Paste bottle

By introducing a blocking plate and assembly ring into the ointment bottle, the problems of lack of operability and misoperation of the ointment bottle are solved, resulting in a better user experience and carrying safety.

CN223614353UActive Publication Date: 2025-12-02YUYAO SUN RAIN SPRAYER
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Patent Information

Application Number
CN202423088512.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-14
Publication Date
2025-12-02
Estimated Expiration
2034-12-14

AI Technical Summary

Technical Problem

Existing ointment bottles lack a sense of operation during use, the bottom cap is easily misoperated, leading to ointment waste and contamination, and they are prone to uncontrolled rotation when carried.

Method used

A paste bottle was designed in which a blocking plate on the bottom shell blocks the paddle of the cylinder, so that the paddle produces a jolt when it crosses the blocking plate after deformation and makes a "click-click" sound when it returns to its initial state. At the same time, the cylinder is hidden by an assembly ring to prevent accidental operation.

Benefits of technology

It enhances the user's tactile experience, provides emotional value, avoids waste and contamination of the ointment, and ensures safety during transport.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a paste bottle which comprises a bottom shell, a barrel body, a stud and a bead table, the bottom shell is provided with a bottom shell cavity and a blocking piece arranged on the inner wall of the bottom shell, the barrel body comprises a barrel main body, a tubular column extending downwards from the bottom of the barrel main body and a deformable shifting piece extending in the horizontal direction from the bottom of the tubular column, and the bead table is arranged on the barrel main body. The barrel body is provided with a barrel cavity, the tubular column is provided with a column body channel communicated with the barrel cavity, the bottom of the barrel body is rotatably arranged in a bottom shell cavity of the bottom shell, the blocking piece corresponds to the shifting piece in the horizontal direction, and the distance between the outer edge of the shifting piece and a rotating shaft of the barrel body is larger than the distance between the inner edge of the blocking piece and the rotating shaft. The bottom of the stud is installed on the bottom shell, the top of the stud penetrates through the column body channel of the tubular column and then extends to the barrel cavity of the barrel body, the bead table is installed on the stud in a screwed mode in the mode that the stud penetrates through the bead table penetrating hole, and the bead table is located in the barrel cavity of the barrel body and connected to the inner wall of the barrel body in a linkage mode.
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Description

Technical Field

[0001] This utility model relates to a balm bottle, and more particularly to a balm bottle, wherein the balm bottle can be used to hold balm-type daily chemical products such as lipstick, body lotion, and deodorant. Background Technology

[0002] In today's personal care and beauty product market, deodorant balms, lipsticks, and other balm-type products are favored by consumers and have become common items carried around. For example, a deodorant balm bottle disclosed in Chinese utility model patent CN217644739U includes an outer cap, an inner cap, a large cap, a lifting mechanism, a screw, an inner large body, an outer large body, and a bottom cap. The outer large body is hollow, and the inner large body is snapped into the outer large body. The lower end of the screw is rotatably nested in the bottom of the inner large body, while the upper end is located inside the inner large body and extends longitudinally. The lifting platform is fitted onto the screw. The bottom cap is rotatably connected to the bottom of the inner large body. Rotating the bottom cap drives the screw, thereby causing the lifting platform to slide up and down. The large cap is fixedly connected to the top opening of the inner large body, and the inner cap is fixed to the large cap. The outer cap is fitted onto the inner cap. In this utility model patent, the user uses the bottom cap to raise and lower the lifting platform. The problem with the existing technology is that when the user rotates the bottom cap, it is not obstructed by the inner body in any way, resulting in a lack of tactile feedback. In addition, when the user carries the deodorant bottle, because the bottom cap is exposed, it may rotate uncontrollably due to contact with other objects, which can easily lead to waste of the deodorant and contamination of other items. Utility Model Content

[0003] One objective of this invention is to provide a balm bottle, wherein the bottom shell of the balm bottle has a blocking plate that can block the paddle of the cylinder. When the user rotates the cylinder, the blocking plate of the bottom shell causes the paddle of the cylinder to cross the blocking plate after deformation. In this way, the user's hand can feel a rhythmic jolt, thereby increasing the user's operating feel.

[0004] One objective of this invention is to provide a paste bottle in which, when the paddle in the cylinder crosses the blocking plate in a deformed manner, the paddle in the cylinder produces a rhythmic "click-click" sound during the process of returning to its initial state, which is beneficial for providing emotional value to the user.

[0005] One objective of this utility model is to provide a paste bottle, wherein the assembly ring of the paste bottle is used to reliably assemble the cylinder to the bottom shell, and the assembly ring is used to install the outer cap of the paste bottle. After the outer cap is installed on the assembly ring, the cylinder, which is a rotatable part, is hidden, thereby preventing the cylinder from being accidentally operated and causing contamination and waste of paste when the user carries the paste bottle.

[0006] According to one aspect of this utility model, this utility model provides a paste bottle, which includes:

[0007] One stud;

[0008] A bead platform, wherein the bead platform has a bead platform perforation;

[0009] A bottom shell, wherein the bottom shell has a bottom shell cavity and at least one baffle plate disposed on the inner wall of the bottom shell; and

[0010] A cylindrical body, wherein the cylindrical body includes a main body, a column extending downward from the bottom of the main body, and at least one deformable lever extending horizontally from the middle or bottom of the column. The main body has a cavity, and the column has a column channel communicating with the cavity. The bottom of the cylindrical body is rotatably disposed in the cavity of the bottom shell. The blocking plate of the bottom shell and the lever of the cylindrical body correspond horizontally, and the distance L1 between the outer edge of the lever of the cylindrical body and the rotation axis of the cylindrical body is greater than the distance L2 between the inner edge of the blocking plate of the bottom shell and the rotation axis of the cylindrical body. The bottom of the stud is mounted to the bottom shell, and the top of the stud extends to the cavity of the main body after passing through the column channel of the column. The beaded abutment is screwed onto the stud by the stud passing through the beaded abutment through a hole. The beaded abutment is located in the cavity of the main body and is linked to the inner wall of the main body.

[0011] According to one embodiment of the present invention, the bottom shell has a plurality of mutually spaced blocking plates, and the cylinder includes two of the aforementioned plates, which are symmetrical with respect to the tubular column.

[0012] According to one embodiment of the present invention, the cylinder includes two fan-shaped stabilizing plates, the stabilizing plates extending horizontally from the middle or bottom of the tube column, the cylinder forming a notch between two adjacent stabilizing plates, the lever being located at the notch, wherein the blocking plate of the bottom shell is located outside the stabilizing plates of the cylinder, and the outside of the stabilizing plates abuts against the inside of the blocking plate of the bottom shell.

[0013] According to one embodiment of the present invention, the ointment bottle includes an assembly ring having a blocking platform, wherein the cylindrical body includes a blocked platform disposed in the middle of the cylindrical body, the outer diameter of the blocked platform of the cylindrical body is larger than the inner diameter of the blocking platform of the assembly ring, wherein the assembly ring is fitted onto the cylindrical body such that the blocking platform of the assembly ring presses against the blocked platform of the cylindrical body, and the bottom of the assembly ring is inserted into the bottom shell cavity of the bottom shell.

[0014] According to one embodiment of the present invention, the outer side of the obstructed platform of the cylinder abuts against the inner wall of the assembly ring.

[0015] According to one embodiment of the present invention, the cylinder body includes a stabilizing ring, which is disposed in the middle of the cylinder body and above the obstruction platform, and the outer side of the stabilizing ring of the cylinder body abuts against the inner wall of the assembly ring.

[0016] According to one embodiment of the present invention, the stud includes a disc and a screw extending upward from the disc. The outer diameter of the disc is larger than the inner diameter of the column channel of the tube. The disc is mounted on the bottom shell and clamped between the bottom shell and the tube. The screw extends through the column channel of the tube to the cavity of the cylinder body, wherein the bead is screwed onto the screw.

[0017] According to one embodiment of the present invention, the ointment bottle includes an inner cap and an outer cap. The inner cap has an extrusion hole and a coating surface surrounding the extrusion hole. The inner cap is installed on the top of the main body of the cylinder. The extrusion hole of the inner cap communicates with the cylinder cavity of the main body of the cylinder. The outer cap is detachably installed on the assembly ring. When the outer cap is installed on the assembly ring, the outer cap covers the inner cap and the exposed portion of the bottom shell of the main body of the cylinder.

[0018] According to one embodiment of the present invention, the outer cover has a sealing post, the outer diameter of which matches the inner diameter of the extrusion hole of the inner cover, wherein the sealing post can be inserted into the extrusion hole of the inner cover.

[0019] According to one embodiment of the present invention, the inner wall of the cylindrical body is provided with at least one protrusion, the protrusion extending along the height direction of the cylindrical body, and the peripheral wall of the bead platform has at least one groove extending from the top surface to the bottom surface of the bead platform. The protrusion of the cylindrical body protrudes into the groove of the bead platform, so that the bead platform is linked to the inner wall of the cylindrical body. Attached Figure Description

[0020] Figure 1 This is a three-dimensional schematic diagram of a paste bottle according to a preferred embodiment of the present invention.

[0021] Figure 2 This is an exploded view of the ointment bottle according to the above-described preferred embodiment of the present invention.

[0022] Figure 3 This is an exploded view of the ointment bottle according to the above-described preferred embodiment of the present invention.

[0023] Figure 4 This is a partial cross-sectional view of the ointment bottle according to the above-described preferred embodiment of the present invention.

[0024] Figure 5 yes Figure 4 A magnified view of a local area.

[0025] Figure 6 This is a cross-sectional schematic diagram of one position of the ointment bottle according to the above-described preferred embodiment of the present invention.

[0026] Figure 7 yes Figure 6 A magnified view of a local area.

[0027] Figure 8 This is a cross-sectional schematic diagram of another position of the ointment bottle according to the above-described preferred embodiment of the present invention.

[0028] Figure 9 This is a perspective view of the bottom shell of the ointment bottle according to the above-described preferred embodiment of the present invention.

[0029] Figure 10 This is a perspective view of a cylindrical body of the ointment bottle according to the above-described preferred embodiment of the present invention.

[0030] Figure 11 This is a cross-sectional schematic diagram of a modified example of the ointment bottle according to the above-described preferred embodiment of the present invention. Detailed Implementation

[0031] Before describing any embodiment of this invention in detail, it should be understood that the invention is not limited in its application to the details of the construction and arrangement of the components set forth in the following description or illustrated in the following figures. The invention is capable of other embodiments and can be practiced or carried out in various ways. Furthermore, it should be understood that the wording and terminology used herein are for descriptive purposes and should not be considered limiting. The use of “comprising” or “having” and variations thereof herein is intended to cover the items set forth below and their equivalents, as well as any additional items. Unless otherwise specified or limited, the terms “installation,” “connection,” “support,” and “linkage,” and variations thereof are used broadly and cover both direct and indirect installation, connection, support, and linking. Moreover, “connection” and “linkage” are not limited to physical or mechanical connections or links.

[0032] Furthermore, firstly, in the disclosure of this utility model, the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the above terms should not be construed as a limitation on this utility model. Secondly, the term "a" should be understood as "at least one" or "one or more," that is, in one embodiment, the number of an element can be one, while in another embodiment, the number of the element can be multiple. The term "a" should not be construed as a limitation on the quantity.

[0033] Refer to the accompanying drawings of the specification of this utility model. Figures 1 to 10 A preferred embodiment of the present invention will be disclosed and described in the following description, wherein the ointment bottle includes a bottom shell 10, a cylindrical body 20, a stud 30 and a bead platform 40.

[0034] The bottom shell 10 has a bottom shell cavity 11 and at least one blocking plate 12 disposed in the bottom shell cavity 11. The cylinder 20 includes a cylinder body 21, a column 22 and at least one deformable lever 23. The cylinder body 21 has a cylinder cavity 211, the column 22 has a column channel 221, the column 22 extends downward from the bottom of the cylinder body 21, and the column channel 221 of the column 22 communicates with the cylinder cavity 211 of the cylinder body 21. The lever 23 extends horizontally from the bottom of the column 22. The bottom of the cylindrical body 21 is rotatably disposed in the bottom shell cavity 11 of the bottom shell 10. The blocking plate 12 of the bottom shell 10 and the lever 23 of the cylindrical body 20 correspond to each other in the horizontal direction. That is, the blocking plate 12 of the bottom shell 10 is located outside the lever 23 of the cylindrical body 20, and the distance L1 between the outer edge of the lever 23 of the cylindrical body 20 and the rotation axis of the cylindrical body 20 is greater than the distance L2 between the inner edge of the blocking plate 12 of the bottom shell 10 and the rotation axis of the cylindrical body 20. The bottom of the stud 30 is installed in the bottom shell 10, and the top of the stud 30 extends to the cylindrical cavity 211 of the cylindrical body 21 after passing through the column channel 221 of the column 22. The bead platform 40 has a bead platform through hole 41. The bead platform 40 is screwed onto the stud 30 through the bead platform through hole 41. The bead platform 40 is located in the cavity 211 of the cylinder body 21 and is linked to the inner wall of the cylinder body 21. The ointment is allowed to be filled into the cavity 211 of the cylinder body 21 through the top opening of the cylinder body 21, and the ointment is carried by the bead platform 40, which rises and falls with the raising and lowering of the bead platform 40. Optionally, in other examples of the ointment bottle of this utility model, the lever 23 of the cylinder body 20 may also extend horizontally from the middle of the tube 22.

[0035] When the user rotates the cylinder 20, the cylinder body 21 and the bead platform 40 are linked together, so the cylinder body 20 and the bead platform 40 can rotate synchronously relative to the bottom shell 10 and the stud 30. Since the bead platform 40 is screwed onto the stud 30, the bead platform 40 can rise and fall within the cylinder cavity 211 of the cylinder body 21 during rotation, and the bead platform 40 drives the ointment to rise and fall when it rises and falls. In the ointment bottle of this utility model, since the blocking plate 12 of the bottom shell 10 and the paddle 23 of the cylinder 20 are horizontally aligned, and the distance L1 between the outer edge of the paddle 23 of the cylinder 20 and the rotation axis of the cylinder 20 is greater than the distance L2 between the inner edge of the blocking plate 12 of the bottom shell 10 and the rotation axis of the cylinder 20, when the user rotates the cylinder 20, the blocking plate 12 of the bottom shell 10 will block the paddle 23 of the cylinder 20, so that the paddle 23 of the cylinder 20 can only pass over the blocking plate 12 of the bottom shell 10 after deformation. In this way, on the one hand, the user's hand can feel a rhythmic jolt, increasing the user's operating feel; on the other hand, the paddle 23 of the cylinder 20 will rhythmically produce a "click-click" sound during the process of returning to the initial state, which is beneficial to providing emotional value to the user.

[0036] It should be noted that, in this specific example of the ointment bottle of this utility model, the lever 23 of the cylinder 20 extends horizontally. Therefore, regardless of whether the user rotates the cylinder 20 clockwise or counterclockwise, the ointment bottle can provide the same feel and the same rhythmic "click-click" sound. In other words, the cylinder 20 can rotate not only clockwise but also counterclockwise. For example, when the user rotates the cylinder 20 clockwise, the bead 40 can cause the ointment to rise within the cavity 211 of the cylinder body 21; when the user rotates the cylinder 20 counterclockwise, the bead 40 can cause the ointment to descend within the cavity 211 of the cylinder body 21.

[0037] Reference Appendix Figure 9The bottom shell 10 includes a bottom wall 13 and a peripheral wall 14. The peripheral wall 14 extends integrally upward from the periphery of the bottom wall 13 to form the bottom shell cavity 11 between the bottom wall 13 and the peripheral wall 14. The blocking plate 12 is disposed on the peripheral wall 14. Thus, the blocking plate 12 of the bottom shell 10 can block the paddle 23 of the cylinder 20 in the circumferential direction. Therefore, regardless of whether the user rotates the cylinder 20 clockwise or counterclockwise, the ointment bottle can provide the same feel and the same rhythmic "click-click" sound. Preferably, the blocking plate 12 of the bottom shell 10 extends to the bottom wall 13, thereby further reinforcing the bottom shell 10 and preventing deformation.

[0038] In the appendix Figures 1 to 10 In this specific example of the ointment bottle of the present invention shown, the bottom shell 10 is a one-piece structure, which is injection molded from plastic material using an injection molding process.

[0039] In the appendix Figures 1 to 10 In this specific example of the ointment bottle of the present invention shown, the bottom shell 10 has a plurality of the aforementioned baffles 12, which are spaced apart from each other on the inner wall of the bottom shell 10. The cylinder 20 includes two of the aforementioned paddles 23, which are symmetrical with respect to the tube column 22. In this way, the ointment bottle can provide a better feel and a more rhythmic "click-click" sound.

[0040] Reference Appendix Figures 2 to 5 , Figure 9 The cylindrical body 20 further includes two fan-shaped stabilizing plates 24, which extend horizontally from the bottom of the column 22. A notch 25 is formed between two adjacent stabilizing plates 24 in the cylindrical body 20. The lever 23 is located in the notch 25. Thus, when assembling the ointment bottle, the stabilizing plates 24 can protect the lever 23 from collision and breakage. The blocking plate 12 of the bottom shell 10 is located outside the stabilizing plates 24 of the cylindrical body 20, with the outer side of the stabilizing plates 24 abutting against the inner side of the blocking plate 12 of the bottom shell 10. This prevents the cylindrical body 20 from swaying left and right, keeping the rotation axis of the cylindrical body 20 stable. Optionally, in other examples of the ointment bottle of this invention, the stabilizing plates 24 of the cylindrical body 20 may also extend horizontally from the middle of the column 22.

[0041] In the appendix Figures 1 to 10 In this specific example of the ointment bottle of the present invention shown, the cylinder 20 is a one-piece structure, which is injection molded from plastic material using an injection molding process.

[0042] Reference Appendix Figure 2 and Figure 3 The inner wall of the cylindrical body 21 is provided with at least one protrusion 212, which extends along the height direction of the cylindrical body 21. The peripheral wall of the bead platform 40 has at least one groove 42, which extends from the top surface to the bottom surface of the bead platform 40. The protrusion 212 of the cylindrical body 21 protrudes into the groove 42 of the bead platform 40, so that the bead platform 40 is linked to the inner wall of the cylindrical body 21. Thus, when the user rotates the cylindrical body 20, the cylindrical body 20 and the bead platform 40 rotate synchronously, and the bead platform 40 can rise and fall within the cylindrical cavity 211 of the cylindrical body 21 during rotation. Preferably, the number of protrusions 212 on the cylindrical body 21 is three or more, and these protrusions 212 are distributed at intervals. Correspondingly, the number of grooves 42 on the bead platform 40 matches the number of protrusions 212 on the cylindrical body 21, and each of the protrusions 212 on the cylindrical body 21 protrudes into each of the grooves 42 on the bead platform 40.

[0043] Optionally, in other examples of the ointment bottle of this utility model, the groove 42 can be provided on the cylindrical body 21, and the groove 42 extends along the height direction of the cylindrical body 21. Correspondingly, the protrusion 212 can be provided on the peripheral wall of the bead platform 40. The protrusion 212 extends from the top surface to the bottom surface of the bead platform 40. The protrusion 212 of the bead platform 40 protrudes into the groove 42 of the cylindrical body 21, so that the bead platform 40 is linked to the inner wall of the cylindrical body 21. Thus, when the user rotates the cylindrical body 20, the cylindrical body 20 and the bead platform 40 rotate synchronously, and the bead platform 40 can rise and fall within the cylindrical cavity 211 of the cylindrical body 21 during rotation.

[0044] Reference Appendix Figure 2 , Figure 3 and Figure 6The ointment bottle further includes an assembly ring 50, which has a blocking platform 51. The cylinder 20 includes a blocking platform 26, which is disposed in the middle of the cylinder body 21. The outer diameter of the blocking platform 26 of the cylinder 20 is larger than the inner diameter of the blocking platform 51 of the assembly ring 50. The assembly ring 50 is fitted onto the cylinder body 21 such that the blocking platform 51 of the assembly ring 50 presses against the blocking platform 26 of the cylinder 20. The bottom of the assembly ring 50 is inserted into the bottom shell cavity 11 of the bottom shell 10. In this way, the assembly ring 50 can prevent the cylinder 20 from moving relative to the bottom shell 10 in the height direction. That is, the assembly ring 50 only allows the cylinder 20 to rotate relative to the bottom shell 10. Preferably, the outer side of the obstruction platform 26 of the cylinder 20 abuts against the inner wall of the assembly ring 50, so that the ointment bottle can prevent the cylinder 20 from swaying left and right, and keep the rotation axis of the cylinder 20 stable.

[0045] It is worth mentioning that the mounting method of the bottom of the assembly ring 50 and the peripheral wall 14 of the bottom shell 10 is not limited in the ointment bottle of this utility model. For example, in this specific example of the ointment bottle of this utility model, refer to the attached... Figure 6 The bottom of the assembly ring 50 and the peripheral wall 14 of the bottom shell are engaged with each other, so that the bottom of the assembly ring 50 is installed on the peripheral wall 14 of the bottom shell. In other words, after the assembly ring 50 is installed on the bottom shell 10, the assembly ring 50 will not move relative to the bottom shell 10 in the height direction.

[0046] Preferably, the peripheral wall 14 of the bottom shell 10 has at least one slot 141, and the outer wall of the assembly ring 50 has at least one protrusion 52. The protrusion 52 of the assembly ring 50 engages with the slot 141 of the peripheral wall 14 of the bottom shell, thus preventing the assembly ring 50 from rotating relative to the bottom shell 10. In other words, after the assembly ring 50 is installed on the bottom shell 10, the assembly ring 50 will not rotate relative to the bottom shell 10. Preferably, the number of slots 141 on the peripheral wall 14 of the bottom shell 10 is two or more, and correspondingly, the number of protrusions 52 on the assembly ring 50 is two or more, with each protrusion 52 of the assembly ring 50 engaging with each slot 141 on the peripheral wall 14 of the bottom shell.

[0047] Reference Appendix Figure 2 , Figure 3 , Figure 6 and Figure 10The cylindrical body 20 further includes a stabilizing ring 27, which is disposed in the middle of the cylindrical body 21 and above the obstruction platform 26. The outer side of the stabilizing ring 27 of the cylindrical body 20 abuts against the inner wall of the assembly ring 50. In this way, the ointment bottle can avoid the cylindrical body 20 from swaying left and right, and keep the rotation axis of the cylindrical body 20 stable. Optionally, in other examples of the ointment bottle of this utility model, the stabilizing ring 27 of the cylindrical body 20 may also be located below the obstruction platform 26, or the stabilizing ring 27 may be disposed both above and below the obstruction platform 26.

[0048] Reference Appendix Figure 2 , Figure 3 and Figure 9 The stud 30 includes a disc 31 and a screw 32 extending upward from the disc 31. The outer diameter of the disc 31 is larger than the inner diameter of the column channel 221 of the tube 22 of the cylinder 20. The disc 31 is mounted on the bottom shell 10 and is clamped between the bottom shell 10 and the tube 22 of the cylinder 20. The screw 32 extends through the column channel 221 of the tube 22 to the cylinder cavity 211 of the cylinder body 21. In this way, the ointment bottle can avoid the stud 30 from tilting. The beaded abutment 40 is screwed onto the screw 32 of the stud 30.

[0049] Preferably, the bottom wall 13 of the bottom shell 10 has an insertion post 131 located in the bottom shell cavity 11. Correspondingly, the column plate 31 has an insertion hole 311. The inner diameter of the insertion hole 311 of the column plate 31 is the same as the outer diameter of the insertion post 131 of the bottom wall 13. The insertion post 131 of the bottom wall 13 is inserted into the insertion hole 311 of the column plate 31. In this way, when assembling the ointment bottle, the stud 30 and the bottom shell 10 can be pre-installed. After assembling the ointment bottle, the insertion post 131 of the bottom wall 13 can prevent the stud 30 from tilting.

[0050] Additionally, to prevent the stud 30 from rotating relative to the bottom shell 10 when the user rotates the cylinder 20, the ointment bottle of this invention includes, as shown in the attached drawing... Figure 3 and Figure 9The stud 30 has a pin 31 with at least one anti-rotation groove 312. Correspondingly, the bottom wall 13 of the bottom shell 10 has at least one anti-rotation protrusion 132. The anti-rotation protrusion 132 is located in the bottom shell cavity 11. After the stud 30 is installed on the bottom shell 10, the anti-rotation protrusion 132 of the bottom shell bottom wall 13 protrudes into the anti-rotation groove 312 of the pin 31. Thus, the anti-rotation protrusion 132 of the bottom shell bottom wall 13 and the anti-rotation groove 312 of the pin 31 cooperate with each other to prevent the stud 30 from rotating relative to the bottom shell 10. Optionally, in other examples of the ointment bottle of this utility model, the rotation-resistant groove 312 can be provided on the bottom wall 13 of the bottom shell 10, and correspondingly, the rotation-resistant protrusion 132 can be provided on the column plate 31 of the stud 30. After the bottom of the stud 30 is installed on the bottom shell 10, the rotation-resistant protrusion 132 of the column plate 31 can protrude into the rotation-resistant groove 312 of the bottom wall 13 of the bottom shell. In this way, the rotation-resistant protrusion 132 of the bottom wall 13 of the bottom shell and the rotation-resistant groove 312 of the column plate 31 cooperate with each other to prevent the stud 30 from rotating relative to the bottom shell 10.

[0051] Reference Appendix Figures 1 to 4 , Figure 6 The ointment bottle further includes an inner cap 60, which has an extrusion hole 61 and a spreading surface 62 surrounding the extrusion hole 61. The inner cap 60 is mounted on the top of the main body 21, and the extrusion hole 61 of the inner cap 60 communicates with the cavity 211 of the main body 21. When the user rotates the main body 20, causing the bead platform 40 to rise within the cavity 211 of the main body 21, the ointment located in the cavity 211 of the main body 21 and carried by the bead platform 40 can be extruded through the extrusion hole 61 of the inner cap 60. At this time, the user can apply the extruded ointment through the spreading surface 62 of the inner cap 60. When the user rotates the main body 20 in the opposite direction, causing the bead platform 40 to descend within the cavity 211 of the main body 21, the ointment located in the extrusion hole 61 of the inner cap 60 can be recycled back into the cavity 211 of the main body 21.

[0052] The ointment bottle further includes an outer cap 70, which is detachably mounted on the assembly ring 50. When the outer cap 70 is mounted on the assembly ring 50, it covers the inner cap 60 and the portion of the main body 21 that exposes the bottom shell 10. In this way, the main body 20, which is a rotatable part, is hidden, thereby preventing the main body 20 from being accidentally operated and causing contamination and waste of ointment when the user carries the ointment bottle. When the outer cap 70 is removed from the assembly ring 50, the extrusion hole 61 and the application surface 62 of the inner cap 60 are exposed. At this time, the ointment located in the cavity 211 of the main body 21 and supported by the bead platform 40 is allowed to be extruded through the extrusion hole 61 of the inner cap 60, and the user can use the application surface 62 of the inner cap 60 to apply the ointment extruded through the extrusion hole 61 of the inner cap 60.

[0053] Preferably, the outer cover 70 has a sealing post 71, the outer diameter of which matches the inner diameter of the extrusion hole 61 of the inner cover 60. When the outer cover 70 is installed on the assembly ring 50, the sealing post 71 of the outer cover 70 is inserted into the extrusion hole 61 of the inner cover 60 to prevent the paste from being discharged uncontrollably through the extrusion hole 61 of the inner cover 60.

[0054] Appendix Figure 11 A modified example of the ointment bottle shown, with attached Figures 1 to 10 Unlike the ointment bottle shown, the attached... Figure 11 In this specific example of the ointment bottle shown, after the bottom of the cylinder 20 sinks into the bottom shell cavity 11 of the bottom shell 10, the insert post 131 of the bottom shell bottom wall 13 is inserted into the column channel 221 of the tube 22, and the bottom of the stud 30 is directly inserted into the insert cavity 1311 of the insert post 131 of the bottom shell bottom wall 13 to install the bottom of the stud 30 on the bottom shell 10, and the top of the stud 30 is located in the cylinder cavity 211 of the cylinder body 21.

[0055] Those skilled in the art should understand that the embodiments of the present invention described above and shown in the accompanying drawings are merely examples and do not limit the present invention. The purpose of the present invention has been fully and effectively achieved. The functions and structural principles of the present invention have been shown and explained in the embodiments. Without departing from the stated principles, the implementation of the present invention may have any variations or modifications.

Claims

1. A paste bottle, characterized in that, include: One stud; A bead platform, wherein the bead platform has a bead platform perforation; A bottom shell, wherein the bottom shell has a bottom shell cavity and at least one baffle disposed on the inner wall of the bottom shell; and A cylindrical body, wherein the cylindrical body includes a main body, a column extending downward from the bottom of the main body, and at least one deformable lever extending horizontally from the middle or bottom of the column. The main body has a cavity, and the column has a column channel communicating with the cavity. The bottom of the cylindrical body is rotatably disposed in the cavity of the bottom shell. The blocking plate of the bottom shell and the lever of the cylindrical body correspond horizontally, and the distance L1 between the outer edge of the lever of the cylindrical body and the rotation axis of the cylindrical body is greater than the distance L2 between the inner edge of the blocking plate of the bottom shell and the rotation axis of the cylindrical body. The bottom of the stud is mounted to the bottom shell, and the top of the stud extends to the cavity of the main body after passing through the column channel of the column. The beaded abutment is screwed onto the stud by the stud passing through the beaded abutment through a hole. The beaded abutment is located in the cavity of the main body and is linked to the inner wall of the main body.

2. The ointment bottle according to claim 1, wherein the bottom shell has a plurality of spaced-apart baffles, and the cylinder includes two of the baffles, the two baffles being symmetrical with respect to the tube column.

3. The ointment bottle according to claim 2, wherein the cylindrical body includes two fan-shaped stabilizing plates, the stabilizing plates extending horizontally from the middle or bottom of the tube column, the cylindrical body forming a notch between two adjacent stabilizing plates, the lever being located at the notch, wherein the blocking plate of the bottom shell is located outside the stabilizing plates of the cylindrical body, and the outside of the stabilizing plates abuts against the inside of the blocking plate of the bottom shell.

4. The ointment bottle according to any one of claims 1 to 3, wherein the ointment bottle includes an assembly ring having a blocking platform, wherein the cylindrical body includes a blocking platform disposed in the middle of the cylindrical body, the outer diameter of the blocking platform of the cylindrical body being larger than the inner diameter of the blocking platform of the assembly ring, wherein the assembly ring is fitted onto the cylindrical body such that the blocking platform of the assembly ring presses against the blocking platform of the cylindrical body, and the bottom of the assembly ring is inserted into the bottom shell cavity of the bottom shell.

5. The ointment bottle according to claim 4, wherein the outer side of the obstructed platform of the cylinder abuts against the inner wall of the assembly ring.

6. The ointment bottle according to claim 4, wherein the cylinder body includes a stabilizing ring, the stabilizing ring being disposed in the middle of the cylinder body and located above the obstruction platform, and the outer side of the stabilizing ring of the cylinder body abutting against the inner wall of the assembly ring.

7. The ointment bottle according to any one of claims 1 to 3, wherein the stud comprises a disc and a screw extending upward from the disc, the outer diameter of the disc being larger than the inner diameter of the column channel of the tube, the disc being mounted on the bottom shell and clamped between the bottom shell and the tube, the screw extending through the column channel of the tube to the cavity of the tube body, wherein the bead is screwed onto the screw.

8. The ointment bottle according to claim 4, wherein the ointment bottle comprises an inner cap and an outer cap, the inner cap having an extrusion orifice and an application surface surrounding the extrusion orifice, the inner cap being mounted on the top of the body of the cylinder, the extrusion orifice of the inner cap communicating with the cavity of the body of the cylinder, wherein the outer cap is detachably mounted to the assembly ring, and when the outer cap is mounted to the assembly ring, the outer cap covers the inner cap and the portion of the body of the cylinder that is exposed to the bottom shell.

9. The ointment bottle according to claim 8, wherein the outer cap has a sealing post, the outer diameter of which matches the inner diameter of the extrusion orifice of the inner cap, wherein the sealing post can be inserted into the extrusion orifice of the inner cap.

10. The ointment bottle according to any one of claims 1 to 3, wherein the inner wall of the cylindrical body is provided with at least one protrusion extending along the height direction of the cylindrical body, the peripheral wall of the bead platform has at least one groove extending from the top surface to the bottom surface of the bead platform, and the protrusion of the cylindrical body protrudes into the groove of the bead platform so that the bead platform is linked to the inner wall of the cylindrical body.

Citation Information

Patent Citations

  • Perfumed cream bottle with lifting structure

    CN217644739U