Heating system for eliminating condensate water of integrated belt and integrated belt
Technical Field
The invention relates to a condensate water eliminating mechanism for an integrated belt, in particular to a heating system for eliminating condensate water of the integrated belt and the integrated belt.
Background
The integrated belt integrates multiple functions of equipment belts or indoor fire-fighting nozzles, fire-fighting smoke sensors, air inlet and outlet of an air conditioner, temperature sensors, point light source illumination, communication wireless coverage, monitors, infrared probes, sensor points, intelligent controllers, control switch boxes and other terminal equipment; the integrated belt has the advantages of high integration level, strong concealment, simplicity, attractiveness and the like, and is widely applied to various places such as offices, business supermarkets, transportation hubs, hotels, hospitals, entertainment places and the like. However, in the use process of the integrated belt, the louver at the air outlet of the air conditioner has the problem of condensation and dripping for a long time due to the exchange of cold air and hot air, and further the use and the user experience are influenced. Therefore, the existing integrated air outlet louver or metal grid with the air conditioner has the problem of dewing and dripping.
Disclosure of Invention
The invention aims to provide a heating system for eliminating condensed water in an integrated belt and the integrated belt. The invention has the characteristic of effectively eliminating the condensation and dripping phenomena of the air outlet shutter or the metal grid of the integrated belt air conditioner.
The technical scheme of the invention is as follows: the heating system for eliminating the integrated belt condensate water comprises a current stabilizer connected with a power supply, wherein a remote control receiving control circuit and an integrated belt heating control circuit are respectively connected in parallel between the anode and the cathode of the current stabilizer.
In the heating system for eliminating the integrated condensate water, the integrated heating control circuit comprises the second ac contactor main body and the heating wire which are connected in series, and the heating wire is fixed on the shutter or the metal grid of the integrated air-conditioning outlet.
In the heating system for eliminating the integrated belt condensate water, the heating wire is a carbon fiber heating wire.
In the heating system for eliminating the integrated belt condensate water, a motor control circuit is connected in parallel between the anode and the cathode of the current stabilizer.
In the heating system for eliminating the integrated belt condensate water, the motor control circuit comprises a first alternating current contactor main body and a shutter speed reducing motor which are connected in series.
In the heating system for eliminating integrated belt condensate water, the remote control receiving control circuit includes a remote controller receiving module, and an ac contactor control unit is arranged on the remote controller receiving module.
In the heating system for eliminating integrated belt condensate water, the ac contactor control unit comprises a first ac contactor control unit and a second ac contactor control unit.
In the heating system for eliminating the integrated belt condensate water, a remote controller matched with the remote control receiving control circuit is further included.
The integrated belt comprises an integrated belt body, wherein an air conditioner air outlet shutter or a metal grid is arranged on the integrated belt body, and the air conditioner air outlet shutter or the metal grid is provided with the heating system for eliminating condensed water in the integrated belt.
In the integrated belt, the air outlet louver or the metal grating is provided with the heating wire embedding groove.
Compared with the prior art, the invention is composed of a current stabilizer, a remote control receiving control circuit connected in parallel between the anode and the cathode of the current stabilizer and an integrated heating control circuit, wherein a heating wire is arranged on a louver or a metal grating integrated with an air-conditioning air outlet, and the heating wire is used for heating condensed water on the surface of the louver or the metal grating integrated with the air-conditioning air outlet, so that the purpose of eliminating the condensed water is realized, the structure is simple, the operation is convenient, the operation is very reliable, the heating temperature can be stably controlled at 36-40 ℃, and the condensed water can be eliminated under the condition of low energy consumption; meanwhile, the remote control receiving control circuit is controlled by the remote controller, so that the purpose of remotely controlling the integrated belt heating is realized. In conclusion, the invention has the characteristic of effectively eliminating the phenomenon of dewing and dripping of the shutter or the metal grid of the air outlet of the integrated belt air conditioner.
Drawings
Fig. 1 is a schematic structural view of the present invention.
The labels in the figures are: 1-current stabilizer, 2-remote control receiving control circuit, 3-integrated belt heating control circuit, 301-second AC contactor main body, 302-heating wire, 401-first AC contactor main body, 402-shutter speed reducing motor, 201-remote controller receiving module, 202-first AC contactor control unit, 203-second AC contactor control unit.
Detailed Description
The invention is further illustrated by the following figures and examples, which are not to be construed as limiting the invention.
Examples are given. The heating system for eliminating the integrated belt condensate water is shown in figure 1, and comprises a current stabilizer 1 connected with a power supply, wherein a remote control receiving control circuit 2 and an integrated belt heating control circuit 3 are respectively connected in parallel between the anode and the cathode of the current stabilizer 1.
The integrated belt heating control circuit 3 comprises a second alternating current contactor main body 301 and a heating wire 302 which are connected in series, and the heating wire 302 is fixed on a louver or a metal grid of the air outlet of the integrated belt air conditioner.
The heating wire 302 is a carbon fiber heating wire.
And a motor control circuit 4 is connected in parallel between the anode and the cathode of the current stabilizer 1.
The motor control circuit 4 includes a first ac contactor body 401 and a shutter speed reduction motor 402 connected in series with each other.
The remote control receiving control circuit 2 comprises a remote control receiving module 201, and an alternating current contactor control unit is arranged on the remote control receiving module 201.
The ac contactor control unit includes a first ac contactor control unit 202 and a second ac contactor control unit 203.
And a remote controller matched with the remote control receiving control circuit 2.
An integrated belt comprises an integrated belt body, wherein an air conditioner air outlet shutter or a metal grid is arranged on the integrated belt body, and a heating system for eliminating condensed water of the integrated belt is arranged on the air conditioner air outlet shutter or the metal grid.
The shutter or the metal grille of the air outlet of the air conditioner is provided with a heating wire embedding groove.
The current stabilizer is a 12V current stabilizer, and the current is 3A;
the power of the heating wire is 32W.
The first alternating current contactor main body and the second alternating current contactor main body are respectively connected with the first alternating current contactor control unit and the second alternating current contactor control unit.
The working process of the invention is as follows: sequentially connecting a current stabilizer, a second alternating current contactor main body, a heating wire, a first alternating current contactor main body, a shutter speed reducing motor and a remote controller receiving module according to requirements, and then respectively connecting a first alternating current contactor control unit and a second alternating current contactor control unit which are positioned on the remote controller receiving module with a first alternating current contactor and a second alternating current contactor to realize a control loop; meanwhile, the heating wires are embedded on the integrated louver with the air outlet of the air conditioner.
Inserting a plug of the current stabilizer into a socket to realize electrification; then the remote controller is pressed, when a heating button on the remote controller is pressed, a signal is given to the second alternating current contactor control unit by the remote controller receiving module, the second alternating current contactor control unit controls the second alternating current contactor to be closed, the heating wire is electrified, and heating is achieved.