Disclosure of Invention
The invention provides a device cleaning device for an anesthesia room, which can effectively solve the technical problems and has the advantages of simple mechanism, automatic drying and labor degree reduction.
In order to solve the technical problems, the technical scheme adopted by the invention is as follows: a cleaning device for instruments used in an anesthesia room comprises a cleaning device, a cleaning agent mixing device, an automatic preparation device, a drawer, a bushing, a drying device and a display controller.
The cleaning device comprises a housing, a connecting water pipe, a water pump, a positioning mounting plate, a driving bevel gear, a carriage guide rail and a rotary spray pipe; the cleaning agent mixing device comprises a bottom mounting plate, a connecting shaft, a mixing barrel and a mixing motor; the automatic preparation device comprises a torque limiter, a driving gear, an upper plate, a middle plate and a driving gearwheel; the drying device comprises an L-shaped mounting plate, a fan, a rotary connector and a driving large cone pulley.
The bottom mounting panel, connect the equal fixed mounting of upper plate and connection medium plate on the dustcoat, the connecting axle rotates and installs on connecting the medium plate, blending drum fixed mounting is on connecting the medium plate, hybrid motor fixed mounting is on connecting the medium plate, the equal fixed mounting of torque limiter and drive gear wheel is on the connecting axle, driving gear fixed mounting is on hybrid motor's output shaft, bushing fixed mounting is on the drawer, drawer and planker guide rail sliding connection, the equal fixed mounting of L type mounting panel and fan is on location mounting panel upper surface, swivelling joint head passes location mounting panel and rotatory spray pipe fixed connection, swivelling joint head's the other end and connection water pipe fixed connection, the water pump sets up in the blending drum, drive bevel gear and drive bull cone intermeshing, display controller fixed mounting is on the dustcoat.
Furthermore, the cleaning device also comprises a driven gear, a driving motor, a rotating cone pulley, an upper connecting shaft, a lower connecting shaft, a rotating small cone gear, a transmission shaft mounting plate and a water outlet, the connection water pipe, the location mounting panel, the equal fixed mounting of outlet and planker guide rail is on the dustcoat, water pump fixed mounting is on connecting the water pipe, driven gear fixed mounting is on connecting axle from top to bottom, drive gear fixed mounting is on driving motor's output shaft, driven gear and drive gear intermeshing, the equal fixed mounting of driving motor and transmission shaft mounting panel is on the location mounting panel, rotate the cone pulley and rotate bevel pinion intermeshing, the rotation of connecting axle is installed on the location mounting panel from top to bottom, it is fixed mounting at the both ends of transmission shaft respectively with drive bevel pinion to rotate bevel pinion, the transmission shaft rotates and installs in the transmission shaft mounting panel.
Further, cleaner mixing arrangement still include hold-in range, initiative synchronous pulley, hybrid drive flabellum bottom be provided with connecting axle and driven synchronous pulley, the connecting axle of hybrid drive flabellum rotates and installs in the blending hopper, the connecting axle of hybrid drive flabellum passes blending hopper and driven synchronous pulley fixed connection, driven synchronous pulley and initiative synchronous pulley are connected to the hold-in range to hold-in range and driven synchronous pulley and initiative synchronous pulley intermeshing, initiative synchronous pulley fixed mounting is on the connecting axle, the connecting axle fixed connection of hybrid drive flabellum and bottom.
Furthermore, the automatic preparation device also comprises a connecting plate, a fixed mounting plate, a driving gear, a closed driving gear, a closing plate, a storage bin, a corrugated pipe sensor, a sensor connecting rod, a storage bin connecting plate, a closed driving shaft, bilateral racks, a limiting block and a guide block, wherein the connecting plate is fixedly arranged on the upper plate and the connecting middle plate, the fixed mounting plate is fixedly arranged on the storage bin, the closed driving gear is fixedly arranged on a torque limiter, the driving gear is meshed with a driving gearwheel, the closed driving gear and the closing plate are fixedly connected with the closed driving shaft, the storage bin is fixedly arranged on the storage bin connecting plate, the corrugated pipe sensor is fixedly arranged on the upper plate, two ends of the sensor connecting rod are respectively fixedly connected with the corrugated pipe sensor and the storage bin connecting plate, the bilateral racks are slidably arranged in the guide block, the, the limiting blocks are fixedly arranged on the racks on the two sides, and the guide blocks are fixedly arranged on the fixed mounting plate.
Furthermore, the drying device also comprises a connecting cone pulley, a transmission cone pulley, a short shaft, a guide cone pulley, a connecting short shaft, a driving chain wheel, a heating wire, a chain, a fan driving one-way bearing, a driven chain wheel and a rotating pipe one-way bearing, wherein the connecting cone pulley and the transmission cone pulley are respectively and fixedly arranged at two ends of the short shaft, the short shaft and the connecting short shaft are both rotatably arranged in an L-shaped mounting plate, the guide cone pulley and the driving chain wheel are fixedly arranged at two ends of the connecting short shaft and are mutually meshed with each other, the heating wire is fixedly arranged on the fan, the chain is connected with the driving chain wheel and the driven chain wheel, the chain is mutually meshed with the driving chain wheel and the driven chain wheel, the fan driving one-way bearing is fixedly arranged on an input shaft of the fan, the driven chain wheel is fixedly arranged on the fan driving one-way, the driving large cone pulley is fixedly arranged on the one-way bearing of the rotating pipe and is meshed with the connecting cone pulley.
Furthermore, the rotary cone pulley, the rotary small cone gear, the transmission shaft mounting plate and the drive bevel gear are symmetrically provided with an upper group and a lower group, and the two rotary cone pulleys are respectively and fixedly mounted at two ends of the upper connecting shaft and the lower connecting shaft.
Furthermore, the number of the corrugated pipe sensors and the number of the sensor connecting rods are four, the two closed driving gears, the two closed driving plates and the two closed driving shafts are arranged in a bilateral symmetry mode, and the two closed driving gears are meshed with the racks on the two sides.
Furthermore, the rotation working directions of the fan driving one-way bearing and the rotating pipe one-way bearing are opposite.
Compared with the prior art, the invention has the beneficial effects that: (1) the anesthesia apparatus can be cleaned more comprehensively by adopting an up-and-down rotating cleaning mode; (2) the automatic cleaning agent preparation device is adopted, so that the cleaning agent can be more accurately prepared; (3) can carry out automatic drying after the washing is accomplished, effectively reduce personnel's labour.
Detailed Description
The present invention will be further described with reference to specific examples, which are illustrative of the invention and are not to be construed as limiting the invention.
Example (b): as shown in fig. 1, 2, 3, 4 and 5, the cleaning device for an instrument used in an anesthesia room comprises a cleaning device 1, a cleaning agent mixing device 2, an automatic preparation device 3, a drawer 4, a bushing 5, a drying device 6 and a display controller 7.
The cleaning device 1 comprises a housing 101, a connecting water pipe 102, a water pump 103, a positioning mounting plate 104, a driving bevel gear 113, a carriage guide rail 115 and a rotary spray pipe 116; the cleaning agent mixing device 2 comprises a bottom layer mounting plate 203, a connecting shaft 204, a mixing barrel 205 and a mixing motor 206; the automatic preparation device 3 comprises a torque limiter 304, a driving gear 303, an upper plate 308, a middle plate 315 and a driving gearwheel 318; the drying device 6 comprises an L-shaped mounting plate 601, a fan 609, a rotary connector 613 and a driving large cone pulley 615;
the bottom layer mounting plate 203, the upper connecting plate 308 and the connecting middle plate 315 are all fixedly mounted on the outer cover 101, the connecting shaft 204 is rotatably mounted on the connecting middle plate 315, the mixing barrel 205 is fixedly mounted on the connecting middle plate 315, the mixing motor 206 is fixedly mounted on the connecting middle plate 315, the torque limiter 304 and the driving gearwheel 318 are both fixedly mounted on the connecting shaft 204, the driving gearwheel 303 is fixedly mounted on the output shaft of the mixing motor 206, the bushing 5 is fixedly mounted on the drawer 4, the drawer 4 is slidably connected with the carriage guide rail 115, the L-shaped mounting plate 601 and the fan 609 are both fixedly mounted on the upper surface of the positioning mounting plate 104, the rotary connector 613 passes through the positioning mounting plate 104 to be fixedly connected with the rotary spray pipe 116, the other end of the rotary connector 613 is fixedly connected with the connecting water pipe 102, the driving bevel gear 113 and the driving large bevel gear 615 are mutually meshed, and the display controller 7 is fixedly arranged on the outer cover 101. Put drawer 4 through the manual work with abluent utensil of needs, pour enzyme or water into automatic preparation device 3, realize weighing through automatic preparation device 3, the manual work can learn the weight of enzyme or water through display controller 7, thereby realize the ratio, enzyme and water can flow into in the cleaner mixing arrangement 2, realize stirring enzyme and water through cleaner mixing arrangement 2, thereby many enzymes are prepared and are accomplished, realize rotatory washing through belt cleaning device 1, realize drying through drying device 6 at last.
The specific structure of the cleaning device 1 in this embodiment is shown in fig. 2, further comprising a driven gear 105, a driving gear 106, a driving motor 107, a rotating bevel gear 108, an upper connecting shaft 109, a lower connecting shaft 109, a rotating bevel pinion 110, a transmission shaft 111, a transmission shaft mounting plate 112, a water outlet 114, a connecting water pipe 102, a positioning mounting plate 104, the water outlet 114 and a carriage guide rail 115 which are all fixedly mounted on the outer cover 101, a water pump 103 is fixedly mounted on the connecting water pipe 102, the driven gear 105 is fixedly mounted on the upper connecting shaft 109, the driving gear 106 is fixedly mounted on an output shaft of the driving motor 107, the driven gear 105 and the driving gear 106 are mutually engaged, the driving motor 107 and the transmission shaft mounting plate 112 are both fixedly mounted on the positioning mounting plate 104, the rotating bevel gear 108 is mutually engaged with the rotating bevel pinion 110, the upper connecting shaft 109 and the lower connecting shaft 109 are rotatably mounted, the drive shaft 111 is rotatably mounted in the drive shaft mounting plate 112. Water or multi-enzyme is pumped into the connecting water pipe 102 through the water pump 103, is conveyed into the rotary water spraying pipe 116 through the connecting water pipe 102, and is sprayed outwards while the rotary water spraying pipe 116 rotates, so that the cleaning purpose is achieved.
The concrete structure of cleaning agent mixing arrangement 2 in this embodiment is as shown in fig. 3, still include hold-in range 201, driving synchronous pulley 202, hybrid drive flabellum 207 bottom is provided with connecting axle and driven synchronous pulley, hybrid drive flabellum 207's connecting axle rotates and installs in blending tank 205, hybrid drive flabellum 207's connecting axle passes blending tank 205 and driven synchronous pulley fixed connection, hold-in range 201 connects driven synchronous pulley and driving synchronous pulley 202, and hold-in range 201 and driven synchronous pulley and driving synchronous pulley 202 intermeshing, driving synchronous pulley 202 fixed mounting is on connecting axle 204, hybrid drive flabellum 207 and the connecting axle fixed connection of bottom. Rotation of hybrid motor 206 can drive the driving gear 303 rotatory, the rotation of driving gear 303 can drive the rotation of drive gear wheel 318, the rotation of drive gear wheel 318 can drive the rotation of connecting axle 204, the connecting axle 204 rotates and can drive the rotation of driving synchronous pulley 202, the rotation of driving synchronous pulley 202 can drive hold-in range 201 and driven synchronous pulley and rotate, driven synchronous pulley rotates and can drive the rotation of hybrid drive flabellum 207, thereby the realization realizes the effect of stirring to many enzymes.
The specific structure of the automatic preparation device 3 in this embodiment is shown in fig. 4, and further includes a connecting plate 301, a fixed mounting plate 302, a driving gear 303, a closed driving gear 306, a closing plate 307, a storage bin 309, a bellows sensor 310, a sensor connecting rod 311, a storage bin connecting plate 312, a closed driving shaft 313, a double-sided rack 314, a limiting block 316, and a guide block 317, wherein the connecting plate 301 is fixedly mounted on the upper plate 308 and the middle connecting plate 315, the fixed mounting plate 302 is fixedly mounted on the storage bin 309, the closed driving gear 305 is fixedly mounted on the torque limiter 304, the driving gear 303 is engaged with the driving gearwheel 318, the closed driving gear 306 and the closing plate 307 are fixedly connected with the closed driving shaft 313, the storage bin 309 is fixedly mounted on the storage bin connecting plate 312, the bellows sensor 310 is fixedly mounted on the upper plate 308, two ends of the sensor connecting rod 311 are, the double-sided rack 314 is slidably mounted in the guide block 317, the double-sided rack 314 is engaged with the closing driving gear 306, the limit block 316 is fixedly mounted on the double-sided rack 314, and the guide block 317 is fixedly mounted on the fixed mounting plate 302. The connecting shaft 204 rotates to drive the torque limiter 304 and the closing driving gear 305 to rotate, the closing driving gear 305 rotates to drive the double-sided rack 314 to slide, so as to drive the closing driving gear 306 to rotate, the rotation of the closing driving gear 306 can drive the closing driving shaft 313 and the closing plate 307 to rotate, so as to realize the closing of the outlet of the storage bin 309, when the limit block 316 collides with the guide block 317 or the double-sided rack 314 is jacked to the storage bin 309, the double-sided rack 314 stops sliding, the closing driving gear 305 stops rotating, at the same time, the rotation of the connecting shaft 204 is not affected due to the action of the torque limiter 304, when the storage bin 309 is in a closed state, water and enzyme are manually poured into the storage bin 309, the weight can be identified through the tension bellows sensor 310 downwards arranged on the sensor connecting rod 311, so as to transmit the data of, thereby facilitating the configuration of the cleaning agent by personnel.
The specific structure of the drying device 6 in this embodiment is as shown in fig. 5, and further includes a connection cone pulley 602, a transmission cone pulley 603, a short shaft 604, a guide cone pulley 605, a connection short shaft 606, a driving sprocket 607, a heating wire 608, a chain 610, a fan driving one-way bearing 611, a driven sprocket 612, and a rotating pipe one-way bearing 614, wherein the connection cone pulley 602 and the transmission cone pulley 603 are respectively and fixedly installed at two ends of the short shaft 604, the short shaft 604 and the connection short shaft 606 are both rotatably installed in an L-shaped installation plate 601, the guide cone pulley 605 and the driving sprocket 607 are fixedly installed at two ends of the connection short shaft 606, the transmission cone pulley 603 and the guide cone pulley 605 are engaged with each other, the heating wire 608 is fixedly installed on the fan 609, the chain 610 is connected with the driving sprocket 607 and the driven sprocket 612, the chain 610 is engaged with the driving sprocket 607 and the driven sprocket 612, the driven chain wheel 612 is fixedly arranged on a fan driving one-way bearing 611, the rotating pipe one-way bearing 614 is fixedly arranged on a rotating connector 613, the driving large cone pulley 615 is fixedly arranged on the rotating pipe one-way bearing 614, and the driving large cone pulley 615 is meshed with the connecting cone pulley 602. The driving large cone pulley 615 can be driven to rotate by the rotation of the driving bevel gear 113, when cleaning is carried out, the driving large cone pulley 615 drives the rotating pipe one-way bearing 614 to rotate, the rotation of the rotating pipe one-way bearing 614 can drive the rotating connector 613 to rotate, thereby realizing the function of rotary cleaning, when drying is carried out, the driving large cone pulley 615 drives the rotating pipe one-way bearing 614 to rotate in the opposite direction, the rotating pipe one-way bearing 614 can rotate, the rotating pipe one-way bearing 614 at the moment can not drive the rotating connector 613 to rotate, the driving large cone pulley 615 can rotate to drive the connecting cone pulley 602 to rotate, the connecting cone pulley 602 drives the short shaft 604 to rotate, the short shaft 604 drives the transmission cone pulley 603 to rotate, the transmission cone pulley 603 can drive the guiding cone pulley 605 to rotate, the guiding cone pulley 605 drives the connecting short shaft 606 to rotate, the connecting short shaft 606 can drive the driving sprocket 607 to rotate, the rotation of the, the rotation of the driven sprocket 612 can drive the fan 609 to start working, and meanwhile, the heating wire 608 also starts working, so that the drying state is achieved.
In this embodiment, as shown in fig. 2, an upper set and a lower set of rotating bevel wheels 108, a rotating bevel pinion 110, a transmission shaft 111, a transmission shaft mounting plate 112, and a driving bevel gear 113 are symmetrically disposed, and the two rotating bevel wheels 108 are respectively and fixedly mounted at two ends of an upper connecting shaft 109 and a lower connecting shaft 109.
In this embodiment, as shown in fig. 4, four bellows sensors 310 and four sensor connecting rods 311 are provided, two closing pinion gears 306, two closing plates 307, and two closing driving shafts 313 are provided in bilateral symmetry, and both the two closing pinion gears 306 are engaged with the double-sided rack 314.
In this embodiment, as shown in fig. 5, the rotation directions of the fan drive one-way bearing 611 and the rotating pipe one-way bearing 614 are opposite.