Dental bone graft material processing equipment based on reagent code scanning recognition

By using dental bone graft material processing equipment based on RFID identification technology, the problem of uneven dentin decalcification caused by reagent mixing or abnormal configuration has been solved, ensuring the optimization of bone regeneration effect and improving surgical efficiency.

CN120899416APending Publication Date: 2025-11-07GUILIN VEIRUN MEDICAL TECH
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Patent Information

Application Number
CN202511089471.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-05
Publication Date
2025-11-07

AI Technical Summary

Technical Problem

Existing dental bone graft material processing equipment uses its own reagents, which are often mixed or improperly configured from different manufacturers, resulting in varying degrees of dentin demineralization and suboptimal bone regeneration.

Method used

The dental bone graft material processing equipment adopts RFID identification technology. The reagent scanning identification ensures the matching of reagents with the equipment, including the main unit, processing mechanism, vibration device, peristaltic pump, reagent addition component and distilled water addition component, to ensure the correct use of reagents and avoid mixing or abnormal configuration.

Benefits of technology

This achieved accurate matching of reagents and equipment, ensuring consistency in the degree of dentin demineralization, improving bone regeneration effects, and shortening surgical treatment time.

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Abstract

The invention relates to the technical field of tooth bone graft material processing equipment, in particular to tooth bone graft material processing equipment based on reagent code scanning recognition, which comprises a host and a processing mechanism, the processing mechanism comprises a vibrating device, a tooth processing bin, a first peristaltic pump, a liquid collecting box, a second peristaltic pump, a plurality of reagent adding assemblies, a distilled water adding assembly, a main control assembly, a reagent bottle and an RFID identification card; according to the invention, the card information of the RFID identification card is identified, read and written through radio signals, so that reagent information can be accurately identified, whether a reagent is matched with equipment or not can be determined, mismatching of the reagent and the equipment is avoided, and the detection accuracy of the reagent is improved. The problems that due to the fact that existing tooth bone graft material processing equipment is matched with respective reagents, the reagents of different manufacturers are mixed or the reagents are configured abnormally, the dentin decalcification degrees are different, and the bone regeneration effect does not reach the optimal result are solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of tooth bone graft material processing equipment, and particularly relates to a tooth bone graft material processing equipment based on reagent code scanning identification. BACKGROUND

[0002] In oral implant clinical treatment, the condition of insufficient alveolar bone quantity is often encountered, and the insufficient quantity of tooth bone will not only cause difficulty in implanting the implant, but also affect the functional recovery and aesthetic effect of implant restoration. In the alveolar bone preservation surgery and bone augmentation surgery, dentin, as a bone graft substitute material similar in composition to bone tissue, usually needs to be treated by HCL demineralization to prepare demineralized dentin matrix (DDM), and different particle sizes and demineralization times will have different influences on the physical and chemical properties and biological properties of DDM.

[0003] At present, the tooth bone graft material processing equipment on the market is matched with respective reagents, and there are conditions of mixing reagents of different manufacturers or abnormal configuration of reagents, which leads to different degrees of decalcification of dentin and suboptimal bone regeneration effect. SUMMARY

[0004] The present application aims to provide a tooth bone graft material processing equipment based on reagent code scanning identification, and aims to solve the problems that the existing tooth bone graft material processing equipment is matched with respective reagents, there are conditions of mixing reagents of different manufacturers or abnormal configuration of reagents, which leads to different degrees of decalcification of dentin and suboptimal bone regeneration effect.

[0005] To achieve the above-mentioned purpose, the present application provides a tooth bone graft material processing equipment based on reagent code scanning identification, which comprises a host computer and a processing mechanism, the processing mechanism comprises a vibration device, a tooth treatment bin, a first peristaltic pump, a liquid collection box, a second peristaltic pump, a plurality of reagent adding assemblies, a distilled water adding assembly, a main control assembly, a reagent bottle and an RFID identification card.

[0006] The vibration device is arranged inside the main machine, the tooth treatment bin is arranged on the top of the vibration device, the tooth treatment bin has a liquid inlet, a liquid outlet and an exhaust port; the inlet of the first peristaltic pump is communicated with the liquid outlet through a pipeline; the liquid collection box has a plurality of liquid inlets and a liquid outlet, and the plurality of liquid inlets are communicated with the liquid outlet; the inlet of the second peristaltic pump is communicated with the liquid outlet through a pipeline, and the outlet of the second peristaltic pump is communicated with the liquid inlet through a pipeline; a plurality of reagent adding assemblies are respectively communicated with a plurality of liquid inlets; the distilled water adding assembly is communicated with the liquid inlet; the main control assembly is arranged on the main machine; the reagent bottle is located on the side of the main machine, and the RFID identification card is arranged on the surface of the reagent bottle.

[0007] The processing mechanism further comprises a one-way valve, a three-way joint, a connecting head and a waste liquid collection unit; the inlet of the one-way valve is communicated with the exhaust port through a pipeline; the two inlets of the three-way joint are respectively communicated with the outlet of the one-way valve and the outlet of the first peristaltic pump through pipelines; the connecting head is arranged on the main machine and is communicated with the outlet of the three-way joint through a pipeline; and the waste liquid collection unit is communicated with the connecting head through a pipeline.

[0008] The reagent adding assembly comprises a first electromagnetic valve and a reagent bin; the outlet of the first electromagnetic valve is communicated with the liquid inlet through a pipeline; and the outlet of the reagent bin is communicated with the inlet of the first electromagnetic valve through a pipeline.

[0009] The distilled water adding assembly comprises a second electromagnetic valve and a distilled water bin; the outlet of the second electromagnetic valve is communicated with the liquid inlet through a pipeline; and the outlet of the distilled water bin is communicated with the second electromagnetic valve through a pipeline.

[0010] The main control assembly comprises a main control unit, an RFID data processing unit, a display unit and a power module; the main control unit is arranged on the main machine and is electrically connected with the first peristaltic pump, the second peristaltic pump, the first electromagnetic valve, the second electromagnetic valve and the vibration device; the RFID data processing unit is arranged on the main machine and is electrically connected with the main control unit; the display unit is arranged on the main machine and is electrically connected with the main control unit; and the power module is arranged on the main machine and is electrically connected with the main control unit.

[0011] The application discloses a tooth bone graft material processing equipment based on reagent code scanning recognition, reagent bottles are internally stored with reagents matched with the equipment, the RFID identification card can be a square electronic tag or a round electronic tag, the RFID identification card is pasted on the surface of the reagent bottle, the RFID identification card is stored with unique identifiable data information, the RFID identification card can be pasted on the outer side of any reagent bottle or used as a separate card together with the reagent, the main machine shell is provided with an opening and an RFID identification card scanning window, when the RFID identification card is close to the RFID identification card scanning window, the main control assembly activates the RFID identification card and decodes signals through transmitting and receiving radio signals, reagent card recognition and information interaction are realized, data processing is then carried out, after receiving the RFID data signal, data is analyzed and decision analysis is carried out, whether the RFID identification card is unused or used is determined, whether the set instrument program interface is entered is determined, the background program is started, prompt information is given through the main control assembly, and the program running process is displayed through the display unit. The application is based on the RFID identification technology, card information of the RFID identification card is identified and read and written through the radio signals, reagent information can be accurately identified, whether the reagent matches the equipment is confirmed, the reagent and the equipment are prevented from being mismatched, the reagent is prevented from being used incorrectly, the performance of the tooth bone graft material prepared by the equipment is ensured, the bone augmentation operation requirement is met, the operation treatment time is shortened, the existing tooth bone graft material processing equipment is matched with respective reagents, different reagents of different manufacturers are mixed or the reagents are not normally configured, the tooth dentin decalcification degree is different, and the bone regeneration effect does not reach the best result. BRIEF DESCRIPTION OF DRAWINGS

[0012] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description.

[0013] Figure 1 is a structural schematic diagram of the whole application.

[0014] Figure 2 is a connection schematic diagram of the tooth processing bin, the first peristaltic pump, the liquid collecting box, the second peristaltic pump, the reagent adding assembly, the distilled water adding assembly, the waste liquid collecting unit and the one-way valve of the application.

[0015] Figure 3 is a structural schematic diagram of the reagent bottle and the RFID identification card of the application.

[0016] Figure 4 is a sectional view of the liquid collecting box of the application.

[0017] Figure 5 is a sectional view of the tooth processing bin of the application.

[0018] 1-host, 2-vibration device, 3-tooth processing bin, 4-first peristaltic pump, 5-liquid collection box, 6-second peristaltic pump, 7-reagent adding assembly, 8-distilled water adding assembly, 9-main control assembly, 10-reagent bottle, 11-RFID identification card, 12-waste liquid collection unit, 13-one-way valve, 14-three-way joint, 15-connector, 31-liquid inlet, 32-liquid outlet, 33-gas outlet, 51-liquid inlet, 52-liquid outlet, 71-first electromagnetic valve, 72-reagent bin, 81-second electromagnetic valve, 82-distilled water bin, 91-main control unit, 92-RFID data processing unit, 93-display unit, 94-power module. DETAILED DESCRIPTION

[0019] The embodiments of the present application are described in detail below, examples of which are shown in the accompanying drawings, the embodiments described below by referring to the accompanying drawings are exemplary, and are intended to explain the present application, and cannot be understood as a limitation of the present application.

[0020] Please refer to Figures 1-5 , wherein, Figure 1 is a structural schematic diagram of the whole of the present application, Figure 2 is a connection schematic diagram of the tooth processing bin, the first peristaltic pump, the liquid collection box, the second peristaltic pump, the reagent adding assembly, the distilled water adding assembly, the waste liquid collection unit and the one-way valve of the present application, Figure 3 is a structural schematic diagram of the reagent bottle and the RFID identification card of the present application, Figure 4 is a sectional view of the liquid collection box of the present application, Figure 5 is a sectional view of the tooth processing bin of the present application.

[0021] The present application provides a tooth bone graft material processing equipment based on reagent code scanning identification, comprising a host 1 and a processing mechanism, the processing mechanism comprising a vibration device 2, a tooth processing bin 3, a first peristaltic pump 4, a liquid collection box 5, a second peristaltic pump 6, a plurality of reagent adding assemblies 7, a distilled water adding assembly 8, a main control assembly 9, a reagent bottle 10, an RFID identification card 11, a waste liquid collection unit 12, a one-way valve 13, a three-way joint 14, a connector 15; the reagent adding assembly 7 comprises a first electromagnetic valve 71 and a reagent bin 72; the distilled water adding assembly 8 comprises a second electromagnetic valve 81 and a distilled water bin 82; the main control assembly 9 comprises a main control unit 91, an RFID data processing unit 92, a display unit 93 and a power module 94; the foregoing scheme solves the problem that the existing tooth bone graft material processing equipment is equipped with respective reagents, different manufacturers' reagents are mixed, or reagents are not normally configured, resulting in different degrees of dentin decalcification, and the bone regeneration effect does not reach the best result.

[0022] For the specific embodiment, the vibration device 2 is arranged inside the main machine 1, the tooth processing bin 3 is arranged on top of the vibration device 2, the tooth processing bin 3 has a liquid inlet 31, a liquid outlet 32 and an exhaust port 33; the inlet of the first peristaltic pump 4 is communicated with the liquid outlet 32 through a pipeline; the liquid collection box 5 has a plurality of liquid inlets 51 and a liquid outlet 52, the plurality of liquid inlets 51 are all communicated with the liquid outlet 52; the inlet of the second peristaltic pump 6 is communicated with the liquid outlet 52 through a pipeline, the outlet of the second peristaltic pump 6 is communicated with the liquid inlet 31 through a pipeline; a plurality of reagent adding assemblies 7 are respectively communicated with a plurality of liquid inlets 51; the distilled water adding assembly 8 is communicated with the liquid inlet 51; the main control assembly 9 is arranged on the main machine 1; the reagent bottle 10 is located on the side of the main machine 1, and the RFID identification card 11 is arranged on the surface of the reagent bottle 10. The reagent bottle 10 stores reagents matched with the device, the RFID identification card 11 can be a square electronic tag or a circular electronic tag, the RFID identification card 11 is pasted on the surface of the reagent bottle 10, the RFID identification card 11 stores unique identifiable data information, the RFID identification card 11 can be pasted on the outer side of any reagent bottle 10 or used as a separate card together with the reagent; the shell of the main machine 1 has an opening, and an RFID identification card 11 scanning window is arranged; when the RFID identification card 11 is close to the RFID identification card 11 scanning window, the main control assembly 9 activates the RFID identification card 11 and decodes the signal by transmitting and receiving radio signals, realizes reagent card identification and information interaction, and then performs data processing; after receiving the RFID data signal, the data is analyzed and decision analysis is performed, so as to determine whether the RFID identification card 11 is unused or used, whether to enter the set instrument program interface, control the background program to start, give prompt information through the main control assembly 9, and display the program running process through the display unit 93. Based on the RFID identification technology, the card information of the RFID identification card 11 is identified and read and written through radio signals; therefore, the reagent information can be accurately identified, so as to confirm whether the reagent matches the device, avoid mismatching of the reagent and the device, and wrong use of the reagent, ensure the performance of the tooth bone graft material prepared by the device, meet the requirements of bone augmentation surgery, and shorten the operation treatment time; the existing tooth bone graft material processing device is matched with respective reagents, different manufacturers' reagents are mixed or the reagents are not normally configured, the tooth dentin decalcification degree is different, and the bone regeneration effect does not reach the best result. When using the processing device, the carious tissue and periodontal soft tissue on the surface of the extracted tooth are cleaned in advance, then the tooth is blown dry, crushed into a suitable size of powder or broken into blocks, and then placed in the tooth processing bin 3 for processing.Specific processing process: add enough distilled water to the distilled water adding assembly 8, add corresponding reagents to the multiple reagent adding assemblies 7 respectively, and use the RFID identification card 11 to scan the scanning window of the host computer 1 to activate the host computer program interface and start the device program. After the device is started, the second peristaltic pump 6 is started to draw sterilized distilled water from the distilled water adding assembly 8 through the pipeline, the liquid collecting box 5, and the liquid inlet 31 on the tooth treatment bin 3 to inject the distilled water into the tooth treatment bin 3, and the second peristaltic pump 6 and the distilled water adding assembly 8 are closed. The vibration device 2 connected to the bottom of the tooth treatment bin 3 generates high-frequency vibration to clean the bone graft material in the tooth treatment bin 3. After cleaning is completed, the first peristaltic pump 4 is started to draw waste liquid from the liquid outlet 32 on the tooth treatment bin 3. Subsequently, the second peristaltic pump 6 is started again to draw reagents from the reagent adding assembly 7 through the pipeline, the liquid collecting box 5, and the liquid inlet 31 on the tooth treatment bin 3 to inject the reagents into the tooth treatment bin 3, and the second peristaltic pump 6 and the reagent adding assembly 7 are closed. After the reagents are injected into the tooth treatment bin 3, the vibration device 2 is started to generate high-frequency vibration of the tooth treatment bin 3 to fully mix and react the reagents with the bone graft material, and the tooth treatment bin 3 is externally heated to make the reaction faster. After the reaction is completed, the first peristaltic pump 4 is started to draw waste liquid from the liquid outlet 32 on the tooth treatment bin 3. The above steps are sequentially performed to inject reagents and sterilized distilled water into the tooth treatment bin 3 to complete the demineralization, degreasing, and disinfection and cleaning treatment of the bone graft material. After all the procedures are completed, the bone graft material is completed.

[0023] The inlet of the one-way valve 13 is communicated with the exhaust port 33 through a pipeline; the two inlets of the three-way joint 14 are respectively communicated with the outlet of the one-way valve 13 and the outlet of the first peristaltic pump 4 through pipelines; the connecting head 15 is arranged on the host computer 1 and communicated with the outlet of the three-way joint 14 through a pipeline; and the waste liquid collecting unit 12 is communicated with the connecting head 15 through a pipeline. After cleaning is completed, the first peristaltic pump 4 is started to draw waste liquid from the liquid outlet 32 on the tooth treatment bin 3, and the waste liquid is discharged to the waste liquid collecting unit 12 through the three-way joint 14 and the connecting head 15. After the reagents and the bone graft material are fully mixed and reacted, the first peristaltic pump 4 is started to draw waste liquid from the liquid outlet 32 on the tooth treatment bin 3, and the waste liquid is discharged to the waste liquid collecting unit 12 through the three-way joint 14 and the connecting head 15. When the reagents and the sterilized distilled water are injected into the tooth treatment bin 3, the tooth treatment bin 3 is in a sealed state, and an exhaust port 33 is arranged on the tooth treatment bin 3 to maintain the pressure balance in the tooth treatment bin 3. The exhaust port 33 is communicated with the external atmosphere through a pipeline, a one-way valve 13, a three-way joint 14, a connecting head 15, and the external atmosphere. The one-way valve 13 can prevent the waste liquid discharged by the first peristaltic pump 4 from flowing back into the tooth treatment bin 3. Specifically, the connecting head 15 is connected to a waste liquid collecting unit through a pipeline, the waste liquid collecting unit is a waste liquid collecting bottle, a hole is arranged on the cap of the waste liquid collecting bottle (the hole is larger than the pipeline), and the pipeline is inserted into the waste liquid collecting bottle. In this way, the pipeline can be communicated with the external atmosphere.

[0024] The waste liquid collecting unit 12 can be a waste liquid collecting bottle or a waste liquid discharging channel.

[0025] Meanwhile, the outlet of the first electromagnetic valve 71 is connected to the liquid inlet 51 through a pipeline, and the outlet of the reagent bin 72 is connected to the inlet of the first electromagnetic valve 71 through a pipeline. When the first electromagnetic valve 71 is opened, the reagent in the reagent bin 72 will flow into the liquid collecting box 5.

[0026] In addition, the outlet of the second electromagnetic valve 81 is connected to the liquid inlet 51 through a pipeline, and the outlet of the distilled water bin 82 is connected to the second electromagnetic valve 81 through a pipeline. When the second electromagnetic valve 81 is opened, the water in the distilled water bin 82 will flow into the liquid collecting box 5.

[0027] Finally, the main control unit 91 is arranged on the main machine 1 and is electrically connected to the first peristaltic pump 4, the second peristaltic pump 6, the first electromagnetic valve 71, the second electromagnetic valve 81, and the vibration device 2. The RFID data processing unit 92 is arranged on the main machine 1 and is electrically connected to the main control unit 91. The display unit 93 is arranged on the main machine 1 and is electrically connected to the main control unit 91. The power module 94 is arranged on the main machine 1 and is electrically connected to the main control unit 91. When the RFID identification card 11 is close to the RFID identification card 11 scanning window, the RFID data processing unit 92 activates the RFID identification card 11 and decodes the signal by transmitting and receiving radio signals, realizes the reagent card identification and information interaction, and then transmits to the main control unit 91 to complete the data processing. After receiving the RFID data signal, the main control unit 91 analyzes the data and makes a decision analysis to determine whether the RFID identification card 11 is unused or has been used, whether to enter the instrument program interface set, control the background program to start, give prompt information through the display unit 93, and display the program running process through the display unit 93. The main control unit 91 controls the opening and closing of the first electromagnetic valve 71 and the second electromagnetic valve 81, the driving of the first peristaltic pump 4 and the second peristaltic pump 6, the driving of the vibration device 2, and the control of the main program.

[0028] The application discloses a tooth bone graft material processing equipment based on reagent code scanning recognition, wherein a reagent bottle 10 is internally provided with reagents matched with the equipment; an RFID identification card 11 is attached to the surface of the reagent bottle 10; the RFID identification card 11 is internally provided with unique identifiable data information; the RFID identification card 11 can be attached to the outer side of any reagent bottle 10 or used as a separate card together with the reagents; the main machine 1 is externally provided with an opening and an RFID identification card 11 scanning window; when the RFID identification card 11 is close to the RFID identification card 11 scanning window, an RFID data processing unit 92 activates the RFID identification card 11 and decodes signals through radio signal transmission and reception, realizes reagent card recognition and information interaction, and then transmits to a main control unit 91 to complete data processing; the main control unit 91 analyzes the data after receiving the RFID data signals, makes decision analysis, and determines whether the RFID identification card 11 is unused or used, whether to enter the set instrument program interface, controls the background program to start, gives prompt information through a display unit 93, and displays the program running process through the display unit 93; the main control unit 91 controls the opening and closing of the first electromagnetic valve 71 and the second electromagnetic valve 81, the driving of the first peristaltic pump 4 and the second peristaltic pump 6, the driving of the vibration device 2, and the control of the main program. The application is based on the RFID identification technology, identifies and reads and writes the card information of the RFID identification card 11 through radio signals; therefore, the reagent information can be accurately identified, so as to confirm whether the reagents and the equipment are matched, avoid the mismatching of the reagents and the equipment and the wrong use of the reagents, ensure the performance of the tooth bone graft material prepared by the equipment, meet the requirements of bone augmentation surgery, shorten the operation treatment time, solve the problems that the existing tooth bone graft material processing equipment is matched with respective reagents, the reagents of different manufacturers are mixed or the reagents are abnormally configured, the tooth dentin decalcification degree is different, and the bone regeneration effect does not reach the best result. The tooth bone graft material processing equipment has the advantages of simple structure, compact liquid connection, short pipeline connection length, light overall weight, small volume, direct waste liquid discharge to a waste liquid treatment area, reduced waste liquid pouring steps, reduced tedious work of doctors, and better use experience. When the processing equipment is used, the carious tissues and periodontal soft tissues on the surface of the extracted tooth are cleaned, the tooth is dried and crushed into powdery or blocky shapes with appropriate sizes, and then the tooth is placed into a tooth processing bin 3 for processing. The specific processing process is as follows: sufficient distilled water is added into a distilled water bin 82, corresponding reagents are respectively added into three reagent bins 72, and the reagent bin covers and the distilled water bin cover are covered. The RFID identification card 11 scans the scanning window of the main machine 1, activates the main machine program interface, and starts the equipment program.After the device is started, the second peristaltic pump 6 is started, and the second electromagnetic valve 81 is opened at the same time, so that the sterilized distilled water is drawn out from the outlet of the distilled water bin 82, and is injected into the tooth treatment bin 3 through the pipeline, the second electromagnetic valve 81, the liquid collecting box 5, the liquid inlet 31 on the tooth treatment bin 3, and the second peristaltic pump 6 and the second electromagnetic valve 81 are closed. The vibration device 2 connected to the bottom of the tooth treatment bin 3 generates high-frequency vibration, and the bone graft material in the tooth treatment bin 3 is cleaned. After cleaning is completed, the first peristaltic pump 4 is started, and the waste liquid is drawn out from the liquid outlet 32 on the tooth treatment bin 3, and is discharged to the waste liquid collecting unit 12 through the three-way joint 14 and the connecting head 15. Subsequently, the second peristaltic pump 6 is started again, and the first electromagnetic valve 71 is opened at the same time, so that the reagent is drawn out from the reagent bin 72, and is injected into the tooth treatment bin 3 through the pipeline, the first electromagnetic valve 71, the liquid collecting box 5, the liquid inlet 31 on the tooth treatment bin 3, and the second peristaltic pump 6 and the first electromagnetic valve 71 are closed. After the reagent is injected into the tooth treatment bin 3, the vibration device 2 is started, and the tooth treatment bin 3 generates high-frequency vibration, so that the reagent and the bone graft material are fully mixed and reacted, and the tooth treatment bin 3 is heated externally to make the reaction faster. After the reaction is completed, the first peristaltic pump 4 is started, and the waste liquid is drawn out from the liquid outlet 32 on the tooth treatment bin 3, and is discharged to the waste liquid collecting unit 12 through the three-way joint 14 and the connecting head 15. When the reagent and the sterilized distilled water are injected into the tooth treatment bin 3, the tooth treatment bin 3 is in a sealed state, in order to maintain the pressure balance in the tooth treatment bin 3, an exhaust port 33 is arranged on the tooth treatment bin 3, and the exhaust port 33 is communicated with the external atmosphere through the pipeline, the one-way valve 13, the three-way joint 14, the connecting head 15, and the one-way valve 13 can prevent the waste liquid discharged by the first peristaltic pump 4 from flowing back into the tooth treatment bin 3. According to the above steps, the reagent and the sterilized distilled water are injected into the tooth treatment bin 3 in turn, and the demineralization, degreasing and disinfection and cleaning treatment of the bone graft material are completed. After all the procedures are completed, the bone graft material is completed.

[0029] The above only discloses one or more preferred embodiments of the application, and cannot limit the scope of the application. Those skilled in the art can understand that all or part of the above-mentioned embodiments can be implemented, and equivalent changes made according to the claims of the application still belong to the scope of the application.

Claims

1. A tooth bone graft material processing equipment based on reagent code scanning identification, comprising a main machine, characterized in that, further comprising a processing mechanism; the processing mechanism comprises a vibration device, a tooth processing bin, a first peristaltic pump, a liquid collection box, a second peristaltic pump, a plurality of reagent adding assemblies, a distilled water adding assembly, a main control assembly, a reagent bottle and an RFID identification card; the vibration device is arranged inside the main machine, the tooth processing bin is arranged on the top of the vibration device, and the tooth processing bin is provided with a liquid inlet, a liquid outlet and an exhaust port; the inlet of the first peristaltic pump is communicated with the liquid outlet through a pipeline; the liquid collection box is provided with a plurality of liquid inlets and a liquid outlet, the plurality of liquid inlets are communicated with the liquid outlet, the inlet of the second peristaltic pump is communicated with the liquid outlet through a pipeline, and the outlet of the second peristaltic pump is communicated with the liquid inlet through a pipeline; the plurality of reagent adding assemblies are respectively communicated with the plurality of liquid inlets; the distilled water adding assembly is communicated with the liquid inlet; the main control assembly is arranged on the main machine; the reagent bottle is located on the side of the main machine, and the RFID identification card is arranged on the surface of the reagent bottle.

2. The tooth bone graft material processing equipment based on reagent code scanning identification according to claim 1, characterized in that, the processing mechanism further comprises a one-way valve, a three-way joint, a connecting head and a waste liquid collection unit; the inlet of the one-way valve is communicated with the exhaust port through a pipeline; the two inlets of the three-way joint are respectively communicated with the outlet of the one-way valve and the outlet of the first peristaltic pump through pipelines; the connecting head is arranged on the main machine and communicated with the outlet of the three-way joint through a pipeline; and the waste liquid collection unit is communicated with the connecting head through a pipeline.

3. The tooth bone graft material processing equipment based on reagent code scanning identification according to claim 2, characterized in that, the reagent adding assembly comprises a first electromagnetic valve and a reagent bin; the outlet of the first electromagnetic valve is communicated with the liquid inlet through a pipeline; and the outlet of the reagent bin is communicated with the inlet of the first electromagnetic valve through a pipeline.

4. The tooth bone graft material processing equipment based on reagent code scanning identification according to claim 3, characterized in that, the distilled water adding assembly comprises a second electromagnetic valve and a distilled water bin; the outlet of the second electromagnetic valve is communicated with the liquid inlet through a pipeline; and the outlet of the distilled water bin is communicated with the second electromagnetic valve through a pipeline.

5. The tooth bone graft material processing equipment based on reagent code scanning identification according to claim 4, characterized in that, the main control assembly comprises a main control unit, an RFID data processing unit, a display unit and a power module; the main control unit is arranged on the main machine and electrically connected with the first peristaltic pump, the second peristaltic pump, the first electromagnetic valve, the second electromagnetic valve and the vibration device; the RFID data processing unit is arranged on the main machine and electrically connected with the main control unit; the display unit is arranged on the main machine and electrically connected with the main control unit; and the power module is arranged on the main machine and electrically connected with the main control unit. ​