Pet fur care dryer

By forming side grooves between the bottom plate and the side plate of the pet dryer, and using a hair dryer to drive the airflow and internal circulation heating system, the problem of pet urination accumulation is solved, the cleaning and disinfection effect of the dryer is achieved, and the service life of the equipment and the experience of pets are improved.

CN223080801UActive Publication Date: 2025-07-11GUANGDONG SHUNDE LVAI ELECTRICAL TECH CO LTD
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Patent Information

Application Number
CN202422391873.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-07-11
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

During use, existing pet dryers are prone to pet urination accumulation in the corner of the bottom of the inner cavity, making it difficult to clean, corrode the dryer and produce a odor, affecting the subsequent pet usage experience.

Method used

A side groove is designed to form between the inner liner base plate and the side plate, and a hair dryer is installed to drive the airflow to blow up from the bottom of the side groove. Combined with the inner circulation warming system and the urine connection plate, the airflow takes away urine and accelerates evaporation, combined with ultraviolet and infrared disinfection, improves internal cleanliness.

Benefits of technology

Effectively avoid urine accumulation, keep the inside of the dryer clean, reduce odor, extend the service life of the equipment, and improve the pet experience.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223080801U_ABST
    Figure CN223080801U_ABST
Patent Text Reader

Abstract

The utility model discloses a pet fur care dryer which comprises an inner container, a box cavity used for containing a pet is formed in the inner container, the inner container comprises an inner container bottom plate and an inner container side plate, a side groove is formed in the inner container and located between the lower end of the inner container bottom plate and the lower end of the inner container side plate, and an air blowing opening is formed in the upper side of the side groove. The air blower is used for driving airflow to pass through the air blowing opening from outside to inside. The pet fur care dryer is favorable for improving the internal cleanliness, good in drying effect and favorable for stabilizing the temperature in the box cavity.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the field of pet dryers, in particular to a pet fur care dryer. Background Art

[0002] At present, pet dryers are used to dry the fur of pets. The pet (such as a dog or a cat, etc.) is put into the dryer, and then the door of the dryer is closed. When the dryer works, a warm air flow will be formed inside the dryer, and the fur of the pet can be dried. However, in actual application, it is inevitable that the pet will urinate due to stress. Since the inner corner of the bottom of the dryer cavity is an inner corner structure, a small amount of urine is likely to be hidden in the inner corner of the bottom of the cavity, and the urine at this position is not easy to be cleaned and evaporated. If the dryer is used in a pet store, the dryer may need to dry a relatively large number of pets one by one. The undried urine will significantly affect the subsequent pets entering the dryer. Moreover, after long-term use, the smell in the pet dryer is relatively strong, which corrodes the metal of the dryer and makes the environment inside the dryer significantly worse. Therefore, it is necessary to improve the existing pet dryer. Summary of the Invention

[0003] The purpose of the utility model is to overcome the deficiencies of the prior art and provide a pet fur care dryer, which is beneficial to improving the internal cleanliness of the pet fur care dryer.

[0004] The purpose of the utility model is realized by the following technical solutions.

[0005] The disclosed pet fur care dryer of the utility model includes an inner container, a box cavity for accommodating a pet is formed inside the inner container. The inner container includes an inner container bottom plate and inner container side plates. A side groove is formed between the inner container bottom plate and the lower ends of the inner container side plates. An air blowing port is formed above the side groove; it further includes a hair dryer for driving air flow to pass through the air blowing port from outside to inside.

[0006] Preferably, an opening is formed on the inner container bottom plate. The side groove is located outside the opening. A support net is provided at the opening, and a urine receiving tray is provided below the support net. The hair dryer is arranged at the rear side of the urine receiving tray; it further includes a box shell. The inner container is arranged inside the box shell. A cavity is formed between the inner container and the box shell. The air inlet end of the hair dryer communicates with the opening, the air outlet end of the hair dryer communicates with the cavity, and the air blowing port communicates with the bottom of the cavity.

[0007] Preferably, an upper bending plate portion is formed at the edge of the inner container bottom plate, and an outer bending plate portion is formed at the lower end of the inner container side plate. The side groove is formed by enclosing the edge of the inner container bottom plate, the outer bending plate portion and the upper bending plate portion.

[0008] Preferably, a warm air assembly is provided outside the inner tank. The warm air assembly includes a heat pump system and an internal circulation air supply blower. The heat pump system includes an internal circulation air heating condenser and an evaporator. The inner tank includes an inner tank top plate, and the inner tank top plate is formed with a warm air return air opening and a warm air outlet. The air outlet end of the internal circulation air supply blower is communicated with the warm air outlet, and the air inlet end of the internal circulation air supply blower is communicated with the warm air return air opening. The internal circulation air heating condenser is correspondingly arranged at the air inlet end of the internal circulation air supply blower, and the internal circulation air heating condenser is located between the internal circulation air supply blower and the evaporator.

[0009] Preferably, the internal circulation air heating condenser and the evaporator are arranged above the inner tank top plate. The internal circulation air heating condenser and the evaporator are arranged at the rear side of the internal circulation air supply blower, and the internal circulation air heating condenser and the evaporator are arranged in a vertically offset manner.

[0010] Preferably, a condensate water receiving tank is provided below the evaporator, and one end of the condensate water receiving tank is connected to an external condensate water tank through a pipe.

[0011] Preferably, the condensate water receiving tank is connected to a vertically arranged internal condensate water discharge pipe. The lower end position of the internal condensate water discharge pipe corresponds to the air blowing opening. A liquid level switch is provided on the urine receiving tray, and an internal drain solenoid valve is provided at the upper end of the internal condensate water discharge pipe. The internal drain solenoid valve is electrically connected to the liquid level switch.

[0012] Preferably, the heat pump system further includes a compressor, a shunt condenser and a shunt solenoid valve. The compressor is connected to the shunt condenser through the shunt solenoid valve.

[0013] Preferably, an ultraviolet disinfection lamp for emitting ultraviolet rays into the inner tank and an infrared heating lamp for emitting infrared rays into the inner tank are provided on the inner tank side plate.

[0014] Preferably, a maintenance opening is provided at the rear of the box shell. The maintenance opening is correspondingly communicated with the hair dryer, and a maintenance door is provided on the maintenance opening.

[0015] Compared with the prior art, the beneficial effects of the present utility model are as follows: By providing a box cavity for accommodating a pet formed inside the inner tank, the inner tank includes an inner tank bottom plate and an inner tank side plate. A side groove is formed between the lower ends of the inner tank bottom plate and the inner tank side plate, and an air blowing opening is formed above the side groove. By providing a hair dryer for driving air flow to pass through the air blowing opening from outside to inside, it is beneficial to improve the internal cleanliness of the pet fur care dryer. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a three-dimensional structural schematic diagram of the pet fur care dryer of the present utility model.

[0017] Figure 2 This is a schematic cross-sectional structure view of the pet fur care dryer of the present utility model in the left view direction.

[0018] Figure 3 This is a schematic cross-sectional structure view of the pet fur care dryer of the present utility model in the front view direction.

[0019] Figure 4 This is a schematic left top view three-dimensional structure view of the pet fur care dryer of the present utility model with the door and partial box shell removed.

[0020] Figure 5 This is a schematic left rear view three-dimensional structure view of the pet fur care dryer of the present utility model with the door and partial box shell removed.

[0021] Figure 6 This is a schematic left rear view three-dimensional structure view of the pet fur care dryer of the present utility model with the door, air box and partial box shell removed.

[0022] Figure 7 This is a schematic structural diagram of the heat pump system of the present utility model.

[0023] Reference numeral description: box shell 1; heat dissipation port 101; maintenance door 102; door 2; inner container 3; box cavity 300; cavity 30; inner container bottom plate 31; support net 311; opening 301; warm air return air port 302; warm air outlet 303; upper bent plate part 312; inner container side plate 32; vertical plate part 321; outer bent plate part 322; side groove 33; air blowing port 331; inner container top plate 34; hair dryer 4; urine receiving tray 5; liquid level switch 51; warm air assembly 6; internal circulation warm air blower 61; internal circulation air heating condenser 62; evaporator 63; expansion valve 631; shunt condenser 64; air box 65; air box door 651; condensate water receiving tank 66; external condensate water discharge pipe 67; external condensate water tank 68; internal condensate water discharge pipe 69; internal drainage solenoid valve 690; ultraviolet disinfection lamp 7; infrared heating lamp 8; temperature sensor 9; compressor 99; shunt solenoid valve 98. Specific embodiments

[0024] The present utility model will be further described below with reference to the accompanying drawings.

[0025] The pet fur care dryer of the present utility model, as Figure 4 shown, includes an inner container 3, as Figure 2 shown, a box cavity 300 for accommodating a pet is formed inside the inner container 3, as Figure 4 shown, the inner container 3 includes an inner container bottom plate 31 and an inner container side plate 32, and the front part of the inner container 3 is open (i.e., there is no sealing plate), as Figure 1 and Figure 2As shown, the box shell 1 is hinged with a box door 2, and the box door 2 can swing open horizontally. When the box door 2 is closed, the box door 2 encloses the front part of the inner tank 3. After the box door 2 is opened, the pet can enter the inner tank 3 from front to back. Thus, when the inner tank 3 is arranged in a cuboid shape, the number of the inner tank side plates 32 is set to three, and the three inner tank side plates 32 are respectively located on the left side, the right side and the rear side of the inner tank 3. The inner tank side plates 32 and the inner tank bottom plate 31 participate in enclosing the box cavity 300.

[0026] As Figure 3 and Figure 4 shown, a side groove 33 is formed between the inner tank bottom plate 31 and the lower end of the inner tank side plate 32 of the inner tank 3. In other words, the side groove 33 is in a laterally concave shape. It can also be understood that for the box cavity 300, the side groove 33 is horizontally concave outward. Thus, it is equivalent to hollowing out the lower corner position of the box cavity 300 to form the side groove 33 structure. Moreover, the side groove 33 is located on the upper side of the inner tank bottom plate 31 (that is to say, the side groove 33 is not set to sink relative to the inner tank bottom plate 31), and the side groove 33 is located on the lower side of the inner tank side plate 32. As Figure 4 and Figure 5 shown, a blowing port 331 is formed on the upper side of the side groove 33, and the blowing port 331 can include elongated holes arranged in a row. As Figure 2 and Figure 5 shown, the dryer of the present utility model further includes a hair dryer 4 for driving air flow to pass through the blowing port 331 from outside to inside. The hair dryer 4 can be a cross-flow fan, and the hair dryer 4 includes an impeller and a driving motor. The driving motor of the hair dryer 4 drives the impeller of the hair dryer 4 to rotate.

[0027] As Figure 2 and Figure 4As shown, when the pet urinates on the inner tank side plate 32, the urine flows downward along the inner tank side plate 32. Since the side groove 33 is concave horizontally outward, it is not easy for the urine to directly fall into the side groove 33. When the hair dryer 4 works, it drives the air flow to pass through the air outlet 331 from outside to inside. That is to say, the air blows downward at the air outlet 331, and the air flow blows into the side groove 33 from outside to inside. Then the air flow flows from the notch of the side groove 33 towards the middle of the box cavity 300. Thus, the urine splashed or flowing into the lower inner wall of the side groove 33 is affected by the blowing, and the urine will be blown away from the side groove 33, that is, the urine leaves the lower corner position of the box cavity 300, making the lower corner position of the box cavity 300 easy to be dried, and also avoiding the accumulation of urine at the lower corner position of the box cavity 300, which facilitates the cleaning of the box cavity 300. Moreover, since the above air flow is first directly blown onto the lower inner wall of the side groove 33, it is more conducive to the accelerated evaporation of the urine on the lower inner wall of the side groove 33. Since the air outlet 331 is formed on the upper side of the side groove 33, that is to say, the air outlet 331 is hidden, it can prevent urine from splashing onto the air outlet 331, and more importantly, prevent urine from splashing out of the inner tank 3 through the air outlet 331. As can be seen from the above, the utility model is conducive to improving the cleanliness of the interior of the pet fur care dryer (that is, the interior of the inner tank 3).

[0028] Furthermore, as Figure 4 shown, an opening 301 is formed on the inner tank bottom plate 31, and the side groove 33 is located outside the opening 301. The opening 301 is provided with a support net 311. The support net 311 may include stainless steel round bars extending horizontally from left to right. The above stainless steel round bars are arranged at intervals in the front-rear direction. The support net 311 supports the pet, thus preventing the pet from falling through the opening 301. As Figure 2 and Figure 3 shown, a urine receiving tray 5 is provided below the support net 311. That is to say, the urine receiving tray 5 is located outside the inner tank 3, and the hair dryer 4 is provided at the rear side of the urine receiving tray 5. As Figure 1 and Figure 2 shown, the dryer of the utility model further includes a box shell 1, and the inner tank 3 is arranged inside the box shell 1. As Figures 2 to 4 shown, a cavity 30 is formed between the inner tank 3 and the box shell 1. As Figure 2 shown, the air inlet end of the hair dryer 4 is communicated with the opening 301, and the air outlet end of the hair dryer 4 is communicated with the cavity 30. As Figure 4 and Figure 5 shown, the air outlet 331 is communicated with the bottom of the cavity 30. As Figure 2As shown, when the hair dryer 4 is operating, the air at the lower part of the box cavity 300 is sucked into the opening 301, and then the air flow passes through the hair dryer 4. The hair dryer 4 conveys the air flow upward into the cavity 30, causing the air pressure in the cavity 30 to slightly increase. Then the air in the cavity 30 will be discharged through the air outlet 331. The air flow blown to the side groove 33 through the air outlet 331 flows towards the opening 301, thus forming an internal circulation air flow. Therefore, it is beneficial for the urine to be driven by the above air flow and flow towards the opening 301. The urine receiving tray 5 catches the urine or wool strips falling from the opening 301. The above air flow passes through the feet of the pet, which is beneficial to accelerating the evaporation of the moisture on the fur of the pet's feet; by forming an internal circulation air flow to dry the side groove 33, the odor is prevented from leaking outside the box shell 1. When the box cavity 300 needs to be cleaned, the cleaning liquid and sundries can fall into the urine receiving tray 5, preventing the liquid generated when cleaning the box cavity 300 from easily flowing out to the ground. As Figure 1 and Figure 4 shown, after the box door 2 is opened, the front end of the urine receiving tray 5 can be hooked with a finger, and then the urine receiving tray 5 can be pulled forward. As Figure 2 shown, the urine receiving tray 5 has a structure with the front end higher than the rear end, so that the above internal circulation air flow can pass above the rear end of the urine receiving tray 5.

[0029] Furthermore, as Figure 3 shown, an upper bending plate portion 312 is formed at the edge portion of the inner tank bottom plate 31. Then the lower end of the upper bending plate portion 312 and the edge portion of the inner tank bottom plate 31 are integrally connected. The upper bending plate portion 312 can be made by bending process. As Figure 4 and Figure 5 shown, an outer bending plate portion 322 is formed at the lower end of the inner tank side plate 32. Specifically, the inner tank side plate 32 includes a vertical plate portion 321. The outer bending plate portion 322 is horizontally arranged, that is, the outer bending plate portion 322 is integrally connected to the lower end of the vertical plate portion 321, and the outer bending plate portion 322 is bent outward relative to the vertical plate portion 321. As Figure 2 and Figure 4 shown, the edge portion of the inner tank bottom plate 31, the outer bending plate portion 322 and the upper bending plate portion 312 enclose the side groove 33, that is to say, the outer bending plate portion 322 is attached and welded to the upper end of the upper bending plate portion 312; the lower inner wall of the side groove 33 is smoothly transitioned to the opening 301; through the above settings, when the urine flows downward along the inner wall of the vertical plate portion 321, since the connection between the outer bending plate portion 322 and the vertical plate portion 321 can be formed by bending process, gaps can be avoided, and it is not easy to hide urine, reducing the corrosion phenomenon of the inner tank 3 caused by urine, especially Figure 3The inner tank bottom plate 31, inner tank side plate 32 and groove 33 therein. Since the connecting inner corner position of the lower end of the upper bending plate portion 312 and the main body of the inner tank bottom plate 31 can also be formed by a bending process, the formation of gaps at the above-mentioned inner corner positions can be avoided, and the above-mentioned inner corner positions are formed into rounded corners by the bending process, which is convenient for wiping the above-mentioned inner corner positions clean with a cleaning towel; the above structure cleverly hides the welding seam between the inner tank bottom plate 31 and the inner tank side plate 32 in the upper part of the side groove 33, which is beneficial to keeping the inside of the inner tank 3 clean. If the pet urinates directly on the support net 311, the urine will directly fall into the urine receiving tray 5 through the opening 301.

[0030] Further, as Figures 2 to 7 shown, a warm air assembly 6 is provided outside the inner tank 3. The warm air assembly 6 includes a heat pump system and an internal circulation warm air blower 61. The heat pump system includes an internal circulation air heating condenser 62 and an evaporator 63. The inner tank 3 includes an inner tank top plate 34, that is to say, the inner tank top plate 34 is located directly above the inner tank bottom plate 31. As Figure 2 and Figure 6 shown, the inner tank top plate 34 is formed with a warm air return air outlet 302 and a warm air outlet 303. The warm air outlet 303 can be arranged forward, and the warm air return air outlet 302 can be arranged backward. The air outlet end of the internal circulation warm air blower 61 is communicated with the warm air outlet 303, and the air inlet end of the internal circulation warm air blower 61 is communicated with the warm air return air outlet 302. As Figures 2 to 5 shown, the warm air assembly 6 further includes an air box 65. The internal circulation air heating condenser 62, the evaporator 63 and the impeller of the internal circulation warm air blower 61 are arranged in the air box 65. The top of the air box 65 is provided with an air box door 651. After the air box door 651 is opened, the internal circulation air heating condenser 62 and the evaporator 63 can be cleaned. The air box 65 covers the inner tank top plate 34. The warm air outlet 303 and the warm air return air outlet 302 are respectively communicated with the air box 65. The air box 65 forms a housing structure of the internal circulation warm air blower 61. The internal circulation warm air blower 61 is a cross-flow fan. As Figure 2 and Figure 6 shown, the internal circulation air heating condenser 62 is correspondingly arranged at the air inlet end of the internal circulation warm air blower 61, that is to say, the internal circulation air heating condenser 62 is arranged close to the impeller of the internal circulation warm air blower 61, and the internal circulation air heating condenser 62 is located between the internal circulation warm air blower 61 and the evaporator 63. The working principle of the heat pump system belongs to the prior art. When the heat pump system works, the temperature of the refrigerant flowing through the internal circulation air heating condenser 62 is relatively high, while the temperature of the refrigerant flowing through the evaporator 63 is relatively low. As Figure 2As shown, when the internal circulation warm air blower 61 operates, the internal circulation warm air blower 61 drives air to blow downward through the warm air outlet 303, that is, to blow air into the box cavity 300, and the air inlet end of the internal circulation warm air blower 61 attracts the air from the warm air return air outlet 302, so that the air in the box cavity 300 is sucked into the air box 65 again. Since the internal circulation air heating condenser 62 is located between the internal circulation warm air blower 61 and the evaporator 63, the air flow first flows through the evaporator 63 and then through the internal circulation air heating condenser 62, and then the air flow flows through the internal circulation warm air blower 61, thus forming an internal circulation air flow. The evaporator 63 is relatively far from the air inlet end of the internal circulation warm air blower 61. Therefore, in addition to absorbing the heat of the circulating air flow, the evaporator 63 will also absorb a certain amount of external heat to a certain extent. And because the internal circulation air heating condenser 62 is relatively close to the air inlet end of the internal circulation warm air blower 61, the heat emitted by the internal circulation air heating condenser 62 is easily transferred to the box cavity 300 by the internal circulation warm air blower 61 (through the internal circulation air flow). So, the above heat pump system can raise the temperature of the box cavity 300, and because the evaporator 63 absorbs heat, part of the moisture in the circulating air flow flowing through the evaporator 63 can condense into water droplets on the evaporator 63, which can not only prevent the odor in the box cavity 300 from leaking out significantly, but also effectively transfer the water on the pet to outside the inner tank 3.

[0031] Further, as Figure 6 shown, the internal circulation air heating condenser 62 and the evaporator 63 are arranged above the inner tank top plate 34, and the internal circulation air heating condenser 62 and the evaporator 63 are arranged at the rear side of the internal circulation warm air blower 61. Thus, as Figure 2 shown, the air inlet end of the internal circulation warm air blower 61 is arranged backward. As Figure 2 and Figure 6 shown, the internal circulation air heating condenser 62 and the evaporator 63 are arranged in a vertically staggered manner. So, it can reduce the superimposed obstruction of the internal circulation air heating condenser 62 and the evaporator 63 on the circulating air flow formed by the operation of the internal circulation warm air blower 61, enabling part of the circulating air flow to bypass the evaporator 63 and directly reach the internal circulation air heating condenser 62, which is beneficial to reducing the wind resistance and is also beneficial to the internal circulation air heating condenser 62 heating the circulating air flow. As Figure 2 shown, it is preferred that the position of the evaporator 63 is higher than that of the internal circulation air heating condenser 62, so that the evaporator 63 is relatively arranged outside (relatively far from the warm air return air outlet 302), which can reduce the degree of heat absorption of the evaporator 63 from the circulating air flow, and is also beneficial to the air flow entering the air box 65 upward through the warm air return air outlet 302 to easily flow to the internal circulation air heating condenser 62 (because the position of the internal circulation air heating condenser 62 is lower).

[0032] Further, as Figure 4 and Figure 6As shown, a condensate receiving tank 66 is provided on the lower side of the evaporator 63. The condensate receiving tank 66 extends in the left - right direction. One end of the condensate receiving tank 66 is connected to an external condensate tank 68 through a pipe. That is to say, one end of the condensate receiving tank 66 is connected to the external condensate tank 68 through an external condensate drain pipe 67 (it should be noted that only Figure 4 the external condensate drain pipe 67 is schematically drawn); thus, when the dryer is working, condensate is continuously formed. The condensate drops into the condensate receiving tank 66, and then flows into the external condensate tank 68 through the external condensate drain pipe 67, which is convenient for collecting condensate. It is also convenient to pour out the water after the external condensate tank 68 is full. The external condensate tank 68 is arranged at the rear side of the cabinet 1.

[0033] Furthermore, as Figure 4 shown, the condensate receiving tank 66 is connected to a vertically - arranged internal condensate drain pipe 69. The lower end position of the internal condensate drain pipe 69 corresponds to the air - blowing port 331. As Figure 2 shown, the urine receiving tray 5 is provided with a liquid - level switch 51. As Figure 4 shown, an internal drain solenoid valve 690 is provided at the upper end of the internal condensate drain pipe 69 (it should be noted that only Figure 4 the internal condensate drain pipe 69 and the internal drain solenoid valve 690 are schematically drawn); the internal drain solenoid valve 690 is electrically connected to the liquid - level switch 51. When the liquid level in the urine receiving tray 5 is low, the internal drain solenoid valve 690 opens, so that the condensate in the condensate receiving tank 66 can flow downward through the internal condensate drain pipe 69 to the air - blowing port 331. Under the action of the blower 4, the condensate then flows through the air - blowing port 331 into the side groove 33 to wash the urine, and then the condensate flows into the urine receiving tray 5. When the liquid level of the urine receiving tray 5 rises to trigger the liquid - level switch 51, the liquid - level switch 51 de - energizes the internal drain solenoid valve 690, and the internal drain solenoid valve 690 closes the internal condensate drain pipe 69 to prevent the urine receiving tray 5 from overflowing when full. As Figure 4 shown, the external condensate drain pipe 67 generally extends in the front - rear direction. The front end of the external condensate drain pipe 67 can be connected to the upper end of the internal condensate drain pipe 69, and the internal drain solenoid valve 690 is located below the front end of the external condensate drain pipe 67. Thus, when the internal drain solenoid valve 690 is in the closed state, the condensate in the condensate receiving tank 66 cannot pass through the internal drain solenoid valve 690, but the condensate in the condensate receiving tank 66 can only flow through the external condensate drain pipe 67 to the external condensate tank 68.

[0034] Furthermore, as Figure 7 shown, the heat pump system further includes a compressor 99, a split condenser 64 and a split solenoid valve 98. The compressor 99 is connected to the split condenser 64 through the split solenoid valve 98. As Figure 4 and Figure 5As shown, the shunt condenser 64 and the compressor 99 can be arranged above the inner container 3, and the shunt condenser 64 and the compressor 99 are located in the rear position of the cabinet 1. That is to say, the shunt condenser 64 is located outside the air box 65, as Figure 6 shown, a heat dissipation port 101 is formed in the upper rear part of the cabinet 1. As Figure 7 shown, when the temperature in the box cavity 300 is too high, the shunt solenoid valve 98 is opened, so that part of the refrigerant output by the compressor 99 can be shunted to the shunt condenser 64. Relatively speaking, the flow rate of the refrigerant flowing through the internal circulation air heating condenser 62 will decrease, and the heat generation of the internal circulation air heating condenser 62 can be reduced, which is beneficial to relatively reduce the temperature in the box cavity 300. Specifically, as Figure 2 shown, a temperature sensor 9 can be arranged in the upper part of the box cavity 300. The controller monitors the temperature in the box cavity 300 through the temperature sensor 9. If the temperature in the box cavity 300 exceeds the set value, the controller correspondingly controls the shunt solenoid valve 98 to open, as Figure 7 shown, the refrigerant flowing through the internal circulation air heating condenser 62 and the shunt condenser 64 converges and then flows through the expansion valve 631, and then the refrigerant flows through the evaporator 63 and returns to the suction end of the compressor 99. When the temperature in the box cavity 300 is lower than the set value, the controller controls the shunt solenoid valve 98 to close; through the above settings, when the dryer is working, the heat pump system can continuously work, but the temperature in the box cavity 300 can be stabilized.

[0035] Furthermore, as Figure 2 shown, an ultraviolet disinfection lamp 7 for emitting ultraviolet rays into the inner container 3 is arranged on the inner container side plate 32, and an infrared heating lamp 8 for emitting infrared rays into the inner container 3 is arranged on the inner container side plate 32. So when the dryer is not in use, the ultraviolet disinfection lamp 7 can be turned on to irradiate the inside of the inner container 3 to achieve a disinfection effect. When the dryer is working, the infrared heating lamp 8 can be powered on to irradiate the inside of the inner container 3, so that the air in the box cavity 300 is heated up faster, and in winter, pets can be prevented from getting cold and sick.

[0036] Furthermore, as Figure 6 shown, a maintenance port is arranged at the rear of the cabinet 1, as Figure 2 and Figure 5 shown, the maintenance port corresponds to and communicates with the hair dryer 4, and a maintenance door 102 is arranged at the maintenance port. So after the maintenance door 102 is opened, the hair strips dropped by pets in the hair dryer 4 can be cleaned through the maintenance port, including cleaning the hair strips on the impeller of the hair dryer 4; a filter screen is arranged at the air inlet end of the hair dryer 4, which can greatly reduce the hair strips or sundries entering the hair dryer 4. As Figure 6 shown, a filter screen structure for intercepting hair strips is also arranged corresponding to the warm air return port 302.

[0037] The dryer of the present utility model can dry the fur of pets through the physical method of warm air. Specifically, the drying temperature of the chamber 300 is set at 38 degrees Celsius. In actual application, the pet can also be first dry-coated with hair conditioner on the grooming table, the whole body can be smeared with hair care cream, then wrapped with a towel, the pet can be put into the chamber 300 and the door 2 can be closed, the infrared heating lamp 8 and the heat pump system (and the internal circulation air blower 61) can be started, so that the temperature in the chamber 300 is 38 degrees Celsius and maintained for 5 minutes, which can promote the pet's fur to absorb the essence of the hair conditioner and the hair care cream, is beneficial to optimize the pet's hair in a relatively short time, and then the pet can be carried to the flushing pool and rinsed clean with water. Such operation is beneficial to make the washed pet's hair more fluffy, soft, moisturized and knot-resistant.

Claims

1. A pet fur care dryer, characterized in that: It includes an inner tank (3), a box cavity (300) for accommodating a pet is formed in the inner tank (3), the inner tank (3) includes an inner tank bottom plate (31) and inner tank side plates (32), a side groove (33) is formed between the lower ends of the inner tank bottom plate (31) and the inner tank side plates (32) of the inner tank (3), and a blowing port (331) is formed on the upper side of the side groove (33); it also includes a hair dryer (4) for driving air flow to pass through the blowing port (331) from outside to inside.

2. The pet fur care dryer according to claim 1, characterized in that: An opening (301) is formed on the inner tank bottom plate (31), the side groove (33) is located outside the opening (301), a support net (311) is provided at the opening (301), a urine receiving tray (5) is provided below the support net (311), and the hair dryer (4) is arranged at the rear side of the urine receiving tray (5); it also includes a box shell (1), the inner tank (3) is arranged in the box shell (1), a cavity (30) is formed between the inner tank (3) and the box shell (1), the air inlet end of the hair dryer (4) communicates with the opening (301), the air outlet end of the hair dryer (4) communicates with the cavity (30), and the blowing port (331) communicates with the bottom of the cavity (30).

3. The pet fur care dryer according to claim 1 or 2, characterized in that: An upper bending plate portion (312) is formed at the edge portion of the inner tank bottom plate (31), an outer bending plate portion (322) is formed at the lower end of the inner tank side plate (32), and the side groove (33) is surrounded by the edge portion of the inner tank bottom plate (31), the outer bending plate portion (322) and the upper bending plate portion (312).

4. The pet fur care dryer according to claim 2, characterized in that: A warm air assembly (6) is provided outside the inner tank (3), the warm air assembly (6) includes a heat pump system and an internal circulation warm air blower (61), the heat pump system includes an internal circulation air heating condenser (62) and an evaporator (63), the inner tank (3) includes an inner tank top plate (34), a warm air return air port (302) and a warm air outlet port (303) are formed on the inner tank top plate (34), the air outlet end of the internal circulation warm air blower (61) communicates with the warm air outlet port (303), the air inlet end of the internal circulation warm air blower (61) communicates with the warm air return air port (302), the internal circulation air heating condenser (62) is correspondingly arranged at the air inlet end of the internal circulation warm air blower (61), and the internal circulation air heating condenser (62) is located between the internal circulation warm air blower (61) and the evaporator (63).

5. The pet fur care dryer according to claim 4, characterized in that: The internal circulation air heating condenser (62) and the evaporator (63) are arranged above the inner tank top plate (34), the internal circulation air heating condenser (62) and the evaporator (63) are arranged at the rear side of the internal circulation warm air blower (61), and the internal circulation air heating condenser (62) and the evaporator (63) are arranged in a vertically offset manner.

6. The pet fur care dryer according to claim 5, wherein: A condensate receiving water tank (66) is provided below the evaporator (63), and one end of the condensate receiving water tank (66) is connected to an external condensate water tank (68) through a pipe.

7. The pet fur care dryer according to claim 6, characterized in that: The condensate receiving water tank (66) is connected to a vertically arranged inner condensate drain pipe (69). The lower end of the inner condensate drain pipe (69) corresponds to the air outlet (331). The urine receiving tray (5) is provided with a liquid level switch (51). The upper end of the inner condensate drain pipe (69) is provided with an inner drain solenoid valve (690), and the inner drain solenoid valve (690) is electrically connected to the liquid level switch (51).

8. The pet fur care dryer according to claim 4, wherein: The heat pump system further includes a compressor (99), a split condenser (64), and a split solenoid valve (98). The compressor (99) is connected to the split condenser (64) through the split solenoid valve (98).

9. The pet fur care dryer according to claim 4, wherein: The inner tank side plate (32) is provided with an ultraviolet disinfection lamp (7) for emitting ultraviolet rays into the inner tank (3), and the inner tank side plate (32) is provided with an infrared heating lamp (8) for emitting infrared rays into the inner tank (3).

10. The pet fur care dryer according to claim 2, wherein: A maintenance opening is provided at the rear of the cabinet (1). The maintenance opening corresponds to and communicates with the hair dryer (4), and the maintenance opening is provided with a maintenance door (102).

Citation Information

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