Household household electric meter box with visual remote control

By using heat-reducing and moisture-proof mechanisms in household meter boxes, and using air guides and blower parts for air circulation and wind direction control, the problem of meter boxes being susceptible to moisture and heat accumulation is solved, and the safe and stable operation of electrical appliances is achieved.

CN120016307APending Publication Date: 2025-05-16SHENZHEN YUNKONG NEW TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510151213.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-11
Publication Date
2025-05-16

AI Technical Summary

Technical Problem

The incoming meter box is prone to moisture and will accumulate heat during work, affecting the normal operation of the electrical appliances, and may cause short circuits of the electrical appliances and affecting the safety of electricity use.

Method used

A household inlet meter box with visual remote control is designed, and a heat-reducing and moisture-proof mechanism is adopted, including air guides and blower parts. The heat generated by the remote control mechanism heats the air inside the air guide, and the air direction is controlled and air circulation is performed through the blower parts to achieve heat exhaust and drying.

Benefits of technology

It effectively reduces the accumulation of heat in the meter box, prevents electrical appliances from being short-circuited due to moisture, and ensures safety and stability of electricity use.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120016307A_ABST
    Figure CN120016307A_ABST
Patent Text Reader

Abstract

The invention discloses a household home-entry electric meter box with visual remote control, which comprises a bearing box body, a visual sealing mechanism, a cooling moisture-proof mechanism and a mounting mechanism, and is characterized in that a bearing groove is formed in the front surface of the bearing box body; the visual sealing mechanism is arranged at a bearing notch of the bearing box body; the cooling and damp-proof mechanism is arranged in the bearing groove and comprises an air guide part and an air blowing part; the mounting mechanism is arranged on the outer wall of the air guide part, and a remote electric control mechanism is arranged on the side, away from the air guide part, of the mounting mechanism. According to the air guide piece, through the arrangement of the structure, the air exhaust position of the air guide piece can be subjected to blowing control of the air direction under operation adjustment, in this way, after heated air is guided to be blown to the remote electric control mechanism, drying of the remote electric control mechanism can be accelerated, and under the condition that the air humidity is large, the remote electric control mechanism can be dried; and the environment at the remote electric control mechanism can be ensured to be dry, so that the safety and stability of electricity utilization are ensured.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to the field of electric meter boxes, and in particular to a household electric meter box with visual remote control. Background Art

[0002] The meter box is a box used to install and protect the meter and related electrical equipment, which makes it convenient for power companies to measure and monitor electricity usage. With the design and development of smart meters, meter reading and electrical control can now be remotely controlled.

[0003] In the process of house rental, some landlords will add meter boxes to independently monitor each room in order to better measure and monitor the electricity in the corresponding rooms. Therefore, smart meters for detecting the applied electricity will be electrically connected to the corresponding switch positions in the meter box. These smart meters are used to measure and monitor the electricity in the corresponding areas. During the rainy season, the controlled humidity in some areas will increase, and moisture will accumulate on the walls of buildings. The household meter boxes are mostly embedded in the walls, so the household meter boxes are more susceptible to moisture. When the smart meters and switches in the meter box are working, a lot of heat will accumulate in the small space of the meter box. If this heat is not eliminated quickly, it will not only affect the normal operation of various electrical appliances, but also heat the humid water vapor to cause water vapor to spread in the meter box, causing electrical appliances to short-circuit and affect electricity safety. In view of this, this solution proposes a household meter box with visual remote control to solve the above problems. Summary of the invention

[0004] The object of the present invention is to provide a household electric meter box with visual remote control to solve the problems raised in the above background technology.

[0005] To achieve the above object, the present invention provides the following technical solution: a household electric meter box with visual remote control, comprising:

[0006] A bearing box body, wherein a bearing slot is provided on the front side of the bearing box body;

[0007] A visual closing mechanism, which is arranged at a bearing slot of the bearing box and is used for visual closing of the bearing slot;

[0008] A heat-reducing and moisture-proof mechanism, wherein the heat-reducing and moisture-proof mechanism is arranged in the bearing slot, and comprises an air guide member and an air blowing member, wherein the air blowing member is used for controlling the wind direction through the guidance of the air guide member;

[0009] The mounting mechanism is arranged on the outer wall of the air guide member, and a remote electric control mechanism is arranged on the side of the mounting mechanism away from the air guide member. The remote electric control mechanism is closely installed with the air guide member through the mounting mechanism, and the working heat of the remote electric control mechanism is used to heat the air inside the air guide member.

[0010] Preferably, the visual sealing mechanism comprises:

[0011] A closed ring plate, the closed ring plate is fixedly connected to the outer wall of the bearing box body around the closed ring plate, and the closed ring plate is arranged in the notch of the bearing groove;

[0012] An inspection door is hinged to the inner ring wall of the closed ring plate, and a closing lock is provided between one end of the inspection door and the inner wall of the bearing box.

[0013] Preferably, a plurality of observation ports are provided at the top of the inspection door, each of which is provided with a transparent window, an operation port is provided at the bottom of the inspection door, a sealing frame is provided in the operation port, and an operation door is hinged on the inner wall of the sealing frame.

[0014] Preferably, the air guide member comprises:

[0015] An air guide box, wherein an air guide cavity is provided in the middle of the air guide box, one end of the air guide cavity passes through one end of the air guide box, the remote electric control mechanism is used for heating the air in the air guide cavity, and the blowing member is arranged at the end of the air guide box that passes through the air guide cavity;

[0016] The heat absorbing plate is fixedly connected to the front side of the air guide box, the heat absorbing plate is used to block the front side of the air guide cavity, and the front side of the heat absorbing plate is used for connecting the mounting mechanism.

[0017] Preferably, the blowing member comprises:

[0018] A placement rack, the placement rack is fixedly connected to one end of the air guide box, and the placement rack is arranged at the through end of the air guide cavity and the air guide box;

[0019] The blowing fan is arranged in the placement frame, and the blowing fan is used for blowing air into the air guiding cavity through the through end of the air guiding cavity.

[0020] Preferably, an exhaust cavity is provided at the bottom end of the air guide box, and an air guide duct is fixedly connected to the bottom end of the air guide box, the top inner wall of the air guide duct is connected to the bottom of the exhaust cavity, a plurality of through grooves are provided on the inner wall of the air guide cavity, the bottoms of the plurality of through grooves are connected to the top of the exhaust cavity, a blocking guide portion is provided between the air guide cavity and the through groove, and the blocking guide portion is used for on-off control of the through groove and the exhaust cavity.

[0021] Preferably, the blocking guide portion comprises:

[0022] An extrusion protrusion, wherein the extrusion protrusion is slidably inserted and connected to the air guide cavity along a horizontal longitudinal direction, and one end of the extrusion protrusion passes through the heat absorbing plate and is inserted into the middle of the mounting mechanism;

[0023] An air guide plate, the air guide plate is slidably connected to the top of the air guide cavity, and a reset structure is provided between the air guide plate and the inner wall of the top of the air guide cavity;

[0024] A blocking block is slidably inserted and connected in the through groove. The blocking block is used for on-off control of the through groove and the exhaust cavity by sliding in the through groove. A connecting rod is provided between the side opposite to the blocking block and the extrusion protrusion, and a linkage rod is provided between the rod wall of the connecting rod and the side wall of the air guide plate.

[0025] Preferably, an inner wall at the top of the air guide cavity is provided with an interlaced sliding groove, and the reset structure includes:

[0026] An interpenetrating sliding sleeve, wherein the interpenetrating sliding sleeve is fixedly connected to the top end of the air guide plate, and the interpenetrating sliding sleeve is slidably interpenetratingly connected in the interpenetrating sliding groove;

[0027] A guide slide bar, wherein the guide slide bar is arranged in the insertion slide groove, and the insertion slide sleeve is slidably sleeved on the outer wall of the guide slide bar;

[0028] A return spring is sleeved on the outer wall of the guide slide rod, and is used to push the insertion slide sleeve to move toward the extrusion protrusion.

[0029] Preferably, the mounting mechanism includes a mounting rail, the mounting rail is fixedly connected to a side of the heat absorbing plate away from the air guide box, a through opening is opened in the middle of the mounting rail, the extrusion protrusion is interlaced and connected with the through opening, and the mounting rail is used for the sliding installation of the remote electric control mechanism.

[0030] Preferably, the remote electric control mechanism comprises:

[0031] A smart electric meter, wherein the smart electric meter is slidably mounted on a mounting rail;

[0032] A connecting switch is slidably mounted on the mounting rail, and a control end of the connecting switch is electrically connected to an output end of the smart meter.

[0033] Technical effects and advantages of the present invention:

[0034] (1) The present invention provides a heat-reducing and moisture-proof mechanism in the carrying box, and the heat-reducing and moisture-proof mechanism is composed of an air guide and an air blowing member, and the air guide member is used for the installation of the remote electric control mechanism by means of the mounting mechanism, so that the heat generated by the operation of the remote electric control mechanism will be conducted to the air guide member, and the air blowing member circulates the air in the air guide member by blowing air, thereby dissipating heat from the remote electric control mechanism and ensuring its stable operation.

[0035] (2) The air guide of the present invention is structurally arranged so that the position of the exhaust air can be operated to control the blowing direction. After the heated air is guided and blown to the remote electric control mechanism, the drying of the remote electric control mechanism can be accelerated. Even when the air humidity is high, the environment of the remote electric control mechanism can be kept dry, thereby ensuring safe and stable electricity use. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0037] Figure 2 It is a front view of the overall structure of the present invention.

[0038] Figure 3 This is a schematic diagram of the overall structure of the present invention without the visual sealing mechanism.

[0039] Figure 4 This is a front view of the overall structure without the visible closing mechanism of the present invention.

[0040] Figure 5 It is a schematic diagram of the structural connection of the heat-reducing and moisture-proof mechanism and the installation mechanism of the present invention.

[0041] Figure 6 It is a front view of the structural connection between the heat-reducing and moisture-proof mechanism and the mounting mechanism of the present invention.

[0042] Figure 7 It is a side view of the structural connection of the heat-reducing and moisture-proof mechanism and the installation mechanism of the present invention.

[0043] Figure 8 It is a structural schematic diagram of the end portion of the air guide member of the present invention.

[0044] Fig. 9 It is a cross-sectional view of the structural connection between the air guide member and the blocking guide portion of the present invention.

[0045] In the figure: 1. bearing box; 2. closed ring plate; 201. inspection door; 202. transparent window; 203. sealing frame; 204. operating door; 205. closing lock; 3. air guide box; 301. heat absorbing plate; 302. placement rack; 303. exhaust chamber; 304. air guide chamber; 305. through groove; 4. mounting rail; 5. blowing fan; 6. air guide duct; 7. extrusion protrusion; 8. air guide plate; 801. interlaced sliding sleeve; 802. guide slide rod; 803. reset spring; 9. blocking block; 10. connecting rod; 11. linkage rod; 12. smart meter; 13. connecting switch. DETAILED DESCRIPTION

[0046] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0047] Embodiment 1, the present invention provides as follows Figure 1-4 A household electric meter box with visual remote control is shown, comprising:

[0048] The bearing box 1 has a bearing groove on the front side thereof. The front side of the bearing box 1 is provided with an opening-shaped structure, so that a structure can be arranged and installed in the bearing groove through the opening.

[0049] A visual closing mechanism, which is arranged at a bearing slot of the bearing box 1 and is used for visual closing of the bearing slot;

[0050] Specifically, the visual closure mechanism includes:

[0051] A closed ring plate 2, the closed ring plate 2 surrounds and is fixedly connected to the outer wall of the bearing box 1, and the closed ring plate 2 is arranged in the notch of the bearing groove;

[0052] The inspection door 201 is hinged to the inner ring wall of the closed ring plate 2 , and a closing lock 205 is provided between one end of the inspection door 201 and the inner wall of the bearing box 1 .

[0053] It should be noted that the closed ring plate 2 is used to expand the front of the carrying box 1 to facilitate the installation of the inspection door 201. A rotating groove is provided on the inner wall of one side of the closed ring plate 2, and a hinge structure is provided to realize the hinge of the inspection door 201 at the inner ring wall of the closed ring plate 2. At the same time, a lock hole is provided on the inner wall of the carrying box 1, and the closing lock 205 is connected to the end of the inspection door 201 that is not hinged to the closed ring plate 2. In this way, the end of the inspection door 201 that is not hinged to the closed ring plate 2 is locked by the closing lock 205, so that the inspection door 201 can be opened by opening the closing lock 205 and rotating it, and then the inside of the carrying box 1 can be operated.

[0054] Furthermore, a plurality of observation ports are provided at the top of the inspection door 201, each of which is provided with a transparent window 202; an operation port is provided at the bottom of the inspection door 201, a sealing frame 203 is provided in the operation port, and an operation door 204 is hinged on the inner wall of the sealing frame 203.

[0055] It should be noted that the observation port is closed by the transparent window 202, so that the visible range of the transparent window 202 area is formed. In the actual structural setting of the electric meter box, the transparent window 202 area is used to set the smart electric meter 12 mentioned below, so as to process the display screen of the smart electric meter 12, so as to perform visual viewing of the smart electric meter 12;

[0056] The structural setting of the sealing frame 203 is first to perform a sealing of the inner wall of the operating port, and at the same time, an extrusion groove is opened on the inner wall of the top of the sealing frame 203, and a hinge groove is opened on the inner wall of the bottom of the sealing frame 203. In this way, a hinge structure is set at the hinge groove so that the bottom of the operating door 204 is hinged to the sealing frame 203, and an elastic pressure plate structure is set on the top of the operating door 204. The structure is inserted into the extrusion groove through elastic contraction, and the elasticity is used to squeeze the inner wall of the extrusion groove, so as to prevent the operating door 204 from rotating and falling off from the inner wall of the sealing frame 203 under the action of gravity.

[0057] Embodiment 2, the present invention provides as follows Figure 5-9 The heat reduction and moisture proof mechanism and the installation mechanism shown are applied to the household electricity meter box of the first embodiment. The heat reduction and moisture proof mechanism is arranged in the bearing slot. The heat reduction and moisture proof mechanism includes an air guide and an air blowing member. The air blowing member is used for controlling the wind direction through the guidance of the air guide member.

[0058] The mounting mechanism is arranged on the outer wall of the air guide, and a remote electric control mechanism is arranged on the side of the mounting mechanism away from the air guide. The remote electric control mechanism is installed closely with the air guide through the mounting mechanism, and the working heat of the remote electric control mechanism is used to heat the air inside the air guide.

[0059] Specifically, the air guide includes:

[0060] The air guide box 3 has an air guide cavity 304 in the middle thereof, one end of which passes through one end of the air guide box 3, and the remote electric control mechanism is used for heating the air in the air guide cavity 304. The blowing member is arranged at the end of the air guide box 3 passing through the air guide cavity 304;

[0061] It should be noted that the air guide box 3 is arranged in a long strip structure, and the air guide cavity 304 is opened in the middle of the air guide box 3 and close to the front area. At the same time, the front and one end of the air guide cavity 304 pass through the air guide box 3, and the penetration point at one end is the air inlet port of the air guide cavity 304.

[0062] The heat absorbing plate 301 is fixedly connected to the front side of the air guide box 3 . The heat absorbing plate 301 is used to block the front side of the air guide cavity 304 . The front side of the heat absorbing plate 301 is used to connect the mounting mechanism.

[0063] It should be noted that the heat absorbing plate 301 is used to seal the cavity wall at the front of the air guiding cavity 304, so the heat absorbing plate 301 is in direct contact with the air guiding cavity 304, so that the heat absorbed by the heat absorbing plate 301 can be transferred to the air guiding cavity 304, so as to heat the air in the air guiding cavity 304. In the setting of this scheme, the heat absorbing plate 301 is made of ceramic-based composite materials and is designed to have a structure with high heat capacity and thermal conductivity for absorbing heat, so that the heat generated by the following connection switch 13 and the smart meter 12 can be quickly absorbed, so that the connection switch 13 and the smart meter 12 can operate stably.

[0064] Blowing parts include:

[0065] A placement rack 302, the placement rack 302 is fixedly connected to one end of the air guide box 3, and the placement rack 302 is arranged at the through end of the air guide cavity 304 and the air guide box 3;

[0066] The blowing fan 5 is arranged in the placement frame 302 , and the blowing fan 5 is used for blowing air into the air guiding cavity 304 through the through end of the air guiding cavity 304 .

[0067] It should be noted that the placement rack 302 is a structure for placing the blowing fan 5. The front side of the placement rack 302 and the side connected to the air guide box 3 are open structures, so that the front side can be used for the installation and disassembly of the blowing fan 5. After the blowing fan 5 is started, the wind is blown into the air guide cavity 304, so that the cold air flow at the end of the air guide box 3 enters the air guide cavity 304, and the hot air flows in the air guide cavity 304 through heat exchange with the heat absorption plate 301.

[0068] Furthermore, an exhaust cavity 303 is provided at the bottom end of the air guide box 3, and an air guide duct 6 is fixedly connected to the bottom end of the air guide box 3. The top inner wall of the air guide duct 6 is connected to the bottom of the exhaust cavity 303. A plurality of through grooves 305 are provided on the inner wall of the air guide cavity 304, and the bottoms of the plurality of through grooves 305 are all connected to the top of the exhaust cavity 303. A blocking guide portion is provided between the air guide cavity 304 and the through groove 305, and the blocking guide portion is used for on-off control of the through groove 305 and the exhaust cavity 303.

[0069] It should be noted that the through groove 305 and the exhaust cavity 303 form an exhaust passage of the multi-way air guide cavity 304, and the exhaust outlet is received by the air guide pipe 6. By the bending design of the air guide pipe 6, the exhaust port of the air guide pipe 6 can be directed to the connection switch 13 and the smart meter 12 below, so as to purge the connection switch 13 and the smart meter 12, thereby avoiding the accumulation of water vapor at the connection switch 13 and the smart meter 12, and at the same time, hot air can be used to purge the moisture at the connection switch 13 and the smart meter 12, thereby ensuring that the air at the connection switch 13 and the smart meter 12 is quickly dried, and ensuring the stable use of the connection switch 13 and the smart meter 12;

[0070] In the structural setting of the present solution, the on-off control of the exhaust can be achieved by controlling the opening and closing of the through slot 305 and the exhaust cavity 303 .

[0071] The blocking guide comprises:

[0072] An extrusion protrusion 7 is slidably inserted and connected to the air guide cavity 304 along the horizontal longitudinal direction, and one end of the extrusion protrusion 7 passes through the heat absorbing plate 301 and is inserted into the middle of the mounting mechanism;

[0073] The wind guide plate 8 is slidably connected to the top of the wind guide cavity 304, and a reset structure is provided between the wind guide plate 8 and the inner wall of the top of the wind guide cavity 304;

[0074] The blocking block 9 is slidably inserted and connected in the through groove 305. The blocking block 9 is used for on-off control of the through groove 305 and the exhaust chamber 303 by sliding in the through groove 305. A connecting rod 10 is arranged between the blocking block 9 and the side opposite to the extrusion protrusion 7, and a linkage rod 11 is arranged between the rod wall of the connecting rod 10 and the side wall of the air guide plate 8.

[0075] It should be noted that the blocking block 9 is used to block the connection between the through groove 305 and the exhaust chamber 303. In the structural setting, the thickness of the blocking block 9 is smaller than the opening width of the connection between the through groove 305 and the exhaust chamber 303, and a storage area is also opened on the inner wall on the back of the through groove 305 to facilitate the movement of the blocking block 9 to the storage area. In the initial state, the air guide plate 8 is moved in the direction away from the inner wall on the back of the air guide chamber 304 through the top support of the reset structure. At this time, the air guide plate 8 drives the connecting rod 10 to move synchronously through the linkage rod 11, and the connecting rod 10 drives the blocking block 9 and the extrusion protrusion 7 to move. Under such a structural setting, the end of the blocking block 9 located on the front side will be in the front position of the connection between the through groove 305 and the exhaust chamber 303, so as to advance the connection between the through groove 305 and the exhaust chamber 303, so that the gas in the air guide chamber 304 will not be discharged through this place.

[0076] In the setting of the present scheme, the air guide plate 8 is an arc-shaped structure, and its inner arc surface is opposite to the air inlet of the air guide chamber 304. In this way, when the extrusion protrusion 7 is compressed, the blocking block 9 is driven to move toward the direction close to the air guide box 3 through the linkage rod 11 and the connecting rod 10. At this time, after the blocking block 9 moves, the through groove 305 and the exhaust chamber 303 are gradually connected, and the maximum distance that the extrusion protrusion 7 moves under pressure is the moving distance after the air guide plate 8 is just in contact with the inner wall of the back side of the air guide chamber 304. When the air guide plate 8 is in contact with the inner wall of the back side of the air guide chamber 304, through its arc-shaped structure, the hot air in the air guide chamber 304 can be discharged from the through groove 305 opened at that place and the exhaust chamber 303 through the connection, so that the exhaust blowing is carried out at that place of the air guide duct 6.

[0077] Furthermore, the inner wall at the top of the air guide cavity 304 is provided with an interlaced sliding groove, and the reset structure includes:

[0078] The inserting sliding sleeve 801 is fixedly connected to the top of the air guide plate 8, and the inserting sliding sleeve 801 is slidably inserted and connected in the inserting sliding groove;

[0079] A guide slide bar 802, the guide slide bar 802 is disposed in the insertion slide groove, and the insertion slide sleeve 801 is slidably sleeved on the outer wall of the guide slide bar 802;

[0080] The return spring 803 is sleeved on the outer wall of the guide slide rod 802 , and is used to push the insertion slide sleeve 801 to move toward the extrusion protrusion 7 .

[0081] It should be noted that, by fixing the interleaving sleeve 801 and the air guide plate 8, the air guide plate 8 and the interleaving sleeve 801 can move synchronously, and the interleaving sleeve 801 is supported and guided for sliding by the guide slide bar 802. At the same time, under the push of the reset spring 803, the interleaving sleeve 801 drives the air guide plate 8 to move in a direction away from the back inner wall of the air guide cavity 304, so that the through groove 305 and the exhaust cavity 303 are in a closed state.

[0082] Specifically, the mounting mechanism includes a mounting rail 4, which is fixedly connected to the side of the heat absorbing plate 301 away from the air guide box 3. A through opening is opened in the middle of the mounting rail 4, and the extrusion protrusion 7 is interlaced and connected with the through opening. The mounting rail 4 is used for the sliding installation of the remote electric control mechanism.

[0083] It should be noted that the mounting rail 4 is an existing mounting structure, and the raised ends of the mounting rail can facilitate the sliding of some electrical components.

[0084] Specifically, the remote electric control mechanism includes:

[0085] A smart meter 12 is slidably mounted on the mounting rail 4;

[0086] The connecting switch 13 is slidably installed with the mounting rail 4 , and the control end of the connecting switch 13 is electrically connected with the output end of the smart meter 12 .

[0087] It should be noted that the smart meter 12 of this solution adopts a rail-mounted energy meter, and its rail-mounted installation is the same as the connection switch 13. The smart meter 12 adopts an energy metering chip, and is designed and manufactured using digital sampling and processing technology and SMT technology. It can be connected to a mobile terminal through a signal, so that remote control can be achieved through the mobile terminal.

[0088] In this solution, the connection switch 13 adopts an air switch, which is also called an air circuit breaker. It is a device used for electrical protection, mainly used for overload and short circuit protection. It uses air as an insulating medium to cut off the circuit. Its main functions include overload protection, short circuit protection and leakage protection. When the current exceeds the set value, the air switch will automatically cut off the circuit to prevent equipment damage or fire. When a short circuit occurs in the circuit, the air switch can quickly cut off the power supply to avoid the accident from expanding. It can detect leakage current and cut off the power supply to ensure personal safety.

[0089] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A household electric meter box with visual remote control, characterized in that: include: A bearing box (1), wherein a bearing groove is provided on the front side of the bearing box (1); A visual closing mechanism, the visual closing mechanism being arranged at a bearing slot of the bearing box (1), and being used for visually closing the bearing slot; A heat-reducing and moisture-proof mechanism, wherein the heat-reducing and moisture-proof mechanism is arranged in the bearing slot, and comprises an air guide member and an air blowing member, wherein the air blowing member is used for controlling the wind direction through the guidance of the air guide member; The mounting mechanism is arranged on the outer wall of the air guide member, and a remote electric control mechanism is arranged on the side of the mounting mechanism away from the air guide member. The remote electric control mechanism is closely installed with the air guide member through the mounting mechanism, and the working heat of the remote electric control mechanism is used to heat the air inside the air guide member.

2. A household electric meter box with visual remote control according to claim 1, characterized in that: The visual sealing mechanism comprises: A closed ring plate (2), the closed ring plate (2) surrounds and is fixedly connected to the outer wall of the bearing box (1), and the closed ring plate (2) is arranged in a notch of the bearing groove; An inspection door (201) is hinged to the inner ring wall of the closed ring plate (2), and a closing lock (205) is provided between one end of the inspection door (201) and the inner wall of the bearing box (1).

3. A household electric meter box with visual remote control according to claim 2, characterized in that: The top of the inspection door (201) is provided with a plurality of observation ports, each of which is provided with a transparent window (202); the bottom of the inspection door (201) is provided with an operation port, a sealing frame (203) is provided in the operation port, and an operation door (204) is hingedly connected to the inner wall of the sealing frame (203).

4. A household electric meter box with visual remote control according to claim 1, characterized in that: The air guide member comprises: An air guide box (3), wherein an air guide cavity (304) is provided in the middle of the air guide box (3), one end of the air guide cavity (304) passes through one end of the air guide box (3), the remote electric control mechanism is used for heating the air in the air guide cavity (304), and the blowing member is arranged at the end of the air guide box (3) that passes through the air guide cavity (304); A heat absorbing plate (301), the heat absorbing plate (301) being fixedly connected to the front side of the air guide box (3), the heat absorbing plate (301) being used to block the front side of the air guide cavity (304), and the front side of the heat absorbing plate (301) being used for connection with the mounting mechanism.

5. A household electric meter box with visual remote control according to claim 4, characterized in that: The blowing member comprises: A placement rack (302), the placement rack (302) being fixedly connected to one end of the air guide box (3), and the placement rack (302) being arranged at a penetration end between the air guide cavity (304) and the air guide box (3); A blowing fan (5), wherein the blowing fan (5) is arranged in the placement frame (302), and the blowing fan (5) is used to blow air into the air guiding cavity (304) through the through end of the air guiding cavity (304).

6. A household electric meter box with visual remote control according to claim 4, characterized in that: An exhaust cavity (303) is provided at the bottom end of the air guide box (3), and an air guide pipe (6) is fixedly connected to the bottom end of the air guide box (3), and the top inner wall of the air guide pipe (6) is connected to the bottom of the exhaust cavity (303). A plurality of through grooves (305) are provided on the inner wall of the air guide cavity (304), and the bottoms of the plurality of through grooves (305) are connected to the top of the exhaust cavity (303). A blocking guide portion is provided between the air guide cavity (304) and the through groove (305), and the blocking guide portion is used for on-off control of the through groove (305) and the exhaust cavity (303).

7. A household electric meter box with visual remote control according to claim 6, characterized in that: The blocking guide portion comprises: An extrusion protrusion (7), the extrusion protrusion (7) being slidably inserted and connected to the air guide cavity (304) along a horizontal longitudinal direction, and one end of the extrusion protrusion (7) passes through the heat absorption plate (301) and is inserted into the middle of the installation mechanism; An air guide plate (8), the air guide plate (8) being slidably inserted and connected to the top of the air guide cavity (304), and a reset structure being provided between the air guide plate (8) and the inner wall at the top of the air guide cavity (304); A blocking block (9) is slidably inserted and connected in the through groove (305), and the blocking block (9) is used for on-off control of the through groove (305) and the exhaust chamber (303) by sliding in the through groove (305). A connecting rod (10) is provided between the side of the blocking block (9) opposite to the extrusion protrusion (7), and a linkage rod (11) is provided between the rod wall of the connecting rod (10) and the side wall of the air guide plate (8).

8. A household electric meter box with visual remote control according to claim 7, characterized in that: The inner wall of the top of the air guide cavity (304) is provided with an interlaced sliding groove, and the reset structure comprises: An interpenetrating sliding sleeve (801), wherein the interpenetrating sliding sleeve (801) is fixedly connected to the top end of the air guide plate (8), and the interpenetrating sliding sleeve (801) is slidably interpenetratingly connected in the interpenetrating sliding groove; A guide slide bar (802), wherein the guide slide bar (802) is arranged in the insertion slide groove, and the insertion slide sleeve (801) is slidably sleeved on the outer wall of the guide slide bar (802); A return spring (803), wherein the return spring (803) is sleeved on the outer wall of the guide slide rod (802), and the return spring (803) is used to push the insertion slide sleeve (801) to move towards a direction close to the extrusion protrusion (7).

9. A household electric meter box with visual remote control according to claim 7, characterized in that: The mounting mechanism comprises a mounting rail (4), the mounting rail (4) being fixedly connected to a side of the heat absorbing plate (301) away from the air guide box (3), a through opening being provided in the middle of the mounting rail (4), the extrusion protrusion (7) being interlacedly connected with the through opening, and the mounting rail (4) being used for the sliding installation of the remote electric control mechanism.

10. A household electric meter box with visual remote control according to claim 9, characterized in that: The remote electric control mechanism comprises: A smart electric meter (12), wherein the smart electric meter (12) is slidably mounted on a mounting rail (4); A connecting switch (13) is slidably mounted on the mounting rail (4), and a control end of the connecting switch (13) is electrically connected to an output end of the smart meter (12).