Intelligent induction toothpaste squeezing machine

The intelligent sensor toothpaste dispenser uses sensors and a reduction gear set to automatically dispense toothpaste, solving the problems of toothpaste waste and space waste, and achieving intelligent dispensing and convenient maintenance.

CN224055876UActive Publication Date: 2026-03-31HEBEI YINGTEMAN ELECTRONIC TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-24
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

The lack of intelligent toothpaste dispensing devices in existing technologies leads to problems of toothpaste waste and space waste.

Method used

A smart sensor toothpaste dispenser was designed, comprising a housing, a drive source mounting cavity, a toothpaste mounting cavity, a guide sleeve, a toothpaste receiving sleeve, an elastic rubber sleeve, and a sensor. After the sensor detects the toothbrush, it drives a reduction gear set and an eccentric wheel to realize the automatic squeezing and resetting of the toothpaste.

Benefits of technology

It achieves intelligent toothpaste dispensing, reducing waste, is easy to install and maintain, has low operating costs, and is convenient to use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of toothpaste squeezing machines, and particularly relates to an intelligent induction toothpaste squeezing machine which comprises a shell, the shell comprises a driving source installation cavity, a toothpaste installation cavity, a rear cover and a guide sleeve shell, a connecting sleeve is installed in the toothpaste installation cavity, and a toothpaste bearing sleeve is movably connected in the connecting sleeve. An elastic rubber sleeve is arranged at the bottom of the toothpaste bearing sleeve, the elastic rubber sleeve is sleeved with a mounting ring, and the mounting ring is in threaded connection with the toothpaste bearing sleeve. After the sensor senses the toothbrush, the reduction gear set drives the eccentric wheel to rotate and jacks up the connecting block to drive the extrusion block to extrude the elastic rubber sleeve, and the elastic rubber sleeve transmits extrusion force to toothpaste, so that the toothpaste is extruded onto the toothbrush; the toothpaste squeezing device is convenient to use again, and intelligent induction toothpaste squeezing operation is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of toothpaste dispenser technology, specifically to an intelligent sensor toothpaste dispenser. Background Technology

[0002] A smart sensor-operated toothpaste dispenser is a toothpaste dispensing device that combines sensor technology with automated design. It can automatically dispense the appropriate amount of toothpaste according to the user's needs, reducing the hassle of manual dispensing and avoiding waste. It typically consists of sensors, a motor, and a drive mechanism, and can be automatically activated when the user approaches, or operated via gestures, buttons, or other methods.

[0003] The prior art has the following defects or problems: The prior art disclosed in publication number CN211337059U is a toothpaste squeezer, which includes a squeeze container, a back pressure device disposed inside the squeeze container, and a rotating device disposed on the back pressure device; the squeeze container has a base at the bottom and a squeeze port at the top.

[0004] During use, the aforementioned device utilizes the cooperation of the extrusion port and the back pressure device to allow the toothpaste box to enter the extrusion port for the first extrusion. Subsequently, it passes through the clamp and rotates on the shaft. Due to the squeezing contact between the shaft and the back pressure device, the toothpaste box undergoes a second extrusion as it passes through this point. This toothpaste extruder performs two extrusion processes on the toothpaste box, effectively squeezing out most of the residual toothpaste and solving the problem of toothpaste waste. The back pressure device ensures that the toothpaste box remains tightly wound on the shaft, eliminating the problem of wasted space.

[0005] The above-mentioned intelligent toothpaste dispenser is outdated and cannot be intelligently squeezed by sensors. Therefore, it is necessary to propose an intelligent sensor toothpaste dispenser.

[0006] It should be noted that the above content falls within the inventor's technical knowledge and does not necessarily constitute prior art. Utility Model Content

[0007] In view of the shortcomings of the existing technology, this utility model provides an intelligent sensor toothpaste dispenser, which solves the existing problems.

[0008] To achieve the above objectives, this utility model provides the following technical solution: an intelligent sensor toothpaste dispenser, comprising a housing, the housing including a drive source mounting cavity, a toothpaste mounting cavity, a rear cover and a guide sleeve, a connecting sleeve installed inside the toothpaste mounting cavity, a toothpaste receiving sleeve movably connected inside the connecting sleeve, an elastic rubber sleeve provided at the bottom of the toothpaste receiving sleeve, an installation ring sleeved on the outside of the elastic rubber sleeve, and the installation ring threadedly connected to the toothpaste receiving sleeve.

[0009] As a preferred embodiment of this utility model, the drive source mounting cavity is symmetrically and fixedly connected with a sliding seat for use with a connecting sleeve, and the drive source mounting cavity is symmetrically and fixedly connected with a limiting seat, with a pressing block provided between the two limiting seats.

[0010] As a preferred technical solution of this utility model, the extrusion block is symmetrically fixedly connected to the outside of the extrusion block, and both of the fixed rods are slidably connected to the corresponding limiting seats. The extrusion block is rotatably connected to the inside of the extrusion block, and the connecting block is rotatably connected to the inside of the rotating shaft. The drive source mounting cavity is symmetrically fixedly connected to the movable seats that cooperate with the rotating shaft, and the two ends of the rotating shaft are respectively located inside the movable seats on the same side.

[0011] As a preferred embodiment of this utility model, a T-shaped mounting cavity is installed inside the drive source mounting cavity, a T-shaped circuit board is installed inside the T-shaped mounting cavity, and a sensor is installed inside the drive source mounting cavity.

[0012] As a preferred technical solution of this utility model, the interior of the drive source mounting cavity is symmetrically provided with sliding grooves for use with the guide sleeve, and the top of the guide sleeve is symmetrically fixedly connected with guide strips.

[0013] As a preferred embodiment of this utility model, a reduction gear set is installed inside the drive source mounting cavity, and an eccentric wheel is fixedly connected to the drive end of the reduction gear set.

[0014] In a preferred embodiment of this invention, the sensor and eccentric wheel are electrically connected to the T-shaped circuit board.

[0015] Compared with the prior art, this utility model provides an intelligent sensor toothpaste dispenser, which has the following beneficial effects:

[0016] I. This intelligent sensor toothpaste dispenser, by setting up a toothpaste receiving sleeve, an elastic rubber sleeve and a mounting ring, and by attaching the mounting ring to the outside of the elastic rubber sleeve, and then threading the toothpaste receiving sleeve to the mounting ring, the elastic rubber sleeve, the mounting ring and the toothpaste receiving sleeve are combined to form a toothpaste holder. The components are easy to install, have high disassembly and assembly efficiency, are easy to maintain and replace independently, and have low operating costs.

[0017] II. This intelligent sensor toothpaste dispenser, through the setting of a sensor, a reduction gear set, an eccentric wheel and a squeezing block, after the sensor detects the toothbrush, the reduction gear set drives the eccentric wheel to rotate and lifts the connecting block, which in turn drives the squeezing block to squeeze the elastic sleeve. The elastic sleeve transmits the squeezing force to the toothpaste, thereby squeezing the toothpaste onto the toothbrush. After the toothbrush leaves the sensor's sensing range, the connecting block automatically springs back to its original position due to its own rebound force, making it easy to reuse, thus realizing the intelligent sensor toothpaste dispensing operation. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0019] Figure 2 This is an exploded structural diagram of the present invention;

[0020] Figure 3 This is a schematic diagram of the connection structure of the extrusion block of this utility model;

[0021] Figure 4 This is a schematic diagram of the internal structure of the drive source mounting cavity of this utility model.

[0022] In the diagram: 1. Housing; 101. Drive source mounting cavity; 1011. Limiting seat; 1012. Extrusion block; 1013. Fixing rod; 1014. Connecting block; 1015. Rotating shaft; 1016. Movable seat; 1017. T-shaped mounting cavity; 1018. T-shaped circuit board; 1019. Sensor; 102. Toothpaste mounting cavity; 1021. Connecting sleeve; 1022. Mounting ring; 1023. Elastic rubber sleeve; 1024. Toothpaste receiving sleeve; 1025. Slide seat; 103. Rear cover; 104. Guide sleeve; 1041. Slide groove; 1042. Guide strip; 2. Reduction gear set; 201. Eccentric wheel. Detailed Implementation

[0023] To better understand the above-mentioned objectives, features, and advantages of this utility model, the present utility model will be further described below with reference to the accompanying drawings and embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] Example 1

[0026] like Figures 1-4As shown, this utility model provides a technical solution: an intelligent sensor toothpaste dispenser, including a housing 1. The housing 1 includes a drive source mounting cavity 101, a toothpaste mounting cavity 102, a rear cover 103, and a guide sleeve 104. A connecting sleeve 1021 is installed inside the toothpaste mounting cavity 102. A toothpaste receiving sleeve 1024 is movably connected inside the connecting sleeve 1021. An elastic rubber sleeve 1023 is provided at the bottom of the toothpaste receiving sleeve 1024. An installation ring 1022 is sleeved on the outside of the elastic rubber sleeve 1023, and the installation ring 1022 is threadedly connected to the toothpaste receiving sleeve 1024. A sliding seat 1025 for use with the connecting sleeve 1021 is symmetrically fixedly connected inside the drive source mounting cavity 101. A limiting seat 1011 is symmetrically fixedly connected inside the drive source mounting cavity 101. A squeezing block 1012 is provided between the two limiting seats 1011.

[0027] In this embodiment, by fitting the mounting ring 1022 onto the outside of the elastic sleeve 1023, and then threading the toothpaste receiving sleeve 1024 onto the mounting ring 1022, the elastic sleeve 1023, the mounting ring 1022, and the toothpaste receiving sleeve 1024 are combined to form a toothpaste holder. Then, the connecting sleeve 1021 is inserted from the two slides 1025 into the toothpaste mounting cavity 102, and the toothpaste holder is placed into the connecting sleeve 1021. At this time, the elastic sleeve 1023 is located inside the extrusion block 1012. The installation of toothpaste and its components is simple, the disassembly and assembly are efficient, it is easy to repair and replace independently, and the operating cost is low.

[0028] Example 2

[0029] like Figures 1-4 As shown, the extrusion block 1012 is symmetrically fixedly connected to the outside of the fixed rod 1013. Both fixed rods 1013 are slidably connected to the corresponding limiting seat 1011. The extrusion block 1012 is rotatably connected to the inside of the connecting block 1014. The connecting block 1014 is rotatably connected to the inside of the rotating shaft 1015. The drive source mounting cavity 101 is symmetrically fixedly connected to the inside of the movable seat 1016 that is used in conjunction with the rotating shaft 1015. The two ends of the rotating shaft 1015 are respectively located inside the movable seat 1016 on the same side and slide.

[0030] The drive source mounting cavity 101 has a T-shaped mounting cavity 1017 installed inside, a T-shaped circuit board 1018 installed inside the T-shaped mounting cavity 1017, a sensor 1019 installed inside the drive source mounting cavity 101, and symmetrically opened sliding grooves 1041 for use with guide sleeve 104 inside the drive source mounting cavity 101. Guide strips 1042 are symmetrically fixedly connected to the top of the guide sleeve 104. A reduction gear set 2 is installed inside the drive source mounting cavity 101, and an eccentric wheel 201 is fixedly connected to the drive end of the reduction gear set 2. The sensor 1019 and the eccentric wheel 201 are electrically connected to the T-shaped circuit board 1018.

[0031] In this embodiment, after the sensor 1019 detects the toothbrush, it illuminates the sensor light and transmits a release signal to the T-shaped circuit board 1018. The T-shaped circuit board 1018 then transmits an output signal to the reduction gear set 2, causing the reduction gear set 2 to drive the eccentric wheel 201 to rotate. When the eccentric wheel 201 rotates to its highest point, it lifts the connecting block 1014. The connecting block 1014 then drives the rotating shaft 1015 to slide inside the two movable seats 1016. The cooperation between the rotating shaft 1015 and the movable seats 1016 can limit the movement of the connecting block 1014, improving the stability of the movement. The stability of movement and reset is ensured by the connecting block 1014 driving the squeezing block 1012 to rotate. When the squeezing block 1012 rotates, it squeezes the elastic sleeve 1023. The elastic sleeve 1023 transmits the squeezing force to the toothpaste, thereby squeezing the toothpaste onto the toothbrush. After receiving the toothpaste, the toothbrush disengages from the sensor 1019. The sensor 1019 does not detect the toothbrush, thereby causing the reduction gear set 2 to drive the eccentric wheel 201 to disengage from the connecting block 1014. The connecting block 1014 automatically springs back to its original position due to its own rebound force, making it easy to reuse and highly practical.

[0032] The working principle of this embodiment: Installation steps: First: By fitting the mounting ring 1022 onto the outside of the elastic sleeve 1023, and then threading the toothpaste receiving sleeve 1024 to the mounting ring 1022, the elastic sleeve 1023, the mounting ring 1022 and the toothpaste receiving sleeve 1024 are combined to form a toothpaste holder.

[0033] Second: Insert the connecting sleeve 1021 from the two slides 1025 into the toothpaste mounting cavity 102, and then put the toothpaste holder into the connecting sleeve 1021. At this time, the elastic rubber sleeve 1023 is located inside the extrusion block 1012.

[0034] Third: Connect the T-shaped circuit board 1018 to the reduction gear set 2 and the sensor 1019, and install the sensor 1019 in the matching slot inside the drive source mounting cavity 101. Then install the T-shaped circuit board 1018 inside the T-shaped mounting cavity 1017. Then install the reduction gear set 2 inside the drive source mounting cavity 101 with screws. Finally, connect and fix the rear cover 103 to the drive source mounting cavity 101 with screws.

[0035] Fourth: Insert the guide sleeve 104 into the outside of the drive source mounting cavity 101 along the sliding groove 1041 inside the drive source mounting cavity 101.

[0036] Usage steps: First: Open the toothpaste cap to ensure the toothpaste nozzle is unobstructed, and insert the toothpaste nozzle into the toothpaste holder;

[0037] Second: Pass the toothbrush between the two guide strips 1042 and align the bristle tip of the toothbrush with the toothpaste outlet;

[0038] Third: After the sensor 1019 detects the toothbrush, it lights up the sensor light and transmits a release signal to the T-shaped circuit board 1018. The T-shaped circuit board 1018 transmits the output signal to the reduction gear set 2, causing the reduction gear set 2 to drive the eccentric wheel 201 to rotate. When the eccentric wheel 201 rotates to the highest point, it lifts the connecting block 1014. The connecting block 1014 drives the rotating shaft 1015 to slide inside the two movable seats 1016. The cooperation between the rotating shaft 1015 and the movable seats 1016 can limit the connecting block 1014, improving the stability of movement and reset. The connecting block 1014 drives the squeezing block 1012 to rotate. When the squeezing block 1012 rotates, it squeezes the elastic sleeve 1023. The elastic sleeve 1023 transmits the squeezing force to the toothpaste, thereby squeezing the toothpaste onto the toothbrush.

[0039] Fourth: After receiving the toothpaste, the toothbrush is disengaged from the sensor 1019. The sensor 1019 does not detect the toothbrush, which causes the reduction gear set 2 to drive the eccentric wheel 201 to disengage from the connecting block 1014. The connecting block 1014 automatically springs back to its original position due to its own rebound force, making it easy to use again.

[0040] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the present utility model.

Claims

1. A smart induction toothpaste squeezing machine, characterized in that: The utility model provides a toothpaste dispenser, including casing (1), the casing (1) includes drive source installation cavity (101), toothpaste installation cavity (102), back cover (103) and guide sleeve shell (104), the inside installation of toothpaste installation cavity (102) is connected with sleeve (1021), the inside movable joint of connected sleeve (1021) is toothpaste receiving sleeve (1024), the bottom of toothpaste receiving sleeve (1024) is provided with elastic rubber sleeve (1023), the outside sleeve of elastic rubber sleeve (1023) is installed ring (1022), and installed ring (1022) is screwed with toothpaste receiving sleeve (1024).

2. The intelligent induction toothpaste squeezing machine according to claim 1, characterized in that: The inside symmetry of drive source installation cavity (101) is fixedly connected with slide (1025) used in cooperation with connected sleeve (1021), the inside symmetry of drive source installation cavity (101) is fixedly connected with limit seat (1011), and extrusion block (1012) is arranged between two limit seats (1011).

3. The intelligent induction toothpaste squeezing machine according to claim 2, characterized in that: The outside symmetry of extrusion block (1012) is fixedly connected with fixed rod (1013), both fixed rod (1013) are slidably connected with corresponding limit seat (1011), the inside rotation of extrusion block (1012) is connected with connecting block (1014), the inside rotation of connecting block (1014) is connected with rotating shaft (1015), the inside symmetry of drive source installation cavity (101) is fixedly connected with movable seat (1016) used in cooperation with rotating shaft (1015), and both ends of rotating shaft (1015) are located inside the same movable seat (1016) slidably.

4. The intelligent induction toothpaste squeezing machine according to claim 1, characterized in that: The inside of drive source installation cavity (101) is installed T-shaped installation cavity (1017), the inside of T-shaped installation cavity (1017) is installed T-shaped circuit board (1018), and the inside of drive source installation cavity (101) is installed inductor (1019).

5. The intelligent induction toothpaste squeezing machine according to claim 1, characterized in that: The inside symmetry of drive source installation cavity (101) is provided with sliding groove (1041) used in cooperation with guide sleeve shell (104), and the top symmetry of guide sleeve shell (104) is fixedly connected with guide strip (1042).

6. The intelligent induction toothpaste squeezing machine according to claim 1, characterized in that: The inside of drive source installation cavity (101) is installed speed reducer gear set (2), and the driving end of speed reducer gear set (2) is fixedly connected with eccentric wheel (201).

7. The intelligent induction toothpaste squeezing machine according to claim 4, characterized in that: The inductor (1019) and eccentric wheel (201) are electrically connected with T-shaped circuit board (1018).

Citation Information

Patent Citations

  • Toothpaste squeezer

    CN211337059U