Sensor assembly and segmented air outlet air conditioner cabinet
By designing a simplified sensor assembly and utilizing the docking structure of the housing and cover, as well as the water flow channel, the problems of complex sensor installation and condensation damage to the circuit board were solved, achieving the effects of simplified assembly, reduced costs, and improved reliability.
Patent Information
- Application Number
- CN202210092925.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-01-26
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2042-01-26
AI Technical Summary
The sensor installation structure of existing segmented air-discharge air conditioning units is complex and the circuit board is easily damaged by condensation, affecting normal operation.
Design a sensor assembly including a housing and a cover, which are connected to form a receiving cavity. The assembly is fitted with a component and a blade, and a water inlet and flow channel are provided to drain condensed water. The assembly is combined with a water-absorbing component and a water-blocking rib to prevent moisture from entering, which simplifies assembly and improves reliability.
It simplifies the assembly process of sensor components, reduces manufacturing costs, avoids damage to circuit boards from condensation, and improves operational reliability and adaptability to harsh humidity environments.
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Figure CN116538566B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of air conditioners, in particular to a sensor assembly and a segmented air outlet air conditioner cabinet. BACKGROUND
[0002] In order to better improve the user experience, the existing segmented air outlet air conditioner cabinet usually sets a sensor. However, the sensor mounting structure of the existing segmented air outlet air conditioner cabinet is complex, and since the main structure of the sensor is a circuit board and a detection probe arranged on the circuit board, when the circuit board is in contact with condensed water, the circuit board may also be damaged, thereby affecting the normal operation of the whole machine. SUMMARY
[0003] The first object of the present application is to provide a sensor assembly to solve the technical problem of complex sensor mounting structure of the existing segmented air outlet air conditioner cabinet.
[0004] The sensor assembly provided by the present application is used to be arranged between two adjacent blade segments of a segmented air outlet air conditioner cabinet, and comprises a box body, a box cover and a sensor. The box cover and the box body are butted to form a containing cavity, and the sensor is arranged in the containing cavity. The butting direction of the box cover and the box body is along the arrangement direction of the two adjacent blade segments. The outer surface of the box body away from the box cover is provided with a first matching part, and the outer surface of the box cover away from the box body is provided with a second matching part. The first matching part is used for shaft insertion with the blade end part of one blade segment of the two adjacent blade segments, and the second matching part is used for hole insertion with the blade end part hole of the other blade segment of the two adjacent blade segments.
[0005] The sensor assembly is provided with a box body and a box cover, and the containing cavity for installing the sensor is formed by butting the box body and the box cover. At the same time, the first matching part arranged on the box body and the second matching part arranged on the box cover are used to realize the mounting and cooperation with the two adjacent blade segments, so that the sensor assembly can only include three components (the box body, the box cover and the sensor). The number of sensor assemblies is effectively reduced, which not only reduces the assembly process and improves the assembly efficiency, but also saves the mold cost, thereby reducing the manufacturing cost of the sensor assembly.
[0006] Further, the box cover and the box body are in close contact at the docking part, the first matching part comprises a water guide hole opened in the box body, and the blade end part is inserted into the water guide hole; the box body is further provided with a flow channel separated from the containing cavity, a first end of the flow channel is communicated with the water guide hole, and a second end of the flow channel extends to the outside of the box body, and the flow channel is configured to drain the condensed water entering from the water guide hole to the outside of the box body. In this way, the containing cavity formed by the docking of the box body and the box cover is a closed space, which prevents the moisture in the external environment from entering, and at the same time, the condensed water generated in the first blade segment during the operation of the segmented air outlet air conditioner cabinet can be drained to the outside of the box body without entering the containing cavity.
[0007] Further, the containing cavity comprises a mounting area and a moisture buffer area, the sensor is arranged in the mounting area, and the moisture buffer area is configured to prevent the moisture in the external environment from entering the mounting area. When the humidity of the external environment is high, the moisture buffer area can buffer the moisture near the sensor assembly to prevent the moisture from entering the mounting area and adversely affecting the sensor.
[0008] Further, the box wall of the box body is provided with a first mounting opening communicated with the moisture buffer area, and the first mounting opening is blocked by a first water absorption component. In a severe humidity environment, the first water absorption component can absorb the moisture in the environment, and part of the moisture can enter the moisture buffer area after passing through the first water absorption component, generating a small amount of condensed water, preventing the moisture from further flowing to the mounting area, thereby achieving the buffering effect of the moisture in the environment.
[0009] Further, the containing cavity is provided with a water blocking rib, and the water blocking rib separates the containing cavity into the mounting area and the moisture buffer area. The water blocking rib effectively separates the mounting area and the moisture buffer area, preventing the condensed water formed in the moisture buffer area from flowing further to the mounting area.
[0010] Further, the water blocking rib is provided with a second mounting opening, the second mounting opening is communicated with the mounting area and the moisture buffer area, and the second mounting opening is blocked by a second water absorption component. In this way, the remaining moisture in the moisture buffer area can be absorbed by the second water absorption component, preventing the moisture from diffusing to the mounting area through the water blocking rib.
[0011] Further, the first water absorption component and the second water absorption component are both made of sponge. In this way, the water absorption capacity of the first water absorption component and the second water absorption component can be improved, the structure of the first water absorption component and the second water absorption component can be simplified, and the cost can be reduced.
[0012] Further, the water absorption capacity of the first water absorption component is greater than that of the second water absorption component. In this way, most of the moisture from the external environment entering the accommodation cavity is effectively blocked at the first water absorption component, so that the second water absorption component can be kept in a dry state.
[0013] Further, the box body and the box cover are detachably connected. In this way, the sensor in the accommodation cavity can be maintained.
[0014] Further, one side of the box cover facing the accommodation cavity is provided with a first support seat, and the first support seat is provided with a first half hole for cooperating with a detection probe of the sensor. One side of the box body facing the accommodation cavity is provided with a second support seat, and the second support seat is provided with a second half hole corresponding in position to the first half hole. The second half hole and the first half hole are in butt joint to form a clamping hole for fixing the detection probe. In this way, the stability of the sensor after being installed in the accommodation cavity is ensured.
[0015] Further, one side of the box cover facing the accommodation cavity is further provided with a first slot, and a circuit board of the sensor is inserted in the first slot. In addition, one side of the box body facing the accommodation cavity is further provided with a second slot. In the butt joint state of the box cover and the box body, the two opposite sides of the circuit board in the up-down direction are respectively inserted in the first slot and the second slot. In this way, the two opposite sides of the circuit board in the up-down direction can be effectively fixed, preventing the circuit board from loosening.
[0016] The second object of the present application is to provide a segmented air outlet air conditioner cabinet to solve the technical problem of complex installation structure of the sensor of the existing segmented air outlet air conditioner cabinet.
[0017] The segmented air outlet air conditioner cabinet provided by the present application comprises an air outlet frame, a plurality of segments of blades and the above-mentioned sensor assembly. The plurality of segments of blades are rotatably installed in the air outlet frame. The sensor assembly is installed in the air outlet frame and is arranged between at least two adjacent segments of blades. The two adjacent segments of blades are a first segment of blade and a second segment of blade, respectively. The first segment of blade is located above the second segment of blade. The first matching part of the sensor assembly is inserted into the blade end part shaft of the first segment of blade. The second matching part of the sensor assembly is inserted into the blade end part hole of the second segment of blade.
[0018] By arranging the above-mentioned sensor assembly in the segmented air outlet air conditioner cabinet, the segmented air outlet air conditioner cabinet has all the advantages of the above-mentioned sensor assembly, which will not be described here.
[0019] Further, the second end of the flow channel of the sensor assembly extends to the air outlet frame. In this way, the air outlet frame can be used to guide the condensed water. BRIEF DESCRIPTION OF DRAWINGS
[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description only are the embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor based on the provided drawings.
[0021] Figure 1 A structure exploded view of the sectional air outlet air conditioner cabinet machine provided by the embodiment of the present application;
[0022] Figure 2 A partial structure exploded view of the sectional air outlet air conditioner cabinet machine provided by the embodiment of the present application;
[0023] Figure 3 A structure exploded view of the sensor assembly provided by the embodiment of the present application;
[0024] Figure 4 A structure sectional view of the sensor assembly provided by the embodiment of the present application;
[0025] Figure 5 A structure sectional view of the sensor assembly provided by the embodiment of the present application after being installed in the air outlet frame;
[0026] Figure 6 A structure sectional view of the sensor assembly provided by the embodiment of the present application from another perspective;
[0027] Figure 7 A partial structure schematic view of the box body of the sensor assembly provided by the embodiment of the present application.
[0028] Explanation of reference signs:
[0029] 010-sensor assembly; 011-accommodation cavity; 012-mounting area; 013-humidity buffer area; 020-sensor; 021-circuit board; 022-detection probe; 030-air outlet frame; 040-first blade segment; 041-blade end shaft; 050-second blade segment; 051-blade end hole; 060-top cover; 070-bottom base; 080-front panel assembly; 090-rear wall assembly;
[0030] 100 - box body; 110 - water guide hole; 120 - flow channel; 130 - first mounting hole; 140 - first water absorption component; 150 - water blocking rib; 151 - second mounting hole; 152 - second water absorption component; 160 - screw column; 170 - second support seat; 180 - second half hole; 190 - second insertion slot;
[0031] 200 - box cover; 210 - first support seat; 220 - first half hole; 230 - limiting rib; 240 - rotating support part; 250 - connecting hole; 260 - first insertion slot. DETAILED DESCRIPTION
[0032] In order to make the above objectives, characteristics and advantages of the present application more apparent and comprehensible, specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only used to explain the present application and do not limit the present application.
[0033] Figure 1 A structure exploded view of the segmented air outlet air conditioner cabinet machine provided for the present embodiment, Figure 2 A partial structure exploded view of the segmented air outlet air conditioner cabinet machine provided for the present embodiment. As shown in Figure 1 and Figure 2 The present embodiment provides a segmented air outlet air conditioner cabinet machine, which includes an air outlet frame 030, three-section blades and a sensor assembly 010. Specifically, the three-section blades are rotatably installed on the air outlet frame 030, and the sensor assembly 010 is arranged between any two adjacent sections of the three-section blades, and the sensor assembly 010 is installed on the air outlet frame 030. Among them, any two adjacent sections of the blades are a first blade section 040 and a second blade section 050, and the first blade section 040 is located above the second blade section 050.
[0034] In the present embodiment, the three-section blades are an upper section blade, a middle section blade and a lower section blade arranged from top to bottom. The sensor assembly 010 is arranged between the upper section blade and the middle section blade, and between the middle section blade and the lower section blade. For the sensor assembly 010 arranged between the upper section blade and the middle section blade, the upper section blade is the first blade section 040, and the middle section blade is the second blade section 050. For the sensor assembly 010 arranged between the middle section blade and the lower section blade, the middle section blade is the first blade section 040, and the lower section blade is the second blade section 050.
[0035] It should be noted that in order to better achieve the purpose of air supply for the user, the existing segmented air outlet air conditioner cabinet is usually provided with a sensor 020 to detect the position of the user. That is, the sensor 020 in the embodiment can be a sensor for detecting the position of the user, and how to achieve the detection of the user's position is a prior art known to those skilled in the art, and the embodiment does not improve it, so it will not be described in detail.
[0036] Please continue to refer to Figure 1 In the embodiment, the segmented air outlet air conditioner cabinet further includes a top cover 060, a base 070, a front panel assembly 080 and a rear panel assembly 090, wherein the top cover 060, the base 070, the front panel assembly 080 and the rear panel assembly 090 together enclose an internal space, and the air outlet frame 030 and the sensor assembly 010 are arranged in the internal space.
[0037] It should be noted that the specific structure of the top cover 060, the base 070, the front panel assembly 080 and the rear panel assembly 090, and the connection relationship with the corresponding parts, are all prior art known to those skilled in the art, and the embodiment does not improve it, so it will not be described in detail.
[0038] Figure 3 The structural exploded view of the sensor assembly 010 provided in the embodiment, Figure 4 The structural cross-sectional view of the sensor assembly 010 provided in the embodiment, Figure 5 The structural cross-sectional view of the sensor assembly 010 provided in the embodiment after being installed in the air outlet frame 030. Please continue to refer to Figure 1 And Figure 2 In combination with Figures 3 to 5 The sensor assembly 010 provided in the embodiment includes a box body 100, a box cover 200 and a sensor 020, the box cover 200 and the box body 100 are connected to form a containing cavity 011, and the sensor 020 is arranged in the containing cavity 011, wherein the connection direction of the box cover 200 and the box body 100 is along the arrangement direction of the adjacent two blade segments; the outer surface of the box body 100 away from the box cover 200 is provided with a first matching part, and the outer surface of the box cover 200 away from the box body 100 is provided with a second matching part, the first matching part is used for inserting the blade end part shaft 041 of the first blade segment 040, and the second matching part is used for inserting the blade end part hole 051 of the second blade segment 050.
[0039] The sensor assembly 010 is formed by setting the box body 100 and the box cover 200, and the accommodating cavity 011 for mounting the sensor 020 is formed by the butt joint of the box body 100 and the box cover 200. Meanwhile, the first matching part provided on the box body 100 and the second matching part provided on the box cover 200 are matched with the adjacent two blade segments, so that the sensor assembly 010 only includes three components (the box body 100, the box cover 200 and the sensor 020), which effectively reduces the number of the sensor assembly 010, reduces the assembly process and improves the assembly efficiency, and saves the mold cost, thereby reducing the manufacturing cost of the sensor assembly 010.
[0040] Please continue to refer to Figures 3 to 5 In the embodiment, the box cover 200 and the box body 100 are in close contact at the butt joint part. The first matching part includes the water guide hole 110 provided on the box body 100, and the blade end shaft 041 of the first blade segment 040 is inserted into the water guide hole 110. The box body 100 is also provided with the flow channel 120 which is isolated from the accommodating cavity 011. The first end of the flow channel 120 is communicated with the water guide hole 110, and the second end of the flow channel 120 extends to the outside of the box body 100. The flow channel 120 is configured to drain the condensation water entering from the water guide hole 110 to the outside of the box body 100.
[0041] In the use state of the sensor assembly 010, the sensor 020 is located in the accommodating cavity 011 formed by the butt joint of the box body 100 and the box cover 200. Meanwhile, the sensor assembly 010 is matched with the blade end shaft 041 of the first blade segment 040 through the water guide hole 110, so that when the condensation water generated from the first blade segment 040 gathers to the blade end shaft 041 during the working process of the segmented air outlet air conditioner cabinet, the condensation water can enter the flow channel 120 which is isolated from the accommodating cavity 011 under the action of the water guide hole 110, and then be drained to the outside of the box body 100 through the flow channel 120. The path of the condensation water generated from the first blade segment 040 flowing to the outside of the box body 100 can refer to the direction of arrow a in Figure 5 .
[0042] The setting form of the sensor assembly 010 makes the accommodating cavity 011 formed by the butt joint of the box body 100 and the box cover 200 a closed space, which prevents the moisture in the external environment from entering, and also can drain the condensation water generated from the first blade segment 040 during the working process of the segmented air outlet air conditioner cabinet to the outside of the box body 100 without entering the accommodating cavity 011, thereby effectively avoiding the damage of the circuit board 021 caused by the contact between the condensation water and the sensor 020, and improving the working reliability of the segmented air outlet air conditioner cabinet.
[0043] In the use state of the sensor assembly 010, the box cover 200 is located below the box body 100 in the embodiment. The box cover 200 is in close contact with the box body 100 at the docking position, which means that the contact surface of the box cover 200 and the box body 100 is 0 mm gap fit.
[0044] Please continue to refer to Figure 5 In the embodiment, the second end of the flow channel 120 arranged in the box body 100 extends to the air outlet frame 030. That is, in the working process of the segmented air outlet air conditioner cabinet, the condensation water generated by the first blade segment 040 will be discharged to the air outlet frame 030 along the flow channel 120. Such an arrangement causes the condensation water generated by the first blade segment 040 to be drained to the air outlet frame 030, effectively preventing this part of the condensation water from entering the containing cavity 011.
[0045] Please continue to refer to Figure 5 At least part of the flow channel wall of the flow channel 120 is formed by the cavity wall of the containing cavity 011. Such an arrangement allows the heat of the containing cavity 011 to be taken out and the heat dissipation of the containing cavity 011 to be achieved when the condensation water flows in the flow channel 120, thereby avoiding the situation that the sensor 020 cannot work normally due to a high working environment temperature.
[0046] Figure 6 The structure sectional view of the sensor assembly 010 provided in the embodiment is shown in another view. As shown in Figure 6 In the embodiment, the containing cavity 011 can include a mounting area 012 and a humidity buffer area 013. Specifically, the sensor 020 is arranged in the mounting area 012, and the humidity buffer area 013 is configured to prevent the humidity of the external environment from entering the mounting area 012.
[0047] By setting the containing cavity 011 in the form of mainly consisting of the mounting area 012 and the humidity buffer area 013 and arranging the sensor 020 in the relatively dry mounting area 012, when the humidity of the external environment is large, the humidity buffer area 013 can buffer the humidity near the sensor assembly 010 to prevent this part of the humidity from entering the mounting area 012 and adversely affecting the sensor 020.
[0048] The setting of the humidity buffer area 013 improves the adaptability of the sensor assembly 010 to the harsh humidity environment and prolongs the working life of the sensor assembly 010 in the harsh humidity environment.
[0049] Please continue to refer to Figure 7 In the embodiment, the box wall of the box body 100 is provided with a first mounting opening 130 in communication with the humidity buffer area 013, and the first mounting opening 130 is plugged with a first water absorbing component 140.
[0050] In the harsh humidity environment, the first water absorption component 140 can absorb the humidity in the environment, and part of the humidity can enter the humidity buffer area 013 after passing through the first water absorption component 140, thereby generating a small amount of condensation water, preventing the humidity from further flowing to the installation area 012, and thereby achieving the buffering effect of the humidity in the environment.
[0051] Please continue to refer to Figure 6 In this embodiment, the accommodation cavity 011 is provided with a water blocking rib 150, and specifically, the water blocking rib 150 divides the accommodation cavity 011 into the installation area 012 and the humidity buffer area 013.
[0052] The water blocking rib 150 is provided to effectively separate the installation area 012 and the humidity buffer area 013, thereby preventing the condensation water formed in the humidity buffer area 013 from further flowing to the installation area 012 and damaging the sensor 020.
[0053] Figure 7 A partial structure schematic view of the box body 100 of the sensor assembly 010 provided in this embodiment is shown in FIG. 1B. Figure 7 As shown in FIG. 1B, in this embodiment, the water blocking rib 150 is provided with a second installation opening 151, and specifically, the second installation opening 151 communicates the installation area 012 and the humidity buffer area 013, and the second installation opening 151 is blocked by a second water absorption component 152.
[0054] By providing the second installation opening 151 in the water blocking rib 150 and the second water absorption component 152 capable of blocking the second installation opening 151, the remaining humidity in the humidity buffer area 013 can be absorbed by the second water absorption component 152, thereby preventing the humidity from diffusing to the installation area 012 through the water blocking rib 150.
[0055] It should be noted that the above-mentioned first water absorption component 140 blocks the first installation opening 130, which means that the first installation opening 130 is completely filled with the first water absorption component 140, or at least 80% of the area of the first installation opening 130 is filled with the first water absorption component 140; correspondingly, the above-mentioned second water absorption component 152 blocks the second installation opening 151, which means that the second installation opening 151 is completely filled with the second water absorption component 152, or at least 80% of the area of the second installation opening 151 is filled with the second water absorption component 152.
[0056] In this embodiment, the materials of the first water absorption component 140 and the second water absorption component 152 are both sponge. Such a configuration not only improves the water absorption capacity of the first water absorption component 140 and the second water absorption component 152, but also simplifies the structure of the first water absorption component 140 and the second water absorption component 152, thereby reducing the cost.
[0057] Preferably, in the embodiment, the water absorption capacity of the first water absorption component 140 is greater than that of the second water absorption component 152. In this way, most of the moisture from the external environment entering the accommodation cavity 011 is effectively blocked at the first water absorption component 140, so that the second water absorption component 152 can be kept in a dry state.
[0058] Please continue to refer to Figures 3 to 5 In the embodiment, the box cover 200 and the box body 100 are detachably connected. In this way, the sensor 020 in the accommodation cavity 011 can be maintained.
[0059] Please continue to refer to Figure 3 and Figure 4 In the embodiment, the side of the box cover 200 facing the accommodation cavity 011 is provided with a first support seat 210, and the first support seat 210 is provided with a first half hole 220 for cooperating with the detection probe 022 of the sensor 020; the side of the box body 100 facing the accommodation cavity 011 is provided with a second support seat 170, and the second support seat 170 is provided with a second half hole 180, the position of the second half hole 180 corresponding to the position of the first half hole 220, and the second half hole 180 and the first half hole 220 form a clamping hole for fixing the detection probe 022.
[0060] Through the above arrangement, after the sensor 020 is installed in the accommodation cavity 011, the first half hole 220 arranged on the box cover 200 and the second half hole 180 arranged on the box body 100 can form a clamping hole, so that the detection probe 022 of the sensor 020 is fixed in the clamping hole, ensuring the stability of the sensor 020 after being installed in the accommodation cavity 011, thereby ensuring the reliability of the sensor 020 in operation. Moreover, when installing the sensor 020, the first half hole 220 and the detection probe 022 can be used to position the sensor 020, thereby improving the assembly efficiency of the sensor 020.
[0061] In the embodiment, the first half hole 220 and the second half hole 180 are both arc-shaped grooves matched with the outer surface of the detection probe 022. In this way, the detection probe 022 can be tightly fitted with the first half hole 220 and the second half hole 180, thereby improving the stability of the detection probe 022.
[0062] In the embodiment, the number of the first support seat 210 and the second support seat 170 is the same as that of the detection probe 022, and they are arranged one by one respectively.
[0063] Please continue to refer to Figure 3 and Figure 4 In the embodiment, the side of the box cover 200 facing the accommodation cavity 011 is also provided with a first insertion slot, and the circuit board 021 of the sensor 020 is inserted into the first insertion slot 260.
[0064] When the sensor 020 is installed, the circuit board 021 of the sensor 020 can be inserted into the first slot 260, and the detection probe 022 of the sensor 020 is supported on the first half hole 220, and then the box cover 200 is covered on the box body 100. In this way, the sensor 020 can be quickly installed in the accommodation cavity 011, and the installation structure is simple and the cost is low.
[0065] Please continue to refer to Figure 3 In the embodiment, the first slot 260 is provided with a limiting rib 230 at both ends along the length direction, which is used to limit the circuit board 021 along the length direction of the first slot 260.
[0066] Please continue to refer to Figure 4 In the embodiment, the side of the box body 100 facing the accommodation cavity 011 can also be provided with a second slot 190, wherein in the butting state of the box cover 200 and the box body 100, the two opposite sides of the circuit board 021 in the up-down direction are respectively inserted into the first slot 260 and the second slot 190. In this way, the circuit board 021 can be further fixed to prevent the circuit board 021 from loosening, and the situation that the circuit board 021 is stressed concentrated due to the single insertion position of the circuit board 021 can also be avoided.
[0067] Please continue to refer to Figure 4 and Figure 6 In the embodiment, the box body 100 is provided with a screw column 160, and correspondingly, the box cover 200 is provided with a connecting hole 250, the position of the connecting hole 250 corresponds to the position of the screw column 160, wherein the connecting hole 250 is a light hole, the screw column 160 is provided with a threaded hole, and the connecting screw can pass through the connecting hole 250 and be threadedly connected to the threaded hole of the screw column 160, thereby realizing the detachable connection of the box body 100 and the box cover 200.
[0068] In the embodiment, the number of screw columns 160 is two, and the two screw columns 160 are dispersedly arranged, and correspondingly, the number of connecting holes 250 is also two, and the two connecting holes 250 are respectively arranged one by one corresponding to the two screw columns 160.
[0069] In other embodiments, a plug post can be arranged in one of the box body 100 and the box cover 200, and a plug hole can be arranged in the other of the box body 100 and the box cover 200, and the detachable connection of the box cover 200 and the box body 100 is achieved by plug cooperation of the plug post and the plug hole; or a buckle can be arranged in one of the box body 100 and the box cover 200, and a clamping hole can be arranged in the other of the box body 100 and the box cover 200, and the detachable connection of the box cover 200 and the box body 100 is achieved by clamping cooperation of the buckle and the clamping hole. As long as the connection mode can achieve the detachable assembly of the box body 100 and the box cover 200, and can achieve the sealing of the containing cavity 011 by the close cooperation of the box body 100 and the box cover 200 at the contact position, the connection structure of the box body 100 and the box cover 200 is not limited in the embodiment.
[0070] Please continue to refer to Figure 3 In the embodiment, the first matching part includes a plurality of water guide holes 110, and the number of the flow channels 120 is the same as the number of the water guide holes 110, and the plurality of flow channels 120 are in one-to-one correspondence with the plurality of water guide holes 110.
[0071] The plurality of water guide holes 110 are arranged so that the blade end portion shafts 041 of the plurality of blades of the first blade segment 040 can be respectively plugged into the corresponding water guide holes 110, so that the condensation water generated by each blade of the first blade segment 040 can be discharged to the outside of the box body 100 through the flow channel 120.
[0072] Please continue to refer to Figures 3 to 5 In the embodiment, the second matching part includes a rotating support part 240, and specifically, the rotating support part 240 is located on the two surfaces of the sensor assembly 010 opposite to the water guide holes 110, and the rotating support part 240 is used for plugging with the blade end hole 051 of the second blade segment 050. Wherein, the box cover 200 is provided with a plurality of rotating support parts 240, the second blade segment 050 includes a plurality of blades arranged side by side, each blade has a blade end hole 051, and the plurality of rotating support parts 240 are respectively plugged into the plurality of blade end holes 051 in one-to-one correspondence.
[0073] The arrangement of the rotating support part 240 can provide support for the rotation of the blades of the second blade segment 050.
[0074] Please continue to refer to Figure 5 When the sensor assembly 010 is installed in the air outlet frame 030, the blade end portion shafts 041 of the plurality of blades of the first blade segment 040 are respectively plugged into the water guide holes 110 of the box body 100, and the plurality of rotating support parts 240 of the box cover 200 are respectively plugged into the plurality of blade end holes 051 of the second blade segment 050.
[0075] In the embodiment, the box body 100 can be connected to the air outlet frame 030 through the threaded connection, so as to realize the assembly of the sensor assembly 010 and the air outlet frame 030.
[0076] Although the present application has been disclosed with reference to the above embodiments, the application is not limited to the above examples. Any person skilled in the art can make various modifications and changes without departing from the spirit and scope of the application, and the scope of protection of the application should be subject to the scope defined by the claims.
[0077] Finally, it should be noted that, in this document, the terms such as first and second are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the term "comprising" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such a process, method, article or device. Without more limitations, the element defined by the statement "comprising a" does not exclude the presence of other identical elements in the process, method, article or device including the element.
[0078] In the above embodiments, the description of the orientation such as "upper", "lower", "side" and the like is based on the drawings.
[0079] The above description of the disclosed embodiments enables a person skilled in the art to implement or use the present application. Various modifications to the embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to the embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A sensor assembly, characterized by The sensor assembly is arranged between two adjacent blades of a segmented air outlet air conditioner cabinet, and comprises a box body (100), a box cover (200) and a sensor (020). The box cover (200) is in abutment with the box body (100) to form a containing cavity (011), and the sensor (020) is arranged in the containing cavity (011). The abutment direction of the box cover (200) and the box body (100) is along the arrangement direction of the two adjacent blades. The outer surface of the box body (100) away from the box cover (200) is provided with a first matching part, the outer surface of the box cover (200) away from the box body (100) is provided with a second matching part, the first matching part is used for inserting with the blade end shaft (041) of one of the two adjacent blades, and the second matching part is used for inserting with the blade end hole (051) of the other of the two adjacent blades. The box cover (200) and the box body (100) are in close contact at the abutment part. The first matching part comprises a water guide hole (110) opened in the box body (100), and the blade end shaft (041) is inserted into the water guide hole (110). The box body (100) is further provided with a flow channel (120) separated from the containing cavity (011). The first end of the flow channel (120) is in communication with the water guide hole (110), and the second end of the flow channel (120) extends to the outside of the box body (100). The flow channel (120) is configured to discharge the condensation water entering from the water guide hole (110) to the outside of the box body (100). At least part of the flow channel wall of the flow channel (120) is formed by the cavity wall of the containing cavity (011).
2. The sensor assembly of claim 1, wherein, The containing cavity (011) comprises a mounting area (012) and a moisture buffer area (013). The sensor (020) is arranged in the mounting area (012), and the moisture buffer area (013) is configured to prevent moisture in the external environment from entering the mounting area (012).
3. The sensor assembly of claim 2, wherein, A first mounting port (130) in communication with the moisture buffer area (013) is opened in the box wall of the box body (100), and the first mounting port (130) is blocked by a first water absorbing part (140).
4. The sensor assembly of claim 3, wherein, The containing cavity (011) is provided with a water blocking rib (150), which separates the containing cavity (011) into the mounting area (012) and the moisture buffer area (013).
5. The sensor assembly of claim 4, wherein, The water blocking rib (150) is provided with a second mounting port (151) in communication with the mounting area (012) and the moisture buffer area (013), and the second mounting port (151) is blocked by a second water absorbing part (152).
6. The sensor assembly of claim 5, wherein, The materials of the first water absorbing part (140) and the second water absorbing part (152) are both sponge, and / or the water absorbing capacity of the first water absorbing part (140) is greater than that of the second water absorbing part (152).
7. The sensor assembly of any one of claims 1-6, wherein, The box body (100) and the box cover (200) are detachably connected.
8. The sensor assembly of any one of claims 1-6, wherein, The box cover (200) is provided with a first support seat (210) on the side facing the accommodating cavity (011), the first support seat (210) is provided with a first half hole (220) for cooperating with the detection probe (022) of the sensor (020); the box body (100) is provided with a second support seat (170) on the side facing the accommodating cavity (011), the second support seat (170) is provided with a second half hole (180), the position of the second half hole (180) corresponds to the position of the first half hole (220), and the second half hole (180) and the first half hole (220) are connected to form a clamping hole for fixing the detection probe (022).
9. The sensor assembly of any one of claims 1-6, wherein, The box cover (200) is further provided with a first slot (260) on the side facing the accommodating cavity (011), and the circuit board (021) of the sensor (020) is inserted into the first slot (260); and / or the box body (100) is further provided with a second slot (190) on the side facing the accommodating cavity (011), and in the state of abutting of the box cover (200) and the box body (100), the two opposite side edges of the circuit board (021) are respectively inserted into the first slot (260) and the second slot (190) in the up-down direction.
10. A sectional air outlet air conditioner cabinet machine, characterized in that, The air outlet frame (030), the multi-section blade and the sensor assembly of any one of claims 1-9, the multi-section blade is rotatably installed on the air outlet frame (030), at least two adjacent blade sections of the multi-section blade are provided with the sensor assembly, and the sensor assembly is installed on the air outlet frame (030), wherein the two adjacent blade sections are a first blade section (040) and a second blade section (050), the first blade section (040) is located above the second blade section (050), a first matching part of the sensor assembly is inserted into a blade end shaft (041) of the first blade section (040), and a second matching part of the sensor assembly is inserted into a blade end hole (051) of the second blade section (050).
11. The sectional air outlet air conditioner cabinet machine according to claim 10, characterized by, The second end of the flow channel (120) of the sensor assembly extends to the air outlet frame (030).
Citation Information
Patent Citations
Sensor assembly and sectional type air outlet cabinet air conditioner
CN217274481U