Disclosure of Invention
The technical problem to be solved by the invention is as follows: in order to overcome the defects of the prior art, the infrared therapeutic apparatus with the cleaning function for gynecological nursing is provided.
The technical scheme adopted by the invention for solving the technical problems is as follows: an infrared therapeutic apparatus with a cleaning function for gynecological and obstetrical nursing comprises a base, a supporting plate, a controller, an irradiation box, a cleaning box, an alcohol box, a sealing cover and a sealing mechanism, wherein the irradiation box is fixed above the base through the supporting plate, the controller is fixed on the supporting plate, a PLC is arranged in the controller, the sealing mechanism and the cleaning box are respectively arranged at two sides of the irradiation box, openings are formed in the inner walls of the two sides of the irradiation box, the alcohol box is fixed above the cleaning box, the sealing cover is located above the alcohol box, a protective net is arranged at the opening of the irradiation box, and the irradiation mechanism is arranged in the irradiation box;
the irradiation mechanism comprises a reciprocating assembly, a reciprocating plate, two reciprocating frames and a plurality of irradiation assemblies, the reciprocating assembly is in transmission connection with the reciprocating plate, the two reciprocating frames are respectively fixed below two ends of the reciprocating plate, the irradiation assemblies are uniformly distributed below the reciprocating plate from top to bottom, each irradiation assembly comprises a lamp tube and two rotating units, the lamp tube is electrically connected with the PLC, the two rotating units are respectively positioned at two ends of the lamp tube, and the rotating units are in one-to-one correspondence with the reciprocating frames;
clean mechanism is including clean pipe, drive assembly, movable plate, clean subassembly, two flexible subassemblies and a plurality of shower nozzle, the top and the alcohol box intercommunication of clean pipe, be equipped with the valve in the clean pipe, shower nozzle evenly distributed is on clean pipe, drive assembly is located the inner wall of keeping away from one side of shining the box of clean box, and two flexible subassemblies are located drive assembly's both sides respectively, drive assembly passes through flexible subassembly and is connected with the movable plate, clean subassembly is located one side that is close to the fluorescent tube of movable plate.
Preferably, in order to facilitate the moving plate to extend out of the irradiation box, the sealing mechanism comprises a sealing plate and two sealing units, the two sealing units are respectively located at two ends of the sealing plate, each sealing unit comprises a fixing rod, a fixing plate and a spring, the fixing plate is fixedly connected with the irradiation box through the fixing rod, the sealing plate is sleeved on the fixing rod, the sealing plate is connected with the sealing plate through the spring, and the spring is in a compressed state.
Preferably, in order to drive the lamp tube to rotate, the rotating unit comprises a half gear, a rotating shaft, a bearing and two racks, the bearing is fixed on the inner wall of the irradiation box, one end of the rotating shaft is arranged in the irradiation box, the other end of the rotating shaft is fixedly connected with the lamp tube, the half gear is sleeved on the rotating shaft and is located between the two racks, the two racks are respectively fixed on the inner walls of the two sides of the reciprocating frame, and the racks are meshed with the half gear.
Preferably, in order to realize the stable movement of the reciprocating frame, a plurality of limiting blocks are arranged on two sides of the reciprocating frame and are uniformly distributed from top to bottom, and the limiting blocks are fixed in the irradiation box.
Preferably, in order to drive the reciprocating plate to reciprocate up and down, the reciprocating assembly comprises a first motor, a first connecting rod and a second connecting rod, the first motor is fixed in the irradiation box and electrically connected with the PLC, the first motor is in transmission connection with the first connecting rod, and the first connecting rod is hinged with the reciprocating plate through the second connecting rod.
Preferably, in order to realize the translation of the moving plate, the telescopic assembly comprises a moving block, a fixed block, a telescopic frame and two third connecting rods, the fixed block is fixed in the cleaning box, the driving assembly is in transmission connection with the moving block, two sides of one end of the telescopic frame are respectively hinged with the fixed block and the moving block, and two sides of the other end of the telescopic frame are respectively hinged with the moving plate through the two third connecting rods.
Preferably, in order to drive the moving block to move, the driving assembly comprises a second motor and two lead screws, the second motor is fixed in the cleaning box, the second motor is electrically connected with the PLC, the two lead screws are respectively positioned on two sides of the second motor, the lead screws correspond to the telescopic assemblies one by one, the second motor is in transmission connection with one ends of the lead screws, the other ends of the lead screws are arranged in the fixed block, the moving block is sleeved on the lead screws, and threads matched with the lead screws are arranged at the connection part of the moving block and the lead screws.
Preferably, in order to clean the lamp tube, the cleaning assembly comprises a coil, a magnet, a cleaning shell, a sponge block and four orientation units, the coil is fixed on one side of the movable plate and electrically connected with the PLC, four corners of the cleaning shell are respectively connected with the movable plate through the four orientation units, an opening of the cleaning shell points to one side far away from the movable plate, and the sponge block is arranged in the cleaning shell.
Preferably, in order to fix the moving direction of the cleaning shell and facilitate the translation of the cleaning shell along with the translation of the moving plate, the orientation unit comprises an orientation block and an orientation rod, the orientation block is fixedly connected with the cleaning shell through the orientation rod, and the moving plate is sleeved on the cleaning shell.
Preferably, in order to supplement alcohol into the alcohol box in time, a liquid level sensor is arranged in the alcohol box and is electrically connected with the PLC.
The infrared therapeutic apparatus with the cleaning function for gynecological nursing has the advantages that after alcohol is sprayed on the sponge block in the cleaning mechanism, the movable plate drives the cleaning assembly to move on the surface of the lamp tube, and meanwhile, the reciprocating unit drives the reciprocating frame to reciprocate, the lamp tube rotates, so that the sponge block coats the alcohol on the surface of the lamp tube, dust on the lamp tube is removed, infrared irradiation is facilitated, the temperature reduction and heat dissipation of the lamp tube are facilitated, the service life of the lamp tube is prolonged, the practicability of the apparatus is improved, compared with the existing cleaning mechanism, the cleaning mechanism is convenient to assemble, disassemble and clean the sponge block, and the long-term cleaning effect of the lamp tube is guaranteed.
Drawings
The invention is further illustrated with reference to the following figures and examples.
FIG. 1 is a schematic view of an infrared ray therapeutic apparatus with cleaning function for gynecological and obstetrical care according to the present invention;
FIG. 2 is a schematic view of the irradiation mechanism of the infrared ray therapeutic apparatus with cleaning function for gynecological care of the present invention;
FIG. 3 is a schematic view showing the structure of a rotating unit of the infrared ray therapeutic apparatus with a cleaning function for gynecological and obstetrical care of the present invention;
FIG. 4 is a schematic view of the cleaning mechanism of the infrared therapeutic apparatus with cleaning function for gynecological care of the present invention;
FIG. 5 is a schematic view of the cleaning assembly of the infrared treatment device with cleaning function for gynecological care of the present invention;
in the figure: 1. the automatic cleaning device comprises a base, a support plate, a controller, a lighting box, a cleaning box, an alcohol box, a sealing cover, a protective net, a reciprocating plate, a lamp tube, a cleaning tube, a movable plate, a nozzle, a sealing plate, a fixing rod, a fixing plate, a spring, a half gear, a rotating shaft, a bearing, a rack, a limiting block, a movable block, a fixing block, a lamp tube, a cleaning tube, a movable plate, a nozzle, a sealing plate, a fixing rod, a fixing plate, a spring, a half gear, a rotating shaft, a bearing 21, a rack, a limiting block, a movable block, a fixed block, a telescopic frame, a third connecting rod, a second motor, a screw rod, a coil, a magnet, a cleaning shell, a sponge block, a directional block, a.
Detailed Description
The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic views illustrating only the basic structure of the present invention in a schematic manner, and thus show only the constitution related to the present invention.
As shown in fig. 1, an infrared therapeutic apparatus with a cleaning function for gynecological and obstetrical care comprises a base 1, a support plate 2, a controller 3, an irradiation box 4, a cleaning box 5, an alcohol box 6, a sealing cover 7 and a sealing mechanism, wherein the irradiation box 4 is fixed above the base 1 through the support plate 2, the controller 3 is fixed on the support plate 2, a PLC is arranged in the controller 3, the sealing mechanism and the cleaning box 5 are respectively arranged at two sides of the irradiation box 4, openings are arranged on inner walls of the two sides of the irradiation box 4, the alcohol box 6 is fixed above the cleaning box 5, the sealing cover 7 is positioned above the alcohol box 6, a protective net 8 is arranged at the opening of the irradiation box 4, and an irradiation mechanism is arranged in the irradiation box 4;
in the infrared therapeutic apparatus, an irradiation box 4 is fixedly supported above a base 1 through a support plate 2, the irradiation box 4 is internally provided with a protective net 8 for preventing people from directly contacting with the irradiation mechanism, the irradiation mechanism can irradiate infrared rays to people for treatment, one side of the irradiation box 4 is convenient for a cleaning box 5 to be communicated with the irradiation box 4 through an opening, the other side of the irradiation box 4 is blocked by a sealing mechanism, the opening is blocked in the cleaning box 5, the surface of a lamp tube 10 can be cleaned through the cleaning mechanism, dust adsorbed on the surface is removed, the propagation of the infrared rays is prevented from being blocked, before cleaning, alcohol can be conveyed to the cleaning mechanism in an alcohol box 6, the alcohol is coated on the surface of the lamp tube 10, the lamp tube 10 can be cleaned, the alcohol volatilizes at the same time, the heat on the surface of the lamp tube 10 can be absorbed, the temperature reduction and heat dissipation of the lamp tube 10 are, the operation of the equipment is carried out through the controller 3, so that the cleaning mechanism extends out of the irradiation box 4, the sponge block 32 in the cleaning mechanism is cleaned, the long-term cleaning capability of the equipment is ensured, and the practicability of the equipment is improved.
As shown in fig. 2, the irradiation mechanism includes a reciprocating assembly, a reciprocating plate 9, two reciprocating frames 39 and a plurality of irradiation assemblies, the reciprocating assembly is in transmission connection with the reciprocating plate 9, the two reciprocating frames 39 are respectively fixed below two ends of the reciprocating plate 9, the irradiation assemblies are uniformly distributed below the reciprocating plate 9 from top to bottom, the irradiation assembly includes a lamp 10 and two rotation units, the lamp 10 is electrically connected with the PLC, the two rotation units are respectively located at two ends of the lamp 10, and the rotation units correspond to the reciprocating frames 39 one by one;
in the irradiation mechanism, the infrared ray can be irradiated through the light emission of the lamp tube 10 for treatment, in order to facilitate the cleaning mechanism to act on the surface of the lamp tube 10, the reciprocating plate 9 can be driven to reciprocate in the vertical direction through the reciprocating component, and then the reciprocating frame 39 is driven to move up and down in a reciprocating manner, the reciprocating frame 39 acts on the rotating unit at the inner side, the lamp tube 10 is driven to rotate, so that the cleaning mechanism can act on all parts of the surface of the lamp tube 10, and the cleaning effect is improved.
As shown in fig. 1 and 4, the cleaning mechanism includes a cleaning tube 11, a driving assembly, a moving plate 12, a cleaning assembly, two telescopic assemblies and a plurality of spray heads 13, the top end of the cleaning tube 11 is communicated with the alcohol box 6, a valve is arranged in the cleaning tube 11, the spray heads 13 are uniformly distributed on the cleaning tube 11, the driving assembly is located on the inner wall of the cleaning box 5, which is far away from one side of the irradiation box 4, the two telescopic assemblies are respectively located on two sides of the driving assembly, the driving assembly is connected with the moving plate 12 through the telescopic assemblies, and the cleaning assembly is located on one side of the moving plate 12, which is close to the lamp 10.
When needs are cleaned fluorescent tube 10, the valve in the clean pipe 11 of PLC control is opened, alcohol in the alcohol box 6 sprays on clean subassembly through shower nozzle 13, then PLC control drive assembly starts, be used in on the flexible subassembly of both sides, drive movable plate 12 through flexible subassembly and remove, make clean subassembly scribble alcohol and clean fluorescent tube 10 on fluorescent tube 10's surface, recover after the alcohol on fluorescent tube 10 absorbs heat, thereby realize cooling radiating purpose, simultaneously because the dust on fluorescent tube 10 surface has been removed, infrared normal propagation has been guaranteed, be convenient for shine the treatment.
As shown in fig. 1, the sealing mechanism includes a sealing plate 14 and two sealing units, the two sealing units are respectively located at two ends of the sealing plate 14, the sealing unit includes a fixing rod 15, a fixing plate 16 and a spring 17, the fixing plate 16 is fixedly connected with the irradiation box 4 through the fixing rod 15, the sealing plate 14 is sleeved on the fixing rod 15, the sealing plate 14 is connected with the sealing plate 14 through the spring 17, and the spring 17 is in a compressed state.
The position of the fixed plate 16 is fixed by the fixed rod 15, the sealing plate 14 is pushed by the compressed spring 17 on the fixed plate 16, so that the opening is blocked by the sealing plate 14, when the moving plate 12 moves to abut against the sealing plate 14 and then continues to move, the moving plate 12 pushes the sealing plate 14 to move, so that the cleaning assembly extends out of the irradiation box 4, and the sponge block 32 in the cleaning assembly is convenient to clean.
As shown in fig. 3, the rotating unit includes a half gear 18, a rotating shaft 19, a bearing 20 and two racks 21, the bearing 20 is fixed on the inner wall of the irradiation box 4, one end of the rotating shaft 19 is disposed in the irradiation box 4, the other end of the rotating shaft 19 is fixedly connected to the lamp tube 10, the half gear 18 is sleeved on the rotating shaft 19, the half gear 18 is located between the two racks 21, the two racks 21 are respectively fixed on the inner walls of the two sides of the reciprocating frame 39, and the racks 21 are engaged with the half gear 18.
In the rotating unit, the position of the rotating shaft 19 is fixed through the bearing 20, and then the position of the half gear 18 is fixed, when the reciprocating plate 9 drives the reciprocating frame 39 to move up and down, the reciprocating frame 39 acts on the racks 21 on the inner walls of the two sides, the racks 21 move and act on the half gear 18 meshed with the reciprocating frame in sequence to drive the half gear 18 to rotate, so that the rotating shaft 19 rotates under the supporting action of the bearing 20, and then the lamp tube 10 is driven to rotate, and the cleaning assembly is convenient to act on the surface of the lamp tube 10.
Preferably, in order to realize the stable movement of the reciprocating frame 39, a plurality of limit blocks 22 are arranged on both sides of the reciprocating frame 39, the limit blocks 22 are uniformly distributed from top to bottom, and the limit blocks 22 are fixed in the irradiation box 4. The position of the reciprocating frame 39 is limited by the stopper 22, so that the reciprocating frame 39 moves between the two stoppers 22.
As shown in fig. 2, the reciprocating assembly comprises a first motor 36, a first connecting rod 37 and a second connecting rod 38, the first motor 36 is fixed in the irradiation box 4, the first motor 36 is electrically connected with the PLC, the first motor 36 is in transmission connection with the first connecting rod 37, and the first connecting rod 37 is hinged with the reciprocating plate 9 through the second connecting rod 38. The PLC controls the first motor 36 to start, so as to drive the first connecting rod 37 to rotate, and the first connecting rod 37 acts on the reciprocating plate 9 through the second connecting rod 38, thereby realizing the reciprocating motion of the reciprocating plate 9 in the vertical direction.
As shown in fig. 4, the telescopic assembly includes a moving block 23, a fixed block 24, a telescopic frame 25 and two third connecting rods 26, the fixed block 24 is fixed in the cleaning box 5, the driving assembly is in transmission connection with the moving block 23, two sides of one end of the telescopic frame 25 are respectively hinged to the fixed block 24 and the moving block 23, and two sides of the other end of the telescopic frame 25 are respectively hinged to the moving plate 12 through the two third connecting rods 26.
The driving assembly operates to act on the moving block 23, the moving block 23 is driven to move, the distance between the moving block 23 and the fixed block 24 is changed, the telescopic frame 25 stretches, the length of the telescopic frame 25 changes, and the moving plate 12 is driven to move through the third connecting rod 26 of the connecting rod.
Preferably, in order to drive the moving block 23 to move, the driving assembly includes a second motor 27 and two lead screws 28, the second motor 27 is fixed in the cleaning box 5, the second motor 27 is electrically connected with the PLC, the two lead screws 28 are respectively located at two sides of the second motor 27, the lead screws 28 correspond to the telescopic assemblies one by one, the second motor 27 is in transmission connection with one end of the lead screw 28, the other end of the lead screw 28 is arranged in the fixed block 24, the moving block 23 is sleeved on the lead screw 28, and a connection part of the moving block 23 and the lead screw 28 is provided with a thread matched with the lead screw 28. The PLC controls the second motor 27 to be started, the lead screws 28 on the two sides are driven to rotate under the supporting effect of the fixing blocks 24, and the lead screws 28 act on the moving block 23 through threads, so that the moving block 23 moves along the axis of the lead screws 28.
As shown in fig. 5, the cleaning assembly includes a coil 29, a magnet 30, a cleaning case 31, a sponge block 32 and four orientation units, the coil 29 is fixed on one side of the moving plate 12, the coil 29 is electrically connected to the PLC, four corners of the cleaning case 31 are respectively connected to the moving plate 12 through the four orientation units, an opening of the cleaning case 31 points to one side far away from the moving plate 12, and the sponge block 32 is disposed in the cleaning case 31.
When the movable plate 12 moves, the directional unit can drive the cleaning shell 31 to move, so as to move the sponge block 32 in the cleaning shell 31, the coil 29 is electrified, the coil 29 generates magnetism, the magnetism of the coil 29 can be changed according to the direction of current, the magnet 30 is pushed to be far away from the movable plate 12 or the magnet 30 is attracted to be close to the movable plate 12, when the movable plate 12 extends into the irradiation box 4, the coil 29 generates magnetism repulsive to the magnet 30, so that the sponge block 32 is tightly attached to the surface of the lamp 10, the sponge block 32 cleans the surface of the lamp 10 along with the rotation of the lamp 10 and the translation of the movable plate 12, meanwhile, the alcohol on the sponge block 32 is smeared on the surface of the lamp 10, the temperature reduction and heat dissipation of the lamp 10 are convenient, when the sponge block 32 in the cleaning shell 31 needs to be cleaned, the coil 29 generates magnetism attractive to the magnet 30, then the telescopic assembly pushes the movable plate 12 out of the, the sponge block 32 in the cleaning shell 31 can be conveniently taken down, and the sponge block 32 is plugged into the cleaning shell 31 after cleaning.
Preferably, in order to fix the moving direction of the cleaning shell 31 and facilitate the translation of the cleaning shell 31 along with the translation of the moving plate 12, the orientation unit includes an orientation block 33 and an orientation rod 34, the orientation block 33 is fixedly connected with the cleaning shell 31 through the orientation rod 34, and the moving plate 12 is sleeved on the cleaning shell 31. When the moving plate 12 moves, the moving plate acts on the directional rod 34, so that the moving plate 12 drives the cleaning shell 31 to move through the directional rod 34, when the magnetism of the coil 29 changes, the cleaning shell 31 moves along with the axis of the directional rod 34, the moving range of the directional rod 34 is limited by the directional block 33, and the moving plate 12 is prevented from being separated from the directional rod 34.
Preferably, in order to replenish alcohol into the alcohol tank 6 in time, a liquid level sensor 35 is provided in the alcohol tank 6, and the liquid level sensor 35 is electrically connected to the PLC. Detect the liquid level in the alcohol through level sensor 35 to give PLC with liquid level data transfer, when the liquid level was lower, PLC passed through controller 3 and shows that the liquid level is not enough, and the people of being convenient for in time supplyes alcohol to alcohol box 6.
This infrared therapeutic instrument is in the use, after spraying alcohol to the sponge piece 32 in the clean subassembly, act on flexible subassembly through drive assembly, drive movable plate 12 and remove to shining in the box 4, reciprocal unit is used in reciprocating plate 9 simultaneously, through driving reciprocal frame 39 go on reciprocating up and down reciprocating motion, make fluorescent tube 10 rotate, coil 29 produces the magnetism that repels with magnet 30, make sponge piece 32 at pivoted fluorescent tube 10 surface removal, paint alcohol on fluorescent tube 10, get rid of the dust on fluorescent tube 10 surface simultaneously, it absorbs the heat to utilize alcohol evaporation simultaneously to be convenient for launch infrared ray, cool down the heat dissipation to fluorescent tube 10, prolong its life, thereby the practicality of equipment has been improved.
Compared with the prior art, this an infrared therapeutic instrument who is used for gynaecology and obstetrics's nursing with clean function sprays the alcohol after through the sponge piece 32 in clean mechanism, movable plate 12 drives clean subassembly and removes on fluorescent tube 10 surface, while reciprocal unit drives reciprocal frame 39 reciprocating motion, fluorescent tube 10 takes place to rotate, thereby make sponge piece 32 paint alcohol on fluorescent tube 10 surface, and get rid of the dust on fluorescent tube 10, when being convenient for infrared irradiation, make things convenient for fluorescent tube 10 to cool down the heat dissipation, prolong fluorescent tube 10 life-span, thereby the practicality of this equipment has been improved, compare with current clean mechanism, this clean mechanism is convenient for load and unload the washing to sponge piece 32, thereby the long-term clean effect of fluorescent tube 10 has been guaranteed.
In light of the foregoing description of the preferred embodiment of the present invention, many modifications and variations will be apparent to those skilled in the art without departing from the spirit and scope of the invention. The technical scope of the present invention is not limited to the content of the specification, and must be determined according to the scope of the claims.