Air outlet structure of stirrer

By designing an intermediate shell and inclined baffle structure at the air outlet of the mixer, the direction of hot air is changed, solving the problem of hot air blowing directly on the operator and improving safety and ease of operation.

CN223669132UActive Publication Date: 2025-12-16ZHEJIANG BURLEY TOOLS
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Patent Information

Application Number
CN202520053788.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-10
Publication Date
2025-12-16
Estimated Expiration
2035-01-10

AI Technical Summary

Technical Problem

Existing mixers blow hot air directly at the operator from the vent, causing discomfort and the risk of burns, and lack an effective airflow direction adjustment mechanism.

Method used

Design an air outlet structure including a middle shell and a baffle. The baffle is integrally formed or connected to the middle shell and tilted at a 45° angle to change the air outlet direction and prevent hot air from blowing directly on the operator. A fluorescent layer is coated on the baffle to facilitate the identification of the air outlet location.

Benefits of technology

It effectively changes the airflow direction, preventing hot air from blowing directly on the operator, improving safety, reducing the risk of burns, and enhancing visibility in low-light environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the field of air outlet structures of stirrers, and particularly relates to an air outlet structure of a stirrer. A middle shell with an air outlet is arranged between the first shell and the second shell; and a baffle plate for changing the air outlet direction of the air outlet is arranged on the middle shell and is used for changing the air direction of the air outlet. The baffle mainly covers the part, facing an operator, of the middle shell, hot air is prevented from being blown to the operator, the middle shell is embedded between the first shell and the second shell, disassembly is convenient, fastening screws are reduced, and cost is reduced. The baffle is further coated with the fluorescent layer, so that the position of the air outlet can be clearly seen under the condition that light is not bright, and the situation that the skin touches the area, and consequently an operator feels uncomfortable is avoided.
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Description

TECHNICAL FIELD

[0001] The application belongs to the field of mixer air outlet structure, and particularly relates to a mixer air outlet structure. BACKGROUND

[0002] The handheld mixer is a common mixing equipment, and has portability. When operating, an operator holds the mixer handle to perform mixing operation. An air outlet and an air inlet are arranged on the shell of the mixer. Cold air enters the mixer through the air inlet to cool the motor. Hot air with a temperature flies out of the air outlet. After the motor works for a period of time, the temperature of the motor is relatively high, and the temperature of the air flying out of the air outlet is also relatively high. At present, the air outlet is a hole opened on the mixer shell. Since the operator is very close to the mixer, the hot air flying out can directly blow to the body of the operator, causing the operator to be uncomfortable. If the operator maintains the same posture to operate the mixer, the hot air of the air outlet continuously blows to a certain part of the body, and it is also possible to cause a burn. SUMMARY

[0003] The purpose of the embodiment of the application is to provide a mixer air outlet structure which can change the air flow direction of the air outlet, so that the hot air flow of the air outlet does not directly blow to a person operating the mixer.

[0004] The embodiment of the application provides a mixer air outlet structure, which comprises a first shell and a second shell, and an intermediate shell with an air outlet is arranged between the first shell and the second shell. A baffle which changes the air outlet direction of the air outlet is arranged on the intermediate shell, so as to change the air direction of the air outlet. The baffle mainly covers a part of the intermediate shell facing the operator, so as to avoid the hot air blowing to the operator. It is also preferred that the baffle covers the air outlet on the periphery of the intermediate shell.

[0005] The angle between the inclination angle of the baffle and the central axis of the intermediate shell is preferably an acute angle. The angle between the inclination angle of the baffle and the central axis of the intermediate shell is preferably 45 degrees. The 45 degrees can make the air blow horizontally through the baffle and then blow vertically downward. The baffle is preferably located on the periphery of the intermediate shell, and the baffle is uniformly surrounded on the periphery of the intermediate shell. The baffle and the intermediate shell are preferably integrally formed, so as to facilitate manufacturing. The baffle and the intermediate shell can also be a split structure, such as an embedded mode or an adhesive mode. The intermediate shell is embedded between the first shell and the second shell, so as to facilitate disassembly, reduce fastening screws, and reduce costs.

[0006] The baffle is preferably coated with a fluorescent layer. The fluorescent coating on the baffle can make the position of the air outlet clear in the case of unclear light, so as to avoid the skin touching the area and causing the operator to be uncomfortable. BRIEF DESCRIPTION OF DRAWINGS

[0007] Figure 1is a whole structure schematic diagram of a blender disclosed by the embodiment of the present application;

[0008] Figure 2 is a middle shell structure schematic diagram;

[0009] Figure 3 is a middle shell cross-section structure schematic diagram;

[0010] Figure 4 is a middle shell air flow direction structure schematic diagram;

[0011] Mark explanation: 100-power system; 200-second shell; 210-fan; 220-transmission system; 230-output system; 300-first shell; 400-middle shell; 410-baffle; 411-air outlet; 412-edge. DETAILED DESCRIPTION

[0012] Embodiment

[0013] The technical solutions in the embodiments of the present application will be clearly described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art belong to the scope of protection of the present application.

[0014] The blender air outlet structure provided by the embodiments of the present application will be described in detail below by specific embodiments and application scenarios in combination with the drawings.

[0015] Reference Figures 1-4 The blender air outlet structure provided by the embodiments of the present application comprises:

[0016] The first shell 300 and the second shell 200 are provided with a middle shell 400 with an air outlet 411 between the first shell 300 and the second shell 200. In combination with Figures 2-4 The middle shell 400 is provided with a baffle 410 for changing the air outlet direction of the air outlet 411. The baffle 410 is preferably integrally formed with the middle shell 400, of course, the baffle 410 can also be a separate component connected with the middle shell 400, and its main function is to change the air direction of the air outlet 411; and the changed air direction is towards the direction of the stirring head, that is, Figure 1 towards the direction of the output system 230. Reduce the influence of hot air on the operator.

[0017] The baffle 410 covers at least a part of the periphery of the middle shell 400. In combination with Figure 2The baffle 410 can be arranged on a part of the periphery of the middle shell 400, for example, the baffle 410 can be arranged on one side of the middle shell 400, or the baffle 410 can be arranged on an arc of the arc-shaped middle shell 400. The part blocked by the baffle 410 needs to be between the blender main body and the operator, so that the hot air flow can be avoided from affecting the operator.

[0018] The angle between the inclined angle B of the baffle 410 and the central axis A of the middle shell is an acute angle. Preferably, the angle between the inclined angle B of the baffle 410 and the central axis A of the middle shell is 45°, in combination with Figure 2 , β is the angle between the inclined angle B of the baffle 410 and the central axis A of the middle shell, the angle between the inclined angle B of the baffle 410 and the central axis A of the middle shell cannot be 0° and 90°, and the acute angle can ensure that the hot air outlet from the air outlet 411 is overflowed at an angle away from the operator, thereby ensuring a good use experience.

[0019] As shown in Figure 2 , the baffle 410 is located on the periphery of the middle shell 400, and the baffle 410 uniformly surrounds the periphery of the middle shell 400. In this way, no matter which side of the blender the operator is on, the operator will not be uncomfortable due to the hot air. The baffle 410 is integrally formed with the middle shell 400. In combination with Figure 1 , the middle shell 400 is embedded between the first shell 300 and the second shell 200. This facilitates disassembly, reduces fastening screws, and reduces costs.

[0020] The baffle 410 is also coated with a fluorescent layer. The arrangement of the fluorescent coating on the baffle 410 can make the position of the air outlet 411 clear in the case of unclear light, thereby avoiding the skin from touching the area and causing discomfort to the operator.

[0021] The embodiments of the present application are described above in combination with the drawings, but the present application is not limited to the above specific embodiments, and the above specific embodiments are only illustrative and not restrictive. Those skilled in the art can make many forms under the inspiration of the present application without departing from the scope of the present application and the scope of protection of the claims, and all of them belong to the protection of the present application.

Claims

1. A blender air outlet structure, characterized by, Comprise: First and second shells, the first and second shells are provided with an intermediate shell with air outlet; The intermediate shell is provided with a baffle to change the air outlet direction.

2. The blender outlet structure of claim 1, wherein, The baffle covers at least a part of the periphery of the intermediate shell.

3. The blender outlet structure of claim 2, wherein, The angle between the inclination angle of the baffle and the central axis of the intermediate shell is an acute angle.

4. The blender outlet structure of claim 3, wherein, The angle between the inclination angle of the baffle and the central axis of the intermediate shell is 45°.

5. The blender outlet structure of claim 2, wherein, The baffle is located on the periphery of the intermediate shell, and the baffle uniformly surrounds the periphery of the intermediate shell.

6. The blender outlet structure of claim 2, wherein, The baffle is integrally formed with the intermediate shell.

7. The blender outlet structure of claim 1, wherein, The intermediate shell is embedded between the first and second shells.

8. The blender outlet structure of claim 2, wherein, The baffle is also coated with a fluorescent layer.