Paste bottle with applicator

By designing a detachable applicator and drive unit within the deodorant balm bottle, the safety and hygiene hazards caused by hand contact with the balm are resolved, enabling uniform application of the deodorant balm and selection of appropriate materials.

CN223653443UActive Publication Date: 2025-12-12YUYAO SUN RAIN SPRAYER
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Patent Information

Application Number
CN202422100725.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-12-12
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

The current deodorant balm bottles require users' hands to come into direct contact with the balm during application, posing a safety and hygiene risk.

Method used

Design a balm bottle with an applicator that is detachably installed at the bottom of the balm bottle. Through the cooperation of a drive unit and a support unit, the balm can be evenly applied, avoiding hand contact.

Benefits of technology

This allows users to apply body balm without their hands touching the balm, avoiding safety and hygiene risks, and users can choose the material of the applicator according to their preferences.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a paste bottle with an applicator, which comprises a body lotion bottle and the applicator arranged on the body lotion bottle, and after a user smears body lotion in the body lotion bottle on the surface of skin, the applicator is used for helping the user to evenly smear the body lotion.
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Description

Technical Field

[0001] This utility model relates to a balm bottle, and more particularly to a balm bottle with an applicator. Background Technology

[0002] A deodorant balm bottle is a packaging bottle used to hold deodorant balm. For example, Chinese utility model patent CN220423372U discloses a simple and environmentally friendly deodorant balm bottle, and Chinese utility model patent CN220308615U discloses a novel environmentally friendly deodorant balm bottle. These deodorant balm bottles are all used to hold deodorant balm. When a user needs to apply deodorant balm, they can first open the top of the deodorant balm bottle to expose the deodorant, then push the deodorant towards the opening of the bottle to expose the top of the deodorant, then apply the deodorant to the skin surface, and finally use their hands to spread the deodorant evenly. This method requires the user's hands to participate in the application of deodorant balm. During the process of applying deodorant balm with their hands, the deodorant will inevitably stick to their hands, posing certain safety and hygiene risks. Utility Model Content

[0003] One objective of this invention is to provide a balm bottle with an applicator. The balm bottle with an applicator provides an applicator so that after the user applies the balm contained in the balm bottle to the skin, the balm can be spread evenly with the help of the applicator. That is, during the application of the balm, the user's hands do not need to come into contact with the balm, thus avoiding safety and hygiene hazards.

[0004] One objective of this invention is to provide a cream bottle with an applicator, wherein the applicator is replaceable, so that the user can choose the applicator made of a suitable material according to their own preferences. For example, the user can choose the applicator made of sponge material or the applicator made of hair material according to their own preferences.

[0005] According to one aspect of the present invention, the present invention provides a cream bottle with an applicator, comprising:

[0006] Deodorant bottle; and

[0007] An applicator, wherein the applicator is disposed in the deodorant jar.

[0008] According to one embodiment of the present invention, the deodorant balm bottle includes a balm bottle unit, a support unit, and a drive unit. The balm bottle unit has a receiving cavity and a balm bottle perforation communicating with the receiving cavity. The support unit includes a support platform and a driven rod extending downward from the support platform. The drive unit includes an operating part and a drive arm extending upward from the operating part. The drive arm has an arm body perforation and a drive block located in the arm body perforation. The drive unit is rotatably disposed at the bottom of the balm bottle unit such that the drive arm extends to the balm bottle perforation of the balm bottle unit. The support unit is vertically movable and received in the receiving cavity of the balm bottle unit. The driven rod is inserted into the arm body perforation of the drive arm. The drive block of the drive arm is located in the threaded groove of the driven rod. When the drive unit rotates relative to the balm bottle unit, the drive block of the drive arm and the driven rod of the support unit cooperate with each other to drive the support platform to move vertically within the receiving cavity of the balm bottle unit. The applicator is disposed below the drive unit.

[0009] According to one embodiment of the present invention, the deodorant bottle includes an assembly unit, which is rotatably mounted on the bottom of the bottle unit, and the operating part of the drive unit is fixedly mounted on the assembly unit so that the drive unit is rotatably disposed on the bottom of the bottle unit by the assembly unit.

[0010] According to one embodiment of the present invention, the applicator is fixedly mounted on the assembly unit, and the applicator closes the arm body through hole of the drive arm so that the assembly unit positions the applicator below the drive unit.

[0011] According to one embodiment of the present invention, the deodorant bottle includes a sealing unit, which is fixedly installed on the assembly unit to seal the arm body perforation of the drive arm, wherein the applicator is fixedly installed on the sealing unit so that the sealing unit positions the applicator below the drive unit.

[0012] According to one embodiment of the present invention, the deodorant bottle includes a sealing unit, which is fixedly installed on the assembly unit to seal the arm body perforation of the drive arm, wherein the applicator is detachably installed on the sealing unit so that the sealing unit positions the applicator below the drive unit.

[0013] According to one embodiment of the present invention, the sealing unit has a dovetail groove, the applicator has a dovetail buckle, and the dovetail buckle of the applicator is slidably installed in the dovetail groove of the sealing unit so that the applicator is detachably installed in the sealing unit.

[0014] According to one embodiment of the present invention, the applicator includes a base and an applicator brush disposed on the base, wherein the dovetail is formed on the base.

[0015] According to one embodiment of the present invention, the balm bottle unit has multiple limiting angles, wherein the balm bottle includes a rotation-blocking unit, the rotation-blocking unit is configured such that the outer end of the rotation-blocking unit remains stationary relative to the operating part, and the inner end has a limiting groove with a variable opening size, wherein when the driving unit rotates relative to the balm bottle unit, the driving block moves within the threaded groove, and the multiple limiting angles of the balm bottle unit sequentially exit and enter the limiting groove by pushing the opening deformation of the limiting groove.

[0016] According to one embodiment of the present invention, the assembly unit has an assembly cavity and an assembly through hole communicating with the assembly cavity, wherein the ointment bottle unit includes an ointment bottle and a limiting post, the ointment bottle includes a bottle body and an insert arm extending downward from the bottom of the bottle body, the receiving cavity of the ointment bottle unit is formed in the bottle body, the insert arm has an arm body channel communicating with the receiving cavity, the limiting post has an insert groove and a post body channel communicating with the insert groove, a plurality of limiting angles of the ointment bottle unit are formed at the bottom of the limiting post, wherein the assembly unit extends to the assembly cavity via the insert arm of the ointment bottle. The assembly perforation of the assembly unit is rotatably mounted to the bottom of the ointment bottle unit. The top of the limiting post is mounted in the assembly perforation of the assembly unit by means of the insertion arm of the ointment bottle being fixedly inserted into the limiting groove of the limiting post. The bottom of the limiting post is located in the assembly cavity of the assembly unit. The column channel of the limiting post and the arm channel of the insertion arm are connected. The rotation-resistant unit is located in the assembly cavity of the assembly unit. The operating part is fixedly mounted to the assembly unit by means of closing the opening of the assembly cavity of the assembly unit.

[0017] According to one embodiment of the present invention, the outer end of the resistive rotation unit is mounted on the assembly unit. Since the operating part of the drive unit is fixedly mounted on the assembly unit, the assembly unit keeps the position of the outer end of the resistive rotation unit relative to the operating part of the drive unit stationary. The assembly unit has a mounting groove, and the resistive rotation unit includes a mounting part, two connecting arms, and two clamping arms. The two mounting parts extend from the two free ends of the mounting parts in a manner close to each other, and the two clamping arms extend obliquely from the ends of the two connecting arms in a manner far apart from each other, so as to form a resistive rotation unit between the two clamping arms. The limiting groove of the rotating unit, the mounting part of the anti-rotation unit is installed in the mounting groove of the assembly unit to install the outer end of the anti-rotation unit to the assembly unit; when the limiting angle of the ointment bottle unit is located in the limiting groove of the anti-rotation unit, the two clamping arms of the anti-rotation unit respectively clamp the opposite sides of the limiting angle of the ointment bottle unit. In this way, the anti-rotation unit provides resistance to the driving unit and the assembly unit, preventing the driving unit and the assembly unit from rotating when subjected to a small force in the circumferential direction; wherein the number of limiting angles of the ointment bottle unit is four, and the cross-sectional shape of the limiting post is... The shape is square, so that when the driving unit and the assembly unit are not under force or the circumferential force is small, the two anti-rotation units and the limiting posts of the ointment bottle unit cooperate to make the extension direction of the assembly unit consistent with the extension direction of the bottle body, or make the extension direction of the assembly unit and the extension direction of the bottle body perpendicular to each other. When the rotation degree of the assembly unit and the driving unit is not a multiple of 90°, the anti-rotation unit can correct the rotation degree of the assembly unit and the driving unit; wherein the assembly unit has a protruding post and a blocking post, the protruding post being from the assembly unit... The inner wall protrudes into the assembly cavity. The blocking post is located in the assembly cavity of the assembly unit and adjacent to the protruding post to form the mounting groove between the protruding post and the blocking post. The mounting part of the rotation-stopping unit includes a mounting part and two extension parts. The mounting part is mounted in the mounting groove of the assembly unit in three directions around the protruding post. The two extension parts extend from opposite ends of the mounting part along the inner wall of the assembly unit. The two connecting arms are connected to the ends of the two extension parts away from the mounting part. In this way, the rotation-stopping unit made of plastic can have stronger elasticity. Attached Figure Description

[0018] Figure 1 This is a three-dimensional schematic diagram of a plaster bottle according to a preferred embodiment of the present invention.

[0019] Figure 2 This is a cross-sectional view of the ointment bottle according to the above-described preferred embodiment of the present invention.

[0020] Figure 3 This is a three-dimensional schematic diagram of the cross-sectional view of the ointment bottle according to the above-described preferred embodiment of the present invention.

[0021] Figure 4 This is an exploded view of the ointment bottle according to the above-described preferred embodiment of the present invention.

[0022] Figure 5 This is an exploded view of the ointment bottle according to the above-described preferred embodiment of the present invention.

[0023] Figure 6 This is a perspective view of a partial location of the ointment bottle according to the above-described preferred embodiment of the present invention.

[0024] Figure 7 This is a top view of a partial location of the ointment bottle according to the above-described preferred embodiment of the present invention.

[0025] Figure 8 This is a top view of another partial location of the ointment bottle according to the above-described preferred embodiment of the present invention.

[0026] Figure 9 This is a schematic diagram illustrating one of the processes by which an applicator for a body balm bottle is installed in accordance with the above-described preferred embodiment of the present invention.

[0027] Figure 10 This is a schematic diagram of the second process of installing the applicator of the balm bottle according to the above-described preferred embodiment of the present invention onto the balm bottle.

[0028] Figure 11 This is a schematic diagram of the third step in the process of installing the applicator of the balm bottle according to the above-described preferred embodiment of the present invention onto the balm bottle.

[0029] Figure 12 This is a schematic diagram of the process of installing the applicator of the balm bottle according to the above-described preferred embodiment of the present invention onto the balm bottle.

[0030] Figure 13 This is a cross-sectional view from a plan view 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 12 A preferred embodiment of the present invention, a deodorant bottle with an applicator, will be disclosed and described below. The deodorant bottle includes a deodorant bottle 10 and an applicator 20 disposed within the deodorant bottle 10. The deodorant bottle 10 is used to hold the deodorant, and the applicator 20 is used to help spread the deodorant evenly. Specifically, after the user applies the deodorant contained in the deodorant bottle 10 to the skin surface, the applicator 20 can be used to spread the deodorant evenly. That is, during the application of the deodorant, the user's hands do not need to come into contact with the deodorant, avoiding potential safety and hygiene hazards.

[0034] Specifically, the deodorant jar 10 includes a jar unit 11, a support unit 12, and a drive unit 13. The jar unit 11 has a receiving cavity 111 and a jar through-hole 112 communicating with the receiving cavity 111. The support unit 12 includes a support platform 121 and a driven rod 122 extending downward from the support platform 121. The drive unit 13 includes an operating part 131 and a drive arm 132 extending upward from the operating part 131. The drive arm 132 has an arm body through-hole 1321 and a positioning... At least one drive block 1322 is located at the arm body through hole 1321. The drive unit 13 is rotatably disposed at the bottom of the balm bottle unit 11 such that the drive arm 132 extends to the balm bottle through hole 112 of the balm bottle unit 11. The support unit 12 is movably received in the receiving cavity 111 of the balm bottle unit 11. The driven rod 122 is inserted into the arm body through hole 1321 of the drive arm 132. The drive block 1322 of the drive arm 132 is located in the threaded groove 1221 of the driven rod 122. When the drive unit 13 is operated to rotate relative to the balm bottle unit 11, the drive block 1322 of the drive arm 132 and the driven rod 122 cooperate to drive the support platform 121 to move up and down in the receiving cavity 111 of the balm bottle unit 11, thereby changing the height position of the deodorant balm carried by the support platform 121.

[0035] In the appendix Figures 1 to 12 In this specific example of the balm bottle with applicator shown in this utility model, the applicator 20 is positioned below the drive unit 13. In this way, after the user changes the height position of the deodorant balm on the support platform 121 of the support unit 12 by rotating the operation part 131 of the drive unit 13 and applies the deodorant balm to the skin surface, the direction of the balm bottle with applicator can be reversed and the deodorant balm can be easily applied evenly using the applicator 20.

[0036] Continue to refer to the appendix Figures 1 to 12The deodorant jar 10 further includes an assembly unit 14, which is rotatably mounted to the bottom of the jar unit 11. The operating part 131 of the drive unit 13 is fixedly mounted to the assembly unit 14, so that the assembly unit 14 rotatably positions the drive unit 13 at the bottom of the jar unit 11. In other words, the assembly unit 14 connects the jar unit 11 and the drive unit 13, allowing the drive unit 13 to be rotatably positioned at the bottom of the jar unit 11. Simultaneously, when the user needs to rotate the drive unit 13, they can pinch the opposite sides of the assembly unit 14 with their thumb and forefinger and apply force to the assembly unit 14 to rotate the drive unit 13.

[0037] Reference Appendix Figures 2 to 5 The ointment bottle unit 11 includes an ointment bottle 113, which further includes a bottle body 1131 and an insert arm 1132 extending downward from the bottom of the bottle body 1131. The receiving cavity 111 of the ointment bottle unit 11 is formed in the bottle body 1131, and the ointment bottle perforation 112 of the ointment bottle unit 11 is formed in the insert arm 1132. The assembly unit 14 has an assembly cavity 141 and an assembly perforation 142 communicating with the assembly cavity 141. The assembly unit 14 is rotatably mounted to the bottom of the ointment bottle unit 11 such that the insert arm 1132 of the ointment bottle 113 extends to the assembly perforation 142 of the assembly unit 14.

[0038] The insert arm 1132 of the ointment bottle 113 has a cylindrical neck 11321 and a protruding ring 11322. The protruding ring 11322 is located below the neck 11321 and protrudes from the neck 11321 in the horizontal direction (the horizontal direction is perpendicular to the moving direction of the support platform 121). Thus, the ointment bottle 113 forms a rotating groove 1133 between the bottle body 1131 and the protruding ring 11322 of the insert arm 1132. The inner diameter of the assembly hole 142 of the assembly unit 14 is slightly larger than the outer diameter of the neck 11321 of the insert arm 1132 of the ointment bottle 113 and smaller than the protruding ring 11322. Regarding the outer diameter, when assembling the ointment bottle 113 and the assembly unit 14, after the protruding ring 11322 of the insert arm 1132 of the ointment bottle 113 passes through the assembly through hole 142 of the assembly unit 14, the edge of the assembly unit 14 used to define the assembly through hole 142 and the neck 11321 of the insert arm 1132 correspond in a horizontal position, so that the edge of the assembly unit 14 is located in the rotating groove 1133 of the ointment bottle 113. The protruding ring 11322 of the insert arm 1132 prevents the assembly unit 14 from falling off the bottom of the ointment bottle 113, thereby making the assembly unit 14 reliably and rotatably mounted on the bottom of the ointment bottle unit 11.

[0039] In the appendix Figures 1 to 12 In this specific example of the balm bottle with applicator shown in this utility model, the deodorant balm bottle 10 further includes a sealing unit 15, which is fixedly mounted to the assembly unit 14, and the sealing unit 15 seals the arm body perforation 1321 of the drive arm 132. In this way, the sealing unit 15 can prevent the deodorant balm poured into the receiving cavity 111 of the balm bottle unit 11 through the arm body perforation 1321 of the drive arm 132 from leaking.

[0040] In the appendix Figures 1 to 12 In this specific example of the ointment bottle with applicator shown in this invention, the applicator 20 is detachably mounted to the sealing unit 15, so that the sealing unit 15 positions the applicator 20 at the bottom of the drive unit 13. Optionally, in other examples of the ointment bottle with applicator of this invention, the applicator 20 may also be fixedly mounted to the sealing unit 15. Optionally, in the attached... Figure 13In this specific example of the present invention with an applicator, the applicator 20 can be fixedly mounted to the assembly unit 14 so that the assembly unit 14 positions the applicator 20 at the bottom of the drive unit 13. In this embodiment, the applicator 20 closes the arm body perforation 1321 of the drive arm 132, thereby preventing leakage of the deodorant cream poured into the receiving cavity 111 of the cream bottle unit 11 through the arm body perforation 1321 of the drive arm 132.

[0041] It is worth mentioning that the way the operating part 131 of the drive unit 13 is fixedly installed in the assembly unit 14 and the way the closing unit 15 is installed in the assembly unit 14 can be the same, both being snapped into the assembly unit 14. Specifically, the inner wall of the assembly unit 14 for defining the assembly cavity 141 has two slots 143, wherein the periphery of the operating part 131 is snapped into one slot 143 of the assembly unit 14, and the periphery of the closing unit 15 is snapped into the other slot 143 of the assembly unit 14, thus snapping the operating part 131 and the closing unit 15 into the assembly unit 14 respectively, and ensuring that the closing unit 15 closes the arm body through hole 1321 of the drive arm 132.

[0042] Reference Appendix Figure 4 , Figure 5 , Figures 9 to 12 The closure unit 15 has a dovetail groove 151, and the applicator 20 has a dovetail buckle 21. The dovetail buckle 21 of the applicator 20 is slidably mounted on the dovetail groove 151 of the closure unit 15, so that the applicator 20 is detachably mounted on the closure unit 15. That is, the applicator 20 is replaceable, so that the user can choose the applicator 20 with a suitable material according to their own preferences. For example, the user can choose the applicator 20 containing sponge material or the applicator 20 containing hair material. Optionally, in other examples of the ointment bottle with applicator of this utility model, the dovetail groove 151 can be formed in the applicator 20, and correspondingly, the dovetail buckle 21 can be formed in the closure unit 15.

[0043] Furthermore, the applicator 20 includes a base 22 and an applicator brush 23 disposed on the base 22, and the dovetail clasp 21 is formed on the base 22. The material of the applicator brush 23 is not limited in the ointment bottle with applicator of this utility model. For example, the material of the applicator brush 23 can be a sponge material or a hair material.

[0044] Continue to refer to the appendix Figures 1 to 12The balm bottle unit 11 has multiple limiting angles 114 distributed around the rotation axis of the drive unit 13. The balm bottle 10 further includes at least one anti-rotation unit 16, which is configured such that its outer end remains stationary relative to the operating part 131 of the drive unit 13, and its inner end has a limiting groove 161 with a variable opening size. When the drive unit 13 is driven to rotate relative to the balm bottle unit 11, the drive block 1322 of the drive arm 132 moves within the threaded groove 1221 of the driven rod 122. The multiple limiting angles 114 of the balm bottle unit 11 deform the opening of the limiting groove 161 of the anti-rotation unit 16, so that each limiting angle 114 of the balm bottle unit 11 can sequentially exit and enter the limiting groove 161 of the anti-rotation unit 16.

[0045] Specifically, when the drive unit 13 and the assembly unit 14 are not rotated, the limiting angle 114 of the ointment bottle unit 11 is located within the limiting groove 161 of the rotation-resistant unit 16, so that the rotation-resistant unit 16 provides resistance to the drive unit 13 and the assembly unit 14, making the rotation of the drive unit 13 and the assembly unit 14 more resistant. This prevents the assembly unit 14 from rotating due to friction with other objects when the user carries the ointment bottle with the applicator. When the drive unit 13 and the assembly unit 14 are rotated, the multiple limiting angles 114 of the ointment bottle unit 11 need to push the opening of the limiting groove 161 of the rotation-resistant unit 16 to deform and sequentially exit and enter the limiting groove 161 of the rotation-resistant unit 16. In this way, the rotation-resistant unit 16 makes the rotation of the drive unit 13 and the assembly unit 14 have greater resistance, preventing the drive unit 13 and the assembly unit 14 from rotating without human operation, and improving the user's feel when rotating the drive unit 13 and the assembly unit 14.

[0046] More specifically, the ointment bottle unit 11 includes a limiting post 115, the limiting post 115 having an insertion groove 1151 and a cylindrical channel 1152 communicating with the insertion groove 1151. The insertion arm 1132 of the ointment bottle 113 is inserted into the insertion groove 1151 of the limiting post 115 to install the limiting post 115 onto the ointment bottle 113. The bottom of the limiting post 115 is formed at the limiting angle 114 of the ointment bottle unit 11. The cylindrical channel 1152 of the limiting post 115 communicates with the ointment bottle through hole 112 of the ointment bottle unit 11. In this way, the driving arm 132 of the driving unit 13 can extend through the cylindrical channel 1152 of the limiting post 115 to the ointment bottle through hole 112 of the ointment bottle unit 11. The rotation-blocking unit 16 is located in the assembly cavity 141 of the assembly unit 14. The operating part 131 of the driving unit 13 is fixedly installed in the assembly unit 14 in such a way that it closes the opening of the assembly cavity 141 of the assembly unit 14. In this way, the assembly unit 14 is used to rotatably set the driving unit 13 at the bottom of the ointment bottle unit 11, and the operating part 131 and the assembly unit 14 conceal the rotation-blocking unit 16.

[0047] The cross-sectional shape of the bottom of the insertion arm 1132 of the ointment bottle 113 is the same as the cross-sectional shape of the insertion slot 1151 of the limiting post 115. Both are polygonal and have the same size. Thus, after the insertion arm 1132 of the ointment bottle 113 is inserted into the insertion slot 1151 of the limiting post 115, the limiting post 115 is prevented from rotating relative to the insertion arm 1132.

[0048] Reference Appendix Figures 6 to 8 The outer end of the resisting unit 16 is mounted on the assembly unit 14. Since the operating part 131 of the driving unit 13 is fixedly mounted on the assembly unit 14, the assembly unit 14 keeps the position of the outer end of the resisting unit 16 relative to the operating part 131 of the driving unit 13 stationary.

[0049] Specifically, the assembly unit 14 has at least one mounting groove 144. The rotation-stopping unit 16 includes a mounting portion 162, two connecting arms 163, and two clamping arms 164. The two mounting portions 162 extend from their respective free ends close to each other, and the two clamping arms 164 extend obliquely from their respective ends far apart, forming the limiting groove 161 of the rotation-stopping unit 16 between the two clamping arms 164. The mounting portion 162 of the rotation-stopping unit 16 is mounted in the mounting groove 144 of the assembly unit 14 to mount the outer end of the rotation-stopping unit 16 to the assembly unit 14.

[0050] When the limiting angle 114 of the ointment bottle unit 11 is located in the limiting groove 161 of the rotation-resistant unit 16, the two clamping arms 164 of the rotation-resistant unit 16 respectively clamp the opposite sides of the limiting angle 114 of the ointment bottle unit 11. In this way, the rotation-resistant unit 16 provides resistance to the driving unit 13 and the assembly unit 14, preventing the driving unit 13 and the assembly unit 14 from rotating under a small force in the circumferential direction. It can be understood that the reason why the rotation-resistant unit 16 can provide resistance to the driving unit 13 and the assembly unit 14 is that when the driving unit 13, the assembly unit 14 and the rotation-resistant unit 16 rotate relative to the ointment bottle unit 11 at the same time, the limiting angle 114 of the ointment bottle unit 11 needs to drive the two clamping arms 164 of the rotation-resistant unit 16 to deform outward.

[0051] Preferably, in this specific example of the ointment bottle with applicator of the present invention, from a top view, the assembly unit 14 is racetrack-shaped, and a rotation-resistant unit 16 is installed at each of the opposite ends of the assembly unit 14, that is, there are two rotation-resistant units 16. In this way, the two rotation-resistant units 16 provide resistance on opposite sides of the limiting post 115 of the ointment bottle unit 11, so that the limiting post 115 is subjected to force evenly.

[0052] Furthermore, the number of limiting angles 114 of the ointment bottle unit 11 is four, and the cross-sectional shape of the limiting post 115 is square. In this way, when the driving unit 13 and the assembly unit 14 are not under force or the force in the circumferential direction is small, the two resistive rotation units 16 and the limiting post 115 of the ointment bottle unit 11 can cooperate to make the extension direction of the assembly unit 14 consistent with the extension direction of the bottle body 1131 of the ointment bottle 113, or make the extension direction of the assembly unit 14 perpendicular to the extension direction of the bottle body 1131 of the ointment bottle 113. In other words, the two rotation-blocking units 16 and the limiting post 115 of the balm bottle unit 11 cooperate with each other so that the rotation degree of the assembly unit 14 and the driving unit 13 is a multiple of 90°. When the rotation degree of the assembly unit 14 and the driving unit 13 is not a multiple of 90°, the rotation-blocking unit 16 can correct the rotation degree of the assembly unit 14 and the driving unit 13, making the deodorant balm bottle more beautiful and easier to carry.

[0053] Continue to refer to the appendix Figure 6The assembly unit 14 has a protruding post 145 and a blocking post 146. The protruding post 145 protrudes from the inner wall of the assembly unit 14 towards the assembly cavity 141. The blocking post 146 is located in the assembly cavity 141 of the assembly unit 14 and adjacent to the protruding post 145, so as to form the mounting groove 144 between the protruding post 145 and the blocking post 146. The mounting portion 162 of the rotation-stopping unit 16 includes a mounting portion 1621 and two extension portions 1622. The mounting portion 1621 is mounted in the mounting groove 144 of the assembly unit 14 in three directions surrounding the protruding post 145. The two extension portions 1622 extend from opposite ends of the mounting portion 1621 along the inner wall of the assembly unit 14. The two connecting arms 163 are respectively connected to the ends of the two extension portions 1622 away from the mounting portion 1621. With this structural design, the plastic rotation-stopping unit 16 can have stronger elasticity.

[0054] Continue to refer to the appendix Figures 1 to 12 The deodorant bottle 10 further includes a bottle cap 17, wherein the bottle cap 17 is detachably mounted to the assembly unit 14 so as to close the opening of the receiving cavity 111 of the bottle unit 11 by the bottle cap 17.

[0055] Continue to refer to the appendix Figures 1 to 12 The applicator 20 further includes a bottom cover 24, wherein the bottom cover 24 is detachably mounted to the base 22 so as to cover the applicator brush 23.

[0056] 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 cream bottle with an applicator, characterized in that, include: Deodorant balm bottle; and An applicator, wherein the applicator is disposed in the deodorant bottle; The deodorant balm includes a balm unit, a support unit, and a drive unit. The balm unit has a receiving cavity and a balm perforation communicating with the receiving cavity. The support unit includes a support platform and a driven rod extending downward from the support platform. The drive unit includes an operating part and a drive arm extending upward from the operating part. The drive arm has an arm body perforation and a drive block located in the arm body perforation. The drive unit is rotatably disposed at the bottom of the balm unit such that the drive arm extends to the balm perforation of the balm unit. The support unit is vertically movable and received in the receiving cavity of the balm unit. The driven rod is inserted into the arm body perforation of the drive arm. The drive block of the drive arm is located in the threaded groove of the driven rod. When the drive unit rotates relative to the balm unit, the drive block of the drive arm and the driven rod of the support unit cooperate to drive the support platform to move vertically within the receiving cavity of the balm unit. The applicator is disposed below the drive unit.

2. The balm bottle with applicator according to claim 1, wherein the balm bottle includes an assembly unit rotatably mounted on the bottom of the balm bottle unit, and the operating part of the drive unit is fixedly mounted on the assembly unit so that the drive unit is rotatably disposed on the bottom of the balm bottle unit by the assembly unit.

3. The ointment bottle with an applicator according to claim 2, wherein the applicator is fixedly mounted to the assembly unit, and the applicator closes the arm body perforation of the drive arm so that the assembly unit positions the applicator below the drive unit.

4. The balm bottle with applicator according to claim 2, wherein the balm bottle includes a sealing unit fixedly mounted to the assembly unit for sealing the arm body perforation of the drive arm, wherein the applicator is fixedly mounted to the sealing unit so as to position the applicator below the drive unit by the sealing unit.

5. The balm bottle with applicator according to claim 2, wherein the balm bottle includes a sealing unit fixedly mounted to the assembly unit for sealing the arm body perforation of the drive arm, wherein the applicator is detachably mounted to the sealing unit so as to position the applicator below the drive unit by the sealing unit.

6. The ointment bottle with an applicator according to claim 5, wherein the sealing unit has a dovetail groove, the applicator has a dovetail buckle, and the dovetail buckle of the applicator is slidably mounted to the dovetail groove of the sealing unit so that the applicator is detachably mounted to the sealing unit.

7. The ointment bottle with an applicator according to claim 6, wherein the applicator comprises a base and an applicator brush disposed on the base, and the dovetail is formed on the base.

8. The balm bottle with applicator according to any one of claims 2 to 7, wherein the balm bottle unit has a plurality of limiting angles, wherein the balm bottle includes a rotation-stopping unit, the rotation-stopping unit being configured such that the outer end of the rotation-stopping unit remains stationary relative to the operating part and the inner end has a limiting groove with a variable opening size, wherein when the driving unit rotates relative to the balm bottle unit, the driving block moves within the threaded groove, and the plurality of the limiting angles of the balm bottle unit sequentially exit and enter the limiting groove in a manner that pushes the opening of the limiting groove to deform.

9. The ointment bottle with an applicator according to claim 8, wherein the assembly unit has an assembly cavity and an assembly through-hole communicating with the assembly cavity, wherein the ointment bottle unit includes an ointment bottle and a limiting post, the ointment bottle includes a bottle body and an insert arm extending downward from the bottom of the bottle body, the receiving cavity of the ointment bottle unit is formed in the bottle body, the insert arm has an arm body channel communicating with the receiving cavity, the limiting post has an insert groove and a post body channel communicating with the insert groove, a plurality of the limiting angles of the ointment bottle unit are formed at the bottom of the limiting post, wherein the assembly unit extends with the insert arm of the ointment bottle. The assembly unit is rotatably mounted to the bottom of the ointment bottle unit via the assembly perforation. The top of the limiting post is mounted to the assembly perforation of the assembly unit via the limiting groove of the limiting post, which is fixedly inserted into the limiting groove of the limiting post. The bottom of the limiting post is located in the assembly cavity of the assembly unit. The post channel of the limiting post and the arm channel of the insert arm are connected. The rotation-resistant unit is located in the assembly cavity of the assembly unit. The operating part is fixedly mounted to the assembly unit in a manner that closes the opening of the assembly cavity of the assembly unit.

10. The ointment bottle with an applicator according to claim 9, wherein the outer end of the resisting unit is mounted to the assembly unit, and since the operating part of the drive unit is fixedly mounted to the assembly unit, the assembly unit keeps the position of the outer end of the resisting unit relative to the operating part of the drive unit stationary; wherein the assembly unit has a mounting groove, the resisting unit includes a mounting part, two connecting arms, and two clamping arms, the two mounting parts extending from the two free ends of the mounting part in a manner close to each other, and the two clamping arms extending obliquely from the ends of the two connecting arms in a manner far apart from each other, so as to clamp the two arms. The limiting groove of the rotation-resistant unit is formed between the arms, and the mounting part of the rotation-resistant unit is installed in the mounting groove of the assembly unit to install the outer end of the rotation-resistant unit to the assembly unit; when the limiting angle of the ointment bottle unit is located in the limiting groove of the rotation-resistant unit, the two clamping arms of the rotation-resistant unit respectively clamp the opposite sides of the limiting angle of the ointment bottle unit. In this way, the rotation-resistant unit provides resistance to the driving unit and the assembly unit, preventing the driving unit and the assembly unit from rotating when subjected to a small force in the circumferential direction; wherein the number of limiting angles of the ointment bottle unit is four, and the limiting post The cross-sectional shape is square. Thus, when the driving unit and the assembly unit are not under force or the circumferential force is small, the two anti-rotation units and the limiting posts of the ointment bottle unit cooperate to ensure that the extension direction of the assembly unit is consistent with the extension direction of the ointment bottle body, or that the extension direction of the assembly unit and the extension direction of the ointment bottle body are perpendicular to each other. When the rotation degree of the assembly unit and the driving unit is not a multiple of 90°, the anti-rotation unit can correct the rotation degree of the assembly unit and the driving unit. The assembly unit has a protruding post and a blocking post, the protruding post being... The inner wall of the unit protrudes into the assembly cavity. The blocking post is located in the assembly cavity of the assembly unit and adjacent to the protruding post to form the mounting groove between the protruding post and the blocking post. The mounting part of the rotation-stopping unit includes a mounting part and two extension parts. The mounting part is mounted in the mounting groove of the assembly unit in three directions around the protruding post. The two extension parts extend from opposite ends of the mounting part along the inner wall of the assembly unit. The two connecting arms are connected to the ends of the two extension parts away from the mounting part. In this way, the rotation-stopping unit made of plastic can have stronger elasticity.

Citation Information

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