Pet dryer
By introducing a multi-directional airflow and independent drainage design into the pet dryer, the problems of unidirectional hot airflow and moisture ingress in existing pet dryers are solved, achieving more efficient hair drying and structural stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-08
- Publication Date
- 2026-03-10
AI Technical Summary
Existing pet dryers can only blow hot air from the bottom up in a single direction, which affects the drying efficiency of the fur. In addition, the bottom plate mechanism is not designed with partitions, which causes moisture to enter the drying chamber and reduces the drying effect.
The design incorporates left, right, and bottom air supply chambers within the casing. The bottom plate mechanism includes side-by-side convex and concave arc plates, which are used for transmitting hot air and draining water, respectively. Combined with the left, right, and bottom heating air supply mechanisms, it achieves multi-directional airflow and independent drainage.
It improves the efficiency of pet hair drying, prevents water from entering the drying chamber with the hot air, enhances structural stability and load-bearing capacity, achieves uniform hot air distribution, and improves drying efficiency.
Smart Images

Figure CN223979290U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a drying device, specifically a pet dryer. Background Technology
[0002] A pet dryer is a device used to dry the fur of pets after bathing. Existing pet dryers typically include a casing, inside which there is a drying chamber and an air duct. The bottom of the drying chamber is equipped with a base plate mechanism that can both transmit hot air into the drying chamber and drain water. The air inlet of the air duct is located at the top, and the air outlet of the air duct is located at the bottom. The air inlet of the air duct is connected to a hot air blower located at the top of the casing, and the air outlet of the air duct is connected to the base plate mechanism. The base plate mechanism includes a rectangular ventilation pipe, the top of which is a flat plate with several holes.
[0003] In existing pet dryers, hot air blown by the hot air blower passes through air ducts and rectangular ventilation pipes before entering the drying chamber through several holes in a flat plate, thus drying the pet inside. Water from the pet falls onto the flat plate and drains out through these holes. However, in actual use, the hot air in existing pet dryers only blows upwards from the bottom, which affects the drying efficiency of the pet's fur. Furthermore, the existing base plate mechanism is not designed with separate zones for drainage and hot air transmission; the holes in the flat plate are used for both air outlet and drainage, and the rectangular ventilation pipes are used for both hot air transmission and water collection. Hot air passing through the rectangular ventilation pipes can easily bring moisture into the drying chamber, further affecting the drying efficiency of the pet's fur. Summary of the Invention
[0004] To address the shortcomings of existing technologies, this invention aims to provide a pet dryer that improves the efficiency of drying pet fur.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows: A pet dryer includes a casing, which contains a drying chamber, a left air supply chamber, a right air supply chamber, and a bottom air supply chamber. The bottom of the drying chamber is provided with a bottom plate mechanism that can independently transmit hot air and drain water. The left air supply chamber is provided with a left air duct mechanism that communicates with the drying chamber. A left heating air mechanism that can blow out hot air is connected to the left air duct mechanism. The right air supply chamber is provided with a right air duct mechanism that communicates with the drying chamber. A right heating air mechanism that can blow out hot air is connected to the right air duct mechanism. The bottom air supply chamber is provided with a bottom heating air mechanism that can blow out hot air, connected to the bottom plate.
[0006] As a limitation of this utility model, the base plate mechanism includes a base plate body, which includes a plurality of first ventilation ducts with convex arc-shaped plates on the top arranged side by side and spaced apart. A concave arc-shaped plate is fixed between the tops of two adjacent first ventilation ducts. A plurality of supporting members are fixed at the bottom of each concave arc-shaped plate. A plurality of air outlets are provided on the convex arc-shaped plate to disperse and transport the air in the first ventilation ducts to the drying chamber. A plurality of drainage holes are provided on the concave arc-shaped plate.
[0007] As a further limitation of this utility model, the plurality of convex arc plates and the plurality of concave arc plates are integrally formed, and the upper surface after integral forming is wavy.
[0008] As a further limitation of this utility model, a plurality of reinforcing plates are fixed on the bottom of the concave arc-shaped plate at a position between two adjacent first ventilation ducts.
[0009] As another limitation of this utility model, the base plate mechanism also includes a water collection box that is inserted into the bottom of the base plate body via a plug-in mechanism.
[0010] As a further limitation of this utility model, the plug-in mechanism includes multiple plug-in plates respectively fixed on the outer walls of the two outer first ventilation ducts and multiple plug-in slots respectively opened at corresponding positions on the water collection box, and the multiple plug-in plates can be plugged into the multiple plug-in slots accordingly.
[0011] As a third limitation of this utility model, the left air duct mechanism has the same structure as the right air duct mechanism; the left air duct mechanism includes a plurality of second ventilation ducts fixedly mounted on the housing along the height direction of the housing, and each second ventilation duct is connected to an air outlet component, which is connected to the drying chamber.
[0012] As a further limitation of this utility model, the left heating air mechanism and the right heating air mechanism have the same structure; the left heating air mechanism includes a first heating component fixed on the casing, the first heating component is connected to all the second ventilation ducts on the left air duct mechanism, and multiple left fans are connected to the first heating component.
[0013] As a further limitation of this utility model, the bottom heating air mechanism includes a second heating component fixed on the casing, the second heating component is connected to all the first ventilation ducts in the bottom plate, and multiple bottom fans are connected to the second heating component.
[0014] By adopting the above-mentioned technical solution, the beneficial effects achieved by this utility model compared with the prior art are as follows:
[0015] (1) The present invention adopts a structure combining a casing, a base plate mechanism, a left-side air duct mechanism, a left-side heating air mechanism, a right-side air duct mechanism, a right-side heating air mechanism, and a bottom heating air mechanism. This allows air to be blown from the bottom, left, and right sides of the present invention, which can dry the pet's fur more quickly and effectively improve the drying efficiency. In addition, the base plate mechanism of the present invention can independently transmit hot air and drain water. Water flowing down the pet can be drained into an independent space, which can prevent the drained water from entering the drying chamber with the hot air, further improving the drying efficiency of the pet's fur.
[0016] (2) In this utility model, the top surface of the upper convex arc plate is an upward convex arc surface, and the top surface of the lower concave arc plate is a downward concave arc surface. The upper convex arc plate and the lower concave arc plate work together to introduce the water flowing down the pet into the drain hole for drainage. The drainage effect is good, and it is not easy to form water accumulation. It can effectively improve the drying efficiency of pet hair.
[0017] (3) In this utility model, multiple convex arc plates and multiple concave arc plates are integrally formed, which strengthens the overall structure and can effectively improve the strength and stability of the structure of this utility model. Furthermore, after multiple convex arc plates and multiple concave arc plates are integrally formed, the upper surface is wavy, which can improve the water guiding effect of this utility model and thus improve the drainage effect of this utility model.
[0018] (4) This utility model is provided with multiple reinforcing plates, which can improve the strength of the structure of this utility model and thus improve the carrying capacity of this utility model for pets.
[0019] (5) This utility model is equipped with a water collection box, which is convenient for collecting the discharged water. The water collection box is inserted into the base plate body, which is convenient for disassembling the water collection box and the base plate body to pour the water. When in use, the water flowing down the pet is collected into the water collection box through the drain hole, which can realize the unified collection and pouring of the discharged water, and can effectively improve the practicality of this utility model.
[0020] (6) The left air duct mechanism of this utility model is the same as the right air duct mechanism. The left air duct mechanism adopts multiple second ventilation pipes, and a first heating component is connected to the multiple second ventilation pipes. Multiple left-side fans are connected to the first heating component. This makes the hot air blown out more uniform and the wind speed of the hot air relatively high, which can effectively improve the drying efficiency.
[0021] (7) The present invention is provided with a second heating component, and multiple bottom side fans are connected on the second heating component, which makes the hot air blown out more uniform and the wind speed of the hot air relatively high, which can effectively improve the drying efficiency.
[0022] In summary, this utility model has a reasonable structure, is easy to use, and is highly practical. Air can be blown from the bottom, left side, and right side, allowing for faster drying of pet fur and effectively improving drying efficiency. Furthermore, the bottom plate mechanism of this utility model can independently transmit hot air and drain water. Water dripping from the pet can be drained into a separate space, preventing the drained water from re-entering the drying chamber with the hot air, further improving the drying efficiency of pet fur. This utility model is suitable for use when drying pet fur after bathing. Attached Figure Description
[0023] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0024] Figure 1 This is a schematic diagram of the structure of an embodiment of the present utility model;
[0025] Figure 2 This is a schematic diagram of the structure after the base plate mechanism is removed in an embodiment of this utility model;
[0026] Figure 3 This is a schematic diagram showing the connection relationship between the left-side air duct mechanism and the left-side heating air mechanism in an embodiment of this utility model;
[0027] Figure 4 This is a schematic diagram of the base plate mechanism in an embodiment of the present utility model;
[0028] Figure 5 This is a structural schematic diagram of the base plate mechanism from another angle in an embodiment of this utility model;
[0029] Figure 6 This is a disassembly diagram of the base plate mechanism in an embodiment of this utility model;
[0030] Figure 7 This is a schematic diagram of the structure of the base plate body in an embodiment of this utility model;
[0031] Figure 8 This is a structural schematic diagram of the base plate body from another angle in an embodiment of this utility model;
[0032] In the diagram: 1. First ventilation duct; 2. Upper convex arc plate; 3. Lower concave arc plate; 4. Supporting component; 5. Air outlet; 6. Drainage hole; 7. Positioning component; 8. Reinforcing plate; 9. Water collection box; 10. Insert plate; 11. Insert groove; 12. Sealing plate; 13. Positioning groove; 14. Housing; 15. Drying chamber; 16. Left side air supply chamber; 17. Second ventilation duct; 18. First heating component; 19. Left side fan; 20. Air outlet component; 21. Exhaust hole component. Detailed Implementation
[0033] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustrative purposes only and are not intended to limit the scope of the present invention.
[0034] Example 1: A pet dryer
[0035] like Figure 1 , Figure 2 As shown, this embodiment includes a housing 14, which contains a drying chamber 15, a left air supply chamber 16, a right air supply chamber, and a bottom air supply chamber. The housing 14 has an openable and closable door for placing a pet in the drying chamber 15. The housing 14 is provided with an exhaust vent 21 for communicating the interior of the drying chamber 15 with the outside, so that the air inside the drying chamber 15 can be discharged to the outside. The bottom of the drying chamber 15 is provided with a bottom plate mechanism that can independently transmit hot air and drain water. The left air supply chamber 16 is provided with a left air duct mechanism that communicates with the drying chamber 15, and a left heating air mechanism that can blow out hot air is connected to the left air duct mechanism. The right air supply chamber is provided with a right air duct mechanism that communicates with the drying chamber 15, and a right heating air mechanism that can blow out hot air is connected to the right air duct mechanism. The bottom air supply chamber is provided with a bottom heating air mechanism that communicates with the bottom plate. It should be noted that the directional terms or positional relationships such as "left" and "right" used in this embodiment are based on the accompanying drawings of this utility model specification. Figure 1 The orientation relationships are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or component must have a specific orientation, or that it must be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting the content protected by this utility model.
[0036] like Figure 4-6As shown, the base plate mechanism includes a base plate body, which includes multiple first ventilation ducts 1 arranged side-by-side with upwardly convex arc-shaped plates 2 on top. A concave arc-shaped plate 3 is fixed between the tops of two adjacent first ventilation ducts 1. Multiple support members 4 are fixed at the bottom of each concave arc-shaped plate 3. Multiple air outlets 5 are provided on the upwardly convex arc-shaped plates 2 to disperse and transport the air in the first ventilation ducts 1 to the drying chamber 15. Multiple drainage holes 6 are provided on the concave arc-shaped plates 3. The support members 4 are round tubes. A total of seven rows of air outlets 5 are provided on the upwardly convex arc-shaped plates 2. Two rows of air outlets 5 are located on the side of the upwardly convex arc-shaped plates 2 away from the sealing plate 12 in the first ventilation ducts 1. Each row of air outlets 5 includes two waist-shaped holes. Each of the remaining five rows of air outlets 5 includes three waist-shaped holes. Specifically, in this embodiment, a total of five first ventilation ducts 1 are provided, and correspondingly, a total of four concave arc plates 3 are provided. The first ventilation duct 1 includes a U-shaped groove component and an upper convex arc plate 2 fixed on the top of the U-shaped groove component. The opening at one end of the U-shaped groove component is used to connect with the bottom heating air mechanism, and a sealing plate 12 for sealing the opening is fixed at the opening at the other end of the U-shaped groove component.
[0037] Furthermore, multiple convex arc-shaped plates 2 and multiple concave arc-shaped plates 3 are integrally formed, and the upper surface of the integrally formed plate has a wavy shape. Multiple reinforcing plates 8 are fixed to the bottom of the concave arc-shaped plates 3 at positions between two adjacent first ventilation ducts 1. For example... Figure 7 , Figure 8 As shown, specifically in this embodiment, six reinforcing plates 8 are fixedly fixed at intervals at the bottom of the concave arc-shaped plate 3. Each reinforcing plate 8 is a rectangular plate, and the width of each reinforcing plate 8 is equal to the distance between the two first ventilation ducts 1 on either side of it. Each reinforcing plate 8 is also fixedly fixed to the outer wall of the corresponding first ventilation duct 1 on both sides. In this document, the reinforcing plate 8 furthest from the sealing plate 12 in the first ventilation duct 1 among the six reinforcing plates 6 at the bottom of the concave arc-shaped plate 3 is defined as the first reinforcing plate; the reinforcing plate 8 closest to the sealing plate 12 in the first ventilation duct 1 among the six reinforcing plates 8 at the bottom of the concave arc-shaped plate 3 is defined as the sixth reinforcing plate; the reinforcing plate 8 closest to the first reinforcing plate is defined as the second reinforcing plate; and so on. The reinforcing plates 8 between the second and sixth reinforcing plates are defined as the third, fourth, and fifth reinforcing plates, respectively. A support member 4 is fixedly installed at the positions of the second, fourth, and sixth reinforcing plates on the bottom of the two concave arc-shaped plates 3 on both sides. A support member 4 is fixed to the bottom of each of the two concave arc-shaped plates 3 located in the middle, at the positions of the first reinforcing plate, the third reinforcing plate, and the fifth reinforcing plate. The height of the bottom surface of all support members 4 is less than the height of the bottom surface of the first ventilation duct 1, and the bottom surfaces of all support members 4 are located on the same plane so that they can be stably supported on the bottom surface of the water collection box 9. Drainage holes 6 are distributed in the positions on the concave arc-shaped plates 3 where there are no reinforcing plates 8.
[0038] The base plate mechanism also includes a water collection box 9 that is inserted into the bottom of the base plate body via a plug-in mechanism. The plug-in mechanism includes multiple plug-in plates 10 fixedly mounted on the outer walls of the two outer first ventilation ducts 1 and multiple plug-in slots 11 respectively opened at corresponding positions on the water collection box 9. Specifically, in this embodiment, five plug-in plates 10 are fixedly mounted at intervals on each of the two outer surfaces of the two outer first ventilation ducts 1 near the water collection box 9. The plug-in plates 10 are trapezoidal plates. Five plug-in slots 11 are correspondingly opened on the top of each of the two sides of the water collection box 9. The plug-in slots 11 are rectangular slots. The trapezoidal plates are adapted to the rectangular slots so that the upper part of the trapezoidal plates is inserted into the rectangular slots. The structure of the plug-in slots 11 and the plug-in plates 10 allows the base plate body to be easily removed from the water collection box 9. To improve the stability of the connection between the water collection box 9 and the base plate body, in this embodiment, a positioning member 7 is fixedly provided on one end of the base plate body near the sealing plate 12, and a positioning groove 13 adapted to the positioning member 7 is provided on the corresponding water collection box 9 so that the positioning member 7 can be stably inserted into the positioning groove 13.
[0039] The left-side air duct mechanism has the same structure as the right-side air duct mechanism; therefore, this embodiment only describes the structure of the left-side air duct mechanism. Figure 3 As shown, the left-side air duct mechanism includes multiple second ventilation ducts 17 fixed to the casing side-by-side along the height direction of the casing. Each second ventilation duct 17 is connected to an air outlet component 20, which is connected to the drying chamber 15. Specifically, in this embodiment, a total of three second ventilation ducts 17 are provided. Each second ventilation duct 17 has five air outlet components spaced apart along its length. The two air outlet components closer to the left-side fan 19 have two vertically arranged waist-shaped holes, and the three air outlet components farther from the left-side fan 19 have three vertically arranged waist-shaped holes.
[0040] The left and right heating air supply mechanisms have the same structure; therefore, this embodiment only describes the structure of the left heating air supply mechanism. Figure 3 As shown, the left heating air mechanism includes a first heating component 18 fixed on the casing. The first heating component 18 is connected to all the second ventilation ducts 17 on the left air duct mechanism. Multiple left fans 19 are connected to the first heating component 18. Specifically, in this embodiment, a left fan 19 is connected to each of the three positions on the first heating component 18 corresponding to the three second ventilation ducts 17, for a total of three left fans 19. The first heating component 18 adopts an existing PTC heater.
[0041] The bottom heating air mechanism includes a second heating component fixed on the casing. The second heating component is connected to all the first ventilation ducts 1 in the bottom plate. Multiple bottom fans are connected to the second heating component. Specifically, in this embodiment, a bottom fan is connected to each of the five positions corresponding to the five first ventilation ducts 1 on the second heating component, for a total of five bottom fans. The second heating component uses an existing PTC heater.
[0042] It should be noted that the above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the above embodiments, those skilled in the art can still modify the technical solutions described in the above embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A pet dryer, characterized by: The dryer comprises a cabinet, a drying chamber, a left air supply chamber, a right air supply chamber and a bottom air supply chamber in the cabinet, a bottom plate mechanism capable of independently transmitting hot air and independently draining water at the bottom of the drying chamber, a left air duct mechanism provided in communication with the drying chamber on the left air supply chamber, a left hot air supply mechanism capable of blowing hot air provided in communication on the left air duct mechanism, a right air duct mechanism provided in communication with the drying chamber on the right air supply chamber, a right hot air supply mechanism capable of blowing hot air provided in communication on the right air duct mechanism, and a bottom side hot air supply mechanism capable of blowing hot air provided in communication with the bottom plate on the bottom air supply chamber.
2. A pet dryer according to claim 1, wherein: The bottom plate mechanism comprises a bottom plate body comprising a plurality of first ventilation ducts with top convex arc-shaped plates arranged side by side and spaced apart, one concave arc-shaped plate being fixedly arranged between the top portions of adjacent two first ventilation ducts, a plurality of support members being fixedly arranged at the bottom of each concave arc-shaped plate, a plurality of air outlet holes being formed in the top convex arc-shaped plates and capable of dispersing and conveying the air in the first ventilation ducts into the drying chamber, and a plurality of drainage holes being arranged on the concave arc-shaped plates.
3. A pet dryer according to claim 2, wherein: The plurality of top convex arc-shaped plates and the plurality of concave arc-shaped plates are integrally formed and have a wavy upper surface after being integrally formed.
4. A pet dryer according to claim 3, wherein: A plurality of reinforcing plates are fixedly arranged at the bottom of the concave arc-shaped plate at positions between adjacent two first ventilation ducts.
5. A pet dryer according to any one of claims 2 to 4, wherein: The bottom plate mechanism further comprises a water collecting box inserted below the bottom plate body through an insertion mechanism.
6. A pet dryer according to claim 5, wherein: The insertion mechanism comprises a plurality of insertion plates fixedly arranged on the outer sidewalls of the outer two first ventilation ducts and a plurality of insertion slots formed in corresponding positions on the water collecting box, and the plurality of insertion plates can be correspondingly inserted into the plurality of insertion slots.
7. A pet dryer according to any one of claims 1 to 4, 6 wherein: The left air duct mechanism and the right air duct mechanism have the same structure; the left air duct mechanism comprises a plurality of second ventilation ducts fixedly arranged on the cabinet side by side along the height direction of the cabinet, and an air outlet member is provided in communication with the drying chamber on each second ventilation duct.
8. A pet dryer according to claim 7, wherein: The left hot air supply mechanism and the right hot air supply mechanism have the same structure; the left hot air supply mechanism comprises a first heating member fixedly arranged on the cabinet, the first heating member is provided in communication with all the second ventilation ducts on the left air duct mechanism, and a plurality of left air fans are provided in communication on the first heating member.
9. A pet dryer according to claim 8, wherein: The bottom side hot air supply mechanism comprises a second heating member fixedly arranged on the cabinet, the second heating member is provided in communication with all the first ventilation ducts in the bottom plate, and a plurality of bottom side air fans are provided in communication on the second heating member.