Air conditioner
By installing a water connection tank on the upper air outlet frame of the air conditioner, the problem of condensate dripping and flowing into the interior of the air conditioner is solved, and the effect of protecting the indoor environment and improving the reliability of the air conditioner is achieved.
Patent Information
- Application Number
- CN202420890948.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-25
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-04-25
AI Technical Summary
When the air conditioner is refrigerated, the condensate water may drip into the top air outlet and blow out with the air conditioner air, affecting the indoor environment, and the condensate water may flow into the interior of the air conditioner, causing the electrical components to be short-circuited.
An air conditioner is designed, which is equipped with a water connection tank on the upper air outlet frame, which can receive condensate water flowing from the upper air outlet frame and/or the switch door components, thereby preventing condensate water from dripping and flowing into the interior of the air conditioner.
It effectively prevents condensate water from falling into the air outlet and blowing out with the air conditioning air, protecting the indoor environment and preventing condensate water from flowing into the air conditioner and causing short circuits, improving the reliability of the air conditioner.
Smart Images

Figure CN222911928U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of air conditioners, and in particular to an air conditioner. Background Art
[0002] In the related art, an air outlet is provided at the top of the air conditioner. When the air conditioner operates in a refrigerating mode, condensed water will be generated at the top of the air conditioner. The condensed water may be blown into the room together with the air from the air conditioner, resulting in water droplets in the indoor space, affecting the user experience. Moreover, the condensed water may flow into the interior of the air conditioner from the air outlet, causing damage to the electrical components inside the air conditioner, and there is room for improvement. Summary of the Utility Model
[0003] The utility model aims to at least solve one of the technical problems existing in the prior art. For this purpose, the utility model provides an air conditioner, which can prevent condensed water from dripping into the top air outlet and being blown out together with the air from the air conditioner, is beneficial to protecting the indoor environment, and can prevent condensed water from flowing into the air conditioner and causing short - circuit of electrical components.
[0004] The air conditioner according to an embodiment of the utility model includes: an air - conditioner main body, the top of the air - conditioner main body has an upper air - outlet frame, and a top air outlet is provided at the upper air - outlet frame; a switch - door component, the switch - door component is installed on the air - conditioner main body and is used for opening and closing the top air outlet, a water receiving groove is provided on the upper air - outlet frame, and the water receiving groove is adapted to receive the condensed water flowing down from the upper air - outlet frame and / or the switch - door component.
[0005] The air conditioner according to an embodiment of the utility model is provided with a water receiving groove on the upper air - outlet frame, and the water receiving groove can receive the condensed water flowing down from the upper air - outlet frame and / or the switch - door, so that condensed water can be prevented from dripping into the top air outlet and being blown out together with the air from the air conditioner, which is beneficial to protecting the indoor environment, and can prevent condensed water from flowing into the air conditioner and causing short - circuit of electrical components, thus improving the reliability of the air conditioner.
[0006] In the air conditioner according to some embodiments of the utility model, the switch - door component includes a first switch - door, the first switch - door is rotatably installed on the upper air - outlet frame for opening and closing the top air outlet, and a first water - guiding structure is formed on the first switch - door, and the first water - guiding structure is adapted to drain water to the water receiving groove when the first switch - door opens the top air outlet.
[0007] For an air conditioner according to some embodiments of the present utility model, when the first switch door opens the top air outlet, the front end of the first switch door lifts and the rear end drops. The first diversion structure is a diversion groove formed on the top surface of the first switch door. The diversion groove includes a first groove section and a second groove section. The first groove section is located at the front of the first switch door. The front end of the second groove section is communicated with the first groove section and a first drain opening is formed at the rear end. The diversion groove is adapted to drain water to the water receiving tank through the first drain opening.
[0008] For an air conditioner according to some embodiments of the present utility model, there are two second groove sections, and the two second groove sections are respectively located at the left and right ends of the first switch door.
[0009] For an air conditioner according to some embodiments of the present utility model, the first drain opening is located at the middle position of the first switch door along the front-rear direction.
[0010] For an air conditioner according to some embodiments of the present utility model, the first switch door forms an air outlet opening. The switch door component includes a second switch door for opening and closing the air outlet opening. The second switch door is rotationally matched with the first switch door and slidably matched with the upper air outlet frame, so as to drive the second switch door to perform the opening and closing actions synchronously through the opening and closing actions of the first switch door. A second diversion structure is formed on the second switch door, and the second diversion structure is adapted to drain water to the water receiving tank when the second switch door opens the air outlet opening.
[0011] For an air conditioner according to some embodiments of the present utility model, when the second switch door opens the air outlet opening, the front end of the second switch door lifts and the rear end drops. The second diversion structure is a lapping flange formed at the rear of the second switch door. The lapping flange is recessed downward, so as to lap under the top wall of the first switch door when the second switch door closes the air outlet opening, and extend above the water receiving tank when the second switch door opens the air outlet opening.
[0012] For an air conditioner according to some embodiments of the present utility model, a sunk groove is formed on the top wall of the upper air outlet frame. A second drain opening is provided on one side of the sunk groove close to the top air outlet. The sunk groove is adapted to drain water to the water receiving tank through the second drain opening. A water retaining flange is provided on one side of the sunk groove away from the second drain opening.
[0013] For an air conditioner according to some embodiments of the present utility model, the top wall of the upper air outlet frame inclines downward along the direction close to the sunk groove; and / or, the bottom wall of the sunk groove inclines downward along the direction close to the second drain opening.
[0014] An air conditioner according to some embodiments of the present utility model, the upper air outlet frame includes side frame parts located on both sides of the switch door part, a sunken groove is formed on the top wall of each side frame part, and one side of the sunken groove close to the switch door part is open to form the second drain port.
[0015] An air conditioner according to some embodiments of the present utility model, a drain hole is formed at the lowest part of the water receiving tank.
[0016] An air conditioner according to some embodiments of the present utility model, the upper air outlet frame defines an installation space for installing the switch door part, one side of the lower end of the upper air outlet frame close to the installation space has a water receiving part, the water receiving part extends along the circumference of the installation space, and the water receiving part defines the water receiving tank with an open top.
[0017] An air conditioner according to some embodiments of the present utility model, the upper air outlet frame includes a rear frame part and side frame parts, there are two side frame parts and they are arranged at intervals in the left - right direction, the left and right ends of the rear frame part are connected to the rear ends of the two side frame parts, the installation space is defined between the two side frame parts and the rear frame part, the water receiving part includes a rear water receiving part located at the lower end of the rear frame part and a side water receiving part located at the lower end of the side frame part, the water receiving tank includes a rear water receiving tank defined by the rear water receiving part and a side water receiving tank defined by the side water receiving part, and the rear end of the side water receiving tank is communicated with the rear water receiving tank.
[0018] An air conditioner according to some embodiments of the present utility model, the side water receiving tank extends obliquely downward from front to back, and the rear water receiving tank is lower than the side water receiving tank, and a drain hole is provided in the rear water receiving tank.
[0019] An air conditioner according to some embodiments of the present utility model, the air conditioner main body includes an air outlet frame part, the air outlet frame part includes a rear air outlet frame and a front air outlet frame, the front air outlet frame is arranged in front of the rear air outlet frame to form an air outlet duct between the front air outlet frame and the rear air outlet frame, the upper air outlet frame is arranged above the air outlet frame part and is communicated with the air outlet duct, the upper end of the front air outlet frame has a first water guiding part, the upper end of the rear air outlet frame has a second water guiding part, the second water guiding part drains water to the rear wall surface of the rear air outlet frame, the first water guiding part is higher than the second water guiding part and guides water to the second water guiding part, and a drain hole for draining water to the first water guiding part is formed on the water receiving tank above the first water guiding part.
[0020] Additional aspects and advantages of the present utility model will be given in part in the following description, become apparent in part from the following description, or be understood through the practice of the present utility model. Description of the Drawings
[0021] Figure 1Schematic diagram of an air conditioner according to an embodiment of the present utility model;
[0022] Figure 2 is Figure 1 Partial enlarged view at position A in
[0023] Figure 3 Installation schematic diagram of a door opening and closing component according to an embodiment of the present utility model;
[0024] Figure 4 Installation schematic diagram of a first door opening and closing component according to an embodiment of the present utility model;
[0025] Figure 5 Schematic diagram of a first door opening and closing component according to an embodiment of the present utility model;
[0026] Figure 6 Installation schematic diagram of a second door opening and closing component according to an embodiment of the present utility model;
[0027] Figure 7 Schematic diagram of an upper air outlet frame according to an embodiment of the present utility model;
[0028] Figure 8 Partial sectional view of an air conditioner according to an embodiment of the present utility model;
[0029] Figure 9 is Figure 8 Partial enlarged view at position B in
[0030] Figure 10 Exploded view of an air conditioner according to an embodiment of the present utility model;
[0031] Figure 11 Schematic diagram of a rear air outlet frame according to an embodiment of the present utility model.
[0032] Reference numerals:
[0033] Air conditioner 100,
[0034] Air conditioner main body 1, upper air outlet frame 11, installation space 11a, rear frame part 111, side frame part 112, sinking groove 1121, second drain outlet 1122, water retaining flange 1123, top air outlet 113, water receiving tank 114, side water receiving tank 1141, rear water receiving tank 1142, drain hole 1143, water receiving part 115, rear water receiving part 1151, side water receiving part 1152,
[0035] Air outlet frame component 12, front air outlet frame 121, first water guiding part 1211, rear air outlet frame 122, second water guiding part 1221, guiding groove 1222, water storage tank 1223, air outlet duct 123,
[0036] The door opening and closing component 2, the first door opening and closing part 21, the first diversion structure 210, the diversion groove 211, the first groove section 2111, the second groove section 2112, the first drain port 2113, the air outlet opening 212, the second door opening and closing part 22, the second diversion structure 220, the overlapping flange 221, the first mounting part 222, the second mounting part 223, and the evaporator 3. Detailed implementation manners
[0037] The embodiments of the present utility model will be described in detail below. The examples of the embodiments are shown in the drawings, wherein the same or similar reference numerals represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary and are intended to explain the present utility model, and should not be construed as a limitation to the present utility model.
[0038] The following disclosure provides many different embodiments or examples for implementing different structures of the present utility model. To simplify the disclosure of the present utility model, the components and settings of specific examples are described below. Of course, they are only examples and are not intended to limit the present utility model. In addition, the present utility model may repeat reference numerals and / or letters in different examples. This repetition is for the purpose of simplification and clarity, and does not itself indicate the relationship between the various embodiments and / or settings discussed. In addition, the present utility model provides examples of various specific processes and materials, but those of ordinary skill in the art can realize the applicability of other processes and / or the use of other materials.
[0039] Next, with reference to the drawings, the air conditioner 100 according to the embodiments of the present utility model will be described.
[0040] As Figures 1-11 shown, the air conditioner 100 according to the embodiments of the present utility model includes: an air conditioner main body 1 and a door opening and closing component 2. The top of the air conditioner main body 1 has an upper air outlet frame 11, and a top air outlet 113 is provided at the upper air outlet frame 11. The door opening and closing component 2 is installed on the air conditioner main body 1 and is used to open and close the top air outlet 113. A water receiving groove 114 is provided on the upper air outlet frame 11, and the water receiving groove 114 is adapted to receive the condensed water flowing down from the upper air outlet frame 11 and / or the door opening and closing component 2.
[0041] Thereby, it is possible to prevent the condensed water from dripping into the top air outlet 113 and being blown out together with the air conditioner wind, which is beneficial to protecting the indoor environment, and it is possible to prevent the condensed water from flowing into the air conditioner 100 and causing a short circuit of the electrical components, thereby improving the reliability of the air conditioner 100.
[0042] First, as Figures 1-3As shown in the figure, the air conditioner 100 includes an air conditioner main body 1. The top of the air conditioner main body 1 has an upper air outlet frame 11. There is a top air outlet 113 at the upper air outlet frame 11. The top air outlet 113 is communicated with the air outlet duct 123 of the air conditioner 100, so that the air conditioner 100 can blow out air-conditioned air outward through the top air outlet 113.
[0043] The air conditioner 100 further includes a switch door component 2. The switch door component 2 is movably installed on the top of the air conditioner main body 1, so that the switch door component 2 can be switched between an open position and a closed position. When the switch door component 2 is switched to the open position, the switch door component 2 can close the top air outlet 113, and when the switch door component 2 is switched to the closed position, the switch door component 2 can open the top air outlet 113.
[0044] It should be noted that when cold air blows out from the top air outlet 113, condensed water will be formed on the upper air outlet frame 11 and the switch door component 2. The condensed water may be blown into the room together with the air-conditioned air, resulting in water droplets in the indoor space, affecting the user experience, and may flow into the interior of the air conditioner 100 from the air outlet, causing damage to the electrical components inside the air conditioner 100.
[0045] To solve the above problems, a water receiving tank 114 can be provided on the upper air outlet frame 11. The water receiving tank 114 is adapted to receive the condensed water flowing down from the upper air outlet frame 11 and / or the switch door component 2, and store or discharge the condensed water outside the air conditioner 100. Specifically, the water receiving tank 114 can be set to receive the condensed water flowing down from the upper air outlet frame 11; or, the water receiving tank 114 can be set to receive the condensed water flowing down from the switch door component 2; or, the water receiving tank 114 can be set to receive the condensed water flowing down from the upper air outlet frame 11 and also receive the condensed water flowing down from the switch door component 2. Thus, it can be avoided that the condensed water is blown into the room together with the air-conditioned air blown out from the top air outlet 113, and it can also be avoided that the condensed water flows into the air conditioner 100 and causes a short circuit between electrical components, improving the practicability of the air conditioner 100. Of course, the water receiving tank 114 can also be used to receive the liquid dripping from the indoor space onto the top of the air conditioner 100, which will not be elaborated here.
[0046] According to the air conditioner 100 of the embodiment of the present utility model, by providing the water receiving tank 114 on the upper air outlet frame 11 and enabling the water receiving tank 114 to receive the condensed water flowing down from the upper air outlet frame 11 and / or the switch door component 2, it can be avoided that the condensed water drops into the top air outlet 113 and is blown out together with the air-conditioned air, which is beneficial to protecting the indoor environment, and it can also be avoided that the condensed water flows into the air conditioner 100 and causes a short circuit of the electrical components, improving the reliability of the air conditioner 100.
[0047] In some embodiments of the present utility model, the door opening and closing component 2 includes a first door 21, which is rotatably installed on the upper air outlet frame 11 for opening and closing the top air outlet 113. A first diversion structure 210 is formed on the first door 21, and the first diversion structure 210 is adapted to drain water to the water receiving tank 114 when the first door 21 opens the top air outlet 113.
[0048] For example, referring to Figures 2-4 As shown, the door opening and closing component 2 includes a first door 21, which is arranged to match the top air outlet 113, and the first door 21 is rotatably installed on the upper air outlet frame 11 for opening and closing the top air outlet 113. Specifically, when the door opening and closing component 2 is switched to the open position, the first door 21 can open the top air outlet 113, and when the door opening and closing component 2 is switched to the closed position, the first door 21 can close the top air outlet 113.
[0049] Among them, a first diversion structure 210 can be formed on the first door 21. When the door opening and closing component 2 is switched to the open position, the first door 21 opens the top air outlet 113, and the first diversion structure 210 faces the first door 21 so that the first diversion structure 210 can drain water into the water receiving tank 114.
[0050] Through the above settings, it is possible to prevent the condensed water on the first door 21 from flowing into the top air outlet 113, improving the design rationality of the door opening and closing component 2.
[0051] In some embodiments of the present utility model, when the first door 21 opens the top air outlet 113, the front end of the first door 21 rises and the rear end falls. The first diversion structure 210 is a diversion groove 211 formed on the top surface of the first door 21. The diversion groove 211 includes a first groove section 2111 and a second groove section 2112. The first groove section 2111 is located at the front of the first door 21. The front end of the second groove section 2112 is connected to the first groove section 2111 and a first drainage port 2113 is formed at the rear end. The diversion groove 211 is adapted to drain water to the water receiving tank 114 through the first drainage port 2113.
[0052] For example, referring to Figures 3-6 As shown, the middle part of the first door 21 in the front-rear direction can be rotatably connected to the upper air outlet frame 11. When the door opening and closing component 2 is switched to the open position, the front end of the first door 21 rises and the rear end falls, so that the first door 21 can extend obliquely downward from front to back, and the top air outlet 113 can be opened forward.
[0053] Among them, the first guide structure 210 is a guide groove 211, which is formed on the top surface of the first switch door 21. The guide groove 211 includes a first groove section 2111 and a second groove section 2112. The first groove section 2111 is located at the front of the first switch door 21, and the front end of the second groove section 2112 is connected to the first groove section 2111 and a first drain port 2113 is formed at the rear end. When the switch door component 2 is switched to the open position, the first drain port 2113 is located at the lower end of the second groove section 2112 and is opposite to the water receiving groove 114, so that the guide groove 211 can drain water to the water receiving groove 114 through the first drain port 2113.
[0054] It should be noted that the top surface of the first switch door 21 is located on the side of the first switch door 21 away from the top air outlet 113. When the first switch door 21 opens the top air outlet 113 forward and the top air outlet 113 blows out cold air, condensation water is easily formed on the front part of the top surface of the first switch door 21. By providing a guide groove 211 on the top surface of the first switch door 21, the condensation water can condense in the first groove section 2111, so that the condensation water can flow into the second groove section 2112 along the first groove section 2111, and flow downward along the second groove section 2112 to be discharged from the first drain outlet 2113 into the water receiving groove 114.
[0055] The above arrangement ensures that the first flow guiding structure 210 can guide the condensed water on the first switch door 21 into the water receiving groove 114 as much as possible, reducing the overflow of the condensed water, and can improve the drainage efficiency of the first flow guiding structure 210, thereby improving the practicality of the first flow guiding structure 210.
[0056] In some embodiments of the present invention, Figure 5 As shown, the number of the second slot sections 2112 can be two, and the two second slot sections 2112 are respectively located at the left and right ends of the first switch door 21 and are respectively connected to the two ends of the first slot section 2111. Through the above arrangement, the condensed water in the first slot section 2111 can flow into the two first slot sections 2111 from both sides to be drained through the two first drain ports 2113, which is beneficial to improving the drainage efficiency of the first flow guiding structure 210, and can prevent the condensed water from accumulating in the first slot section 2111, thereby improving the design rationality of the first flow guiding structure 210.
[0057] In some embodiments of the present invention, Figure 4As shown, the first drain opening 2113 can be set at the middle position of the first switch door 21 in the front-back direction. Through the above settings, the distance between the first tank section 2111 and the first drain opening 2113 can be shortened, which is beneficial to improving the drainage efficiency of the first diversion structure 210. Moreover, the first drain opening 2113 can be arranged close to the rotation axis of the first switch door 21, which is beneficial to reducing the movement range of the first drain opening 2113, so that the first drain opening 2113 can be more easily docked with the water receiving tank 114, reducing the layout difficulty of the switch door component 2.
[0058] In some embodiments of the present invention, the first switch door 21 is formed with an air outlet opening 212. The switch door component 2 includes a second switch door 22 for opening and closing the air outlet opening 212. The second switch door 22 is rotationally engaged with the first switch door 21 and slidably engaged with the upper air outlet frame 11, so as to drive the second switch door 22 to perform the opening and closing actions synchronously through the opening and closing actions of the first switch door 21. A second diversion structure 220 is formed on the second switch door 22, and the second diversion structure 220 is adapted to drain water to the water receiving tank 114 when the second switch door 22 opens the air outlet opening 212.
[0059] For example, referring to Figure 3 and Figure 6 As shown, an air outlet opening 212 is formed in the middle of the first switch door 21. The switch door component 2 includes a second switch door 22, and the second switch door 22 is arranged to match the air outlet opening 212. The second switch door 22 is installed in the air outlet opening 212 and is used to open and close the air outlet opening 212. Specifically, when the switch door component 2 is switched to the open position, the second switch door 22 can open the air outlet opening 212, so that the top air outlet 113 can communicate with the indoor space through the air outlet opening 212. And when the switch door component 2 is switched to the closed position, the second switch door 22 can close the air outlet opening 212.
[0060] Among them, a first mounting portion 222 and a second mounting portion 223 can be respectively provided at the front and rear ends of the second switch door 22. The first mounting portion 222 is used for rotatably cooperating with the first switch door 21, and the second mounting portion 223 is used for slidably cooperating with the upper air outlet frame 11, so that the first switch door 21 can be linked with the second switch door 22, so that the opening and closing actions of the first switch door 21 can drive the second switch door 22 to perform the opening and closing actions synchronously. At the same time, a second diversion structure 220 can be provided on the second switch door 22. When the second switch door 22 opens the air outlet opening 212, the second diversion structure 220 can drain water towards the water receiving tank 114.
[0061] It can be understood that by setting the first switch door 21 and the second switch door 22 in linkage, the number of driving parts can be reduced, the cost can be lowered, and it is ensured that the first switch door 21 and the second switch door 22 can be opened or closed simultaneously, improving the reliability of the switch door component 2. In addition, by providing a second diversion structure 220 on the second switch door 22, it is possible to prevent the condensed water droplets on the second switch door 22 from falling into the top air outlet 113 and being blown out together with the air-conditioning air, and it is possible to prevent the condensed water on the second switch door 22 from flowing into the air conditioner 100 and causing electrical components to short-circuit, which is beneficial to improving the practicability of the switch door component 2.
[0062] In some embodiments of the present invention, when the second switch door 22 opens the air outlet opening 212, the front end of the second switch door 22 is lifted and the rear end drops. The second diversion structure 220 is a lapping flange 221 formed at the rear of the second switch door 22. The lapping flange 221 is recessed downward so as to lap under the top wall of the first switch door 21 when the second switch door 22 closes the air outlet opening 212, and extends above the water receiving tank 114 when the second switch door 22 opens the air outlet opening 212.
[0063] For example, referring to Figure 3 and Figure 6 As shown, when the switch door component 2 is switched to the open position, the front end of the second switch door 22 is lifted and the rear end drops, so that the second switch door 22 can open the air outlet opening 212 forward. Among them, a lapping flange 221 is provided at the rear of the second switch door 22. The lapping flange 221 extends backward and forms the second diversion structure 220. The lapping flange 221 is recessed downward so that the lapping flange 221 is staggered from the second switch door 22.
[0064] Specifically, when the second switch door 22 closes the air outlet opening 212, the lapping flange 221 can lap under the top wall of the first switch door 21 to achieve the limit between the first switch door 21 and the second switch door 22; and when the second switch door 22 closes the air outlet opening 212, the lapping flange 221 can move downward to keep a gap from the top wall of the first switch door 21. At this time, the lapping flange 221 can extend above the water receiving tank 114, so that the condensed water on the top wall of the second switch door 22 can flow downward to the lapping flange 221 and flow into the water receiving tank 114 through the lapping flange 221.
[0065] Through the above settings, the lapping flange 221 can have both a limiting function and a diversion function, can improve the sealing performance of the air outlet opening 212, and can ensure the water guiding performance of the second switch door 22, improving the practicability of the switch door component 2.
[0066] In some embodiments of the present utility model, a sunken groove 1121 is formed on the top wall of the upper air outlet frame 11. A second drain port 1122 is provided on one side of the sunken groove 1121 close to the top air outlet 113. The sunken groove 1121 is adapted to drain water to the water receiving groove 114 through the second drain port 1122. A water retaining flange 1123 is provided on one side of the sunken groove 1121 away from the second drain port 1122.
[0067] For example, with reference to Figure 7 As shown, a sunken groove 1121 can be provided on the top wall of the upper air outlet frame 11. The sunken groove 1121 is used to collect the condensed water of the upper air outlet frame 11. One side of the sunken groove 1121 close to the top air outlet 113 is open and provided with a second drain port 1122. The second drain port 1122 is disposed opposite to the water receiving groove 114, so that the sunken groove 1121 can drain water into the water receiving groove 114 through the second drain port 1122. A water retaining flange 1123 is provided on one side of the sunken groove 1121 away from the second drain port 1122. The water retaining flange 1123 is used to restrict the condensed water in the sunken groove 1121 to prevent the condensed water from overflowing to the outside of the upper air outlet frame 11.
[0068] Specifically, when the switch door member 2 opens the top air outlet 113 and the top air outlet 113 blows cold air, condensed water may condense on the top wall of the upper air outlet frame 11. The condensed water can flow into the sunken groove 1121 for collection. The condensed water flowing into the sunken groove 1121 can flow from the second drain port 1122 to the inner wall of the upper air outlet frame 11 and flow into the water receiving groove 114 along the inner wall of the upper air outlet frame 11.
[0069] It can be understood that by guiding the condensed water condensed at the upper air outlet frame 11 into the water receiving groove 114, it is possible to prevent the condensed water from overflowing outward to the outer surface of the air conditioner main body 1, which is beneficial to improving the cleanliness of the air conditioner 100 and enhancing the user's satisfaction.
[0070] In some embodiments of the present utility model, as Figure 7 shown, the top wall of the upper air outlet frame 11 can be set to incline downward along the direction close to the sunken groove 1121. Exemplarily, a sunken groove 1121 can be provided on the front side of the top wall of the upper air outlet frame 11, and the top wall of the upper air outlet frame 11 is set to extend forward and downward. Through the above setting, the top wall of the upper air outlet frame 11 can have a guiding function, so that the top wall of the upper air outlet frame 11 can completely guide the condensed water into the sunken groove 1121 to prevent the condensed water from overflowing outward, improving the design rationality of the air conditioner 100.
[0071] In some embodiments of the present utility model, as Figure 7As shown, the bottom wall of the sink 1121 can be set to slope downward in the direction close to the second drain outlet 1122. Thereby, the drainage efficiency of the sink 1121 can be improved, and it can be avoided that condensed water accumulates in the sink 1121 for a long time and causes odor, which is beneficial to improving the air outlet quality of the air conditioner 100.
[0072] In some embodiments of the present invention, the upper air outlet frame 11 includes side frame portions 112 located on both sides of the switch door member 2. A sink 1121 is formed on the top wall of each side frame portion 112, and one side of the sink 1121 close to the switch door member 2 is open to form a second drain outlet 1122.
[0073] For example, referring to Figure 3 and Figure 7 As shown, the upper air outlet frame 11 includes two side frame portions 112, and the two side frame portions 112 are respectively arranged on both sides of the switch door member 2 in the left-right direction. A sink 1121 is formed on the top wall of each side frame portion 112. A water receiving groove 114 is provided on the side wall of the side frame portion 112 facing the switch door member 2, and one side of the sink 1121 close to the switch door member 2 is open to form a second drain outlet 1122. The second drain outlet 1122 and the water receiving groove 114 are opposite in the left-right direction, so that the condensed water in the sink 1121 can be directly discharged into the water receiving groove 114 from the second drain outlet 1122. Thereby, it can be ensured that the condensed water at the upper air outlet frame 11 can flow into the water receiving groove 114, improving the design rationality of the upper air outlet frame 11.
[0074] In some embodiments of the present invention, as Figure 7 shown, a drain hole 1143 can be formed at the lowest part of the water receiving groove 114. Through the above setting, it can be ensured that the condensed water in the water receiving groove 114 can be discharged through the drain hole 1143 to avoid the condensed water accumulating in the water receiving groove 114 for a long time and causing odor, which is beneficial to improving the air outlet quality of the air conditioner 100.
[0075] In some embodiments of the present invention, the upper air outlet frame 11 defines an installation space 11a for installing the switch door member 2. A water receiving portion 115 is provided on one side of the lower end of the upper air outlet frame 11 close to the installation space 11a. The water receiving portion 115 extends along the circumference of the installation space 11a, and the water receiving portion 115 defines a water receiving groove 114 with an open top.
[0076] For example, referring to Figure 7As shown, an upper air outlet frame 11 is adapted to define an installation space 11a therein, and a door opening and closing member 2 is arranged to match the installation space 11a. The door opening and closing member 2 can be installed in the installation space 11a to be connected to the upper air outlet frame 11. Among them, a water receiving portion 115 can be provided on one side of the lower end of the upper air outlet frame 11 close to the installation space 11a. The water receiving portion 115 extends along the circumferential direction of the installation space 11a. The water receiving portion 115 and the inner peripheral wall of the installation space 11a can jointly define a water receiving tank 114 with an open top. In this way, the water receiving tank 114 can be communicated with the inner peripheral wall of the upper air outlet frame 11, so that the condensed water of the upper air outlet frame 11 can flow directly into the water receiving tank 114 along the inner wall, and the water receiving tank 114 can be opposite to the edge of the door opening and closing member 2 in the up and down direction, so that the condensed water of the door opening and closing member 2 can flow directly downward into the water receiving tank 114.
[0077] Through the above arrangement, the condensed water of the upper air outlet frame 11 and the condensed water of the door opening and closing member 2 can flow into the same water receiving tank 114, which is beneficial to simplifying the structure of the air conditioner 100.
[0078] In some embodiments of the present invention, the upper air outlet frame 11 includes a rear frame portion 111 and side frame portions 112. There are two side frame portions 112, which are arranged at intervals in the left and right directions. The left and right ends of the rear frame portion 111 are connected to the rear ends of the two side frame portions 112. The installation space 11a is defined between the two side frame portions 112 and the rear frame portion 111. The water receiving portion 115 includes a rear water receiving portion 1151 located at the lower end of the rear frame portion 111, and side water receiving portions 1152 located at the lower ends of the side frame portions 112. The water receiving tank 114 includes a rear water receiving tank 1142 defined by the rear water receiving portion 1151, and side water receiving tanks 1141 defined by the side water receiving portions 1152. The rear ends of the side water receiving tanks 1141 are communicated with the rear water receiving tank 1142.
[0079] For example, referring to Figure 3 and Figure 7 As shown, the upper air outlet frame 11 includes a rear frame portion 111 and side frame portions 112. There are two side frame portions 112, and the two side frame portions 112 are spaced apart in the left and right directions. The rear frame portion 111 extends in the left and right directions. The left and right ends of the rear frame portion 111 are respectively used to be connected to the rear ends of the two side frame portions 112, so that the upper air outlet frame 11 can be constructed into a U-shaped structure to define an installation space 11a between the rear frame portion 111 and the two side frame portions 112.
[0080] Among them, the water receiving part 115 includes a rear water receiving part 1151 and a side water receiving part 1152. The rear water receiving part 1151 is arranged inside the lower end of the rear frame part 111, and the side water receiving part 1152 is arranged inside the lower end of the side frame part 112. The water receiving tank 114 includes a rear water receiving tank 1142 and a side water receiving tank 1141. The rear water receiving tank 1142 is jointly defined by the rear water receiving part 1151 and the inner side wall of the rear frame part 111, and the side water receiving tank 1141 is jointly defined by the side water receiving part 1152 and the inner side wall of the side frame part 112. The side water receiving tank 1141 extends in the front-rear direction and is communicated with the rear water receiving tank 1142 at the rear end.
[0081] Through the above settings, the side water receiving tank 1141 and the rear water receiving tank 1142 can be used to receive condensed water in different areas. For example, by setting the side water receiving tank 1141, the condensed water of the sunken groove 1121 and the first switch door 21 can be received, and by setting the rear water receiving tank 1142, the condensed water of the second switch door 22 can be received, so as to ensure that the condensed water in different areas can flow into the water receiving tank 114, and the condensed water in the side water receiving tank 1141 can flow into the rear water receiving tank 1142, and then be discharged together after converging with the condensed water in the rear water receiving tank 1142, which is beneficial to improving the drainage efficiency of the condensed water.
[0082] In some embodiments of the present invention, such as Figure 7 shown, the side water receiving tank 1141 can be set to extend obliquely downward from front to back, and the rear water receiving tank 1142 is lower than the side water receiving tank 1141, and a drain hole 1143 is provided in the rear water receiving tank 1142. Specifically, when the condensed water flows into the side water receiving tank 1141, the condensed water can flow downward and into the rear water receiving tank 1142, and the condensed water flowing into the rear water receiving tank 1142 can be discharged outward through the drain hole 1143.
[0083] Through the above settings, the drainage efficiency of the water receiving tank 114 can be improved, and the condensed water can be prevented from accumulating in the water receiving tank 114 for a long time and causing odor. It can also prevent the condensed water in the rear water receiving tank 1142 from flowing back to the side water receiving tank 1141, improving the practicability of the water receiving tank 114.
[0084] In some embodiments of the present utility model, the air conditioner main body 1 includes an air outlet frame component 12. The air outlet frame component 12 includes a rear air outlet frame 122 and a front air outlet frame 121. The front air outlet frame 121 is disposed on the front side of the rear air outlet frame 122 to form an air outlet duct 123 between the front air outlet frame 121 and the rear air outlet frame 122. The upper air outlet frame 11 is disposed above the air outlet frame component 12 and is communicated with the air outlet duct 123. The upper end of the front air outlet frame 121 has a first water guiding portion 1211, and the upper end of the rear air outlet frame 122 has a second water guiding portion 1221. The second water guiding portion 1221 drains water to the rear wall surface of the rear air outlet frame 122. The first water guiding portion 1211 is higher than the second water guiding portion 1221 and guides water to the second water guiding portion 1221. A drain hole 1143 is formed on the water receiving tank 114 above the first water guiding portion 1211 to drain water to the first water guiding portion 1211.
[0085] For example, as shown in 8- Figure 11 As shown, the air conditioner main body 1 includes an air outlet frame component 12. The air outlet frame component 12 includes a rear air outlet frame 122 and a front air outlet frame 121. The front air outlet frame 121 is disposed on the front side of the rear air outlet frame 122 and an air outlet duct 123 is formed between the front air outlet frame 121 and the rear air outlet frame 122. At the same time, the upper air outlet frame 11 can be installed above the air outlet frame component 12. The upper air outlet frame 11 is provided with a top air outlet 113. The top air outlet 113 is opposite to and communicated with the air outlet duct 123 in the up and down direction, so that the air conditioner air in the air outlet duct 123 can be blown out to the indoor space through the top air outlet 113.
[0086] Among them, a first water guiding portion 1211 can be provided at the upper end of the front air outlet frame 121. The first water guiding portion 1211 can be constructed as a tube. A drain hole 1143 is formed on the water receiving tank 114. The drain hole 1143 is located above the first water guiding portion 1211. The drain hole 1143 is communicated with the first water guiding portion 1211 and is used to drain the condensed water in the water receiving tank 114 into the first water guiding portion 1211. A second water guiding portion 1221 is provided at the upper end of the front side of the rear air outlet frame 122. The second water guiding portion 1221 is located below the first water guiding portion 1211. The first water guiding portion 1211 can be communicated with the second water guiding portion 1221 and is used to guide water towards the second water guiding portion 1221, so that the condensed water in the first water guiding portion 1211 can flow downward into the second water guiding portion 1221.
[0087] At the same time, the second water guiding portion 1221 can be constructed as a through hole. The second water guiding portion 1221 is used to communicate with the rear wall surface of the rear air outlet frame 122, so that the second water guiding portion 1221 can guide the condensed water to the rear wall surface of the rear air outlet frame 122, so that the condensed water can flow downward along the rear wall surface of the rear air outlet frame 122 to achieve collection or discharge.
[0088] Through the above settings, the discharge process of the condensed water can be made smoother, which is beneficial to improving the drainage efficiency. Moreover, the space inside the air conditioner 100 can be better utilized, which is beneficial to reducing the layout difficulty of the air conditioner 100.
[0089] In some embodiments of the present utility model, as Figure 11 shown, the air conditioner main body 1 includes an evaporator 3. The lower end of the evaporator 3 has a water receiving tray. The rear wall surface of the rear air outlet frame 122 faces the water receiving tray for draining, so that the condensed water can be collected into the water receiving tray. Through the above settings, the structure of the air conditioner 100 can be simplified, and the user satisfaction is improved.
[0090] In some embodiments of the present utility model, as Figure 10 shown, a guiding groove 1222 and a water storage groove 1223 can be provided on the rear wall surface of the rear air outlet frame 122. The guiding groove 1222 extends in the up and down direction. The water storage groove 1223 is arranged below the guiding groove 1222. The condensed water flowing towards the rear wall surface of the rear air outlet frame 122 can flow downward along the guiding groove 1222 into the water storage groove 1223, and the condensed water in the water storage groove 1223 can be further discharged into the water receiving tray.
[0091] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present utility model.
[0092] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present utility model, "a plurality" means two or more, unless otherwise specifically defined.
[0093] In the present utility model, unless otherwise clearly specified or limited, terms such as "installation", "connection", "coupling", "fixation", etc. shall be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral body; it may be a mechanical connection, an electrical connection, or a communication connection; it may be directly connected, or indirectly connected through an intermediate medium, and may be the internal communication of two components or the interaction relationship between two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0094] In the present utility model, unless otherwise clearly specified or limited, the first feature being "on" or "under" the second feature may be that the first and second features are in direct contact, or the first and second features are indirectly in contact through an intermediate medium. Moreover, the first feature being "above", "over" and "on top of" the second feature may be that the first feature is directly above or obliquely above the second feature, or merely indicates that the first feature has a higher horizontal height than the second feature. The first feature being "under", "beneath" and "underneath" the second feature may be that the first feature is directly below or obliquely below the second feature, or merely indicates that the first feature has a lower horizontal height than the second feature.
[0095] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "example", "specific example", or "some examples", etc. means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present utility model. In this specification, the schematic expressions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.
[0096] Although the embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present utility model, and the scope of the present utility model is defined by the claims and their equivalents.
Claims
1. An air conditioner, characterized in that: include: An air conditioner main body, wherein the top of the air conditioner main body is provided with an upper air outlet frame, and the upper air outlet frame is provided with a top air outlet; A switch door component is installed on the air conditioner body and is used to open and close the top air outlet. The upper air outlet frame is provided with a water receiving trough, and the water receiving trough is suitable for receiving condensed water flowing down from the upper air outlet frame and / or the switch door component.
2. The air conditioner according to claim 1, characterized in that: The switch door component includes a first switch door, which is rotatably mounted on the upper air outlet frame for opening and closing the top air outlet. A first flow guide structure is formed on the first switch door, and the first flow guide structure is suitable for draining water to the water receiving trough when the first switch door opens the top air outlet.
3. The air conditioner according to claim 2, characterized in that: When the first switch door opens the top air outlet, the front end of the first switch door is lifted and the rear end is dropped, the first guide structure is a guide groove formed on the top surface of the first switch door, the guide groove includes a first groove section and a second groove section, the first groove section is located at the front of the first switch door, the front end of the second groove section is connected to the first groove section and a first drain port is formed at the rear end, the guide groove is suitable for draining water to the water receiving trough through the first drain port.
4. The air conditioner according to claim 3, characterized in that: There are two second slot sections, and the two second slot sections are respectively located at the left and right ends of the first switch door.
5. The air conditioner according to claim 3, characterized in that: The first drain port is located at a middle position of the first opening and closing door along the front-to-back direction.
6. The air conditioner according to claim 2, characterized in that: The first switch door is formed with an air outlet opening, and the switch door component includes a second switch door for opening and closing the air outlet opening, the second switch door is rotationally matched with the first switch door, and is slidingly matched with the upper air outlet frame, so that the second switch door is synchronously switched through the switching action of the first switch door, and a second guide structure is formed on the second switch door, and the second guide structure is suitable for draining water to the water receiving trough when the second switch door opens the air outlet opening.
7. The air conditioner according to claim 6, characterized in that: When the second switch door opens the air outlet opening, the front end of the second switch door is lifted and the rear end is dropped, and the second flow guide structure is an overlapping flange formed at the rear of the second switch door, and the overlapping flange is recessed downward so as to overlap under the top wall of the first switch door when the second switch door closes the air outlet opening, and extend to above the water receiving trough when the second switch door opens the air outlet opening.
8. The air conditioner according to claim 1, characterized in that: A sink is formed on the top wall of the upper air outlet frame, a second drain port is provided on the side of the sink close to the top air outlet, the sink is suitable for draining water to the water receiving trough through the second drain port, and a water retaining flange is provided on the side of the sink away from the second drain port.
9. The air conditioner according to claim 8, characterized in that: The top wall of the upper air outlet frame is inclined downward along a direction close to the sink; and / or the bottom wall of the sink is inclined downward along a direction close to the second drain port.
10. The air conditioner according to claim 8, characterized in that: The upper air outlet frame includes side frame parts located on both sides of the switch door component, and the top wall of each side frame part is formed with the sinking groove, and one side of the sinking groove close to the switch door component is open to form the second drain port.
11. The air conditioner according to claim 1, characterized in that: A drainage hole is formed at the lowest point of the water receiving trough.
12. The air conditioner according to any one of claims 1 to 11, characterized in that: The upper air outlet frame defines an installation space for installing the switch door component, and a water receiving portion is provided on one side of the lower end of the upper air outlet frame close to the installation space. The water receiving portion extends along the circumference of the installation space, and the water receiving portion defines the water receiving trough with an open top.
13. The air conditioner according to claim 12, characterized in that: The upper air outlet frame includes a rear frame portion and a side frame portion, the side frame portions are two and are spaced apart in the left-right direction, the left and right ends of the rear frame portion are connected to the rear ends of the two side frame portions, the installation space is defined between the two side frame portions and the rear frame portion, the water receiving portion includes a rear water receiving portion located at the lower end of the rear frame portion, and a side water receiving portion located at the lower end of the side frame portion, the water receiving trough includes a rear water receiving trough defined by the rear water receiving portion, and a side water receiving trough defined by the side water receiving portion, and the rear end of the side water receiving trough is connected to the rear water receiving trough.
14. The air conditioner according to claim 13, characterized in that: The side water trough is inclined and extends downward from the front to the rear, and the rear water trough is lower than the side water trough, and the rear water trough is provided with a drainage hole.
15. The air conditioner according to claim 1, characterized in that: The air conditioner main body includes an air outlet frame component, and the air outlet frame component includes a rear air outlet frame and a front air outlet frame, the front air outlet frame is arranged at the front side of the rear air outlet frame to form an air outlet duct with the rear air outlet frame, the upper air outlet frame is arranged above the air outlet frame component, and is connected with the air outlet duct, the upper end of the front air outlet frame has a first water guide portion, the upper end of the rear air outlet frame has a second water guide portion, the second water guide portion drains water to the rear wall surface of the rear air outlet frame, the first water guide portion is higher than the second water guide portion and guides water to the second water guide portion, and the water receiving trough is formed with a drainage hole located above the first water guide portion to drain water to the first water guide portion.