Intelligent renewable resource recovery price calculation method and system

By designing an intelligent resource recycling system, the problems of inaccurate weighing of bottle resource recycling and cleaning are solved, and efficient and accurate resource recycling and environmental protection effects are achieved.

CN120220286AInactive Publication Date: 2025-06-27ZHEJIANG COLLEGE OF ZHEJIANG UNIV OF TECHOLOGY
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Patent Information

Application Number
CN202510294236.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2025-06-27
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the prior art, during the recycling and weighing process of recycled resources, it is difficult to accurately calculate the weight of bottle resources, and cleaning needs to be done after recycling affects efficiency, and the odor during storage is very unfavorable to environmental protection.

Method used

An intelligent method and system for calculating the price of recycling recycled resources is designed, including resource recycling bins, bottle processing bins and weighing frames. Through the solid bottle transmission mechanism and the bottle processing mechanism, the fixing, internal processing and weighing of bottle resources is achieved. The bottle treatment mechanism is cleaned by water pressure and rotational actions, and the weighing frame plate is used to achieve accurate weighing using a weighing sensing module.

Benefits of technology

It improves the recycling efficiency and accuracy of bottle recycling resources, reduces the impact of cleaning, avoids the generation of peculiar odors, and promotes environmental protection.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120220286A_ABST
    Figure CN120220286A_ABST
Patent Text Reader

Abstract

The invention relates to the related technical field of renewable resource recycling, and discloses an intelligent renewable resource recycling price calculation method and system.The system comprises a resource recycling box, an inlet is formed in the right side of the resource recycling box, an in-bottle treatment box is fixedly installed on the right side of the resource recycling box, and a lifting function plate is installed in the in-bottle treatment box in a lifting mode; an in-bottle processing mechanism is rotationally mounted on the lifting function plate array; according to the intelligent method and system for calculating the recycling price of the renewable resources, the bottle interior processing function is achieved, and the bottle interior processing function is mainly composed of a fixed bottle conveying mechanism, a bottle interior processing mechanism and a water flow conveying mechanism; through the air pressure control assembly, the clamping bag ring is inflated to be matched with the friction rubber strip to fix the bottle body, and the problem that the bottle body slides and cannot be fastened due to the volume difference of the bottles can be avoided.
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Description

Technical Field

[0001] The present invention relates to the technical field of renewable resource recycling, and specifically to an intelligent method and system for calculating the recycling price of renewable resources. Background Art

[0002] With the development of society, the demand for resources is increasing. Currently, efficient recycling of renewable resources is required. During the weighing process of recycling renewable resources, since plastic bottles and glass bottles are usually used to contain liquids, and after use, the liquids and internal residues solidify and adsorb inside the bottles, which increases the difficulty of calculating the recycling weighing price of bottle-type renewable resources. As a result, there are problems of inaccuracy or even inability to weigh and calculate the recycling during the recycling weighing process of such bottle types. At the same time, it is necessary to clean the bottles again after recycling, which affects the recycling efficiency of renewable resources and causes a strong odor during storage, which is not conducive to environmental protection. Summary of the Invention

[0003] The purpose of the present invention is to provide an intelligent method and system for calculating the recycling price of renewable resources to overcome the above-mentioned defects in the prior art.

[0004] The present invention is realized through the following technical solutions.

[0005] The invention provides an intelligent method and system for calculating the recycling price of renewable resources, including a resource recycling box, wherein an entrance is provided on the right side of the resource recycling box, an in-bottle processing box is fixedly installed on the right side of the resource recycling box, a lifting function board is installed in the in-bottle processing box in a liftable manner, an in-bottle processing mechanism is rotatably installed on the lifting function board array, the in-bottle processing box array is provided with a positioning opening corresponding to the position of the in-bottle processing mechanism, the in-bottle processing mechanism includes a bearing rod, the bearing rod array is provided with a swinging rubber strip, the bearing rod is provided with a flushing valve port for outputting water flow, a top carrying block is fixedly installed on the top of the bearing rod, an expandable rubber bag ring is installed on the top carrying block, the rubber bag ring array is provided with two scraping rubber rings, the rubber bag ring array is provided with a scraping convex strip, an electric slide rail is installed in the resource recycling box, and the electric The movable slide rail is slidably installed with a connecting slide plate, and the connecting slide plate is installed with a bottle-fixing transmission mechanism, and the bottle-fixing transmission mechanism includes a bottle-fixing frame plate, and the bottle-fixing frame plate array is installed with a bottle-fixing ring tube, and an inflatable clamping bag ring is provided in the bottle-fixing ring tube, and the clamping bag ring inner array is provided with a friction rubber strip, and a weighing frame plate is installed in the resource recovery box, and a weighing bearing mechanism is installed on the upper side of the weighing frame plate, and weighing cavities are symmetrically provided on the inner walls of both sides of the resource recovery box, and a weighing sensor module is installed in the weighing cavity, and the weighing sensor module is provided with a weighing connecting terminal, and inner extension plates are symmetrically installed at both ends of the weighing frame plate, and the inner extension plates are placed in the weighing cavity, and the weighing connecting terminal is connected to the inner extension plate, and an information processing host is installed on the inner wall of the top of the resource recovery box, and the information processing host is provided with an interactive screen.

[0006] According to a further technical solution, the weighing bearing mechanism comprises a bearing frame plate, and a receiving plate is symmetrically and rotatably mounted inside the bearing frame plate.

[0007] According to a further technical solution, the bearing frame plate is symmetrically mounted with two control motors, the control motors are powered and connected to a control shaft, and the control shaft is connected to a side end of the receiving plate.

[0008] According to a further technical solution, a buffer rubber pad is installed on the upper surface of the receiving plate.

[0009] According to a further technical solution, the two scraping rubber rings are arranged on the upper side of the scraping convex strip, the rubber bag ring and the scraping rubber ring have high elasticity, and the scraping convex strip is in a vertically arranged state.

[0010] A further technical solution is that the in-bottle processing box array is equipped with a functional rod, the lifting functional plate array is provided with a transmission groove, the functional rod passes through the transmission groove, and a positioning scraper ring is installed on the top of the functional rod, and the positioning scraper ring corresponds to the relative positioning opening position.

[0011] Further technical solution: A transmission rack plate is installed on the functional rod. A transmission gear is rotatably installed in the transmission groove. The transmission gear is meshed and connected with the transmission rack plate. The transmission gear is provided with a helical gear. The helical gear is meshed and connected with a mating helical gear. The mating helical gear is fixedly connected with a communicating steel pipe. The communicating steel pipe is fixedly connected with the bottom of the bearing rod.

[0012] Further technical solution: A lifting cylinder is installed in the in-bottle treatment box. The lifting cylinder is connected with the lifting function plate. A water pump is installed in the in-bottle treatment box. The in-bottle treatment box is provided with a water input port which is communicated with the input end of the water pump. The in-bottle treatment box is provided with a water delivery groove which is communicated with the output end of the water pump. The water delivery groove is rotatably connected with telescopic communicating pipes in an array. The ends of the telescopic communicating pipes are communicated with the communicating steel pipe. A transmission pipeline is arranged in the bearing rod. The transmission pipeline is communicated with the flushing valve port. The transmission pipeline is communicated with the rubber bladder ring. The bottom of the transmission pipeline is communicated with the communicating steel pipe. The bottom of the in-bottle treatment box is provided with a water output port.

[0013] Further technical solution: A control air groove communicated with the clamping bladder ring is arranged in the bottle-fixing frame plate. A control air pump is installed on the side wall of the bottle-fixing frame plate. The control air pump is communicated with an air pipe. The air pipe is communicated with the control air groove.

[0014] The present invention also provides an intelligent method for calculating the recycling price of renewable resources, including:

[0015] Placement of bottle-type renewable resources: The bottle-type renewable resources with the opening facing downward are inversely installed into the bottle-fixing ring cylinder, and are fixed by the inflation of the clamping bladder ring and the friction rubber strip.

[0016] Internal treatment of bottle-type renewable resources: The lifting cylinder is started to convey the in-bottle treatment mechanism into the bottle.

[0017] Water pressure filling: By starting the water pump, water pressure is filled into the rubber bladder ring, so that the rubber bladder ring expands and fully fits the inner wall of the bottle. The excess water continuously flows out from the flushing valve port to wash the inner wall of the bottle.

[0018] The lifting cylinder drives the lifting function plate to perform regular lifting and lowering. The bearing rod is driven to perform regular rotational lifting in the bottle through the transmission structure connected with the bearing rod. The inner wall of the bottle is efficiently cleaned through the fitting of the rubber bladder ring, the scraping rubber ring and the scraping convex strips to the inner wall and the flushing effect of the water flow at the flushing valve port. After completion, the water pressure is removed and each mechanism is reset.

[0019] The bottle recycling resource transmission and weighing, the electric slide rail drives the bottle conveying mechanism to move into the resource recycling box, and the air pressure is unloaded by the clamping bag ring, so that the bottle recycling resource falls down into the weighing bearing mechanism, which is taken over by the weighing bearing mechanism, so that the weight on the upper side of the weighing frame plate changes, and the weighing data is collected through the weighing sensor modules on both sides and transmitted to the information processing host;

[0020] Bottle recycling resource data proofreading and price calculation, the information processing host collects data from two weighing sensor modules for comparative analysis and calibration, obtains accurate weight information, and calculates the recycling price of the recycling resource accurately based on the unit price of the resource type.

[0021] Beneficial effects of the present invention:

[0022] The intelligent method and system for calculating the recycling price of renewable resources of the present invention has an in-bottle processing function, which is mainly composed of a bottle fixing transmission mechanism, an in-bottle processing mechanism and a water flow transmission structure. By inverting the opening of the bottle-like renewable resources into a bottle fixing ring tube, the air pressure control component is used to realize the fixing function of the bottle body by inflating the clamping bag ring and cooperating with the friction rubber strip, and the problem of the bottle body slipping and being unable to be fastened due to the difference in bottle volume can be avoided. At the same time, the inverted state of the bottle mouth after fastening is convenient for the in-bottle processing mechanism structure to extend and the sewage to be discharged downward, and the sewage is discharged into the bottle processing box while the treatment is realized to achieve the water flow treatment effect, thereby improving the effective treatment efficiency of the bottle inner wall and avoiding the problem of the decrease in the effective treatment efficiency of the bottle inner wall due to the accumulation of sewage;

[0023] The intelligent method and system for calculating the recycling price of renewable resources of the present invention realizes the effect of extending the bottle processing mechanism into the bottle by setting the bottle processing mechanism and its carrying structure, and driving the lifting and lowering of the bottle processing mechanism through the lifting function plate, and the scraping rubber ring in the bottle processing mechanism is in a retracted effect in the initial state, thereby avoiding the problem that the bottle mouth cannot be extended due to the influence of volume, and at the same time, after the extension, the rubber bag ring is filled with water pressure to expand, thereby achieving the effect of fully fitting the inner wall of the bottle for efficient cleaning treatment, and the filling of water pressure can increase the weight of the rubber bag ring, thereby cooperating with the rotation to improve the scraping and cleaning efficiency of the inner wall of the bottle;

[0024] The outer structure of the rubber bladder ring and the setting of the swinging rubber strip in the bottle processing mechanism of an intelligent method and system for calculating the recycling price of renewable resources of the present invention make the rubber bladder ring fit the inner wall after being filled with water pressure, and cooperate with the setting of the scraping rubber ring and the scraping convex strip. The scraping rubber ring is horizontally arranged, thereby improving the cleaning effect of the debris on the inner wall of the bottle during the lifting action and can achieve the scraping of water and other substances in contact with the inner wall, and the scraping convex strip is vertically arranged to improve the processing efficiency of the inner wall of the bottle by the rotation action, thereby greatly improving the processing efficiency of the inner wall through the setting of the scraping rubber ring and the scraping convex strip, and at the same time, the swinging rubber strip on the lower side cooperates with the water flow flushing effect under the rotation action to avoid the problem that impurities are re-adsorbed on the inner wall of the bottle and cannot be effectively processed.

[0025] An intelligent system for calculating the recycling price of renewable resources invented is capable of receiving processed bottle recyclables through the setting of intelligent weighing function, a weighing frame and a weighing bearing mechanism, and two weighing sensor modules are respectively arranged on both sides of the weighing frame, which can realize comparative accuracy analysis and calibration of the weighing data after the two data are transmitted to the information processing host, thereby improving the accuracy of the calculation of the recycling price of renewable resources. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0027] The present invention is further described below in conjunction with the accompanying drawings and embodiments.

[0028] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0029] Figure 2 yes Figure 1 A schematic diagram of the working state of the middle bottle processing mechanism 35;

[0030] Figure 3 yes Figure 1 A schematic cross-sectional view of the middle solid bottle transmission mechanism 25;

[0031] Figure 4 yes Figure 1 A schematic diagram of the structure of the weighing bearing mechanism 20 from above;

[0032] Figure 5 yes Figure 1 A schematic diagram of the enlarged structure at A in the middle;

[0033] Figure 6 yes Figure 1Schematic diagram of the enlarged structure at B in the [specific context]. Detailed implementation mode

[0034] The following combines Figure 1-6 to elaborate on the present invention in detail. For the convenience of narration, the orientation described below is defined as follows: The up-down, left-right, front-back directions mentioned below are consistent with the up-down, left-right, front-back directions of the projection relationship of [the object] itself. Figure 1 itself projection relationship of the up-down, left-right, front-back directions consistent.

[0035] Combined with the attached Figure 1-6 The described intelligent system for calculating the recycling price of renewable resources includes a resource recycling bin 11. There is an entrance 17 on the right side of the resource recycling bin 11. A bottle-internal treatment box 30 is fixedly installed on the right side of the resource recycling bin 11. A lift function board 31 is liftably installed in the bottle-internal treatment box 30. Bottle-internal treatment mechanisms 35 are rotatably installed in an array on the lift function board 31. The bottle-internal treatment box 30 is provided with alignment openings 63 corresponding to the positions of the bottle-internal treatment mechanisms 35 in an array. The bottle-internal treatment mechanism 35 includes a load-bearing rod 36. Flapping rubber strips 43 are installed in an array on the load-bearing rod 36. The load-bearing rod 36 is provided with a flushing valve port 42 capable of outputting water flow. A top carrying block 38 is fixedly installed at the top of the load-bearing rod 36. An inflatable rubber bladder ring 39 is installed on the top carrying block 38. Two scraping rubber rings 40 are arranged in an array on the rubber bladder ring 39. Scraping convex strips 41 are arranged in an array on the rubber bladder ring 39. An electric slide rail 21 is installed in the resource recycling bin 11. A connecting slide plate 26 is slidably installed on the electric slide rail 21. A bottle-fixing transmission mechanism 25 is installed on the connecting slide plate 26. The bottle-fixing transmission mechanism 25 includes a bottle-fixing frame plate 44. Bottle-fixing ring cylinders 45 are installed in an array on the bottle-fixing frame plate 44. An inflatable and expandable clamping bladder ring 46 is arranged inside the bottle-fixing ring cylinder 45. Friction rubber strips 47 are arranged in an array inside the clamping bladder ring 46. A weighing frame plate 12 is installed in the resource recycling bin 11. A weighing bearing mechanism 20 is installed above the weighing frame plate 12. Weighing inner cavities 13 are symmetrically arranged on both inner walls of the resource recycling bin 11. A weighing sensing module 14 is installed in the weighing inner cavity 13. The weighing sensing module 14 is provided with a weighing connection end 16. Inner edge plates 15 are symmetrically installed at both ends of the weighing frame plate 12. The inner edge plates 15 are placed in the weighing inner cavity 13. The weighing connection end 16 is connected to the inner edge plate 15. An information processing host 27 is installed on the inner wall of the top of the resource recycling bin 11. The information processing host 27 is provided with an interactive screen 28.

[0036] In the initial state, the bottle-fixing transmission mechanism 25 is placed on the outside corresponding to the position of the bottle inner treatment box 30. When in use, the mouth section of the bottle-type renewable resource is placed downward into the bottle-fixing ring cylinder 45. After placement, it is started through the transmission structure, so that the clamping bladder ring 46 expands, and cooperates with the friction rubber strip 47 to achieve the fixing effect on the bottle-type renewable resource. By starting the lifting cylinder 32, the lifting function plate 31 is driven to rise, driving the bottle inner treatment mechanism 35 to extend into the bottle from the bottle mouth. At the same time, the water pump 33 is started for water back-pumping input. The rubber bladder ring 39 is inflated by water pressure, so that the rubber bladder ring 39 has a certain weight and expands to fit closely with the inner wall of the bottle. The excess water is output to the inner wall of the bottle through the flushing valve port 42. Subsequently, the lifting cylinder 32 drives the lifting function plate 31 to perform regular lifting actions, so as to drive the whole bottle inner treatment mechanism 35 to lift and rotate in the bottle under the transmission of the transmission rack plate 64 and the transmission structure in the transmission groove 65. Thus, the scraping rubber ring 40 and the scraping protrusions 41 of the rubber bladder ring 39 squeeze, rub and brush the solidified substances on the inner wall of the bottle during the lifting and rotating process. At the same time, the flushing valve port 42 rotates to output water flow, and cooperates with the rotating effect of the flapping rubber strip 43 to quickly return the flushed sundries from the bottle mouth to the bottle inner treatment box 30 and output them from the water outlet 51, so as to avoid the problem that the flushed sundries are re-adsorbed and adhered to the inner wall of the bottle body. Finally, the lifting function plate 31 performs a final lift to the lower end, so that the rubber bladder ring 39 scrapes the water on the inner wall of the bottle downward during the moving process, avoiding the problem that the adsorption of excessive water affects weighing. Subsequently, the water pressure input stops, and the rubber bladder ring 39 is completely retracted under the effect of elastic retraction and the water is thrown out from the flushing valve port 42. The lifting function plate 31 moves back to its original position. The bottle-fixing transmission mechanism 25 loaded with bottle-type renewable resources is driven by the electric slide rail 21 to move into the resource recovery box 11. By discharging the air pressure of the clamping bladder ring 46, the bottle freely falls to the weighing and bearing mechanism 20. Through the supporting effect of the two weighing sensor modules 14 and the weighing frame plate 12 on the weighing and bearing mechanism 20, the weighing data is obtained. The two weighing sensor modules 14 are set to output data to the information processing host 27 and perform comparison and calibration, so as to achieve more accurate weighing calculation. Subsequently, the bottle-type object is released by the weighing and bearing mechanism 20 and stored at the bottom of the resource recovery box 11.

[0037] Preferably, the weighing and bearing mechanism 20 includes a bearing frame plate 48, and two receiving plates 49 are symmetrically and rotatably installed in the bearing frame plate 48.

[0038] Preferably, two control motors 58 are symmetrically installed on the bearing frame plate 48. The control motors 58 are power-connected to a control shaft 59, and the control shaft 59 is connected to the side end of the receiving plate 49.

[0039] By starting the control motor 58, the receiving plate 49 is driven to rotate downward to open, realizing the release of the bottle-type recyclables.

[0040] Preferably, a buffer rubber pad 60 is installed on the upper surface of the receiving plate 49.

[0041] The buffer rubber pad 60 plays a role in receiving and buffering.

[0042] Preferably, two scraping rubber rings 40 are arranged above the scraping ridges 41. The rubber bladder ring 39 and the scraping rubber rings 40 have high elastic characteristics, and the scraping ridges 41 are in a vertical state.

[0043] Through the high-elastic cooperation of the scraping rubber rings 40 with the rubber bladder ring 39, the collision expansion effect is achieved. Through the scraping rubber rings 40, the lifting and scraping of the bottle body are realized, and the scraping ridges 41 arranged vertically cooperate with the rotation action to achieve efficient and rapid cleaning of the bottle body.

[0044] Preferably, functional rods 61 are installed in the bottle inner treatment box 30 in an array. Transmission grooves 65 are arranged in the lifting functional plate 31 in an array. The functional rods 61 penetrate through the transmission grooves 65. A positioning scraping ring 62 is installed at the top of the functional rods 61, and the positioning scraping ring 62 corresponds to the relative positioning opening 63 in position.

[0045] Preferably, a transmission rack plate 64 is installed on the functional rod 61. A transmission gear 66 is rotatably installed in the transmission groove 65. The transmission gear 66 is meshed and connected with the transmission rack plate 64. A helical gear 67 is installed on the transmission gear 66. The helical gear 67 is meshed and connected with a mating helical gear 68. The mating helical gear 68 is fixedly connected with a communication steel pipe 69. The communication steel pipe 69 is fixedly connected with the bottom of the bearing rod 36.

[0046] During the lifting process, the functional rod 61 drives the transmission gear 66 to rotate, so that the helical gear 67 drives the mating helical gear 68 to rotate, thereby enabling the communication steel pipe 69 to drive the bearing rod 36 to perform a rotation action.

[0047] Preferably, a lifting cylinder 32 is installed on the bottle inner treatment box 30. The lifting cylinder 32 is connected with the lifting functional plate 31. A water pump 33 is installed in the bottle inner treatment box 30. The bottle inner treatment box 30 is provided with a water input port 50. The water input port 50 is communicated with the input end of the water pump 33. The bottle inner treatment box 30 is provided with a water delivery groove 52. The water delivery groove 52 is communicated with the output end of the water pump 33. The water delivery groove 52 is rotatably connected with telescopic communication pipes 53 in an array. The ends of the telescopic communication pipes 53 are communicated with the communication steel pipe 69. A transmission pipeline 37 is arranged in the bearing rod 36. The transmission pipeline 37 is communicated with a flushing valve port 42. The transmission pipeline 37 is communicated with the rubber bladder ring 39. The bottom of the transmission pipeline 37 is communicated with the communication steel pipe 69. The bottom of the bottle inner treatment box 30 is provided with a water output port 51.

[0048] Water flow is input through the water input port 50 and output through the water output port 51 in a reflux manner. The water pump 33 realizes reflux transmission and is input into the transmission pipeline 37 through the water delivery groove 52 by the telescopic communication pipes 53 to achieve the filling of the rubber bladder ring 39 and the output effect of the flushing valve port 42 to the side wall.

[0049] Preferably, a control air groove 57 communicated with the clamping bladder ring 46 is provided inside the bottle fixing frame plate 44, a control air pump 55 is installed on the side wall of the bottle fixing frame plate 44, an air pipe 56 is communicated with the control air pump 55, and the air pipe 56 is communicated with the control air groove 57.

[0050] The clamping and releasing of the bottle-like renewable resources are realized by controlling the clamping bladder ring 46 through the control air pump 55.

[0051] An intelligent method for calculating the recycling price of renewable resources includes:

[0052] Placement of bottle-like renewable resources: The bottle-like renewable resources are placed upside down with the opening downward into the bottle fixing ring cylinder 45, and are fixed by the stamping and expansion of the clamping bladder ring 46 in cooperation with the friction rubber strip 47.

[0053] Internal treatment of bottle-like renewable resources: The lifting air cylinder 32 is started to convey the bottle internal treatment mechanism 35 into the bottle.

[0054] Water pressure filling: By starting the water pump 33, water pressure is filled into the rubber bladder ring 39, so that the rubber bladder ring 39 expands to fully fit the inner wall of the bottle, and the excess water continuously outputs outward through the flushing valve port 42 to wash the inner wall of the bottle.

[0055] The lifting air cylinder 32 drives the lifting function plate 31 to perform regular lifting and lowering. The transmission structure connected by the bearing rod 36 drives the bearing rod 36 to perform regular rotational lifting in the bottle. The inner wall of the bottle is efficiently cleaned through the fitting of the rubber bladder ring 39, the scraping rubber ring 40 and the scraping convex strip 41 to the inner wall and the flushing effect of the water flow at the flushing valve port 42. After that, the water pressure is removed and each mechanism returns to its original position.

[0056] Transmission and weighing of bottle-like renewable resources: The bottle fixing and transmission mechanism 25 is driven by the electric slide rail 21 to move into the resource recycling box 11. By removing the air pressure of the clamping bladder ring 46, the bottle-like renewable resources fall downward into the weighing and bearing mechanism 20 and are received by the weighing and bearing mechanism 20, so that the weight on the upper side of the weighing frame plate 12 changes. The weighing data is collected through the two weighing sensor modules 14 on both sides and sent to the information processing host 27.

[0057] Data verification and price calculation of bottle-like renewable resources: The information processing host 27 collects the data of the two weighing sensor modules 14 for comparative analysis and calibration to obtain accurate weight information, and calculates the recycling price of the renewable resources accurately according to the unit price of the resource type.

[0058] The above embodiments are only used to illustrate the technical concept and characteristics of the present invention, and the purpose is to enable those skilled in this field to understand the content of the present invention and implement it, and cannot be used to limit the protection scope of the present invention. All equivalent changes or modifications made according to the spirit of the present invention should be covered within the protection scope of the present invention.

Claims

1. An intelligent system for calculating the recycling price of renewable resources, including a resource recycling box, characterized in that: An entrance is provided on the right side of the resource recycling box, an in-bottle processing box is fixedly installed on the right side of the resource recycling box, a lifting function plate is installed in the in-bottle processing box in a liftable manner, an in-bottle processing mechanism is rotatably installed on the lifting function plate array, the in-bottle processing box array is provided with a positioning opening corresponding to the position of the in-bottle processing mechanism, the in-bottle processing mechanism includes a bearing rod, the bearing rod array is provided with a swinging rubber strip, the bearing rod is provided with a flushing valve port for outputting water flow, a top carrying block is fixedly installed on the top of the bearing rod, an expandable rubber bag ring is installed on the top carrying block, the rubber bag ring array is provided with two scraping rubber rings, the rubber bag ring array is provided with a scraping convex strip, an electric slide rail is installed in the resource recycling box, the electric slide rail is slidably provided with a connecting slide plate, the connecting The connecting slide plate is equipped with a bottle-fixing transmission mechanism, which includes a bottle-fixing frame plate, and the bottle-fixing frame plate array is equipped with a bottle-fixing ring tube, and an inflatable clamping bag ring is provided in the bottle-fixing ring tube, and the inner array of the clamping bag ring is provided with a friction rubber strip, and a weighing frame plate is installed in the resource recovery box, and a weighing bearing mechanism is installed on the upper side of the weighing frame plate, and weighing cavities are symmetrically provided on the inner walls of both sides of the resource recovery box, and a weighing sensor module is installed in the weighing cavity, and the weighing sensor module is provided with a weighing connecting terminal, and inner extension plates are symmetrically installed at both ends of the weighing frame plate, and the inner extension plates are placed in the weighing cavity, and the weighing connecting terminal is connected to the inner extension plate, and an information processing host is installed on the inner wall of the top of the resource recovery box, and the information processing host is provided with an interactive screen.

2. The intelligent system for calculating recycling price of renewable resources according to claim 1 is characterized by: The weighing bearing mechanism comprises a bearing frame plate, and a receiving plate is symmetrically and rotatably mounted in the bearing frame plate.

3. The intelligent system for calculating recycling price of renewable resources according to claim 2 is characterized in that: The bearing frame plate is symmetrically equipped with two control motors, the control motors are dynamically connected to a control shaft, and the control shaft is connected to the side end of the receiving plate.

4. The intelligent system for calculating recycling price of renewable resources according to claim 2 is characterized in that: A buffer rubber pad is installed on the upper surface of the receiving plate.

5. The intelligent system for calculating recycling price of renewable resources according to claim 1 is characterized by: The two scraping rubber rings are arranged on the upper side of the scraping convex strip, the rubber bag ring and the scraping rubber ring have high elasticity, and the scraping convex strip is in a vertical arrangement state.

6. The intelligent system for calculating recycling price of renewable resources according to claim 1 is characterized in that: The in-bottle processing box array is equipped with a functional rod, the lifting functional plate array is provided with a transmission groove, the functional rod passes through the transmission groove, and the top of the functional rod is equipped with a positioning scraper ring, which corresponds to the relative positioning opening position.

7. The intelligent system for calculating recycling price of renewable resources according to claim 6 is characterized by: The functional rod is equipped with a transmission rack plate, a transmission gear is rotatably installed in the transmission groove, the transmission gear is meshed with the transmission rack plate, the transmission gear is equipped with a helical gear, the helical gear is meshed with a matching helical gear, the matching helical gear is fixedly connected with a connecting steel pipe, and the connecting steel pipe is fixedly connected to the bottom of the bearing rod.

8. The intelligent system for calculating recycling price of renewable resources according to claim 7 is characterized by: The in-bottle processing box is equipped with a lifting cylinder, and the lifting cylinder is connected to the lifting function board. A water pump is installed in the in-bottle processing box. The in-bottle processing box is provided with a water input port, and the water input port is connected to the input end of the water pump. The in-bottle processing box is provided with a water delivery trough, and the water delivery trough is connected to the output end of the water pump. The water delivery trough array is rotatably connected with a telescopic connecting pipe, and the end of the telescopic connecting pipe is connected to the connecting steel pipe. A transmission pipeline is provided in the bearing rod, and the transmission pipeline is connected to the flushing valve port, and the transmission pipeline is connected to the rubber bag ring. The bottom of the transmission pipeline is connected to the connecting steel pipe, and a water output port is provided at the bottom of the in-bottle processing box.

9. The intelligent system for calculating recycling price of renewable resources according to claim 1 is characterized by: A control air groove communicated with the clamping bag ring is provided in the bottle fixing frame plate, and a control air pump is installed on the side wall of the bottle fixing frame plate. The control air pump is communicated with an air pipe, and the air pipe is communicated with the control air groove.

10. An intelligent method for calculating the recycling price of renewable resources, comprising: The bottle recycling resources are placed, and the bottle recycling resources are installed upside down with the opening facing downward into the bottle fixing ring tube, and the bottle recycling resources are fixed by the clamping capsule ring, stamping and expanding with the friction rubber strip; Internal processing of bottle recycling resources, the lifting cylinder is activated to transport the bottle processing mechanism into the bottle; The water pressure is charged into the rubber bag ring through the water pump, so that the rubber bag ring expands and fully fits the inner wall of the bottle body. The excess water flows out continuously from the flushing valve port to flush the inner wall of the bottle. The lifting cylinder drives the lifting function plate to lift regularly, and the transmission structure connected with the bearing rod drives the bearing rod to rotate and lift regularly in the bottle. The rubber bag ring, the scraping rubber ring and the scraping convex strip fit the inner wall and the water flow from the flushing valve outlet to efficiently clean the inner wall of the bottle. After the water pressure is released, all mechanisms are reset. The bottle recycling resource transmission and weighing, the electric slide rail drives the bottle conveying mechanism to move into the resource recycling box, and the air pressure is unloaded by the clamping bag ring, so that the bottle recycling resource falls down into the weighing bearing mechanism, which is taken over by the weighing bearing mechanism, so that the weight on the upper side of the weighing frame plate changes, and the weighing data is collected through the weighing sensor modules on both sides and transmitted to the information processing host; Bottle recycling resource data proofreading and price calculation, the information processing host collects data from two weighing sensor modules for comparative analysis and calibration, obtains accurate weight information, and calculates the recycling price of the recycling resource accurately based on the unit price of the resource type.