A blender discharge structure
The modular design of the blender's outlet structure solves the problems of complex outlet structure, insufficient sealing, and inconvenient operation, achieving convenient operation, good sealing, and easy maintenance, thus improving the user experience of the blender.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ANHUI DEMLER TECH CO LTD
- Filing Date
- 2025-08-28
- Publication Date
- 2026-07-21
AI Technical Summary
Existing smoothie machines have complex discharge port structures, insufficient sealing, inconvenient operation, and difficult maintenance, making it difficult to meet the demand for rapid discharge.
It adopts a modular design of material bucket, handle, discharge port cover, sealing ring and nozzle cover, combined with hinge structure and torsion spring to realize automatic reset and damping adjustment of the discharge port. The opening and closing of the discharge port is controlled by the handle, and the sealing ring is set to ensure the sealing performance.
It features a simple structure, convenient operation, good sealing, adaptability to different discharge requirements, and easy maintenance, thereby improving the user experience and practicality of the equipment.
Smart Images

Figure CN224522299U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of smoothie machine technology, specifically to a smoothie machine discharge port structure. Background Technology
[0002] A smoothie maker is a food processing device widely used in beverage shops, restaurants, and homes. It is mainly used to mix and blend ingredients such as ice, fruit, and dairy products to create smoothies or chilled drinks. A traditional smoothie maker typically consists of a motor, a blade assembly, a mixing cup, and a discharge device. Its working principle involves high-speed rotating blades to crush and mix the ice and other ingredients evenly, ultimately discharging the finished product through the outlet.
[0003] In existing technologies, the discharge port structure of some smoothie machines is relatively complex, especially in commercial models. They typically employ detachable or adjustable discharge control devices to meet the discharge requirements of smoothies with varying viscosities. However, this design has the following problems: Complex structure and difficult maintenance: The discharge port of some models adopts a multi-component combination structure (such as valves, baffles, sealing rings, etc.), which not only increases the manufacturing cost, but also makes the components prone to wear or blockage due to long-term use, affecting the smoothness of discharge and increasing the difficulty of cleaning and maintenance.
[0004] Insufficient sealing: Complex discharge structure may lead to poor sealing, which can easily cause leakage when stirring highly fluid liquids, affecting the user experience.
[0005] Inconvenient operation: Some models require manual adjustment of the opening and closing of the discharge port, which increases the number of operation steps and reduces work efficiency, especially during peak hours when it is difficult to meet the demand for rapid discharge.
[0006] Therefore, there is an urgent need for a simple, well-sealed, and easy-to-operate design for the discharge port of a smoothie machine to improve the practicality of the equipment and the user experience. Utility Model Content
[0007] The purpose of this invention is to provide a discharge port structure for a smoothie machine to solve the problem of complex discharge port structures in existing smoothie machines.
[0008] To achieve the above objectives, the technical solution of this utility model is as follows: A slush machine discharge port structure includes a material bucket, a handle, a discharge port cover, a sealing ring, and a nozzle cover. The material bucket has a discharge port at its front end. Fixed plates are respectively provided on both sides of the material bucket at the discharge port. The handle is hinged between the two fixed plates. The discharge port cover is hinged between the two fixed plates. One end of the discharge port cover is connected to the handle, and the other end of the discharge port cover is sealed to the discharge port. The sealing ring is provided at the end of the discharge port cover connected to the discharge port. The nozzle cover is detachably connected to the two fixed plates.
[0009] Preferably, a first pivot is provided between the upper surfaces of the two fixed plates, and the first pivot passes through the handle so that the handle is hinged between the two fixed plates.
[0010] Preferably, a second rotating shaft is provided between the two fixed plates, and the second rotating shaft passes through the discharge port cover, so that the discharge port cover is hinged between the two fixed plates.
[0011] Preferably, a torsion spring is provided between the discharge port cover and the material bucket.
[0012] Preferably, the handle includes a front cover and a rear cover, both of which have a waist-shaped hole in the middle; positioning ribs are provided inside the front cover and the rear cover.
[0013] Preferably, it also includes a connecting shaft, a clamping part is provided below the handle rear cover, one end of the discharge port cover is inserted into the clamping part, and the connecting shaft passes through the clamping part and the discharge port cover.
[0014] Preferably, the nozzle cover has a transparent viewing window at its front end.
[0015] Preferably, the nozzle cover is snapped together with the two fixing plates.
[0016] Compared with the prior art, the discharge port structure of the slush machine of this application has the following advantages: 1. Simple structure and easy operation: The modular design of the material bucket, handle, discharge port cover, sealing ring and nozzle cover makes the overall structure compact and easy to assemble. Users can easily control the opening and closing of the discharge port through the handle, simplifying the operation process.
[0017] 2. Good sealing performance: A sealing ring is installed between the discharge port cover and the discharge port to effectively prevent ice and sand leakage and ensure hygiene and cleanliness during equipment operation.
[0018] 3. Flexible and adjustable: The handle and the discharge port cover are linked by a hinge structure. With the help of a torsion spring, automatic reset or damping adjustment can be achieved to adapt to different discharge needs and improve the user experience.
[0019] 4. Easy maintenance: The nozzle cover and the fixing plate are detachable, making it easy to clean or replace; the transparent window design also allows for intuitive observation of the discharge status, making it convenient for monitoring.
[0020] 5. Ergonomic optimization: The handle adopts a split design and is equipped with waist-shaped holes and positioning ribs to enhance grip comfort and operational stability, and reduce fatigue during long-term use. Attached Figure Description
[0021] Figure 1 A schematic diagram of the discharge port structure of a smoothie machine provided in this embodiment of the present invention; Figure 2 An exploded view of the discharge port structure of a smoothie machine provided in this embodiment of the present invention; Figure 3 This is a schematic diagram of the handle and discharge port cover provided in an embodiment of the present utility model. Detailed Implementation
[0022] The following detailed description illustrates the specific implementation method: The reference numerals in the accompanying drawings include: 1. Material bucket; 2. Handle; 3. Discharge port cover; 4. Sealing ring; 5. Nozzle cover; 6. Discharge port; 7. Fixing plate; 8. First rotating shaft; 9. Second rotating shaft; 10. Torsion spring; 11. Handle front cover; 12. Handle rear cover; 13. Waist-shaped hole; 14. Positioning rib; 15. Connecting shaft; 16. Clamping part; 17. Transparent window.
[0023] As attached Figure 1-3 As shown in the figure, this embodiment demonstrates a slush machine outlet structure. The structure is reasonably designed and easy to operate, effectively controlling the discharge and sealing of slush, while also being easy to disassemble and clean. It is suitable for commercial or household slush machines.
[0024] The slush machine's outlet structure in this embodiment mainly includes a material tank 1, a handle 2, an outlet cover 3, a sealing ring 4, and a nozzle cover 5. The front end of the material tank 1 has an outlet 6 for discharging slush. Fixing plates 7 are fixed to both sides of the outlet 6, and the handle 2 and the outlet cover 3 are hinged between the two fixing plates 7. The handle 2 and the outlet cover 3 are linked; rotating the handle 2 controls the opening and closing of the outlet cover 3, thereby opening and closing the outlet 6.
[0025] The second pivot 9 of the discharge port cover 3 is hinged between the two fixed plates 7. The lower end of the discharge port cover 3 contacts the discharge port 6 and is provided with a sealing ring 4 to ensure sealing when closed. The handle 2 is hinged above the fixed plate 7 via the first pivot 8, and its lower end is connected to the discharge port cover 3 via a connecting shaft 15.
[0026] When discharge is needed, the user pulls the handle 2 downwards. The handle 2 rotates around the first rotating shaft 8, and through the connecting shaft 15, it drives the discharge port cover 3 to rotate upwards around the second rotating shaft 9, thereby disengaging the discharge port cover 3 from the discharge port 6 and opening the discharge channel. At this time, the slush can flow smoothly out of the material bucket 1.
[0027] When discharging stops, the user releases handle 2, at which point the torsion spring 10 located between the discharge port cover 3 and the material bucket 1 comes into play. The elastic restoring force of the torsion spring 10 drives the discharge port cover 3 to rotate downward around the second rotating shaft 9, causing it to re-fit against the discharge port 6 and achieve a tight seal through the sealing ring 4, preventing ice and sand leakage.
[0028] The handle 2 features a split design, comprising a front cover 11 and a rear cover 12, secured by screws or clips. Both the front and rear covers have a waist-shaped hole 13 in the center for easier grip and enhanced operating comfort. Furthermore, the handle 2 incorporates internal positioning ribs 14 to improve structural strength and prevent deformation after prolonged use. A clamping part 16 is located below the rear cover 12; one end of the discharge port cover 3 is inserted into the clamping part 16 and secured by a connecting shaft 15, ensuring stable linkage between the handle 2 and the discharge port cover 3.
[0029] The nozzle cover 5 is fixed between the two fixing plates 7 by a snap-fit connection, making it easy for users to disassemble, clean, or replace. The front end of the nozzle cover 5 is provided with a transparent viewing window 17, which allows users to directly observe the output status of the ice slush and easily control the output amount.
[0030] During discharge: The user presses down on handle 2, which causes the discharge port cover 3 to flip upward, opening the discharge port 6 and allowing the shaved ice to flow out.
[0031] When discharging stops: the user releases handle 2, the torsion spring 10 automatically rebounds, causing the discharge port cover 3 to return to its original position downwards, and the sealing ring 4 presses against the discharge port 6 to achieve a sealed closure.
[0032] During cleaning and maintenance: The removable nozzle cover 5 facilitates thorough cleaning of the discharge channel, preventing residue buildup from affecting hygiene.
[0033] The slush machine of this embodiment features a discharge port structure that allows for easy opening and closing of the discharge port 6 with just one hand by controlling the handle 2, making it suitable for fast-paced commercial environments. The sealing ring 4, in conjunction with the torsion spring 10, ensures leak-free operation when closed, maintaining the freshness of the slush. The nozzle cover 5 is removable for easy cleaning and meets food hygiene requirements. The design of the fixing plate 7, rotating shaft, and connecting shaft 15 enhances overall durability and reduces wear after prolonged use.
[0034] The discharge port structure of the smoothie machine in this embodiment has been significantly improved in terms of functionality, practicality, and user experience, and is especially suitable for smoothie making scenarios that require frequent operation and cleaning.
[0035] The above descriptions are merely embodiments of this utility model, and common knowledge regarding specific structures and characteristics is not elaborated upon here. It should be noted that those skilled in the art can make various modifications and improvements without departing from the structure of this utility model, and these should also be considered within the scope of protection of this utility model. These modifications will not affect the effectiveness of the implementation of this utility model or the practicality of the patent. The scope of protection claimed in this application shall be determined by the content of its claims, and the specific embodiments described in the specification can be used to interpret the content of the claims.
Claims
1. A discharge port structure for a smoothie machine, characterized in that: The device includes a material bucket (1), a handle (2), a discharge port cover (3), a sealing ring (4), and a nozzle cover (5). The material bucket (1) has a discharge port (6) at its front end. The material bucket (1) has fixing plates (7) on both sides of the discharge port (6). The handle (2) is hinged between the two fixing plates (7). The discharge port cover (3) is hinged between the two fixing plates (7). One end of the discharge port cover (3) is connected to the handle (2), and the other end of the discharge port cover (3) is sealed to the discharge port (6). The sealing ring (4) is located at the end of the discharge port cover (3) connected to the discharge port (6). The nozzle cover (5) is detachably connected to the two fixing plates (7).
2. The discharge port structure of a smoothie machine according to claim 1, characterized in that: A first pivot (8) is provided between the upper parts of the two fixed plates (7), and the first pivot (8) passes through the handle (2) so that the handle (2) is hinged between the two fixed plates (7).
3. The discharge port structure of a smoothie machine according to claim 1 or 2, characterized in that: A second rotating shaft (9) is provided between the two fixed plates (7), and the second rotating shaft (9) passes through the discharge port cover (3), so that the discharge port cover (3) is hinged between the two fixed plates (7).
4. The discharge port structure of a smoothie machine according to claim 3, characterized in that: A torsion spring (10) is provided between the discharge port cover (3) and the material bucket (1).
5. The discharge port structure of a smoothie machine according to claim 1, characterized in that: The handle (2) includes a front cover (11) and a rear cover (12). Both the front cover (11) and the rear cover (12) have a waist-shaped hole (13) in the middle. The front cover (11) and the rear cover (12) have positioning ribs (14) inside.
6. The discharge port structure of a smoothie machine according to claim 5, characterized in that: It also includes a connecting shaft (15), a clamping part (16) is provided below the handle back cover (12), one end of the discharge port cover (3) is inserted into the clamping part (16), and the connecting shaft (15) is provided through the clamping part (16) and the discharge port cover (3).
7. The discharge port structure of a smoothie machine according to claim 1, characterized in that: A transparent window (17) is provided at the front end of the nozzle cover (5).
8. The discharge port structure of a smoothie machine according to claim 1, characterized in that: The nozzle cover (5) is snapped together with the two fixing plates (7).