A mold cleaning device for a glass bottle blowing machine
By designing mold cleaning equipment for circulation-type soaking and air-disturbing auxiliary cleaning, the problems of low cleaning efficiency, high consumption and impurity re-adsorption in the prior art are solved, and efficient and efficient glass blower mold cleaning effect is achieved.
Patent Information
- Application Number
- CN202510051673.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-14
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2045-01-14
AI Technical Summary
The cleaning method of existing glass blower mold cleaning equipment is low in efficiency, consumes a lot of cleaning liquid, and residual impurities are easily adsorbed again, resulting in poor cleaning effect and long cycle.
A mold cleaning device including a circular flow soaking cleaning mechanism, an air-disturbing auxiliary cleaning mechanism and a dust-drying mechanism are designed. The circulating soaking cleaning mechanism realizes the circulation and filtration recycling of the cleaning liquid through the circulating drive liquid wheel and the suction filter circulation spray assembly; the air-scratch auxiliary cleaning mechanism uses the ventilation support roller and the spoiler exhaust hole for air-scratch cleaning.
It significantly improves the efficiency of the glass blower mold cleaning, reduces the consumption of cleaning liquid, reduces the risk of impurities re-adsorption, and shortens the cleaning cycle.
Smart Images

Figure CN119456527B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of mold cleaning of blow molding machines, and particularly relates to a mold cleaning device for a glass blow molding machine. Background Art
[0002] A mold cleaning device is a type of device for cleaning molds, mainly used in the cleaning process of various molds. Among them, a glass blow molding machine mold is a mold that assists in the blow molding of glass bottles. After the blow molding machine mold is used for a period of time, impurities such as oil stains, dust, and glass raw materials usually adhere to the mold cavity and accessories such as the template. In order to ensure the forming quality of the glass bottle, it is usually necessary to regularly clean and maintain the glass blow molding machine mold.
[0003] In the prior art, most mold cleaning devices mainly clean the mold by immersion cleaning or spray cleaning. Whether it is immersion cleaning or spray cleaning, the glass blow molding machine mold is cleaned by a one-step cleaning method. Such a cleaning method not only consumes a large amount of cleaning liquid, but also the impurities remaining in the cleaning liquid will be adsorbed again in the mold cavity of the glass blow molding machine, resulting in poor cleaning effect and long cleaning cycle for the glass blow molding machine mold.
[0004] The information disclosed in this background art section is only intended to enhance the overall understanding of the present invention and should not be regarded as an admission or any form of suggestion that this information constitutes prior art already known to those of ordinary skill in the art. Summary of the Invention
[0005] The purpose of the present invention is to provide a mold cleaning device for a glass blow molding machine, which can improve the cleaning efficiency of the glass blow molding machine mold.
[0006] In order to achieve the above purpose, the technical solution provided by a specific embodiment of the present invention is as follows:
[0007] A mold cleaning device for a glass blow molding machine includes: a chassis, a circulating immersion cleaning mechanism, an air disturbance assisted cleaning mechanism, and a dust falling and drying mechanism.
[0008] The circulating immersion cleaning mechanism is fixedly assembled in the chassis. The circulating immersion cleaning mechanism includes an immersion cleaning tank, which is fixedly assembled in the chassis. A driving rotating shaft is rotatably connected below the immersion cleaning tank. One end of the driving rotating shaft located in the immersion cleaning tank is fixedly connected with a circulating driving liquid wheel. A pair of suction filtration type circulating spray components are arranged outside the immersion cleaning tank.
[0009] The air-disturbing type auxiliary cleaning mechanism is assembled above the soaking cleaning tank. The air-disturbing type auxiliary cleaning mechanism includes a supporting and limiting frame which is slidably assembled in the soaking cleaning tank. A plurality of evenly distributed air-permeable supporting rollers are rotatably connected to the bottom of the supporting and limiting frame. A plurality of the air-permeable supporting rollers are hollow, and a plurality of evenly distributed flow-disturbing exhaust holes are formed on the outer sides of the plurality of air-permeable supporting rollers. A plurality of isolated flow-disturbing cleaning components are fixedly assembled in the supporting and limiting frame.
[0010] The dust-falling and drying mechanism is fixedly assembled above the machine case and is used for blowing and cleaning and auxiliary drying of the supporting and limiting frame.
[0011] In one or more embodiments of the present invention, a positioning ring plate is fixedly connected above the machine case and is arranged below the soaking cleaning tank. The soaking cleaning tank is supported and positioned by the positioning ring plate. A driving motor is fixedly assembled below the machine case, and an output shaft of the driving motor is in transmission connection with a driving rotating shaft. The driving rotating shaft is rotationally driven by controlling the operation of the driving motor, so as to facilitate synchronous driving of the circulation driving liquid wheel.
[0012] In one or more embodiments of the present invention, the suction filtration type circulating spraying component includes a plurality of suction filtration cylinders which are fixedly assembled on both sides of the soaking cleaning tank. A suction filter screen cylinder is fixedly connected in each of the plurality of suction filtration cylinders, and a filtering chamber is formed by the inner wall of the suction filtration cylinder and the outer wall of the suction filter screen cylinder. The cleaning liquid inside the soaking cleaning tank is conveniently guided and filtered through the filtering chamber.
[0013] In one or more embodiments of the present invention, a filter layer is filled in the filtering chamber. The cleaning liquid led out by the liquid guide pipe is filtered through the cooperation of the filter layer and the suction filter screen cylinder. Liquid guide pipes are fixedly connected between the plurality of suction filtration cylinders and the soaking cleaning tank. The liquid guide pipes play a role in connecting the filtering chamber and the suction filtration cylinders, and facilitate the return transportation of the cleaning liquid containing impurities at the bottom of the soaking cleaning tank along the liquid guide pipes.
[0014] In one or more embodiments of the present invention, a return rotation shaft is rotatably connected inside the suction filtration cylinder. The return rotation shaft plays a role in assembling and fixing the spiral guide rod and driving its rotation. One side of the return rotation shaft located inside the suction filter cylinder is fixedly connected with a spiral guide rod, and the spiral guide rod and the suction filter cylinder cooperate to form a spiral conveying cavity. By controlling the rotation of the spiral guide rod, the spiral conveying cavity is continuously moved, so as to facilitate the diversion and transportation of the cleaned liquid filtered inside the suction filter cylinder. A return pipe is fixedly connected above the suction filtration cylinder. The cleaned liquid conveyed by the spiral conveying cavity is discharged through the return pipe. One end of the return pipe located inside the immersion cleaning tank is fixedly communicated with a conduction liquid pipe, and multiple groups of uniformly distributed spray nozzles are fixedly communicated on the side of the conduction liquid pipe facing away from the inner wall of the immersion cleaning tank. The cleaned liquid conveyed by the return pipe is sprayed and returned through the cooperation of the conduction liquid pipe and the spray nozzles.
[0015] In one or more embodiments of the present invention, synchronous belt wheels are fixedly connected to one ends of multiple groups of the return rotation shafts located outside the suction filtration cylinder. The multiple groups of return rotation shafts are synchronously driven by driving the synchronous belt wheels to rotate. Synchronous belts are connected between every two of the multiple synchronous belt wheels. The multiple synchronous belt wheels are synchronously driven and controlled through the synchronous belts. A driving belt wheel is fixedly connected to the bottom of the return rotation shaft. The single return rotation shaft is independently driven and controlled by controlling the rotation of the driving belt wheel. A transmission belt is sleeved outside the driving belt wheel. The transmission belt plays a role in connecting the driving belt wheel and the transmission belt pulley, so that the driving belt wheel can rotate synchronously under the action of the transmission belt with the rotation of the transmission belt pulley. A transmission belt pulley is sleeved on the side of the transmission belt facing away from the driving belt wheel, and the transmission belt pulley is fixedly sleeved outside the driving rotation shaft. The transmission belt pulley plays a role in transmitting the power of the driving rotation shaft.
[0016] In one or more embodiments of the present invention, air guide covers are fixedly connected to both sides of the support and limit frame, and a pair of the air guide covers are sleeved outside multiple groups of air-permeable support rollers. It is convenient to synchronously convey compressed air into the multiple groups of air-permeable support rollers through the air guide covers, so as to facilitate the discharge of the compressed air through multiple turbulent flow exhaust holes, thereby facilitating the auxiliary cleaning of the glass blowing machine template placed on the multiple groups of air-permeable support rollers. A communicating air pipe is fixedly connected between the pair of air guide covers. Compressed air is conveyed into multiple groups of driving threaded blocks through the communicating air pipe.
[0017] In one or more embodiments of the present invention, drive threaded blocks are fixedly connected to the opposite sides of a pair of the air guide covers. The lifting and moving control of the supporting and limiting frame is carried out by controlling the lifting and moving of the drive threaded blocks. A lead screw is threadedly connected to each of the pair of drive threaded blocks, and the pair of lead screws are rotatably assembled in the soaking cleaning tank. The lead screw plays a role in thread locking and lifting and moving of the drive threaded block. A pair of guide optical rods are fixedly assembled in the soaking cleaning tank, the pair of guide optical rods are arranged between the pair of lead screws, and guide sliders are slidably assembled on the outer sides of the pair of guide optical rods. The guide sliders are fixedly connected to the side walls of the supporting and limiting frame. The lifting and guiding of the supporting and limiting frame is achieved through the sliding fit of the guide optical rods and the guide sliders.
[0018] In one or more embodiments of the present invention, a guiding and limiting frame is fixedly assembled above the chassis. The guiding and limiting frame plays a role in assembling and limiting the lifting pulley. A lifting pulley is fixedly connected to one end of each of the pair of lead screws located inside the guiding and limiting frame. The rotation drive of the guiding and limiting frame is carried out by controlling the rotation drive of the lifting pulley. A lifting transmission belt is sleeved on the outer side of the lifting pulley. The lifting transmission belt plays a role in connecting the lifting pulley and the lifting transmission belt pulley, enabling the lifting pulley to rotate synchronously with the rotation of the lifting transmission belt pulley under the action of the lifting transmission belt. A lifting transmission belt pulley is sleeved on the side of the lifting transmission belt away from the lifting pulley. The lifting transmission belt pulley plays a role in transmitting the power of the lifting motor. A lifting motor is fixedly assembled above the guiding and limiting frame, and the output shaft of the lifting motor is in transmission connection with the lifting transmission belt pulley. The rotation drive of the lifting transmission belt pulley is carried out by controlling the operation of the lifting motor.
[0019] In one or more embodiments of the present invention, the isolated turbulent flow cleaning assembly includes multiple component partition plates. The glass blowing machine mold template placed in the supporting and limiting frame is separated and limited by the multiple component partition plates. Multiple ventilation plates are fixedly connected to both sides of the multiple partition plates, and multiple uniformly distributed exhaust nozzles are fixedly connected to the sides of the multiple ventilation plates away from the partition plates. Through the cooperation of the multiple ventilation plates and the exhaust nozzles, air is blown to the side of the glass blowing machine mold template placed on the supporting and limiting frame. By blowing air, the turbulent flow of the cleaning liquid can be achieved, thereby improving the cleaning effect on the glass blowing machine mold template. An air compressor is assembled below the chassis. Compressed air is generated by controlling the operation of the air compressor. The air outlet of the air compressor is communicated with a conveying air pipe, and a guiding air pipe is communicated between the conveying air pipe and the multiple component partition plates. The guiding air pipe is in communication with the connecting air pipe. Compressed air is conveyed into the connecting air pipe and the guiding air pipe through the conveying air pipe and the guiding air pipe, so as to provide compressed air for the multiple ventilation supporting rollers and the exhaust nozzles.
[0020] Compared with the prior art, by setting up a circulating immersion cleaning mechanism, the present invention can carry out circulating disturbance on the cleaning liquid. At the same time, the cleaning liquid can be filtered and recycled, greatly reducing the consumption of the cleaning liquid during the cleaning process of the glass bottle blowing machine mold, and reducing the secondary pollution caused by the cleaning liquid containing impurities to the glass bottle blowing machine mold.
[0021] By setting up an air disturbance assisted cleaning mechanism, the cleaning effect of the glass bottle blowing machine mold is significantly improved, the cleaning cycle of the glass bottle blowing machine mold is shortened, and the cleaning efficiency of the glass bottle blowing machine mold is improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments recorded in the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.
[0023] Figure 1 It is a front view cross-sectional view of the mold cleaning equipment of the glass bottle blowing machine in an embodiment of the present invention;
[0024] Figure 2 It is Figure 1 a schematic diagram of the structure at A in
[0025] Figure 3 It is Figure 1 a schematic diagram of the structure at B in
[0026] Figure 4 It is Figure 1 a schematic diagram of the structure at C in
[0027] Figure 5 It is a front view of a part of the mold cleaning equipment of the glass bottle blowing machine in an embodiment of the present invention;
[0028] Figure 6 It is Figure 5 a schematic diagram of the structure at D in
[0029] Figure 7 It is a three-dimensional view of a part of the mold cleaning equipment of the glass bottle blowing machine in an embodiment of the present invention;
[0030] Figure 8 It is Figure 7 a schematic diagram of the structure at E in
[0031] Figure 9 It is a three-dimensional view of another angle of a part of the mold cleaning equipment of the glass bottle blowing machine in an embodiment of the present invention;
[0032] Figure 10 For Figure 9 Schematic diagram of the structure at position F in
[0033] Figure 11 Stereogram of the mold cleaning equipment of a glass bottle blowing machine in an embodiment of the present invention;
[0034] Figure 12 Another angle stereogram of the mold cleaning equipment of a glass bottle blowing machine in an embodiment of the present invention.
[0035] Description of main reference numerals:
[0036] 1 - Chassis, 2 - Circulating immersion cleaning mechanism, 201 - Immersion cleaning tank, 202 - Driving rotating shaft, 203 - Circulation driving liquid wheel, 204 - Positioning ring plate, 205 - Driving motor, 206 - Suction filter cylinder, 207 - Suction filter screen cylinder, 208 - Filter layer, 209 - Liquid guiding pipe, 210 - Return rotating shaft, 211 - Spiral guiding rod, 212 - Return pipe, 213 - Conducting liquid pipe, 214 - Spray nozzle, 215 - Synchronous belt pulley, 216 - Synchronous belt, 217 - Driving belt pulley, 218 - Transmission belt, 219 - Transmission belt pulley, 3 - Air disturbance assisted cleaning mechanism, 301 - Supporting and limiting frame, 302 - Ventilation supporting roller, 303 - Air guiding cover, 304 - Connecting air pipe, 305 - Driving threaded block, 306 - Lead screw, 307 - Guide optical rod, 308 - Guide slider, 309 - Guide limiting frame, 310 - Lifting belt pulley, 311 - Lifting transmission belt, 312 - Lifting transmission belt pulley, 313 - Lifting motor, 314 - Partition plate, 315 - Ventilation plate, 316 - Exhaust nozzle, 317 - Air compressor, 318 - Delivery air pipe, 319 - Guiding air pipe, 4 - Dust falling and drying mechanism, 401 - Exhaust hood, 402 - Assembly filter screen, 403 - Air distributing wind wheel, 404 - Exhaust air duct. Detailed implementation manners
[0037] In order to enable those skilled in the art to better understand the technical solutions in the present invention, the following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present invention.
[0038] As Figures 1 to 12 shown, a mold cleaning equipment of a glass bottle blowing machine in an embodiment of the present invention includes: chassis 1, circulating immersion cleaning mechanism 2, air disturbance assisted cleaning mechanism 3, and dust falling and drying mechanism 4.
[0039] As Figures 5 to 9As shown in the figure, the circulating immersion cleaning mechanism 2 is fixedly assembled inside the chassis 1. The circulating immersion cleaning mechanism 2 includes an immersion cleaning tank 201, and the immersion cleaning tank 201 is fixedly assembled inside the chassis 1. The immersion cleaning tank 201 is used to store and hold the cleaning liquid, and at the same time, it provides an immersion cleaning space for the supporting and limiting frame 301.
[0040] As Figures 5 to 9 shown in the figure, a positioning ring plate 204 is fixedly connected above the chassis 1, and the positioning ring plate 204 is arranged below the immersion cleaning tank 201. The immersion cleaning tank 201 is supported and positioned by the positioning ring plate 204.
[0041] As Figures 1 to 5 shown in the figure, a driving rotating shaft 202 is rotatably connected below the immersion cleaning tank 201. The driving rotating shaft 202 plays a role in assembling and fixing the circulating driving liquid wheel 203 and rotating and driving it.
[0042] As Figures 1 to 5 shown in the figure, a driving motor 205 is fixedly assembled below the chassis 1, and the output shaft of the driving motor 205 is in transmission connection with the driving rotating shaft 202. By controlling the operation of the driving motor 205, the driving rotating shaft 202 is rotationally driven, so as to facilitate the synchronous driving of the circulating driving liquid wheel 203.
[0043] As Figures 1 to 5 shown in the figure, one end of the driving rotating shaft 202 located inside the immersion cleaning tank 201 is fixedly connected with a circulating driving liquid wheel 203. By controlling the rotation of the circulating driving liquid wheel 203, the cleaning liquid inside the immersion cleaning tank 201 rotates and circulates in a set direction, and the glass blowing machine mold placed on the supporting and limiting frame 301 is flushed and cleaned through the rotational circulation of the cleaning liquid, improving the cleaning effect of the glass blowing machine mold.
[0044] As Figures 1 to 8 shown in the figure, a pair of suction filtration type circulating spray components are arranged outside the immersion cleaning tank 201. The suction filtration type circulating spray components include multiple suction filtration cylinders 206. The multiple suction filtration cylinders 206 are fixedly assembled on both sides of the immersion cleaning tank 201. A suction filter mesh cylinder 207 is fixedly connected inside each of the multiple suction filtration cylinders 206, and a filtering chamber is formed by the cooperation between the inner wall of the suction filtration cylinder 206 and the outer wall of the suction filter mesh cylinder 207. It is convenient to conduct a diversion and filtration treatment on the cleaning liquid inside the immersion cleaning tank 201 through the filtering chamber.
[0045] As Figures 1 to 8 shown in the figure, a filter layer 208 is filled in the filtering chamber. The cleaning liquid led out by the liquid guiding pipe 209 is filtered through the cooperation of the filter layer 208 and the suction filter mesh cylinder 207.
[0046] As Figures 1 to 8As shown, a liquid guide pipe 209 is fixedly connected between each of the multiple suction filter cylinders 206 and the soaking and cleaning tank 201. The liquid guide pipe 209 serves to connect the filter chamber and the suction filter cylinder 206, facilitating the reflux transportation of the cleaning liquid containing impurities at the bottom of the soaking and cleaning tank 201 along the liquid guide pipe 209.
[0047] As Figures 1 to 8 shown, a rotary shaft 210 is rotatably connected inside the suction filter cylinder 206. The rotary shaft 210 plays a role in assembling and fixing the spiral guide rod 211 and driving its rotation.
[0048] As Figures 1 to 8 shown, a spiral guide rod 211 is fixedly connected to one side of the rotary shaft 210 inside the suction filter mesh cylinder 207. The spiral guide rod 211 and the suction filter mesh cylinder 207 cooperate to form a spiral conveying chamber. By controlling the rotation of the spiral guide rod 211, the spiral conveying chamber moves continuously, facilitating the diversion and transportation of the filtered cleaning liquid inside the suction filter mesh cylinder 207.
[0049] As Figures 1 to 8 shown, a return pipe 212 is fixedly connected above the suction filter cylinder 206. The cleaning liquid conveyed by the spiral conveying chamber is discharged through the return pipe 212. One end of the return pipe 212 located inside the soaking and cleaning tank 201 is fixedly connected to a conducting liquid pipe 213. A plurality of uniformly distributed spray nozzles 214 are fixedly connected to the side of the conducting liquid pipe 213 facing away from the inner wall of the soaking and cleaning tank 201. The cleaning liquid conveyed by the return pipe 212 is sprayed and refluxed through the cooperation of the conducting liquid pipe 213 and the spray nozzles 214.
[0050] As Figures 1 to 8 shown, a synchronous pulley 215 is fixedly connected to one end of each of the multiple rotary shafts 210 located outside the suction filter cylinder 206. The multiple rotary shafts 210 are synchronously driven by driving the synchronous pulley 215 to rotate.
[0051] As Figures 1 to 8 shown, a synchronous belt 216 is connected between every two of the multiple synchronous pulleys 215. The multiple synchronous pulleys 215 are synchronously driven and controlled through the synchronous belt 216. A driving pulley 217 is fixedly connected to the bottom of the rotary shaft 210. The single rotary shaft 210 is independently driven and controlled by controlling the rotation of the driving pulley 217.
[0052] As Figures 1 to 8 shown, a transmission belt 218 is sleeved outside the driving pulley 217. The transmission belt 218 serves to connect the driving pulley 217 and the transmission pulley 219, enabling the driving pulley 217 to rotate synchronously with the rotation of the transmission pulley 219 under the action of the transmission belt 218.
[0053] As Figures 1 to 8As shown, on the side of the transmission belt 218 facing away from the driving pulley 217, a transmission pulley 219 is sleeved. The transmission pulley 219 is fixedly sleeved on the outside of the driving rotating shaft 202. The transmission pulley 219 serves to transmit the power of the driving rotating shaft 202.
[0054] As Figures 1 to 2 shown, the air-disturbing type auxiliary cleaning mechanism 3 is assembled above the soaking cleaning tank 201. The air-disturbing type auxiliary cleaning mechanism 3 includes a supporting and limiting frame 301, and the supporting and limiting frame 301 is slidably assembled in the soaking cleaning tank 201. The supporting and limiting frame 301 supports and limits multiple groups of air-permeable supporting rollers 302.
[0055] As Figures 1 to 2 shown, multiple groups of air-permeable supporting rollers 302 are rotatably connected to the bottom of the supporting and limiting frame 301 and are evenly distributed. The glass blowing machine mold is supported and limited by multiple groups of air-permeable supporting rollers 302. At the same time, the rotation of multiple groups of air-permeable supporting rollers 302 improves the convenience of loading and unloading the glass blowing machine mold.
[0056] Specifically, multiple groups of air-permeable supporting rollers 302 are all hollow, and multiple evenly distributed turbulent flow exhaust holes are opened on the outside of multiple groups of air-permeable supporting rollers 302. By discharging compressed air through the turbulent flow exhaust holes of multiple groups of air-permeable supporting rollers 302, not only can the glass blowing machine mold placed on the air-permeable supporting rollers 302 be blown and cleaned, but also, by discharging compressed air through the turbulent flow exhaust holes, the cleaning liquid in the soaking cleaning tank 201 can be blown, so that the cleaning liquid can collide with the glass blowing machine mold in the form of liquid droplets under the action of the compressed air, thereby achieving the purpose of dynamically cleaning the glass blowing machine mold and improving the cleaning effect of the glass blowing machine mold.
[0057] As Figures 1 to 10 shown, air guide covers 303 are fixedly connected to both sides of the supporting and limiting frame 301, and a pair of air guide covers 303 are sleeved on the outside of multiple groups of air-permeable supporting rollers 302. It is convenient to synchronously transport compressed gas into multiple groups of air-permeable supporting rollers 302 through the air guide covers 303, so as to facilitate the discharge of the compressed gas through multiple turbulent flow exhaust holes, and thus facilitate the auxiliary cleaning of the glass blowing machine template placed on multiple groups of air-permeable supporting rollers 302.
[0058] As Figures 9 to 10 shown, a communicating air pipe 304 is fixedly connected between a pair of air guide covers 303. Compressed gas is transported into multiple groups of air-permeable supporting rollers 302 through the communicating air pipe 304.
[0059] As Figures 9 to 10 shown, driving threaded blocks 305 are fixedly connected to the opposite sides of a pair of air guide covers 303. The lifting and moving control of the supporting and limiting frame 301 is carried out by controlling the lifting and moving of the driving threaded blocks 305.
[0060] As Figures 9 to 10 shown, a lead screw 306 is threadedly connected inside each of a pair of driving threaded blocks 305, and the pair of lead screws 306 are rotatably assembled inside the immersion cleaning tank 201. The lead screws 306 play a role in thread locking and lifting movement for the driving threaded blocks 305.
[0061] As Figures 9 to 10 shown, a pair of guiding optical rods 307 are fixedly assembled inside the immersion cleaning tank 201. The pair of guiding optical rods 307 are arranged between the pair of lead screws 306. A guiding slider 308 is slidably assembled on the outer side of each of the pair of guiding optical rods 307, and the guiding slider 308 is fixedly connected to the side wall of the supporting and limiting frame 301. The sliding cooperation between the guiding optical rods 307 and the guiding sliders 308 plays a role in lifting guidance for the supporting and limiting frame 301.
[0062] As Figures 1 to 9 shown, a guiding and limiting frame 309 is fixedly assembled above the chassis 1. The guiding and limiting frame 309 plays a role in assembly limiting for the lifting pulley 310. One end of each of the pair of lead screws 306 located inside the guiding and limiting frame 309 is fixedly connected to a lifting pulley 310. The guiding and limiting frame 309 is rotationally driven by controlling the rotation of the lifting pulley 310.
[0063] As Figures 1 to 9 shown, a lifting transmission belt 311 is sleeved on the outer side of the lifting pulley 310. The lifting transmission belt 311 plays a role in connecting the lifting pulley 310 and the lifting transmission pulley 312, enabling the lifting pulley 310 to rotate synchronously with the rotation of the lifting transmission pulley 312 under the action of the lifting transmission belt 311.
[0064] As Figures 1 to 9 shown, a lifting transmission pulley 312 is sleeved on the side of the lifting transmission belt 311 away from the lifting pulley 310. The lifting transmission pulley 312 plays a role in transmitting the power of the lifting motor 313.
[0065] As Figures 1 to 9 shown, a lifting motor 313 is fixedly assembled above the guiding and limiting frame 309, and the output shaft of the lifting motor 313 is in transmission connection with the lifting transmission pulley 312. The lifting transmission pulley 312 is rotationally driven by controlling the operation of the lifting motor 313.
[0066] As Figures 5 to 6 shown, a plurality of groups of isolated turbulent flow cleaning components are fixedly assembled inside the supporting and limiting frame 301. The isolated turbulent flow cleaning components include a plurality of partition plates 314. The partition plates 314 are used to partition and limit the glass blowing machine die templates placed inside the supporting and limiting frame 301.
[0067] As Figures 5 to 6As shown in the figure, multiple groups of ventilation plates 315 are fixedly connected to both sides of the multi-component partition plate 314, and multiple groups of uniformly distributed exhaust nozzles 316 are fixedly connected to the sides of the multiple groups of ventilation plates 315 facing away from the partition plate 314. Through the cooperation of the multiple groups of ventilation plates 315 and the exhaust nozzles 316, air is blown onto the side of the glass bottle blowing machine mold template placed on the support and limit frame 301. By blowing air, the cleaning liquid can be turbulently flowed, thereby improving the cleaning effect of the glass bottle blowing machine mold template.
[0068] As Figures 1 to 9 shown in the figure, an air compressor 317 is assembled below the chassis 1. Compressed air is generated by controlling the operation of the air compressor 317.
[0069] As Figures 1 to 9 shown in the figure, the air outlet of the air compressor 317 is connected to a delivery air pipe 318, and a guiding air pipe 319 is connected between the delivery air pipe 318 and the multi-component partition plate 314. The guiding air pipe 319 is in communication with the connecting air pipe 304. Through the delivery air pipe 318 and the guiding air pipe 319, compressed air is delivered into the connecting air pipe 304 and the guiding air pipe 319, thereby providing compressed air for the multiple groups of ventilation and support rollers 302 and the exhaust nozzles 316.
[0070] As Figures 1 to 4 shown in the figure, the dust falling and drying mechanism 4 is fixedly assembled above the chassis 1. The dust falling and drying mechanism 4 is used for blowing and cleaning and auxiliary drying of the support and limit frame 301.
[0071] As Figures 1 to 4 shown in the figure, the dust falling and drying mechanism 4 includes a pair of exhaust hoods 401, and the pair of exhaust hoods 401 are fixedly assembled on both sides of the support and limit frame 301. The compressed air delivered by the exhaust air pipe 404 is guided and limited through the exhaust hoods 401. At the same time, the assembly filter screen 402 can be assembled and limited through the exhaust hoods 401.
[0072] As Figures 1 to 4 shown in the figure, assembly filter screens 402 are fixedly assembled on the sides of the pair of exhaust hoods 401 close to the support and limit frame 301. The compressed air discharged from the exhaust hoods 401 is filtered and limited through the assembly filter screens 402. A gas distribution air wheel 403 is rotatably assembled on the side of the assembly filter screen 402 located inside the exhaust hood 401. The compressed air discharged from the exhaust hood 401 is evenly distributed through the gas distribution air wheel 403.
[0073] As Figures 1 to 4 shown in the figure, exhaust air pipes 404 are connected between the pair of exhaust hoods 401 and the air compressor 317. The exhaust air pipes 404 play a role in connecting the exhaust hoods 401 and the air compressor 317, facilitating the delivery of the compressed air generated by the operation of the air compressor 317 along the exhaust air pipes 404 into the exhaust hoods 401.
[0074] During specific use, the glass bottle blowing machine mold to be cleaned can be placed above the supporting and limiting frame 301, and the glass bottle blowing machine mold to be cleaned is supported and limited by multiple ventilation supporting rollers 302. Subsequently, the lifting drive pulley 312 can be driven and controlled by controlling the operation of the lifting motor 313. A pair of lead screws 306 rotate synchronously with the rotation of the lifting drive pulley 312 under the combined action of the lifting pulley 310 and the lifting drive belt 311, so that the driving thread block 305 can descend with the rotation of the lead screw 306 under the action of the internal and external threads. The glass bottle blowing machine mold to be cleaned is immersed in the immersion cleaning tank 201 by driving the supporting and limiting frame 301 to descend through the driving thread block 305.
[0075] Meanwhile, compressed air can be generated by controlling the operation of the air compressor 317. The compressed air is transported into the multi-component partition plate 314 through the delivery air pipe 318 and the guiding air pipe 319, and the glass bottle blowing machine mold supported on the ventilation supporting roller 302 is blown and cleaned by spraying the compressed air through multiple ventilation plates 315 and exhaust nozzles 316. By blowing out the compressed air, the cleaning liquid in the immersion cleaning tank 201 is blown towards the side of the glass bottle blowing machine mold to be cleaned under the action of the compressed air, and the cleaning liquid can accelerate and efficiently clean the glass bottle blowing machine mold to be cleaned under the action of the compressed air.
[0076] In addition, the compressed air is discharged along the turbulent flow exhaust holes of the multiple ventilation supporting rollers 302 under the action of the air guide cover 303. By discharging the compressed air through the turbulent flow exhaust holes of the multiple ventilation supporting rollers 302, the cleaning liquid can be accelerated from bottom to top to assist in cleaning the glass bottle blowing machine mold to be cleaned.
[0077] Moreover, the circulation drive impeller 203 can be driven to rotate by controlling the operation of the drive motor 205, so that the cleaning liquid in the immersion cleaning tank 201 rotates in a fixed direction in the immersion cleaning tank 201 under the action of the circulation drive impeller 203, and the glass bottle blowing machine mold placed on the supporting and limiting frame 301 can be efficiently cleaned by the rotating cleaning liquid.
[0078] In addition, during the rotation of the driving rotating shaft 202, the single return rotating shaft 210 can be driven to rotate under the action of the driving belt pulley 217, the transmission belt 218, and the transmission belt pulley 219. Multiple return rotating shafts 210 rotate synchronously under the cooperation of the synchronous belt pulley 215 and the synchronous belt 216. Through the rotation of the return rotating shaft 210, the spiral conveying cavity can be pushed to move synchronously, so that the cleaning liquid at the bottom of the immersion cleaning tank 201 is conveyed to the filtration chamber along the liquid guide pipe 209. The cleaning liquid is filtered through the cooperation of the filter layer 208 and the suction filter screen cylinder 207. The filtered cleaning liquid can flow back into the immersion cleaning tank 201 from bottom to top along the return pipe 212, the conduction liquid pipe 213, and the spray nozzle 214 under the action of the spiral guide rod 211, thus achieving the purpose of filtering and recycling the cleaning liquid. Furthermore, the supporting and limiting frame 301 can be lifted by controlling the reverse rotation of the lifting motor 313, so as to lift the glass bottle blowing machine mold after cleaning out of the immersion cleaning tank 201.
[0079] During the lifting process of the supporting and limiting frame 301, the glass bottle blowing machine mold can be drained through the cooperation of the supporting and limiting frame 301 and multiple ventilation supporting rollers 302. Finally, the compressed air generated during the operation of the air compressor 317 can be conveyed into the exhaust hood 401 along the exhaust air duct 404 and blown towards the supporting and limiting frame 301 along the exhaust hood 401, so as to perform auxiliary drying and auxiliary cleaning on the glass bottle blowing machine mold after cleaning, further improving the cleaning effect of the glass bottle blowing machine mold.
[0080] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claims involved.
[0081] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A mold cleaning device for a glass bottle blowing machine, characterized in that: include: Chassis; A circulating immersion cleaning mechanism is fixedly mounted in the chassis, and the circulating immersion cleaning mechanism includes an immersion cleaning box, and the immersion cleaning box is fixedly mounted in the chassis. A driving shaft is rotatably connected to the bottom of the immersion cleaning box, and a circulating driving liquid wheel is fixedly connected to one end of the driving shaft located in the immersion cleaning box. A pair of suction filtering circulation spraying components are arranged on the outside of the immersion cleaning box. The suction filtration circulation spray assembly comprises multiple groups of suction filter cartridges, multiple groups of the suction filter cartridges are fixedly assembled on both sides of the immersion and cleaning box, multiple groups of the suction filter cartridges are fixedly connected with suction filter screen cartridges, the inner wall of the suction filter cartridge and the outer wall of the suction filter screen cartridge cooperate to form a filter chamber, the filter chamber is filled with a filter layer, and multiple groups of the suction filter cartridges and the immersion and cleaning box are fixedly connected with a liquid guide tube. The suction filter cartridge is rotatably connected with a reflux shaft, one side of the reflux shaft located in the suction filter screen cartridge is fixedly connected with a spiral guide rod, the spiral guide rod and the suction filter screen cartridge cooperate to form a spiral conveying chamber, the top of the suction filter cartridge is fixedly connected with a reflux pipe, one end of the reflux pipe located in the immersion and cleaning box is fixedly connected with a conducting liquid pipe, and the side of the conducting liquid pipe away from the inner wall of the immersion and cleaning box is fixedly connected with multiple groups of evenly distributed spray nozzles; An air disturbance type auxiliary cleaning mechanism is installed above the immersion cleaning box, and the air disturbance type auxiliary cleaning mechanism includes a supporting limit frame, and the supporting limit frame is slidably installed in the immersion cleaning box. The bottom of the supporting limit frame is rotatably connected to multiple groups of evenly distributed ventilation support rollers, and the multiple groups of ventilation support rollers are all hollow, and the outer sides of the multiple groups of ventilation support rollers are opened with multiple evenly distributed turbulent exhaust holes, and multiple groups of isolated turbulent cleaning components are fixedly installed in the supporting limit frame; Both sides of the support and limit frame are fixedly connected with air guide covers, a pair of the air guide covers are sleeved on the outside of the plurality of groups of ventilation support rollers, and a communicating air pipe is fixedly connected between the pair of the air guide covers; The isolated spoiler cleaning assembly comprises a plurality of partition plates, both sides of the plurality of partition plates are fixedly connected to a plurality of ventilation plates, the sides of the plurality of ventilation plates facing away from the partition plates are fixedly connected to a plurality of evenly distributed exhaust nozzles, an air compressor is installed below the chassis, the air outlet of the air compressor is connected to a delivery air pipe, the delivery air pipe is connected to the plurality of partition plates by a guide air pipe, and the guide air pipe is connected to the connecting air pipe; The dust removal and drying mechanism is fixedly mounted above the chassis, and is used for blowing and cleaning the supporting and limiting frame and for auxiliary drying.
2. The mold cleaning device for a glass bottle blowing machine according to claim 1, characterized in that: A positioning ring plate is fixedly connected to the upper part of the chassis, and the positioning ring plate is arranged below the immersion and cleaning box. A driving motor is fixedly assembled below the chassis, and the output shaft of the driving motor is drivingly connected to the driving shaft.
3. The mold cleaning device for a glass bottle blowing machine according to claim 1, characterized in that: The ends of the multiple groups of reflux rotating shafts located outside the filter cylinder are fixedly connected to a synchronous pulley, and the multiple synchronous pulleys are connected with a synchronous belt in pairs. The bottom of the reflux rotating shaft is fixedly connected to a driving pulley, and a transmission belt is sleeved on the outer side of the driving pulley. The side of the transmission belt away from the driving pulley is sleeved with a transmission pulley, and the transmission pulley is fixedly sleeved on the outer side of the driving rotating shaft.
4. The mold cleaning device for a glass bottle blowing machine according to claim 1, characterized in that: A pair of air guide covers are fixedly connected to opposite sides thereof with a driving threaded block, a pair of driving threaded blocks are threadedly connected with a screw rod, a pair of screw rods are rotatably assembled in an immersion and cleaning box, a pair of guide light rods are fixedly assembled in the immersion and cleaning box, a pair of guide light rods are arranged between a pair of screw rods, a pair of guide light rods are slidably assembled with guide sliders on the outer sides thereof, and the guide sliders are fixedly connected to the side walls of the supporting limit frame.
5. The mold cleaning device for a glass bottle blowing machine according to claim 4, characterized in that: A guide limit frame is fixedly installed on the top of the chassis, one end of a pair of lead screws located in the guide limit frame is fixedly connected to a lifting pulley, a lifting transmission belt is sleeved on the outer side of the lifting pulley, and a lifting transmission pulley is sleeved on the side of the lifting transmission belt away from the lifting pulley, a lifting motor is fixedly installed on the top of the guide limit frame, and the output shaft of the lifting motor is drivingly connected to the lifting transmission pulley.
Citation Information
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