An interesting solid hand sanitizer dispenser
Patent Information
- Application Number
- CN202410044417.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-11
- Publication Date
- 2026-08-28
- Estimated Expiration
- 2044-01-11
AI Technical Summary
而生活中常见的以及经常使用的洗手液存放瓶大多数为结构简单的塑料瓶,将洗手液灌装至塑料瓶中,待使用时需要拿起倒放按压将洗手液挤出,或者是按压瓶口上的按压器将洗手液按压挤出,这些方式大多数都存在无法控制洗手液挤出量的问题,洗手液存放瓶内剩余洗手液的量以及不同使用人员按压力道的不同,都会造成挤出量不一,挤出过多会造成洗手液的浪费,挤出过少无法满足使用人员手部清洁的效果,就需要二次乃至多次按压,使得使用的繁琐性加大
[0024]采用了上述技术方案后,本发明的有益效果是:通过增加投放机构,向下拉动拉动绳,使其带动拉动弹簧将拨动耳带动,拉动齿轮转动带动与其啮合的横向齿轮盘转动,使横向齿轮盘带动与其啮合的竖向齿轮盘转动,再使竖向齿轮盘带动竖向齿条上下移动,上下移动件下移带动阻挡物下移,使阻挡物脱离与下料口的嵌合,洗手液经下料口流出,去除外力在回位弹簧作用下上下移动件带动阻挡物上移将下料口堵上,从而能够便于使用,通过增加投放管道、拉动件、拉动弹簧、固定柱、马达齿轮、马达模块及过渡齿轮,能够便于洗手液流出。
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Figure CN117796694B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the technical field of hand sanitizer dispensers, and specifically relates to a fun solid hand sanitizer dispenser. Background Technology
[0002] With societal progress, people are paying increasing attention to daily health. On average, people touch their faces about 25 times per hour, for example, rubbing their eyes, picking their noses, and licking their fingers. Furthermore, hands come into contact with many different items daily, making hand hygiene extremely important and impacting overall health. Therefore, hand sanitizer is widely used. However, most common and frequently used hand sanitizer bottles are simple plastic bottles. To use them, the user either picks up the bottle, inverts it, and presses it to dispense the sanitizer, or presses the pump on the bottle opening. These methods often result in inconsistent dispensing volume. The amount of sanitizer remaining in the bottle and the pressure applied by different users can lead to varying amounts dispensed. Dispensing too much is wasteful, while dispensing too little is insufficient for proper hand cleaning, requiring multiple presses and increasing the inconvenience of use.
[0003] Secondly, the common hand sanitizer bottle structure mentioned above has the problem of making it difficult to squeeze out the remaining hand sanitizer when there is not much hand sanitizer. This results in the hand sanitizer at the bottom of the bottle not being completely squeezed out. When hand sanitizer is refilled, the hand sanitizer at the bottom is still at the bottom, which will make it difficult to squeeze out the hand sanitizer for a long time, which may affect the quality of the hand sanitizer.
[0004] In summary, there are certain problems with the use of press-to-squeeze hand sanitizer storage bottles. Therefore, it is hoped that a new structure can be proposed to solve the above-mentioned technical problems. Summary of the Invention
[0005] To address the shortcomings of existing technologies, the present invention aims to provide a fun solid hand sanitizer dispenser to solve the problems mentioned in the background section.
[0006] This invention is achieved through the following technical solution: a fun solid hand sanitizer dispenser, comprising: a right outer shell, a fixed column, a dispensing mechanism, and a dispensing pipe. A left outer shell is located on the left side of the right outer shell. A fixed column hole is formed through the right side of both the left and right outer shells. A fixed column is located inside the fixed column hole. A motor gear is located above the fixed column. A transition gear is located to the right of the motor gear. A motor module is located above the motor gear. A first outer shell is located outside the motor module. A circuit board is located on the upper front side of the first outer shell. A battery pack is located below the circuit board. A second outer shell is located below the battery pack. A dispensing mechanism is located inside the second outer shell. A dispensing pipe is located above the first outer shell. Storage slots are located at the front ends of both the left and right outer shells. Storage boxes are located inside the storage slots.
[0007] In a preferred embodiment, the dispensing mechanism has a pulling member at its rear end, a fixed plate at its center, a pulling shaft at its center, and a actuating metal plate on the outside of the pulling shaft.
[0008] A fixed metal plate is provided on the rear side of the fixed plate, and a lever ear is provided on the upper right side of the outer side of the fixed plate. A pull spring is provided on the front end of the outer side of the pull shaft. When the lever metal plate contacts the fixed metal plate, the motor module starts and pulls the pull rope tied to the upper rear end of the pull spring, so that it can drive the pull spring to drive the fixed plate and the pull gear to rotate through the lever ear.
[0009] In a preferred embodiment, the upper rear end of the pull spring passes through the actuating ear, and a pull rope is provided outside the upper rear end of the pull spring. The left outer shell, the right outer shell, and the lower surfaces of the two outer shells all form through holes, through which the pull rope passes.
[0010] The front side of the fixed plate is provided with a pull gear, and the outer side of the pull gear is provided with pull teeth, which are distributed on one-third of the circumference of the outer side of the pull gear.
[0011] In a preferred embodiment, a horizontal gear disk is provided on the front side of the pulling gear, a vertical gear disk is provided on the lower right side of the horizontal gear disk, and a vertical moving part is provided in front of the vertical gear disk;
[0012] The rear end of the vertical moving part is provided with a vertical rack, which meshes with a vertical gear disk. The horizontal gear disk also meshes with the vertical gear disk. The pulling gear also meshes with the horizontal gear disk. The rotation of the pulling gear can drive the horizontal gear disk meshing with it to rotate. The rotation of the horizontal gear disk drives the vertical gear disk meshing with it to rotate, thereby enabling the vertical gear disk to drive the vertical rack to move up and down.
[0013] In a preferred embodiment, a return spring is provided below the up-and-down moving member, and a block is provided above the up-and-down moving member;
[0014] The storage box has a discharge port at the lower rear side. The obstruction passes through the discharge pipe and fits into the discharge port without external force.
[0015] In a preferred embodiment, the front side of the vertical moving part is provided with a slide rail, and the inner side of the front end of the outer casing is provided with a slide groove. The slide rail and the slide groove are movably fitted together. The battery pack, motor module, and circuit board are all connected by wires. The vertical rack moves down so that the vertical moving part can press the return spring, causing the obstruction to move down and disengage from the feed port, allowing hand sanitizer to flow out from the feed port. During the rotation of the fixed plate, the moving metal piece can contact the fixed metal patch. The start and stop of the motor module are controlled by the circuit board.
[0016] In a preferred embodiment, the right end of the fixed column is provided with a dispensing shaft, and the left side of the dispensing shaft is provided with a turntable, which is connected to an external rotating component.
[0017] The outer right end of the dispensing shaft is provided with a dispensing tooth, which meshes with the transition gear. The motor gear also meshes with the transition gear. When the motor module is started, the motor gear at its lower end drives the transition gear meshing with it to rotate. The transition gear then drives the dispensing gear meshing with it to rotate, causing the fixed column to rotate the entire dispensing machine by 32°, allowing the hand sanitizer to flow out through the dispensing pipe.
[0018] In a preferred embodiment, the delivery pipe has an approximately Z-shaped structure and consists of a front section, a middle section, and a rear section, with the middle section of the delivery pipe forming an angle of 110° with both the front and rear sections.
[0019] The upper rear sides of both the left and right outer shells are connected to form liquid outlets. A bird beak is provided on the upper inner side of the liquid outlet. The bird beak engages with the rear end of the delivery pipe. The liquid outlet and the bird beak are engaged with each other.
[0020] In a preferred embodiment, a locking shaft is provided at the right end of the inner side of the left outer shell, and the fixing post passes through the locking shaft and engages with the locking shaft.
[0021] The outer shell 1 and outer shell 2 are all integral structures with the left outer shell. The right side of the outer shell 1 and outer shell 2 are provided with mounting covers. The circuit board is used to control the start and stop of the motor module when the metal plate is moved and the fixed metal plate is in contact and separated.
[0022] In a preferred embodiment, the mounting cover is fixed to both outer shell 1 and outer shell 2 by screws, and the left outer shell and right outer shell are fixed by snap-fit connection.
[0023] When the left and right outer shells are engaged, the beak and storage box are engaged and fixed. The left and right outer shells are connected by a snap-fit mechanism, which allows the dispenser to be disassembled, thus facilitating the replenishment of hand sanitizer inside the storage box. Both outer shells are secured with screws to the mounting cover, thus facilitating the maintenance of the dispenser.
[0024] After adopting the above technical solution, the beneficial effects of the present invention are as follows: By adding a dispensing mechanism, pulling the pull rope downwards causes the pull spring to drive the actuating ear, which in turn drives the pull gear to rotate, causing the horizontal gear disk meshing with it to rotate. This causes the horizontal gear disk to drive the vertical gear disk meshing with it to rotate, which in turn causes the vertical gear disk to drive the vertical rack to move up and down. The moving parts move down, causing the obstruction to move down, so that the obstruction is disengaged from the dispensing port. The hand sanitizer flows out through the dispensing port. After removing the external force, the moving parts move up under the action of the return spring to block the dispensing port, thus making it easier to use. By adding a dispensing pipe, a pull part, a pull spring, a fixed column, a motor gear, a motor module, and a transition gear, it is easier for the hand sanitizer to flow out. Attached Figure Description
[0025] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0026] Figure 1 This is a schematic diagram of the overall structure of a fun solid hand sanitizer dispenser according to the present invention.
[0027] Figure 2 This is a schematic diagram of the overall structure of the left and right outer shells of a fun solid hand sanitizer dispenser according to the present invention.
[0028] Figure 3 This is an exploded overall structural diagram of a fun solid hand sanitizer dispenser according to the present invention.
[0029] Figure 4 This is a schematic diagram of the overall structure of a fun solid hand sanitizer dispenser of the present invention, after removing the right outer shell and the mounting cover.
[0030] Figure 5 This is a schematic diagram of the overall rear structure of a fun solid hand sanitizer dispenser of the present invention, after removing the left outer shell, right outer shell, and mounting cover.
[0031] Figure 6 This is a schematic diagram of the overall front structure of a fun solid hand sanitizer dispenser of the present invention, after removing the left outer shell, right outer shell, and mounting cover.
[0032] Figure 7 This is a schematic diagram of the overall structure of the dispensing mechanism and dispensing pipe in a fun solid hand sanitizer dispenser of the present invention.
[0033] Figure 8 This is a schematic diagram of the overall structure of the pull component in a fun solid hand sanitizer dispenser according to the present invention.
[0034] Figure 9 This is a schematic diagram of the overall structure of the fixed column, motor module, motor gear and transition gear in a fun solid hand sanitizer dispenser of the present invention.
[0035] Figure 10 This is a schematic diagram of the overall structure of the fixed column in a fun solid hand sanitizer dispenser of the present invention.
[0036] In the diagram, 100-right outer shell, 110-left outer shell, 120-liquid outlet, 130-storage box slot, 140-fixing post hole, 150-storage box, 160-fixing post, 161-dispensing shaft, 162-dispensing gear, 170-outer shell one, 180-motor module, 190-circuit board;
[0037] 200-Battery pack, 210-Motor gear, 220-Transition gear, 230-Dispensing mechanism, 240-Dispensing pipe;
[0038] 231-Pull component, 232-Pull spring, 233-Horizontal gear disk, 234-Vertical gear disk, 235-Upward and downward moving component, 236-Vertical rack, 237-Return spring, 238-Block;
[0039] 2311-Fixed disc, 2312-Fixed metal sheet, 2313-Moving metal sheet, 2314-Pulling gear. Detailed Implementation
[0040] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0041] Please see Figures 1 to 10 The present invention provides a technical solution: a fun solid hand sanitizer dispenser, comprising: a right outer shell 100, a fixed column 160, a dispensing mechanism 230 and a dispensing pipe 240, and a left outer shell 110 is provided on the left side of the right outer shell 100;
[0042] The left outer shell 110 and the right outer shell 100 are both formed by a through-hole 140. A fixing post 160 is provided inside the fixing post hole 140. A motor gear 210 is provided above the fixing post 160. A transition gear 220 is provided to the right of the motor gear 210. A motor module 180 is provided above the motor gear 210.
[0043] The motor module 180 has an outer casing 170 on its outer side. A circuit board 190 is located on the upper front side of the outer casing 170. A battery pack 200 is located below the circuit board 190. An outer casing 2 is located below the battery pack 200. An inner dispensing mechanism 230 is located inside the outer casing 2. An dispensing pipe 240 is located above the outer casing 170. Storage box slots 130 are located at the front ends of the left outer casing 110 and the right outer casing 100. A storage box 150 is located inside the storage box slot 130.
[0044] The rear end of the dispensing mechanism 230 is provided with a pulling component 231, the center of the pulling component 231 is provided with a fixed plate 2311, the center of the fixed plate 2311 is provided with a pulling shaft, and the outside of the pulling shaft is provided with a moving metal plate 2313.
[0045] A fixed metal plate 2312 is provided on the rear side of the fixed plate 2311. A toggle ear is provided on the upper right side of the outer side of the fixed plate 2311. A pull spring 232 is provided on the front end of the outer side of the pull shaft. When the toggle metal plate 2313 contacts the fixed metal plate 2312, the motor module 180 starts and pulls the pull rope tied to the upper rear end of the pull spring 232, so that the pull spring 232 can drive the fixed plate 2311 and the pull gear 2314 to rotate via the toggle ear.
[0046] After pulling the spring 232, the upper end passes through the actuating ear. A pulling rope is provided on the upper end of the spring 232. The left outer shell 110, the right outer shell 100 and the lower surface of the two outer shells are all through to form a through hole. The pulling rope passes through the through hole.
[0047] The front side of the fixed plate 2311 is provided with a pull gear 2314, and the outer side of the pull gear 2314 is provided with pull teeth, which are distributed on one-third of the circumference of the outer side of the pull gear 2314.
[0048] A horizontal gear disk 233 is provided on the front side of the pull gear 2314, a vertical gear disk 234 is provided on the lower right side of the horizontal gear disk 233, and a vertical moving part 235 is provided in front of the vertical gear disk 234.
[0049] The rear end of the vertical moving part 235 is provided with a vertical rack 236, which meshes with the vertical gear disk 234. The horizontal gear disk 233 also meshes with the vertical gear disk 234. The pulling gear 2314 also meshes with the horizontal gear disk 233. The rotation of the pulling gear 2314 can drive the horizontal gear disk 233 meshing with it to rotate. The rotation of the horizontal gear disk 233 drives the vertical gear disk 234 meshing with it to rotate, thereby enabling the vertical gear disk 234 to drive the vertical rack 236 to move up and down.
[0050] A return spring 237 is provided below the vertical moving part 235, and a block 238 is provided above the vertical moving part 235.
[0051] The storage box 150 has a discharge port at the lower rear side. The obstruction 238 passes through the discharge pipe 240 and interlocks with the discharge port without external force.
[0052] The front side of the vertical moving part 235 is provided with a slide rail, and the inner side of the front end of the outer casing is provided with a slide groove. The slide rail and the slide groove are movably engaged with each other. The battery pack 200, the motor module 180, and the circuit board 190 are all connected by wires. The vertical rack 236 moves down so that the vertical moving part 235 can press the return spring 237, causing the block 238 to move down and disengage from the feed port, allowing the hand sanitizer to flow out from the feed port. During the rotation of the fixed plate 2311, the moving metal piece 2313 can contact the fixed metal patch 2312. The start and stop of the motor module 180 are controlled by the circuit board 190.
[0053] Please see Figures 2-4 and Figures 6-8As the first embodiment of the present invention: In order to solve the common problems of uncontrollable dispensing volume and failure of hand sanitizer to flow from the bottom of hand sanitizer storage bottles during use, firstly, the user pulls the pull rope passing through the through hole during use. As it is pulled down, the fixed plate 2311 and the pull gear 2314 rotate via the actuating lug. Simultaneously, the rotation of the pull gear 2314 drives the horizontal gear plate 233, which in turn drives the vertical gear plate 234, which in turn drives the vertical rack 236, which meshes with it, to move up and down. Secondly, the vertical rack 236 is located in the upper and lower positions... The rear end of the movable component 235 allows the vertical movable component 235 to move up and down. When the vertical movable component 235 moves down, it presses the return spring 237 at the lower end to compress it, and drives the upper block 238 to move down and disengage from the discharge port, so that the hand sanitizer flows from the storage box 150 into the dispensing pipe 240 through the discharge port. The tension applied to the pull rope is removed, and the elastic potential energy accumulated by the return spring can make the vertical movable component 235 move up, drive the block 238 up and engage with the discharge port, thereby preventing the hand sanitizer from continuing to flow out. The storage box 150 is tilted in its natural state, and its discharge port is located on the lower side of the rear end, so that the hand sanitizer in the storage box 150 can all flow out when needed.
[0054] The right end of the fixed column 160 is provided with a dispensing shaft 161, and the left side of the dispensing shaft 161 is provided with a turntable, which is connected to the external rotating component.
[0055] The outer right end of the dispensing shaft 161 is provided with a dispensing tooth 162, which meshes with the transition gear 220. The motor gear 210 also meshes with the transition gear 220. When the motor module 180 is started, the motor gear 210 at its lower end drives the transition gear 220 that meshes with it to rotate. The transition gear 220 then drives the dispensing gear 162 that meshes with it to rotate, causing the fixed column 160 to rotate the entire dispensing machine by 32°, and the hand sanitizer can flow out through the dispensing pipe 240.
[0056] The delivery pipe 240 has an approximately Z-shaped structure and consists of a front section, a middle section, and a rear section. The angle between the middle section and the front and rear sections of the delivery pipe 240 is 110°.
[0057] The upper rear side of both the left outer shell 110 and the right outer shell 100 forms a liquid outlet 120. The upper inner side of the liquid outlet 120 is provided with a bird beak component, which is engaged with the rear end of the delivery pipe 240. The liquid outlet 120 and the bird beak component are engaged with each other.
[0058] Please see Figure 1 and Figures 3-10As a second embodiment of the present invention: Based on the above embodiment, when the user pulls down the pull rope, the metal plate 2313 rotates and comes into contact with the fixed metal plate 2312, so that the circuit board 190 controls the start of the motor module 180. The start of the motor module 180 enables the motor gear 210 at its lower end to drive the transition gear 220 meshing with it to rotate. The transition gear 220 then drives the dispensing gear 162 meshing with it to rotate, so that the fixed column 160 drives the dispensing machine to rotate 32°. The hand sanitizer in the dispensing pipe 240 can flow out through the liquid outlet 120, which facilitates the use by the user.
[0059] A locking shaft is provided on the right end of the inner side of the left outer shell 110, and the fixing post 160 passes through the locking shaft and engages with the locking shaft.
[0060] The outer casing 170, the outer casing 2, and the left outer casing 110 are all integral structures. The right side of the outer casing 170 and the outer casing 2 are provided with mounting covers. The circuit board 190 is used to control the start and stop of the motor module 180 when the metal iron piece 2313 is moved to contact and separate from the fixed metal iron piece 2312.
[0061] The mounting cover is fixed to the outer shell 170 and the outer shell 2 by screws, and the left outer shell 110 and the right outer shell 100 are fixed by snap-fit connection;
[0062] When the left outer shell 110 and the right outer shell 100 are engaged, the beak part and the storage box 150 are engaged and fixed. The left outer shell 110 and the right outer shell 100 are engaged and fixed by a buckle, which allows the dispenser to be disassembled, thereby facilitating the replenishment of hand sanitizer inside the storage box 150. Both the first outer shell 170 and the second outer shell are fixed with screws to secure the mounting cover, thereby facilitating the maintenance of the dispenser.
[0063] Please see Figures 1-4 As a third embodiment of the present invention: In the daily use of the hand sanitizer dispenser, it is necessary to intermittently replenish the hand sanitizer in the storage box 150, and when the hand sanitizer dispenser encounters a malfunction, it is necessary to facilitate its disassembly and maintenance. First, the left outer shell 110 and the right outer shell 100 are connected by a snap-fit, which allows the dispenser to be disassembled. When the left outer shell 110 and the right outer shell 100 are snap-fitted together, the beak part and the storage box 150 are snapped and fixed, which facilitates the replenishment of hand sanitizer in the storage box 150. Second, both the outer shell 170 and the outer shell 2 are fixed with screws to secure the mounting cover, which facilitates the maintenance of the dispenser.
[0064] 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 within the protection scope of the present invention.
Claims
1. A fun solid hand sanitizer dispenser, comprising: The right outer shell (100), the fixing column (160), the dispensing mechanism (230) and the dispensing pipe (240) are characterized in that a left outer shell (110) is provided on the left side of the right outer shell (100). The left outer shell (110) and the right outer shell (100) are both formed with a fixing post hole (140) through the right side. A fixing post (160) is provided inside the fixing post hole (140). A motor gear (210) is provided above the fixing post (160). A transition gear (220) is provided to the right of the motor gear (210). A motor module (180) is provided above the motor gear (210). The motor module (180) is provided with a first outer shell (170) on the outside. A circuit board (190) is provided on the upper front side of the first outer shell (170). A battery pack (200) is provided below the circuit board (190). A second outer shell is provided below the battery pack (200). A dispensing mechanism (230) is provided on the inner side of the second outer shell. A dispensing pipe (240) is provided on the upper side of the first outer shell (170). A storage box slot (130) is provided at the front end of both the left outer shell (110) and the right outer shell (100). A storage box (150) is provided inside the storage box slot (130). The delivery mechanism (230) has a pull member (231) at its rear end. The pull member (231) has a fixed plate (2311) at its center. The fixed plate (2311) has a pull shaft at its center. The pull shaft has a push metal plate (2313) on its outer side. The fixed plate (2311) is provided with a fixed metal sheet (2312) on its rear side. A toggle is provided on the upper right side of the outer side, and a pull spring (232) is provided at the front end of the outer side of the pull shaft. When the toggle metal plate (2313) contacts the fixed metal plate (2312), the motor module (180) starts. The upper rear end of the pull spring (232) passes through the actuating ear, and a pull rope is provided on the upper rear end of the pull spring (232). The left outer shell (110), the right outer shell (100) and the lower surfaces of the two outer shells are all formed through holes, and the pull rope passes through the through holes. The front side of the fixed disk (2311) is provided with a pull gear (2314), and the outer side of the pull gear (2314) is provided with pull teeth, which are distributed on one-third of the circumference of the outer side of the pull gear (2314); A horizontal gear disk (233) is provided on the front side of the pull gear (2314), a vertical gear disk (234) is provided on the lower right side of the horizontal gear disk (233), and a vertical moving part (235) is provided in front of the vertical gear disk (234). The rear end of the vertical moving part (235) is provided with a vertical rack (236), the vertical rack (236) meshes with the vertical gear disk (234), the horizontal gear disk (233) also meshes with the vertical gear disk (234), and the pulling gear (2314) also meshes with the horizontal gear disk (233); Pulling the pull rope through the through hole causes the fixed plate (2311) and the pull gear (2314) to rotate via the actuating ear during the pull-down process. The rotation of the pull gear (2314) can drive the horizontal gear plate (233) meshing with it to rotate. The horizontal gear plate (233) then drives the vertical gear plate (234) meshing with it to rotate. This allows the vertical gear plate (234) to drive the vertical rack (236) meshing with it to move up and down. When the vertical moving part (235) moves down, it presses the return spring (237) at the lower end to compress it and causes the upper end of the block (238) to move down and disengage from the feed port, so that the hand sanitizer flows from the storage box (150) into the dispensing pipe (240) through the feed port. When the pull rope is pulled down, the metal plate (2313) rotates and comes into contact with the fixed metal plate (2312), causing the motor gear (210) at its lower end to drive the transition gear (220) that meshes with it to rotate. The transition gear (220) then drives the dispensing gear (162) that meshes with it to rotate, causing the fixed column (160) to drive the dispensing machine to rotate 32°, and the hand sanitizer in the dispensing pipe (240) can flow out through the outlet (120).
2. The fun solid hand sanitizer dispenser as described in claim 1, characterized in that: A return spring (237) is provided below the vertical moving part (235), and a block (238) is provided above the vertical moving part (235). The storage box (150) has a discharge port at the lower rear side. The obstruction (238) passes through the delivery pipe (240) and fits into the discharge port without external force.
3. The fun solid hand sanitizer dispenser as described in claim 2, characterized in that: The front side of the vertical moving part (235) is provided with a slide rail, and the inner side of the front end of the outer shell is provided with a slide groove. The slide rail and the slide groove are movably fitted together. The battery pack (200), motor module (180) and circuit board (190) are all connected by wires.
4. The fun solid hand sanitizer dispenser as described in claim 1, characterized in that: The right end of the fixed column (160) is provided with a dispensing shaft (161), and the left side of the dispensing shaft (161) is provided with a turntable, which is connected to an external rotating component. The right end of the outer side of the delivery shaft (161) is provided with a delivery tooth (162), which meshes with the transition gear (220), and the motor gear (210) also meshes with the transition gear (220).
5. The fun solid hand sanitizer dispenser as described in claim 4, characterized in that: The delivery pipe (240) has an approximately Z-shaped structure and consists of a front section, a middle section and a rear section. The angle between the middle section and the front and rear sections of the delivery pipe (240) is 110°. The upper rear side of the left outer shell (110) and the right outer shell (100) are both connected to form a liquid outlet (120). The upper inner side of the liquid outlet (120) is provided with a bird beak. The bird beak engages with the rear end of the delivery pipe (240). The liquid outlet (120) and the bird beak engage with each other.
6. The fun solid hand sanitizer dispenser as described in claim 1, characterized in that: The right end of the inner side of the left outer shell (110) is provided with a locking shaft, and the fixing post (160) passes through the locking shaft and engages with the locking shaft. The outer shell 1 (170), outer shell 2, and left outer shell (110) are all integral structures. The right side of the outer shell 1 (170) and outer shell 2 are provided with mounting covers. The circuit board (190) is used to control the start and stop of the motor module (180) when the metal iron piece (2313) is moved to contact and separate from the fixed metal iron piece (2312).
7. A fun solid hand sanitizer dispenser as described in claim 6, characterized in that: The mounting cover is fixed to both the outer shell 1 (170) and the outer shell 2 by screws, and the left outer shell (110) and the right outer shell (100) are fixed to each other by snap-fit. When the left outer shell (110) and the right outer shell (100) are engaged and connected, the beak piece and the storage box (150) are engaged and fixed.
Citation Information
Patent Citations
A handling device that is used for granule or powder class material
CN205892186U
Intelligent door lock handle transmission mechanism
CN210828638U
Disinfection hand sanitizer taking device
CN218978725U