Pet air blower

WO2026179767A1PCT designated stage Publication Date: 2026-09-03XIE CHENGLING
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Patent Information

Application Number
PCT/CN2026/078854
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2025-02-28
Filing Date
2026-02-12
Publication Date
2026-09-03

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    Figure CN2026078854_03092026_PF_FP_ABST
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Abstract

A pet air blower, relating to the technical field of pet care devices. The pet air blower comprises: a main body (1); an airflow passage (2) located in the main body (1); an airflow control assembly (3) located in the main body (1); and an air outlet (4) provided at a first region (101) of the main body (1), wherein the first region (101) is a wall surface of the main body (1), the airflow passage (2) is communicated with the air outlet (4), and the aspect ratio of the air outlet (4) is greater than 10:1. The pet air blower provides daily blowing care for a pet by means of an airflow having strong fluidity, helping the pet regulate body temperature and maintain comfort, thereby ensuring physical and mental health of the pet. The pet air blower can satisfy the sniffing instinct of the pet for flowing air, bringing comfort and entertainment experience to the pet. The air blower provides physical and mental care for the pet while having the functions of regulating body temperature and providing psychological comfort.
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Description

A pet ventilation machine Technical Field

[0001] This invention belongs to the field of pet care machine technology, specifically relating to a pet ventilation machine. Background Technology

[0002] As pets become increasingly important members of families, pet-specific hair dryers are gaining attention. The primary function of pet hair dryers is usually to dry pets, while also helping to groom their fur and skin. These hair dryers mostly employ designs similar to those used by humans, aiming to provide airflow to meet the drying needs of pets after bathing. However, for pets, especially dogs, hair drying is an essential and indispensable part of daily grooming. Dogs need at least three 15-minute hair dryers daily. This not only helps them dissipate heat and maintain a comfortable body temperature but also effectively promotes skin health and coat conditioning. Furthermore, dogs have a strong sensitivity to smells and airflow; they instinctively enjoy smelling moving air, which is not only related to their exploration of their environment and recognition of scents but also provides a sense of psychological comfort.

[0003] However, existing pet hair dryers have significant shortcomings in this regard. Traditional hair dryers typically use a cylindrical air outlet design, which leads to several problems: First, uneven airflow distribution. The airflow from a cylindrical outlet is usually concentrated, covering a narrow area. Such airflow can easily make pets uncomfortable and even cause fear, especially when the airflow is concentrated on sensitive areas. Second, the airflow travel is short. Traditional hair dryers usually have a short airflow distance, causing the airflow to quickly attenuate within a short distance, making it difficult to effectively cover a large area of ​​the pet's body and fully meet the pet's need for flowing air. Therefore, existing hair dryer designs have significant deficiencies in meeting the needs of pet grooming, behavioral habits, and providing a comfortable airflow experience. Summary of the Invention

[0004] To address the aforementioned problems in the prior art, this invention provides a pet ventilation generator.

[0005] To achieve the above objectives, the technical solution adopted by the present invention is as follows:

[0006] A pet ventilation device is provided, comprising:

[0007] main body;

[0008] Airflow channels located inside the main body;

[0009] Airflow control components located inside the main body;

[0010] The air outlet is located in the first area of ​​the main body;

[0011] The first region is a wall surface of the main body;

[0012] The airflow channel is connected to the air outlet, and the length-to-width ratio of the air outlet is greater than 10:1.

[0013] Preferably, the width of the air outlet is in the range of 1mm to 5mm.

[0014] Preferably, it includes:

[0015] Air inlets located in the first or second zone;

[0016] The second region is a wall surface of the main body, and this wall surface is different from the wall surface of the first region;

[0017] The airflow channel includes at least one arc-shaped channel;

[0018] Furthermore, the gaseous medium enters the airflow channel through the air inlet, and is discharged from the air outlet after passing through the arc-shaped channel.

[0019] Preferably, the airflow channel includes a first linear channel and a second linear channel;

[0020] The first linear channel is connected to the air inlet and also to the arc-shaped channel;

[0021] The first linear channel is connected to the arc-shaped channel and also to the air outlet.

[0022] The gas medium flows in a first direction in the first linear channel in the opposite direction to the second direction in the first linear channel.

[0023] Preferably, the airflow channel includes a rectifier channel;

[0024] The rectifier channel is connected between the first linear channel and the air outlet;

[0025] Furthermore, the airflow control component is disposed within the rectifying channel;

[0026] In this process, the gas medium flows in the third direction of the rectifier channel, which is parallel or nearly parallel to the inlet direction of the air inlet.

[0027] Preferably, the rectifier channel includes a main channel and a mezzanine channel;

[0028] The interlayer channel is an annular flow channel formed between the main channel and the inner wall of the main body;

[0029] Furthermore, the airflow control component is located within the main channel.

[0030] Preferably, the port of the main channel facing the first linear channel has a wavy profile extending along the axial direction of the main channel;

[0031] The wavy contour has its peaks and troughs alternating circumferentially, forming a variable curved surface structure.

[0032] Preferably, the airflow channel includes a compression channel;

[0033] The compression channel is connected between the rectifier channel and the air outlet;

[0034] The compression channel is constructed as a gradient structure;

[0035] In the axial section along the airflow direction, the cross-sectional height of the compression channel gradually increases from the inlet end to the outlet end, while the cross-sectional width gradually decreases.

[0036] Preferably, the main body is a rectangular structure, or a rectangular structure with rounded corners;

[0037] The main body has a hollow area in the middle, which divides the main body into two symmetrical parts along the center line, and keeps the two parts as a whole.

[0038] Preferably, the symmetrical portion of the main body is configured as follows:

[0039] In the first usage state, the first part is close to the target object;

[0040] The first part includes the first region and the second region;

[0041] The first region is the outer wall surface of the first part facing the target object;

[0042] The second region is the inner wall surface of the hollowed-out region in the first part.

[0043] Preferably, the symmetrical portion of the main body is configured as follows:

[0044] In the first state of use, the second part is close to the operator;

[0045] Furthermore, the second part has a third area for the operator to hold;

[0046] The cross-section of the third region is rhomboid;

[0047] The third region is formed by the area of ​​the hollowed-out region extending towards the operator to the side wall of the second part.

[0048] Preferably, it includes a first power supply module disposed inside the main body;

[0049] The first power supply module is used to provide electrical energy to the airflow control component;

[0050] The first power supply module is powered by wired charging.

[0051] Preferably, it includes a second power supply module;

[0052] The second power supply module is used to provide electrical energy to the first power supply module;

[0053] The second power supply module provides a second operating state;

[0054] In the second usage state, the main body is placed on the second power supply module and is automatically or manually started without the need for operator intervention.

[0055] Preferably, the second power supply module has a slot that matches the shape and size of the corner of the main body;

[0056] The diagonal of the main body is coaxial with the centerline of the groove.

[0057] Preferably, a charging port is provided on the inner wall surface of the slot;

[0058] The corner of the main body is provided with a charging interface corresponding to the charging port of the slot to realize power transmission.

[0059] Preferably, it includes a lamp module, which is disposed on the main body and located on the end face opposite to the charging port;

[0060] The light module is a colored light, using colors that dogs can recognize;

[0061] The lamp module is powered on and illuminated by a switch on one side of the main body.

[0062] This invention provides a pet ventilation device, and the beneficial effects of this invention are as follows:

[0063] By using a highly mobile airflow, a ventilation system provides daily air conditioning for pets, helping them regulate their body temperature and maintain comfort, thus ensuring their physical and mental well-being. Furthermore, the ventilation system satisfies pets' natural olfactory instincts for moving air, bringing them psychological comfort and entertainment. For pets, especially dogs, moving air not only brings pleasure but also helps them relax, reduces anxiety, and avoids discomfort caused by stagnant air. In short, a ventilation system provides physical and mental care for pets while also regulating body temperature and ensuring psychological comfort, making it an indispensable part of daily pet care. Attached Figure Description

[0064] Figure 1 is one of the perspective views of the pet ventilation machine proposed in this invention;

[0065] Figure 2 is a second perspective view of the pet ventilation machine proposed in this invention;

[0066] Figure 3 is a cross-sectional view of the structure shown in Figure 1;

[0067] Figure 4 is a third perspective view of the pet ventilation machine proposed in this invention;

[0068] Figure 5 is a front view of the structure shown in Figure 4;

[0069] Figure 6 is an assembly diagram of the pet ventilation fan and the second power supply module proposed in this invention.

[0070] Explanation of reference numerals in the attached figures:

[0071] 1. Main body; 101. First area; 102. Second area; 103. Hollowed-out area; 104. First part; 105. Second part; 2. Airflow channel; 201. Arc-shaped channel; 202. First linear channel; 203. First linear channel; 204. Rectifying channel; 2041. Main channel; 2042. Mezzanine channel; 2043. Port; 205. Compression channel; 3. Airflow control component; 4. Air outlet; 5. Air inlet; 6. First power supply module; 7. Second power supply module; 701. Slot; 8. Circular lamp module. Detailed Implementation

[0072] 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.

[0073] Please refer to Figures 1-6. The specific embodiments provided by the present invention are as follows:

[0074] Referring to Figures 1-3, in this embodiment, the air ventilator should be understood as a blower-type grooming device specifically designed for pets. Its main function is to provide daily grooming for pets through a highly mobile airflow, helping them regulate their body temperature and maintain comfort. Dogs and other pets may experience discomfort due to overheating, especially in warmer environments. The gentle airflow from the air ventilator effectively helps pets dissipate heat, maintain a suitable body temperature, and thus ensure their physical and mental health. Furthermore, the air ventilator simulates a natural wind environment, satisfying pets' olfactory instincts for moving air and providing them with psychological comfort and entertainment. For pets, especially dogs, moving air not only brings pleasure but also helps them relax, reduce anxiety, and avoid discomfort caused by stagnant air. In short, the air ventilator provides physical and mental care for pets while also regulating body temperature and providing psychological comfort, making it an indispensable part of daily pet care.

[0075] The air generator has a main body 1, which should be understood as a shell, with an installation space and an airflow channel 2 inside. The installation space is used to accommodate the airflow control components 3, while the airflow channel 2 is used to guide the airflow and communicate with the air outlet 4 of the main body 1. The air outlet 4 is located in a first region 101 of the main body 1, which is a wall surface of the main body 1. The air outlet 4 adopts a slit-type structure with a width ranging from 1 mm to 5 mm. Through this slit-type design, the airflow is significantly compressed when passing through the air outlet 4, thereby increasing the airflow velocity.

[0076] Based on this, by increasing airflow velocity, the air generator can provide a better pet care experience in several ways. First, high-speed airflow can extend the airflow's travel distance. By overcoming the resistance of the surrounding air and maintaining high kinetic energy, it can extend the airflow's propagation range, allowing the air generator to cover a larger area where the pet is active, thus providing the pet with a continuously flowing air experience.

[0077] Secondly, increasing airflow speed helps enhance its penetrating power. High-speed airflow can effectively penetrate pet fur, reaching deep into the underlying layers to provide better care support, especially suitable for pets with thick fur. In this way, the fan can not only regulate the pet's body temperature but also enhance their skin comfort.

[0078] Furthermore, increasing airflow velocity improves airflow guidance and stability. Through the slit-shaped air outlet, airflow is compressed and forms a directional, high-velocity flow, reducing airflow turbulence and resulting in more uniform and directional airflow. This design ensures that airflow precisely targets the pet's desired area, enhancing the care effect, avoiding airflow dispersion and instability, and ensuring the pet always experiences stable airflow.

[0079] Finally, high-velocity airflow can enhance the interactive experience for pets. The intensity and direction of the airflow can attract the pet's attention, prompting them to actively approach or try to sniff, thereby enhancing their entertainment experience and sense of participation. This interaction not only satisfies the pet's olfactory instincts but also reduces the fear or discomfort that traditional blowers may cause, further increasing the pet's acceptance of blower grooming and making it a pleasant daily grooming activity.

[0080] As shown in the figure, the slit structure is a structure in which the outlet is designed as a slender opening with a width much smaller than its length. By compressing the fluid, it can significantly increase the fluid velocity and form a flow effect with strong directionality, long stroke and certain uniformity.

[0081] Referring to Figures 1-2, the air generator includes an air inlet 5 located in either the first region 101 or the second region 102. The first region 101 and the second region 102 are different walls of the main body 1, wherein the wall of the second region 102 is different from the wall of the first region 101. The air inlet 5 is used for the entry of gaseous media, providing a stable air source for the subsequent airflow channel 2.

[0082] The airflow channel 2 is located inside the main body 1 and includes at least one arc-shaped channel 201. The arc-shaped channel 201, through its curved design, allows for directional adjustment and optimization of the airflow during its flow. Specifically, the gas medium enters the airflow channel 2 inside the main body 1 through the air inlet 5, and after being guided and rectified by the arc-shaped channel 201, it is finally discharged from the air outlet 4 located in the first region 101.

[0083] Based on this, on the one hand, the airflow direction can be optimized. The curved channel 201 guides and adjusts the incoming airflow through its curved structure, so that the airflow can smoothly reach the outlet 4 from the air inlet 5, avoiding the airflow turbulence problem that may be caused by the straight airflow channel 2.

[0084] On the one hand, it can improve airflow stability. The curved design of the arc-shaped channel 201 helps to smooth the airflow, reduce turbulence, and make the exhaust airflow more uniform and stable.

[0085] On the one hand, the curved design of the arc channel 201 enhances the compactness of the equipment, achieving a longer airflow path within the limited internal space of the main body 1, improving the airflow efficiency of the equipment, and providing a more compact layout for the overall structure of the equipment.

[0086] In summary, this embodiment, by designing an arc-shaped channel 201 inside the main body 1, allows the gas medium to enter from the air inlet 5 and exit through the air outlet 4 under optimized path guidance, thereby achieving efficient airflow guidance and distribution. This design not only improves the flow characteristics of the airflow but also enhances the overall performance of the air generator, providing pets with a more comfortable airflow experience.

[0087] Furthermore, the fan is designed as a compact device, roughly the size of a user's palm. Through a highly efficient airflow control component 3 and an optimized airflow channel 2, air enters the optimized airflow channel 2 from the inlet and is accelerated through a vortex to form a strong airflow. During this process, the airflow undergoes acceleration and concentration within the channel, ultimately exiting at a high speed from the outlet, thereby enhancing the fan's blowing effect and airflow concentration. This ensures that the device can still provide efficient airflow output within a compact size, improving the user experience.

[0088] Furthermore, each corner within the optimized airflow channel 2 features a smooth, rounded transition to reduce kinetic energy loss during turns. In traditional designs, sharp corners often cause drastic changes in airflow, resulting in airflow vortices and energy loss, thus weakening wind power output. By optimizing the corners into rounded shapes, the airflow can turn more smoothly, reducing friction and vortices within the channel and significantly improving airflow smoothness and stability.

[0089] Furthermore, after transitioning through the arc, the airflow continues to accelerate along the optimized airflow channel 2, further enhancing the airflow output kinetic energy and efficiency. This not only increases wind speed and volume but also reduces operating noise to some extent, improving the user experience.

[0090] Based on this, the wind generator provided in this embodiment can achieve powerful wind output in a small structure, creating a hurricane effect within a range of up to 2 meters. This design not only provides pets with a completely new airflow experience, but also brings convenience and fun to users.

[0091] Specifically, the fan is about the size of a palm, compact yet powerful, making it easy for users to hold and operate with one hand. Its lightweight design not only reduces fatigue during use but also enhances portability, allowing users to provide services for their pets anytime, anywhere.

[0092] By combining the high-efficiency airflow control component 3 with the precision airflow channel 2, the device can generate high-velocity airflow within a limited space. The slit-type design of the air outlet 4 further compresses the airflow, significantly increasing the wind speed, enabling the airflow to maintain strong power and directionality within a 2-meter range.

[0093] This hurricane effect satisfies a pet's natural instincts, allowing them to experience the joy of flowing air from a greater distance and enhancing their entertainment experience.

[0094] Referring to Figures 3-4, the airflow channel 2 includes a first linear channel 202, a first linear channel 203, and an arc-shaped channel 201. The inlet of the first linear channel 202 is connected to the air inlet 5, and the outlet is connected to one end of the arc-shaped channel 201; the inlet of the first linear channel 203 is connected to the other end of the arc-shaped channel 201, and the outlet is connected to the air outlet 4. Through the above layout design, the gas medium can be efficiently guided and flowed within the airflow channel 2.

[0095] Specifically, the gaseous medium first enters the first linear channel 202 through the air inlet 5, and then enters the arc-shaped channel 201 along the first flow direction of the first linear channel 202. After passing through the arc-shaped channel 201, the airflow direction changes, and it continues to flow along the second flow direction of the first linear channel 203, finally being discharged from the air outlet 4. It should be noted that the first flow direction of the first linear channel 202 is opposite to the second flow direction of the first linear channel 203. This design effectively optimizes the airflow path and improves the airflow guiding performance of the equipment.

[0096] Based on this, on the one hand, the airflow path can be optimized. Through the combination of the first linear channel 202 and the first linear channel 203, the airflow is guided to form an effective closed path during the flow process. In particular, the setting of the arc-shaped channel 201 can smoothly change the airflow direction and avoid airflow turbulence.

[0097] On the one hand, it can enhance airflow stability. The opposite direction design of the first linear channel 202 and the first linear channel 203 can realize the airflow loop structure in a limited space, so that the airflow enters the air outlet 4 more stably and efficiently.

[0098] On the one hand, it can improve aerodynamic performance. The design of this airflow channel 2 combines straight and curved sections, making the movement of airflow inside the equipment more regular, reducing turbulence, and increasing the overall airflow velocity.

[0099] In summary, this embodiment, through the rational design of the first linear channel 202, the first linear channel 203, and the arc-shaped channel 201, enables the gas medium to complete the efficient conversion of its flow path within the airflow channel 2, and ultimately discharge it through the outlet 4 in a stable and directional airflow form. This structure not only improves the stability and velocity of the airflow, but also effectively optimizes the utilization rate of the internal space of the blower.

[0100] The air generator adopts a fully enclosed design with a simple and smooth appearance. All operating components are enclosed inside the main body 1, and the air inlet 5 is hidden.

[0101] Specifically, the fully enclosed design significantly improves safety by completely enclosing the airflow control component 3 inside the main body 1, preventing pets from directly contacting the internal operating parts. The fully enclosed shell design not only effectively reduces the intrusion of external contaminants into the internal components but also further enhances the structural strength and lifespan of the equipment.

[0102] The air inlet 5 is cleverly concealed in an area 101 or a second area 102 that is not easily touched by pets, ensuring that pet hair or foreign objects do not enter the air inlet 5 without affecting the airflow efficiency. The concealed design makes the device look more concise and reduces the safety hazards caused by pets touching the air inlet 5 out of curiosity.

[0103] Referring to Figure 5, the airflow channel 2 includes a rectifier channel 204, which is disposed between the first linear channel 203 and the air outlet 4 to further optimize the flow direction and characteristics of the airflow. An airflow control component 3 is installed within the rectifier channel 204, which is used to drive and regulate the airflow.

[0104] Specifically, after the gas medium enters the first linear channel 202 through the air inlet 5, it is guided by the arc-shaped channel 201 and the first linear channel 203 before entering the rectifying channel 204. Within the rectifying channel 204, the flow direction of the gas medium is further adjusted to maintain parallelism or near-parallelism with the inlet direction of the air inlet 5. By correcting the directionality of the airflow and homogenizing its velocity, the rectifying channel 204 provides more stable flow conditions for the airflow ultimately discharged from the air outlet 4.

[0105] Based on this, on the one hand, the airflow direction can be optimized. The rectifier channel 204 precisely adjusts the third flow direction of the airflow to make it consistent with or nearly consistent with the entry direction of the air inlet 5, thereby avoiding the phenomenon of turbulent or disordered flow of air in front of the air outlet 4 and improving the directionality of the airflow.

[0106] On the one hand, it can improve airflow stability. Because the rectifier channel 204 can even out the speed and pressure distribution of the airflow, the exhaust airflow is more stable, ensuring the quality of airflow output and meeting the pet's comfort needs for flowing air.

[0107] On the one hand, it can enhance the performance of the equipment. By setting the airflow control component 3 in the rectifier channel 204, the speed and intensity of the airflow can be effectively adjusted, providing the equipment with flexible airflow control capabilities, thereby adapting to different usage scenarios, such as pet entertainment or blow-drying care functions.

[0108] In summary, this embodiment, by setting a rectifier channel 204 between the first linear channel 203 and the air outlet 4, and installing the airflow control component 3 therein, can not only correct and optimize the directionality of the airflow, but also significantly improve the stability and output effect of the airflow, providing pets with a softer and more uniform airflow experience, while also providing technical support for the multi-functional application of the device.

[0109] Referring to Figure 3, the rectifying channel 204 includes a main channel 2041 and a mezzanine channel 2042. The main channel 2041 is located in the core area of ​​the rectifying channel 204 and is used for the main airflow transmission; the mezzanine channel 2042 is located between the main channel 2041 and the inner wall of the main body 1, forming an annular flow channel structure. The presence of the mezzanine channel 2042, together with the main channel 2041, constitutes a dual-channel design, effectively separating and guiding the airflow structurally.

[0110] Specifically, the airflow control component 3 is disposed within the main channel 2041 to generate and drive the primary airflow, allowing the airflow to pass through the main channel 2041 and exit from the outlet 4. Simultaneously, the interlayer channel 2042 utilizes the space outside the main channel 2041 to further guide the secondary airflow through an annular flow channel, working in synergy with the airflow in the main channel 2041. This dual-channel design significantly optimizes the airflow characteristics and improves equipment performance in multiple aspects.

[0111] Based on this, on the one hand, noise can be significantly reduced. By separating the main channel 2041 and the interlayer channel 2042, the dual-channel design effectively reduces turbulent interference between airflows, thereby significantly reducing noise caused by airflow impact and turbulence. In particular, when high-speed airflow occurs in the main channel 2041, the presence of the interlayer channel 2042 acts as a buffer and absorbs airflow, making the equipment operate more quietly.

[0112] On the one hand, it can improve airflow stability. The main channel 2041 and the interlayer channel 2042 guide the airflow independently, avoiding the airflow turbulence that may occur in a single-channel design. The dual-channel design makes the exhaust airflow more stable and uniform by rationally distributing the airflow pressure, thus improving the overall user experience.

[0113] On the one hand, it can enhance flow efficiency. As an annular flow channel, the interlayer channel 2042 not only makes full use of the space between the inner wall of the main body 1 and the main channel 2041, but also helps to guide the airflow, thereby improving the overall airflow efficiency of the equipment and enhancing the directionality and coverage of the airflow.

[0114] In summary, this embodiment, through its dual-channel design consisting of the main channel 2041 and the interlayer channel 2042, not only optimizes airflow characteristics but also significantly reduces equipment operating noise and improves airflow stability and output efficiency, providing pets with a quieter and more comfortable airflow environment. Furthermore, this design enhances the device's performance, making it more suitable for various applications such as pet entertainment and grooming.

[0115] Referring to Figure 3, the main channel 2041, facing the port 2043 of the first linear channel 203, has a wavy profile extending along the axial direction of the main channel 2041. The design feature of the wavy profile is that its peaks and troughs are alternately distributed circumferentially along the main channel 2041, thereby forming a curved surface structure with variations.

[0116] Specifically, when the airflow enters the main channel 2041, it first passes through the wavy port 2043. The wavy profile guides and disperses the airflow through its curved structure, thereby optimizing the flow characteristics of the airflow after entering the main channel 2041. Since the airflow interacts with the wavy port 2043 first upon entry, this design has a particularly significant effect on noise reduction and rectification of the airflow.

[0117] Specifically, when airflow passes through the wavy port 2043, the alternating distribution of crests and troughs effectively disperses high-frequency turbulence in the airflow. Compared to the traditional straight port 2043 design, the wavy curved surface structure mitigates the abrupt impact when airflow enters the main channel 2041, effectively reducing friction and reflection noise between the airflow and the edge of port 2043, reducing turbulence and irregular airflow oscillations, thereby significantly reducing airflow noise during equipment operation.

[0118] Before entering the main channel 2041, the wavy port 2043 uses a curved surface design to initially adjust the direction and speed of the airflow, making it more uniform and orderly as it enters the main channel 2041. By reducing turbulence at the inlet, the wavy profile ensures that the airflow can flow smoothly further in the main channel 2041.

[0119] This initial rectification effect can significantly improve the airflow efficiency of the main channel 2041, enabling the airflow to maintain higher stability along the axial direction in the main channel 2041, and ultimately forming a directional high-quality airflow when passing through the first linear channel 203 and the outlet 4.

[0120] By employing a wavy port 2043, the airflow is initially optimized upon entering the main channel 2041, achieving significant noise reduction and rectification effects. This design effectively reduces abrupt noise during airflow entry, improves airflow stability and directionality, thereby meeting the needs for quiet and stable airflow in pet use scenarios, while also enhancing the overall aerodynamic performance of the device.

[0121] Referring to Figure 3, the airflow channel 2 includes a compression channel 205, which is disposed between the rectifier channel 204 and the air outlet 4, and is used to further optimize the flow characteristics and output effect of the airflow. The compression channel 205 is constructed as a gradient structure. In the axial section along the airflow direction, the cross-sectional height of the compression channel 205 gradually increases from the inlet end to the outlet end, while the cross-sectional width gradually decreases.

[0122] Through this design, the compression channel 205 rectifies and accelerates the airflow before it is output.

[0123] On the one hand, the airflow velocity is significantly increased. The gradually increasing cross-sectional height and decreasing width of the gradient structure create a compression effect on the airflow, resulting in a significant increase in airflow velocity at the outlet. This increased airflow velocity not only enhances the impact force of the airflow but also extends its travel distance, enabling the equipment to more effectively cover the target area.

[0124] On the one hand, the airflow directionality is optimized. The gradual design of the compression channel 205 can further guide the directionality of the airflow entering the rectifier channel 204. By gradually limiting the cross-sectional width, the airflow is more precisely concentrated at the outlet, forming a stable high-velocity airflow and avoiding the phenomenon of airflow dispersion or turbulence in traditional designs.

[0125] On the one hand, the aerodynamic performance is improved. The gradually increasing height of the compression channel 205 allows for full utilization of the kinetic energy of the airflow at the outlet, while the reduced width effectively minimizes energy loss during the flow. Ultimately, the airflow passing through the compression channel 205 not only has a faster velocity but also a more concentrated energy distribution, ensuring the efficient operation of the equipment.

[0126] Furthermore, the high-velocity, directional airflow output is suitable for various application scenarios, such as providing pets with an efficient airflow experience, while also enhancing the efficiency of blow-drying care in grooming scenarios.

[0127] Referring to Figures 1-2, the main body 1 is a rectangular structure, or a rectangular structure with rounded corners. The shape design of the main body 1 ensures overall stability and aesthetics while facilitating the processing, manufacturing, and practical use of the equipment.

[0128] In one specific implementation, the air ventilator employs low-decibel noise technology, combined with a curved duct structure design, optimizing airflow smoothness and stability. Furthermore, the ductwork, designed collaboratively by artists, musicians, and engineers, not only effectively reduces noise but also generates low-frequency musical effects, fostering closer interaction between pets and their owners during use. This design ensures that pets enjoy a quieter and more comfortable environment while receiving airflow grooming, enhancing the overall user experience.

[0129] The main body 1 has a hollowed-out area 103 in the middle, which is arranged along the center line of the main body 1, dividing the main body 1 into two symmetrical parts. Although the main body 1 is hollowed out, the two symmetrical parts still maintain an integrated structure through design, ensuring the overall strength and structural stability of the equipment.

[0130] Based on this, on the one hand, it can reduce weight. The design of the hollow area 103 effectively reduces the amount of material used in the main body 1, thereby significantly reducing the overall weight of the device and improving the portability and flexibility of use of the device, which is especially suitable for frequent movement and adjustment in pet use scenarios.

[0131] On the one hand, it can optimize the layout of the airflow channel 2. The existence of the hollow area 103 provides greater flexibility for the layout of the airflow channel 2 and related components inside the main body 1, which helps to optimize the airflow guidance path and improve the stability and efficiency of the airflow.

[0132] The symmetrically distributed hollow areas 103 enhance the structural aesthetics of the device while providing users with convenient gripping or auxiliary fixation. The hollow design increases the device's operability, especially when interacting with pets or operating it.

[0133] Although the main body 1 is hollowed out, the two symmetrical parts can still maintain high structural strength through integrated design, avoiding overall structural deformation or reduction in load-bearing capacity caused by the hollowing out.

[0134] The symmetrical portion of the main body 1 is configured such that, in a first usage state, the first portion 104 of the main body 1 is close to the target object, aiming to provide airflow to the target object. The first portion 104 includes a first region 101 and a second region 102 to meet the functional requirements of airflow distribution.

[0135] Specifically, the first region 101 is the outer wall surface of the first part 104 facing the target object, and it plays a major role in airflow output. This region is usually associated with the air outlet 4, directly facing the pet, providing it with high-speed airflow to meet its entertainment or grooming needs.

[0136] The design of Zone 101 focuses on enhancing the directionality and coverage of airflow to ensure that the target object can effectively sense the effects of the airflow.

[0137] The second region 102 is a hollowed-out region 103 on the inner wall of the first part 104. The hollowed-out design allows the second region 102 to reduce the overall weight of the main body 1 and enhance the air circulation capability of the equipment.

[0138] Through the inner wall of the second region 102, the airflow can be smoothly guided into the airflow channel 2 after entering from the air inlet 5, providing stable input support for the entire airflow system.

[0139] In the first state of use, the design of the first part 104 allows it to be closer to the target object, in particular by acting directly on the surface of the target object through the first area 101, to provide the function of flowing air or blowing care.

[0140] The synergistic effect of the hollowed-out area 103 and the second area 102 not only optimizes the layout of the airflow channel 2, but also enhances the portability and operability of the device through lightweight design.

[0141] Based on this, on the one hand, it can improve the efficiency of airflow. The setting of the first area 101 ensures that the airflow acts directly on the target object, and optimizes the directionality and coverage of the airflow output.

[0142] Based on this, on the one hand, it can improve the user experience. The proximity design of the first part 104 facilitates the interaction between the device and the target object, and increases the device's operational flexibility and functional adaptability.

[0143] "First usage state" refers to the position and state of the air generator during operation, where the operator holds or directly operates the main body 1 and brings the first part 104 close to the target object. In this state, the operator adjusts the position and angle of the main body 1 so that the first part 104 directly applies airflow to the target object through its first area 101 facing the target object to achieve specific functional requirements, such as providing a flowing air entertainment experience for pets or providing blower care for pets.

[0144] The symmetrical portion of the main body 1 is configured such that, in the first use state, the second portion 105 is close to the operator and is used to enable the operator to hold and control the wind generator.

[0145] Specifically, in the first usage state, the second part 105 is mainly geared towards the operator and is designed to facilitate the gripping and operation of the device, ensuring that the device can be stably and flexibly adjusted in position and angle during operation.

[0146] The second part 105 has a third area for the operator to hold, the third area having a rhomboid cross-section. The rhomboid cross-section design, through the combination of edges and curved surfaces, enhances the anti-slip performance of the grip, while providing the operator with a more ergonomic feel and avoiding hand fatigue caused by prolonged operation.

[0147] The third region is formed by the area of ​​the hollowed-out area 103 extending towards the operator to the side wall of the second part 105. Through this extended design, the third region is closely connected to the hollowed-out area 103, which not only optimizes the structural layout of the main body 1, but also enhances the overall grip stability while reducing the weight of the device.

[0148] Based on this, on the one hand, it can improve grip comfort and stability. The diamond cross-section design of the third area improves the stability and comfort of the operator's grip through its ergonomic shape, while reducing the inconvenience of operation caused by hand slippage or fatigue.

[0149] On the one hand, it can enhance the operability of the equipment. The combination of the third area and the second part 105, through the optimization of position and shape, ensures that the operator can flexibly adjust the operating angle and position of the equipment, so that the airflow can be accurately applied to the target object.

[0150] On the one hand, the overall structure is optimized. The design of combining the hollow area 103 with the third area not only enhances the aesthetics of the equipment visually, but also improves the overall strength and durability of the equipment through the integrated structural design.

[0151] This embodiment significantly improves the user experience and grip stability of the device in the first use state by providing a third area for the operator to hold in the second part 105 and adopting a diamond-shaped cross-section design. At the same time, the extension of the hollow area 103 along the operator's direction further optimizes the device's lightweight and structural strength, providing the operator with a more comfortable and efficient operating environment.

[0152] Referring to Figure 4, the air generator includes a first power supply module 6, which is located inside the main body 1 and is used to provide power to the airflow control component 3, thereby driving the equipment to operate normally. The first power supply module 6 is wired charged via an extended power cord made of a material resembling pet skin.

[0153] Specifically, the first power supply module 6 is integrated inside the main body 1. Through a reasonable layout and coordinated arrangement with other components 3 and airflow channels 2), the equipment structure is ensured to be compact and the internal space utilization rate is high. The first power supply module 6 provides a stable power output to the airflow control component 3, ensuring the continuous and efficient operation of the equipment under different operating scenarios.

[0154] The power cord features an extended design, which not only makes it convenient for users to use in different scenarios, but also reduces the space limitations that may be caused by traditional short power cords.

[0155] The power cord is covered with a pet-skin-like material, which is soft and comfortable to the touch, avoiding the discomfort or injury that rigid wires might cause to pets or users, further enhancing device safety and user experience. The pet-skin-like material also offers a degree of abrasion resistance and tensile strength, ensuring the power cord is more durable in daily use, while its soft surface better suits the pet-friendly design of the device. In addition to enhancing softness and safety, the pet-skin-like design of the power cord, through its extended length, provides greater freedom of use, allowing users to easily charge their devices without spatial constraints.

[0156] The wired charging method, combined with the extended power cord, allows the device to quickly replenish its power, meeting the frequent needs of scenarios such as pet entertainment and hair dryer grooming.

[0157] This embodiment provides stable power to the airflow control component 3 by incorporating a first power supply module 6 inside the main body 1 and using a wired charging method via an extended pet-skin-like power cord. This design effectively improves the ease of use and safety of the device, while the soft and durable power cord material provides a more comfortable and user-friendly experience for both the user and the pet.

[0158] In addition, it features a large, pet-specific plug design. Specifically, this large plug is designed specifically for pets, with optimized dimensions that occupy additional power space, providing a more reliable connection and power supply for the device. This plug design prevents other electrical appliances from being plugged in, allowing users to focus more on caring for their pets or operating the device. The plug's outer shell is made of durable and comfortable material, while avoiding the potential injuries caused by sharp edges of traditional plugs, thus ensuring the safety of both the user and the pet.

[0159] Referring to Figure 6, the air generator includes a second power supply module 7, which works in conjunction with the first power supply module 6 to provide power to the first power supply module 6. The inclusion of the second power supply module 7 not only meets the power supply needs of the equipment in various scenarios but also significantly improves the convenience and applicability of the equipment.

[0160] Specifically, the second power supply module 7 serves as an external power source, connecting to the first power supply module 6 to supplement the device's power supply and ensure its continuous operation. The second power supply module 7 is suitable for various power supply modes, especially providing a more flexible power supply option when the device cannot be conveniently charged via traditional wired connections.

[0161] The second usage state refers to the operating state in which the main body 1 of the device is placed on the second power supply module 7. In this state, the main body 1 achieves power connection through physical contact with the second power supply module 7, without requiring the operator to manually charge the device or perform complex settings.

[0162] In the second usage state, the device can automatically or manually start according to preset logic without continuous operator intervention. For example:

[0163] Automatic start-up: When the main body 1 makes correct contact with the second power supply module 7, the equipment automatically starts running according to the detection signal, providing airflow to the target object.

[0164] Manual start: Users can start the device as needed through simple operations.

[0165] The main body 1 is placed on the second power supply module 7 via its bottom or a specific contact surface. The connection between the two is designed for high-precision mating, ensuring the stability and reliability of the power supply contact. The optimized placement structure not only ensures the ease of use of the equipment but also reduces placement restrictions during use and enhances the operational flexibility of the equipment.

[0166] This embodiment, through the design of a second power supply module 7, provides power support for the device in a second usage state, enabling the main body 1 and the second power supply module 7 to automatically or manually start after placement. This design significantly improves the ease of use of the device, reduces the user's operational burden, and supports the efficient operation of the device in multiple scenarios through a reliable power connection, further meeting the needs of pet entertainment and hair dryer care.

[0167] As shown in the figure, the second power supply module 7 has a slot 701 that matches the shape and size of the corner of the main body 1, which is used to accurately place the main body 1 onto the second power supply module 7 and achieve stable power transmission.

[0168] Specifically, the slot 701 is customized according to the shape and size of the corner of the main body 1, allowing the main body 1 to be securely embedded in the slot 701 through precise geometric matching. This design ensures that the main body 1 forms a reliable physical connection with the power supply module when placed.

[0169] The diagonal of the main body 1 is coaxially aligned with the centerline of the slot 701, further ensuring that the main body 1 and the slot 701 are center-aligned when placed. This coaxial arrangement not only enhances the stability of the device but also optimizes the docking accuracy between the charging interface and the charging port 2043, as well as the aesthetics of the device.

[0170] The inner wall of the groove 701 is provided with a charging port 2043, which is used to provide electrical energy output.

[0171] The corner of the main body 1 is provided with a charging interface corresponding to the charging port 2043. The charging interface serves as the power input terminal of the first power supply module 6, and completes power transmission through contact with the charging port 2043. Through precise docking design, it is ensured that the charging port 2043 and the charging interface can make stable contact when placed, avoiding charging interruption due to poor contact.

[0172] After the main body 1 and the second power supply module 7 are correctly connected, electrical energy is transmitted from the charging port 2043 to the charging interface, and then supplied to the first power supply module 6 to provide stable power support for the airflow control component 3 and other components of the equipment.

[0173] This embodiment achieves stable power transmission by setting a slot 701 in the second power supply module 7 that matches the shape and size of the corner of the main body 1, and by setting a charging port 2043 and a charging interface on the inner wall of the slot 701 and the corner of the main body 1, respectively. The precise coaxial arrangement and docking design significantly improves the placement stability and charging reliability of the equipment, providing a strong guarantee for the efficient operation of the equipment and the convenient operation of the user.

[0174] The blower is powered by a high-performance lithium battery and is designed to meet the demands of portability and high efficiency. At its highest setting, the lithium battery allows the device to operate continuously for at least 25 minutes, delivering a powerful hurricane-force wind, suitable for pet entertainment, grooming, or personal use.

[0175] Specifically, the lithium battery used has high energy density, providing strong power support and ensuring stable continuous operation of the equipment for at least 25 minutes, even under the highest hurricane wind power output. The battery also boasts excellent charge-discharge cycle performance, extending the equipment's lifespan and reducing the hassle of frequent battery replacements.

[0176] The device supports multiple charging methods (6 wired charging or a second power supply module, 7 wireless docking charging), making charging convenient and flexible. Users can easily recharge the device whether at home or on the go.

[0177] The included extended power cord made of pet-skin material and large plug specifically designed for pets further enhance the applicability and safety of charging, allowing users to charge anytime, anywhere, without being limited by the scene.

[0178] For example, in home use, lithium batteries provide stable power for daily pet entertainment or hair dryer care, making them suitable for long-term use in a fixed location, while also allowing for quick charging for later use.

[0179] For example, in scenarios involving extended periods of time away from home, the portable design combined with the long battery life of lithium batteries allows the device to provide entertainment or hair dryer care for pets while out and about, without worrying about the battery running out and becoming unusable.

[0180] At its highest setting, the fan delivers a powerful hurricane-force breeze covering a 2-meter radius, with a rapid and even airflow. Lithium-ion battery power ensures this high-power mode lasts for at least 25 minutes, meeting your pet's needs for airflow entertainment and grooming.

[0181] This embodiment utilizes a high-performance lithium battery to achieve at least 25 minutes of hurricane-force wind output at the highest setting, meeting the multiple needs of pet entertainment and grooming. Combined with its convenient, on-the-go charging feature, the device is suitable for both home use and extended outings. The device's robust battery life and ease of use significantly enhance the user experience, making it an efficient and reliable solution for pet care and entertainment.

[0182] The air ventilator is equipped with a temperature monitoring and protection system. When the product detects that the equipment temperature is too high while it is running at high speed, the screen will issue a timely warning and automatically shut down the system to protect the pet's safety and avoid potential risks.

[0183] Specifically, the equipment has a built-in high-sensitivity temperature sensor that monitors the internal temperature changes of the air generator in real time, ensuring that the equipment always operates within a safe range. When the temperature exceeds the preset safety threshold, the system will immediately trigger a protection mechanism.

[0184] When the device temperature is too high, the screen will display a clear warning message, such as "Device temperature is too high, please use it later," to remind the user to pay attention to the device status.

[0185] The on-screen prompts are intuitive and clear, helping users quickly understand the problem and take appropriate measures to avoid damage to the device or potential danger to their pets.

[0186] In addition, if the temperature exceeds the safe range, the system will automatically shut down the device and stop all operations to prevent damage to the device or adverse effects on the pet due to sustained high temperatures. The automatic shutdown function not only protects the device itself but also effectively avoids the risk of burns from contact with high temperatures, further enhancing the pet's safety.

[0187] The high-temperature protection function is especially suitable for long-haired pets or situations where the device is used for extended periods. In these cases, the system can intelligently detect and prevent overheating, providing a safer environment for your pet.

[0188] In this embodiment, a circular light module 8 is symmetrically arranged on the end face of the main body 1 on the side opposite to the charging port. The circular light module 8 can be powered on and lit by a switch on the side of the main body 1. The light of the circular light module 8 is colored and uses colors that dogs can recognize. Therefore, when the device is running, the circular light module 8 is used to attract dogs and eliminate their fear.

[0189] Secondly, the aforementioned circular light module 8 can maintain a certain frequency of flashing as a notification after the battery inside the main body 1 is depleted.

[0190] In summary, the ventilation fan provided in this application offers a completely new user experience and enhances the quality of life for pets through its simple and practical design and unique pet-friendly features. Its design is not only specifically tailored for pet health but also stylish, suitable for both home and outdoor use. Compared to human products, the ventilation fan is more minimalist and modern, meeting pet care needs while seamlessly integrating into the home environment and elevating the overall lifestyle. Furthermore, the ventilation fan has been meticulously crafted in every detail, particularly in the internal air ducts, wiring, motors, and color scheme. The internal structure design ensures that all components have a unified and harmonious color scheme, achieving a consistent effect both inside and out. This design philosophy not only enhances the overall aesthetics of the product but also ensures that the device exhibits high quality and a refined feel during use. Through these innovative and meticulous designs, the ventilation fan sets a new standard for pet product design, fulfilling pet care functions while also considering visual appeal and user experience.

[0191] In the description of the embodiments of the present invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "center", "top", "bottom", "top", "bottom", "inner", "outer", "inner side", "outer side", etc. indicate the orientation or positional relationship.

[0192] In the description of the embodiments of the present invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "assembly" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in the present invention based on the specific circumstances.

[0193] In the description of embodiments of the present invention, specific features, structures, materials or characteristics may be combined in any suitable manner in one or more embodiments or examples.

[0194] In the description of the embodiments of the present invention, it should be understood that "-" and "~" represent a range between two numerical values, and this range includes the endpoints. For example, "AB" represents a range greater than or equal to A and less than or equal to B. "A~B" represents a range greater than or equal to A and less than or equal to B.

[0195] In the description of embodiments of the present invention, the term "and / or" is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, and B existing alone. Additionally, the character " / " in this document generally indicates that the preceding and following related objects have an "or" relationship.

[0196] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A pet ventilation generator, characterized in that, include: main body; Airflow channels located inside the main body; Airflow control components located inside the main body; The air outlet is located at the main body; The airflow channel is connected to the air outlet, and the length-to-width ratio of the air outlet is greater than 10:

1.

2. The pet ventilation generator according to claim 1, characterized in that, The width of the air outlet ranges from 1mm to 5mm.

3. The pet ventilation generator according to claim 1 or 2, characterized in that, include: The airflow channel includes at least one arc-shaped channel; Furthermore, the gaseous medium enters the airflow channel through the air inlet, and is discharged from the air outlet after passing through the arc-shaped channel.

4. The pet ventilation generator according to claim 3, characterized in that, The airflow channel includes a first linear channel and a first linear channel; The first linear channel is connected to the air inlet and also to the arc-shaped channel; The first linear channel is connected to the arc-shaped channel and also to the air outlet; The gas medium flows in a first direction in the first linear channel in the opposite direction to the second direction in the first linear channel.

5. The pet ventilation generator according to claim 4, characterized in that, The airflow channel includes a rectifier channel; The rectifier channel is connected between the first linear channel and the air outlet; Furthermore, the airflow control component is disposed within the rectifying channel; In this process, the gas medium flows in the third direction of the rectifier channel, which is parallel or nearly parallel to the inlet direction of the air inlet.

6. The pet ventilation generator according to claim 5, characterized in that, The rectifier channel includes a main channel and a mezzanine channel; The interlayer channel is an annular flow channel formed between the main channel and the inner wall of the main body; Furthermore, the airflow control component is located within the main channel.

7. The pet ventilation generator according to claim 6, characterized in that, The airflow channel includes a compression channel; The compression channel is connected between the rectifier channel and the air outlet; The compression channel is constructed as a gradient structure; In the axial section along the airflow direction, the cross-sectional height of the compression channel gradually increases from the inlet end to the outlet end, while the cross-sectional width gradually decreases.

8. The pet ventilation generator according to claim 1, characterized in that, It includes a lamp module, which is disposed on the main body and located on the end face opposite to the charging port; The light module is a colored light, using colors that dogs can recognize; The lamp module is powered on and illuminated by a switch on one side of the main body.

9. The pet ventilation generator according to claim 1, characterized in that, The main body has a hollow area in the middle, which divides the main body into two symmetrical parts along the center line of the main body, and keeps the two parts as a whole. The symmetrical portion of the main body is configured as follows: In its first operational state, the first part approaches the target object; The first part includes a first region and a second region; The first region is the outer wall surface of the first part facing the target object; The second region is the inner wall surface of the hollowed-out region in the first part.

10. The pet ventilation generator according to claim 9, characterized in that, The symmetrical portion of the main body is configured as follows: In the first usage state, the second part is closer to the operator; Furthermore, the second part has a third area for the operator to hold; The cross-section of the third region is rhomboid; The third region is formed by the area of ​​the hollowed-out region extending towards the operator to the side wall of the second part.