the plug bottom center column (613). The stepped hole (614) is communicated with the square hole (611), and a second annular ridge (616) is provided in the stepped hole (614), and the second annular ridge (616) and the first annular ridge (310) abut against each other. A through hole (508) is provided at the center of the gate block (5).

5. The dental implant packaging bottle according to any one of claims 2, 3 or 4, characterized in that: A pointer (510) is provided on the upper portion of the outer side surface (501) of the gate block (5), and the pointer (510) is provided corresponding to the latch (512); an annular snap-fitting flange 1 (509) is provided on the lower portion of the outer side surface (501) of the gate block (5), and an annular snap-fitting flange 2 (605) is provided on the top of the inner side surface of the circular recess (603) of the bottom plug (6), and the snap-fitting flange 1 (509) is in contact with the snap-fitting flange 2 (605).

6. The dental implant packaging bottle according to claim 4, characterized in that: The bottom of the bottom plug (6) is provided with an annular sealing groove, a sealing ring (7) is sleeved in the sealing groove, the top column (309) is sleeved with a sealing ring (8), and the sealing ring (8) is arranged between the annular ridge (310) and the annular ridge (616).

7. The dental implant packaging bottle according to claim 1, characterized in that: The inner support (12) comprises a semi-cylindrical trough (1205), a crossbeam (1201) is provided on the top of the semi-cylindrical trough (1205), a support cylinder (1202) is provided in the middle of the crossbeam (1201), a support circular hole (1203) is provided in the center of the support cylinder (1202), the diameter of the support cylinder (1202) is greater than the width of the crossbeam (1201), a middle partition (1207) is provided at the bottom of the semi-cylindrical trough (1205), an end plate (1208) is provided at the bottom of the semi-cylindrical trough (1205), and both the middle partition (1207) and the end plate (1208) are provided with a plurality of holes. A mounting slot (1209) is provided, and a long hole (1211) is provided on the end plate (1208). The long holes (1211) are provided on both sides of the mounting slot (1209). The bottom of the mounting slot (1209) is semicircular. A driving arm (1204) is symmetrically provided on the upper outer side of the semi-cylindrical slot body (1205). The driving arm (1204) is integrally provided with the crossbeam (1201). The outer side of the driving arm (1204) is adapted to the end face shape of the crossbeam (1201). A deep groove (410) is provided on the upper part of the large barrel section (402) of the sleeve (4) corresponding to the driving arm (1204).

8. The dental implant packaging bottle according to claim 7, characterized in that: A bracket slot (206) is provided on the inner top surface of the bottle cap (2), and the shape of the bracket slot (206) is adapted to the shape of the upper end surface of the inner bracket (12); a cavity (207) is provided on the bottle cap (2), and a top cover (1) is inserted into the cavity (207); an internal thread (202) is provided on the inner side wall of the bottle cap (2), and an external thread (302) is provided on the upper portion of the outer side of the bottle body (3).

9. The dental implant packaging bottle according to claim 5, characterized in that: Windows (403) are provided on both sides of the middle portion of the sleeve (4), and the bottle body (3) is made of a transparent material.

Citation Information

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