A nest frame impurity intelligent filtering device for honey production
By combining irradiation, propulsion, suction, reflux and detection devices, the system achieves precise extraction of impurities from inside the honeycomb and efficient recovery of honey, solving the problem of impurity removal in honey production and improving the purity of honey and the degree of automation of the equipment.
Patent Information
- Application Number
- CN202310979598.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-06
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2043-08-06
AI Technical Summary
During honey production, impurities inside the honeycomb frame are difficult to remove effectively, resulting in insufficient purity and high loss rate of honey. Existing equipment cannot achieve efficient and automated filtration.
By combining an irradiation device, a propulsion device, an absorption device, a reflux device, a detection device, and a traction device, the system analyzes the distribution of impurities through light, accurately extracts impurities from inside the honeycomb, and recovers residual honey, thus achieving automated filtration.
It improves the purity of honey, reduces the impurity rate and honey loss rate, and enhances the automation and efficiency of filtration equipment.
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Figure CN116897864B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to honey production, in particular to a comb impurity intelligent filtering device for honey production. BACKGROUND
[0002] In the honey production process, the comb needs to be placed in a honey extraction device or other device to extract honey therefrom, and the honey is subsequently treated, but in the current honey extraction process, most of the combs are only simply cleaned on the surface, the comb honey inside the comb cannot be filtered, the impurities in the comb honey inside the comb are generally dead bees, fallen comb structure, flower pieces and other insects, and in the honey extraction process, the high-speed running comb will also extract the impurities in the comb, resulting in insufficient purity of the separated honey and high impurity content, and because the honey is viscous, the subsequent impurity removal is difficult, the loss rate of the honey is high, and the high-speed running comb during honey extraction will also crush the impurities in the comb, and the crushed impurities will be highly mixed with the honey, resulting in further reduction of the purity of the honey.
[0003] Therefore, a comb impurity intelligent filtering device for honey production needs to be designed to solve the above problems. SUMMARY
[0004] The application aims to provide a comb impurity intelligent filtering device for honey production, which can quickly and accurately analyze whether the comb honey structure inside the comb contains impurities, quickly and accurately extract the impurities in the comb honey, has a low honey loss rate during impurity extraction, has a high degree of automation and a high speed during the detection and extraction of the comb honey, can reduce the impurity rate during the extraction of the comb, and can ensure high purity of the subsequently extracted honey.
[0005] To achieve the above object, the application provides the following technical scheme: a comb impurity intelligent filtering device for honey production, comprising a mounting frame, wherein the mounting frame is provided with an irradiation device, a propulsion device and a suction device.
[0006] The mounting frame is two groups, the mounting frame is fixedly connected with the interconnection plate between the two sides, the other side of the mounting frame is fixedly connected with the stabilizing frame, the interconnection plate on one side is fixedly connected with the extension frame, the extension frame is fixedly connected with the first ball bearing, the other side of the interconnection plate is fixedly connected with the second ball bearing, the first ball bearing and the second ball bearing are both U-shaped inner space and arrayed with balls in the inner space, the U-shaped inner space of the first ball bearing corresponds to the U-shaped inner space of the second ball bearing, the electric sliding rails are fixedly connected at the mounting frame, the electric sliding rails are synchronously controlled by the servo, the moving part of the electric sliding rail on one side is fixedly connected with the first mounting table, the moving part of the electric sliding rail on the other side is fixedly connected with the second mounting table, the extension table is fixedly connected at the position away from the first mounting table on the second mounting table, a plurality of mounting rings are fixedly connected at the position close to the first mounting table on the second mounting table, and the mounting rings are arranged at the position based on the row of honeycomb structure.
[0007] The first mounting table is provided with an irradiation device for providing a light source.
[0008] The second mounting table is provided with a pushing device for extending into the honeycomb to be filtered, and the pushing device extends into the mounting ring.
[0009] The extension table is provided with a suction device connected with the pushing device, and the suction device is used for sucking the dead bees and the honey containing impurities in the honeycomb through the pushing device.
[0010] As a further improvement of the application, the irradiation device comprises a mounting plate fixedly connected to the position close to the second mounting table on the first mounting table, and a lamp group is fixedly connected to the mounting plate.
[0011] As a further improvement of the application, the pushing device comprises a guide ring, the number of the guide ring is consistent with the number of the mounting ring, the guide ring is fixedly connected to the position close to the extension frame on the second mounting table, the position of the guide ring corresponds to the position of the mounting ring, an extraction pipe is sleeved in the guide ring, a telescopic pipe is fixedly connected to the position away from the guide ring on the extraction pipe, and the telescopic pipe is connected with the suction device.
[0012] As a further improvement of the application, the suction device comprises an electric control valve fixedly connected to the extension table 10, the number of the electric control valve is consistent with the number of the mounting ring, the electric control valve is connected with the adjacent telescopic pipe, a suction manifold is connected between the electric control valves, and a connecting head is fixedly connected to the suction manifold.
[0013] As a further improvement of the present application, a backflow device is arranged at the mounting ring, the backflow device is connected with the suction manifold, the backflow device is used for recycling the residual honey outside the extraction pipe, the mounting ring is fixedly connected with an open hollow ring, the open hollow ring has a U-shaped structure, the U-shaped structure of the open hollow ring is distributed in high and low positions, and the high position of the U-shaped structure is located on the side close to the extraction pipe and in contact with the extraction pipe, the open hollow ring is an open structure, the open hollow rings are fixedly connected with a backflow manifold, and the backflow manifold is fixedly connected with a connecting pipe.
[0014] As a further improvement of the present application, a detection device is arranged at the mounting ring, the detection device is used for accurately detecting the light guide state of the honeycomb at the position of the mounting ring, the mounting ring is fixedly connected with a light shielding ring, the light shielding ring is fixedly connected with a photosensitive sensor in an array, the extension frame is provided with a driving assembly, the driving assembly is connected with the extraction pipe, and the driving assembly is affected by the photosensitive sensor to work.
[0015] As a further improvement of the present application, the driving assembly comprises electric push rods, the electric push rods are fixedly connected to the extension frame respectively, the number of the electric push rods is consistent with the number of the extraction pipes, and the moving parts of the electric push rods are fixedly connected with displacement frames, and the displacement frames are connected with adjacent extraction pipes respectively.
[0016] As a further improvement of the present application, a traction device is arranged at the first ball frame, the traction device is used for automatically advancing the nest frame, the first ball frame is fixedly connected with a fixed frame on both sides, and the fixed frame is fixedly connected with an electric wheel.
[0017] Compared with the prior art, the present application has the following advantages:
[0018] 1、The present application can make the impurities contained in the honeycomb of the nest frame block the light, make the other side of the nest frame show a different light guide state, and know whether the honeycomb contains dead bees or other impurities by analyzing the light guide state, so that the impurity content in the structure of a large number of honeycombs can be quickly understood, and accurate targeted treatment can be made, the purity of the honey can be ensured when the honey is taken from the nest frame, and the yield rate is improved.
[0019] 2、The present application can make the extraction pipe accurately enter the inside of the honeycomb containing impurities, and the impurities can be sucked by the suction device, so that the purpose of extracting impurities from a large number of honeycombs can be achieved, and the effect is high in pertinence.
[0020] 3、The application can remove the residual honey on the surface of the open hollow ring scraping and extracting pipe through the backflow device, and recycle the honey through the backflow manifold, thereby reducing the loss rate of the honey removed from the nest frame.
[0021] 4、The application can detect the light intensity after the honeycomb through the light-sensitive sensor of the detection device, and automatically analyze the impurity content in the honeycomb through the light intensity, thereby improving the speed and accuracy of the impurity content in the honeycomb, and through the control of the operation of the electric push rod, the extraction pipe can quickly respond and quickly enter the corresponding honeycomb to extract the impurities, thereby improving the automation degree and efficiency of the nest frame impurity removal and filtration.
[0022] 5、The application can drive the nest frame to operate automatically after a row of honeycombs in the nest frame are detected and impurities are removed, so that the next row of honeycombs in the nest frame are in the detection and impurity removal working range, thereby further improving the speed and efficiency of the nest frame impurity removal. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is the first kind of three-dimensional structure schematic diagram of the application.
[0024] Figure 2 It is the second kind of three-dimensional structure schematic diagram of the application.
[0025] Figure 3 It is the assembly schematic diagram of the application.
[0026] Figure 4 It is the first kind of three-dimensional structure schematic diagram of the mounting rack part of the application.
[0027] Figure 5 It is the second kind of three-dimensional structure schematic diagram of the mounting rack part of the application.
[0028] Figure 6 It is the three-dimensional structure schematic diagram of the irradiation device part of the application.
[0029] Figure 7 It is the first kind of three-dimensional structure schematic diagram of the second mounting table part of the application.
[0030] Figure 8 It is the second kind of three-dimensional structure schematic diagram of the second mounting table part of the application.
[0031] Figure 9 It is the third kind of three-dimensional structure schematic diagram of the second mounting table part of the application.
[0032] Figure 10 It is the fourth kind of three-dimensional structure schematic diagram of the second mounting table part of the application.
[0033] Figure 11 The schematic diagram of the extension frame part of the present application.
[0034] Figure 12 The first schematic diagram of the extraction tube part of the present application.
[0035] Figure 13 The second schematic diagram of the mounting ring part of the present application.
[0036] Figure 14 The third schematic diagram of the mounting ring part of the present application.
[0037] Figure 15 The schematic diagram of the detection device part of the present application.
[0038] Figure 16 The first schematic diagram of the open hollow ring part of the present application.
[0039] Figure 17 The second schematic diagram of the open hollow ring part of the present application.
[0040] In the figure: 1, mounting frame, 2, interconnection plate, 3, stabilizing frame, 4, extension frame, 5, first ball bearing, 6, second ball bearing, 7, electric sliding rail, 8, first mounting platform, 9, second mounting platform, 10, extension platform, 11, mounting ring, 12, irradiation device, 13, advancing device, 14, suction device, 121, mounting plate, 122, lamp group, 131, guide ring, 132, extraction tube, 133, telescopic tube, 141, electric control valve, 142, suction manifold, 143, connecting head, 15, backflow device, 151, open hollow ring, 152, backflow manifold, 153, connecting tube, 16, detection device, 161, light shielding ring, 162, photosensitive sensor, 17, driving assembly, 171, electric push rod, 172, displacement frame, 18, traction device, 181, fixed frame, 182, electric wheel. DETAILED DESCRIPTION
[0041] In order to make the technical problems, technical solutions and beneficial effects of the present application more clear, the present application is further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the present application, and are not used to limit the present application. Example 1
[0042] As Figures 1-5As shown, a nest frame impurity intelligent filtering device for honey production, including installation frame 1, interconnection board 2, stabilizing frame 3, extension frame 4, first ball bearing 5, second ball bearing 6, electric sliding rail 7, first mounting table 8, second mounting table 9, extension table 10, mounting ring 11, illumination device 12, propulsion device 13 and suction device 14, the installation frame 1 is two groups, the installation frame 1 both sides are fixedly connected with interconnection board 2, the installation frame 1 the other side is fixedly connected with stabilizing frame 3, one side interconnection board 2 is fixedly connected with extension frame 4, the extension frame 4 is fixedly connected with first ball bearing 5, the other side interconnection board 2 is fixedly connected with second ball bearing 6, the first ball bearing 5 and the second ball bearing 6 are both U-shaped inner space and the inner space is arrayed with ball structure, the U-shaped inner space position of the first ball bearing 5 and the second ball bearing 6 corresponds, the installation frame 1 is fixedly connected with electric sliding rail 7, the electric sliding rail 7 is servo synchronous control, one side electric sliding rail 7 mobile part is fixedly connected with first mounting table 8, the other side electric sliding rail 7 mobile part is fixedly connected with second mounting table 9, the second mounting table 9 is fixedly connected with extension table 10 away from the first mounting table 8 side position, the second mounting table 9 is fixedly connected with multiple mounting rings 11 near the first mounting table 8 side position, the mounting ring 11 is set its position with a row of honeycomb structure as reference, the first mounting table 8 is equipped with illumination device 12, the illumination device 12 is used to provide light source, the second mounting table 9 is equipped with propulsion device 13, the propulsion device 13 is used to extend into the honeycomb to be filtered, the propulsion device 13 extends into the mounting ring 11, the extension table 10 is equipped with suction device 14, the suction device 14 is connected with the propulsion device 13, the suction device 14 is used to suck the dead bees and honey containing impurities in the honeycomb through the propulsion device 13.
[0043] Before the honey in the nest frame is taken out, the nest frame can be pre-filtered by the intelligent nest frame impurity filtering equipment for honey production, so that the dead bees and honey containing impurities in the nest frame are extracted, thereby improving the purity of the honey in the nest frame; the intelligent nest frame impurity filtering equipment for honey production can be installed on the workbench through the mounting frame 1 and the stabilizing frame 3, then the nest frame is placed between the first ball frame 5 and the second ball frame 6, and then the nest frame is pushed to be between the first mounting table 8 and the second mounting table 9; at this time, the irradiation device 12 can be turned on, the irradiation device 12 will emit light to irradiate the position of the nest frame located in the mounting ring 11, at this time, the position of the nest frame and the position of the electric sliding rail 7 moving part can be adjusted, so that the position of the first column top row of the nest structure of the nest frame is opposite to the mounting ring 11, then the light guide state of the irradiated position of the nest frame can be observed at the position of the mounting ring 11, if there are dead bees or other impurities in the nest structure, the nest will not guide light or have black spots after being irradiated, if the honey in the nest structure is pure, the nest will uniformly guide light after being irradiated, by observing the light guide state of the nest after being irradiated, the purity of the nest inside can be accurately known; then the pushing device 13 can be pushed, so that the pushing device 13 extends into the nest with impurities, and the impurities and honey containing impurities in the nest are extracted by the suction device 14, and the honey containing impurities is filtered subsequently; after the above filtering action is completed on the first column and the first row of the nest structure, the electric sliding rail 7 can be started to drive the first mounting table 8 and the second mounting table 9 to move downward, the filtering of a column of nest structures is completed, then the nest frame is moved to filter the subsequent column of nest structures of the nest frame, in this way, the pre-filtering of the nest frame can be completed, and the purity of the nest frame during subsequent honey extraction is improved. Example 2
[0044] As shown in Figure 6 the irradiation device 12 includes a mounting plate 121 and a lamp group 122, the mounting plate 121 is fixedly connected to the first mounting table 8 near the second mounting table 9, the mounting plate 121 is fixedly connected with the lamp group 122, and the number and position of the lamp group 122 correspond to the number and position of the mounting ring 11.
[0045] The lamp group 122 is started, and the lamp group 122 emits light to irradiate the position of the mounting ring 11, when the mounting ring 11 and the lamp group 122 have a nest frame therebetween, the lamp group 122 irradiates the nest frame, the position of the nest frame near the mounting ring 11 shows the light guide state, and the internal state of the nest structure of the nest frame can be known by the light guide state.
[0046] The honeycomb of the nest frame is irradiated by the lamp group of the irradiation device, so that the impurities contained in the honeycomb of the nest frame block the light, and the other side of the nest frame shows a different light guide state, and by analyzing the light guide state, it can be known whether the inside of the honeycomb contains dead bees or other impurities, and the impurity content in the inside of the numerous honeycomb structures can be quickly understood by using the light irradiation method, and accurate targeted treatment can be made, and the purity of the honey can be ensured when the honey is taken from the nest frame, and the yield can be improved.
[0047] As shown in Figures 7-12 The advancing device 13 includes a guide ring 131, an extraction pipe 132 and a telescopic pipe 133, the number of the guide ring 131 is consistent with the number of the mounting ring 11, the guide ring 131 is fixedly connected to the position near the side of the extension frame 4 of the second mounting table 9, the position of the guide ring 131 corresponds to the position of the mounting ring 11, the extraction pipe 132 is sleeved in the guide ring 131, the telescopic pipe 133 is fixedly connected to the position away from the guide ring 131 of the extraction pipe 132, and the telescopic pipe 133 is connected with the suction device 14.
[0048] When a honeycomb is observed to have poor light guide, the corresponding extraction pipe 132 can be pushed to move, so that the extraction pipe 132 enters the inside of the honeycomb, and then the impurities and honey containing impurities in the inside of the honeycomb are sucked by the suction device 14, and the extraction pipe 132 can be pulled to reset after extraction is completed.
[0049] As shown in Figures 7-12 The suction device 14 includes an electric control valve 141, a suction manifold 142 and a connecting head 143, the electric control valve 141 is fixedly connected to the extension table 10, the number of the electric control valve 141 is consistent with the number of the mounting ring 11, the electric control valve 141 is connected with the adjacent telescopic pipe 133, the suction manifold 142 is connected between the electric control valves 141, and the connecting head 143 is fixedly connected to the suction manifold 142.
[0050] The connecting head 143 is connected with the pump outside; when the extraction pipe 132 extends into the inside of the honeycomb, the electric control valve 141 connected with the extraction pipe 132 can be started, and the pump outside can be started, so that the extraction pipe 132 extracts the impurities and honey containing impurities in the inside of the honeycomb.
[0051] By adopting the mode that the positions of the advancing device and the irradiation device correspond and the suction device sucks the impurities, the extraction pipe can accurately enter the inside of the honeycomb containing impurities, and the impurities can be sucked by the suction device, so that the purpose of extracting the impurities in a large number of honeycombs can be achieved, and the effect of high pertinence can be achieved. Example 3
[0052] As shown in Figures 7-12As shown, the device further comprises a backflow device 15, which comprises an open hollow ring 151, a backflow manifold 152 and a connecting pipe 153. The backflow device 15 is arranged at the mounting ring 11 and is connected with the suction manifold 142. The backflow device 15 is used to recover the residual honey around the extraction pipe 132. The open hollow ring 151 is fixedly connected in the mounting ring 11. The cross section of the open hollow ring 151 is U-shaped structure. The U-shaped cross section structure is distributed in high and low positions. The high position structure of the U-shaped cross section structure is located at one side close to the extraction pipe 132 and is in contact with the extraction pipe 132. The open hollow ring 151 is an open structure. The backflow manifold 152 is fixedly connected between the open hollow rings 151. The connecting pipe 153 is fixedly connected at the backflow manifold 152 and is connected with the suction manifold 142.
[0053] When the extraction pipe 132 extends into the honeycomb, the surface of the extraction pipe 132 will stick with honey. When the extraction pipe 132 is reset, the extraction pipe 132 will scrape the honey on its surface by contacting with the open hollow ring 151. The scraped honey will flow into the U-shaped cross section structure of the open hollow ring 151 and flow into the backflow manifold 152. When the external pump works, the external pump will recover the scraped honey through the suction manifold 142 and the backflow manifold 152, so as to reduce the loss of honey during the pre-filtering of the honeycomb.
[0054] By adopting the backflow device, the open hollow ring can scrape the residual honey on the surface of the extraction pipe and recover the honey through the backflow manifold, so as to reduce the loss rate of the honey removed from the nest frame.
[0055] As shown in the drawings, Figures 7-15 The device further comprises a detection device 16, which comprises a light shielding ring 161, a photosensitive sensor 162 and a driving assembly 17. The detection device 16 is arranged at the mounting ring 11 and is used to accurately detect the light guiding state of the honeycomb at the position of the mounting ring 11. The light shielding ring 161 is fixedly connected at the mounting ring 11. The photosensitive sensor 162 is fixedly connected in an array at the light shielding ring 161. The driving assembly 17 is arranged at the extension frame 4 and is connected with the extraction pipe 132. The driving assembly 17 is affected by the photosensitive sensor 162 and works.
[0056] When the light group 122 irradiates the honeycomb, the photosensitive sensor 162 will detect the light intensity after passing through the honeycomb; a group of pure and qualified honeycomb can be selected first and placed between the light group 122 and the photosensitive sensor 162, and through the irradiation of the light group 122, the photosensitive sensor 162 detects the light intensity after passing through the pure honey, and the external computer quantifies the light intensity, and the quantified value is used as a reference standard for detecting the subsequent honeycomb after irradiation; when the light group 122 irradiates the subsequent honeycomb, the photosensitive sensor 162 will detect the irradiation intensity after passing through the irradiation, and compare the irradiation intensity with the reference standard, if the photosensitive sensor 162 detects the light intensity after passing through the honeycomb is lower than the reference standard, it indicates that the light is blocked by the impurities in the honeycomb, at this time it indicates that the honeycomb has impurities, at this time the photosensitive sensor 162 will control the driving assembly 17 to run through the external computer, so that the driving assembly 17 drives the extraction pipe 132 to advance, so that the extraction pipe 132 automatically extends into the honeycomb corresponding to the photosensitive sensor 162, and further controls the electric control valve 141 connected to the extraction pipe 132 to start, and controls the external pump to start, so that the extraction pipe 132 can automatically extract the impurities in the honeycomb containing impurities; the method of detecting the light intensity by the photosensitive sensor 162 can improve the speed and efficiency of the honeycomb impurity removal and filtration.
[0057] By using the photosensitive sensor of the detection device, the light intensity after passing through the honeycomb can be detected, and the impurity content in the honeycomb can be automatically analyzed by the light intensity, which can improve the speed and accuracy of whether the honeycomb contains impurities, and by controlling the operation of the electric push rod, the extraction pipe can quickly respond and quickly enter the corresponding honeycomb to extract impurities, thereby improving the automation degree and efficiency of the honeycomb frame impurity removal and filtration.
[0058] As shown in Figures 7-12 The driving assembly 17 comprises an electric push rod 171 and a displacement frame 172, the electric push rod 171 is fixedly connected to the extension frame 4 respectively, the number of the electric push rod 171 is consistent with the extraction pipe 132, the moving part of the electric push rod 171 is fixedly connected with the displacement frame 172, and the displacement frame 172 is connected with the adjacent extraction pipe 132 respectively.
[0059] When the photosensitive sensor 162 detects that the light intensity is lower than the reference standard, the photosensitive sensor 162 will control the corresponding electric push rod 171 to run through the external computer, so that the electric push rod 171 drives the moving part and the connected displacement frame 172 to move, so that the displacement frame 172 drives the extraction pipe 132 to move, so that the extraction pipe 132 enters the honeycomb containing impurities.
[0060] As Figure 5 shown, further comprising a traction device 18, the traction device 18 comprising a fixed frame 181 and a motorized wheel 182, the traction device 18 being arranged at the first ball frame 5, the traction device 18 being used to automatically advance the nest frame, both sides of the first ball frame 5 are fixedly connected with the fixed frame 181, and the fixed frame 181 is fixedly connected with the motorized wheel 182.
[0061] The nest frame is arranged at the first ball frame 5 and the second ball frame 6, and the bottom of the nest frame will be in contact with the motorized wheel 182. Through program setting and control of the motorized wheel 182, the motorized slide rail 7 will control the motorized wheel 182 to run once every half cycle, so that the motorized wheel 182 drives the nest frame to move a distance. The moving distance of the nest frame driven by the motorized wheel 182 is the number of honeycombs corresponding to the mounting ring 11, that is, after a row of honeycombs in the nest frame are detected and impurities are removed, the motorized wheel 182 drives the nest frame to run, so that the next row of honeycombs in the nest frame is between the first mounting table 8 and the second mounting table 9.
[0062] By adopting the motorized wheel of the traction device, after a row of honeycombs in the nest frame are detected and impurities are removed, the nest frame can be automatically driven to run, so that the next row of honeycombs in the nest frame is in the working range of detection and impurity removal, which can further improve the speed and efficiency of impurity removal of the nest frame.
[0063] Through the cooperation of the irradiation device, the advancing device, the suction device, the backflow device, the detection device and the traction device, it can be quickly and accurately analyzed whether the internal structure of the honeycomb of the nest frame contains impurities, and the internal impurities of the honeycomb can be quickly and accurately extracted. The loss rate of honey during the extraction of impurities is low, the automation degree of the process of detecting and extracting impurities of the honeycomb is high, the speed is fast, the impurity rate of the nest frame during honey extraction can be reduced, and the purity of the subsequent extracted honey can be guaranteed.
[0064] Although embodiments of the present application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An intelligent filter for honeycomb frames used in honey production, comprising a mounting frame (1), characterized in that: The mounting frame (1) is provided with an irradiation device (12), a pushing device (13) and a suction device (14); The mounting frame (1) is provided with an irradiation device (12), a pushing device (13) and a suction device (14); 2. The intelligent frame impurity filtering device for honey production according to claim 1, characterized in that: 3. The intelligent frame impurity filtering device for honey production according to claim 2, characterized in that: 4. The intelligent frame impurity filtering device for honey production according to claim 3, characterized in that: The suction device (14) includes electric control valves (141) fixedly connected at the extension table (10), the number of the electric control valves (141) is consistent with the number of the mounting ring (11), the electric control valves (141) are respectively connected with adjacent telescopic pipes (133), and the electric control valves (141) are connected with a suction manifold (142) fixedly connected with a connector (143).
5. The intelligent frame impurity filtering device for honey production according to claim 4, characterized in that: The backflow device (15) is arranged at the mounting ring (11), the backflow device (15) is connected with the suction manifold (142), the backflow device (15) is used for recycling residual honey outside the extraction pipe (132), and the mounting ring (11) is fixedly connected with an open hollow ring (151) therein. The open hollow ring (151) has a U-shaped structure in cross section, the U-shaped cross section structure is distributed in high and low positions, and the high position structure of the U-shaped cross section structure is located on one side close to the extraction pipe (132) and in contact with the extraction pipe (132). The open hollow ring (151) is an open structure, the open hollow ring (151) is fixedly connected with a backflow manifold (152) therebetween, and the backflow manifold (152) is fixedly connected with a connecting pipe (153) thereat. The connecting pipe (153) is connected with the suction manifold (142).
6. The intelligent frame impurity filtering device for honey production according to claim 5, characterized in that: The detection device (16) is arranged at the mounting ring (11), the detection device (16) is used for accurately detecting the light guide state of the honeycomb at the position of the mounting ring (11), the mounting ring (11) is fixedly connected with a light shielding ring (161) thereat, the light shielding ring (161) is fixedly connected with a light-sensitive sensor (162) in an array manner thereat, the extension frame (4) is provided with a driving assembly (17), the driving assembly (17) is connected with the extraction pipe (132), and the driving assembly (17) is affected by the light-sensitive sensor (162) to work.
7. The intelligent frame impurity filtering device for honey production according to claim 6, characterized in that: The driving assembly (17) includes electric push rods (171) fixedly connected at the extension frame (4), the number of the electric push rods (171) is consistent with the number of the extraction pipe (132), and the moving part of the electric push rod (171) is fixedly connected with a displacement frame (172). The displacement frame (172) is respectively connected with adjacent extraction pipes (132).
8. The intelligent frame impurity filtering device for honey production according to claim 7, characterized in that: The traction device (18) is arranged at the first ball frame (5), the traction device (18) is used for automatically advancing the nest frame, and the first ball frame (5) is fixedly connected with a fixed frame (181) on both sides. The fixed frame (181) is fixedly connected with an electric wheel (182) thereat.
Citation Information
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