Disinfection all-in-one machine integrating medicine dispensing and oscillating functions

By designing a disinfection machine that integrates drug distribution and oscillation functions, the problem of single functions of the existing disinfection machine is solved, and the continuous process of drug distribution, oscillation and disinfection is realized, and the efficiency of the disinfection machine is improved.

CN120022396APending Publication Date: 2025-05-23KUNSHAN FIRST PEOPLES HOSPITAL
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Patent Information

Application Number
CN202510150242.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-11
Publication Date
2025-05-23

AI Technical Summary

Technical Problem

The existing disinfection machine has a single function. Staff need to perform medicine, oscillate and disinfection operations separately before use, which increases the steps and time and reduces the efficiency of the disinfection machine.

Method used

Design an integrated disinfection machine with integrated drug distribution and oscillation functions. By setting up an electromagnetic vibration platform and a multi-functional shell structure, the entire process of drug distribution, oscillation and disinfection is realized.

Benefits of technology

It reduces operating steps, saves working time, improves the use effect and efficiency of the disinfection machine, and realizes the continuous process of medicine distribution, oscillation and disinfection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a disinfection all-in-one machine integrating medicine dispensing and oscillation functions, and relates to the technical field of disinfection machines, the disinfection all-in-one machine comprises an all-in-one machine body, the all-in-one machine body comprises a cabinet body, the bottom of each supporting leg of the cabinet body is provided with a foot pad, the top of the inner wall of the cabinet body is provided with a rectangular hole, and the rectangular hole is provided with a plurality of through holes; two symmetrical placing grooves are formed in the bottom of the inner wall of the cabinet body, a cabinet door is installed on the surface of the cabinet body, two handles are installed on the front surface of the shell, and a controller is installed on one side of the inner wall of the cabinet body; according to the all-in-one machine disclosed by the invention, by arranging the all-in-one machine body, the functions of medicine dispensing and oscillation can be added, that is, a worker can complete the whole process operation of medicine dispensing, oscillation and disinfection on the all-in-one machine, so that the operation steps are reduced, the working time is also saved, the use effect of the disinfection machine is improved, and meanwhile, the use efficiency of the disinfection machine is also improved.
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Description

Technical Field

[0001] The invention relates to the technical field of disinfection machines, and in particular to an all-in-one disinfection machine with integrated medicine placing and oscillation functions. Background Art

[0002] In medical institutions, the preparation of vials is very common. Staff members generally need to arrange, shake and disinfect various vials of preparations in sequence according to the doctor's orders. A sterilizer is required to disinfect vials of preparations.

[0003] In the prior art, although the existing sterilizers can help the staff to complete the sterilization operation efficiently and accurately when in use, and provide guarantee for the safe use of subsequent drugs, they usually only have one function of sterilization, and the function is single, that is, before the staff use the sterilizer to sterilize the vial preparation, in order to ensure the accuracy of the medication and promote the dissolution of the drug inside the vial preparation, they generally first perform the drug placement operation on the vial preparation, and then oscillate the vial preparation that has completed the drug placement operation, and then put the vial preparation into the sterilizer for sterilization. This not only increases the steps of the operation, but also wastes working time, which not only reduces the use effect of the sterilizer, but also reduces the use efficiency of the sterilizer.

[0004] Therefore, we propose a disinfection machine with integrated medicine placement and oscillation functions to solve the problems raised in the above background technology. Summary of the invention

[0005] The object of the present invention is to provide an integrated sterilizing machine with integrated medicine placing and oscillating functions, so as to solve the problem that the existing sterilizing machines usually only have one sterilizing function when in use, and the function is single, that is, before the staff use the sterilizing machine to sterilize the vial preparation, in order to ensure the accuracy of the medication and promote the dissolution of the medicine inside the vial preparation, they usually first perform the medicine placing operation on the vial preparation, and then oscillate the vial preparation that has completed the medicine placing operation, and then put the vial preparation into the sterilizing machine for sterilization. This not only increases the operation steps, but also wastes working time, which not only reduces the use effect of the sterilizing machine, but also reduces the use efficiency of the sterilizing machine.

[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a disinfection machine with integrated medicine placement and oscillation functions, comprising an integrated machine body, the integrated machine body comprising a cabinet, a foot pad is arranged at the bottom of each supporting leg of the cabinet, a rectangular hole is arranged at the top of the inner wall of the cabinet, two symmetrical placement grooves are arranged at the bottom of the inner wall of the cabinet, a cabinet door is installed on the surface of the cabinet, a rubber pad is arranged inside each of the placement grooves, an electromagnetic vibration platform is arranged between the insides of the two rubber pads, a plurality of cylindrical grooves are arranged on the top end surface of the electromagnetic vibration platform, a first rubber ring is bonded to the inner wall of the rectangular hole, a shell is rotatably connected to the top corner of the cabinet through a hinge, a plurality of cylindrical holes are arranged on the top of the inner wall of the shell, a second rubber ring is bonded to the bottom of the shell, two handles are installed on the front surface of the shell, a controller is installed on one side of the inner wall of the cabinet, a touch screen is installed on the inclined surface of the inner wall of the cabinet, a first button, a second button and an emergency stop button are installed on the inclined surface of the inner wall of the cabinet, Two symmetrical gas supports are installed on the top of the cabinet, and two symmetrical locks are arranged between the cabinet and the shell; by setting up the integrated machine body, the functions of medicine placement and oscillation can be added, that is, the staff can complete the whole process of medicine placement, oscillation and disinfection on the equipment, which not only reduces the operation steps, but also saves working time, improves the use effect of the disinfection machine, and also improves the use efficiency of the disinfection machine. When it is necessary to place the medicine, oscillate and disinfect the vial preparation, the lock is first unlocked, and then the shell can be opened by the cooperation of the handle, the gas support and the hinge, and then the vial preparation can be placed on the electromagnetic vibration platform by the cooperation of the cylindrical groove, and then the controller can be connected to the external power supply by the cooperation of the cabinet door, and then the solvent is injected into the interior of the vial preparation, and then the sterile cotton swab can be fixed on the shell by the cooperation of the cylindrical hole, and then alcohol is sprayed on the vial stopper of the vial preparation, and finally the shell can be closed by the cooperation of the handle, the gas support and the hinge.

[0007] Preferably, the electromagnetic vibration platform is electrically connected to the controller, the top of the electromagnetic vibration platform is movably sleeved inside the first rubber ring, the touch screen is electrically connected to the controller, and the center of each cylindrical groove is on the same straight line as the center of each cylindrical hole.

[0008] Preferably, the bottom of the second rubber ring is in contact with the top of the cabinet, the first button is electrically connected to the controller, the second button is electrically connected to the controller, and the emergency stop button is electrically connected to the controller.

[0009] Preferably, the pressing end of the first button moves through the inner wall slope of the cabinet, the pressing end of the second button moves through the inner wall slope of the cabinet, the pressing end of the emergency stop button moves through the inner wall slope of the cabinet, and the human-computer interaction interface of the touch screen moves through the inner wall slope of the cabinet.

[0010] Preferably, a protective mechanism is provided on the main body of the all-in-one machine, and the protective mechanism includes a rectangular plate, two U-shaped blocks and a frame, connecting blocks are fixed on both sides of the rectangular plate, and hand-tightened bolts are threaded through the opposite sides of the two U-shaped blocks; when the shell is closed, the lock is first locked, and then the electromagnetic vibration platform can be started by the cooperation of the touch screen, the first button, the second button and the controller, and then the started electromagnetic vibration platform, the rectangular hole and the cylindrical groove are used to oscillate the vial preparation, and then the started electromagnetic vibration platform, the cylindrical groove and the sterile cotton swab are used to disinfect the vial preparation, and when the vial preparation completes the operation of placing the medicine, oscillating and disinfecting, the handle, the gas support, the hinge and the cylindrical groove are used to separate the vial preparation from the electromagnetic vibration platform, and then the shell is reset to its original position by the cooperation of the handle, the gas support, the hinge and the lock.

[0011] Preferably, an annular groove is provided at the bottom of the rectangular plate, a sealing ring is provided inside the annular groove, auxiliary holes are provided on both sides of the inner wall of the frame, and a protective plate is movably sleeved between the two auxiliary holes; by providing a protective mechanism, the pressing ends of each button on the all-in-one body and the human-computer interaction interface of the touch screen can be protected from collision, and the cylindrical holes on the shell can also be protected from dust. When the all-in-one body needs to be used, the rectangular plate can be separated from the shell by first using the cooperation of the hand-tightening bolts, U-shaped blocks and connecting blocks, and then the sealing ring can be separated from the shell by using the cooperation of the rectangular plate and the annular groove.

[0012] Preferably, two symmetrical magnetic buckles are fixedly embedded on one side of the frame, two symmetrical iron buckles are fixedly embedded on the surface of the protective plate, and a socket is opened on one side of each of the connecting blocks.

[0013] Preferably, opposite sides of the two U-shaped blocks are respectively fixed to two sides of the shell, the frame is fixed to the outer surface of the cabinet, and the bottom of the rectangular plate is in contact with the top of the shell.

[0014] Preferably, the bottom of the sealing ring contacts the top of the shell, each of the connecting blocks is movably sleeved inside each U-shaped block, and the threaded end of each hand-tightening bolt is movably sleeved inside each socket.

[0015] Preferably, the threaded ends of the two hand-tightening bolts are respectively threadedly connected to the two sides of the shell, and the surface of each magnetic buckle is respectively in contact with the surface of each iron buckle; the magnetic buckle can be separated from the iron buckle by utilizing the cooperation of the protective plate and the auxiliary hole. When the all-in-one machine body is completed, the sealing ring can be contacted with the shell by first utilizing the cooperation of the rectangular plate and the annular groove, and then the rectangular plate and the shell can be fixed together by utilizing the cooperation of the connecting block, the jack, the hand-tightening bolts and the U-shaped block, and then the protective plate and the frame can be fixed together by utilizing the cooperation of the auxiliary hole, the magnetic buckle and the iron buckle.

[0016] Compared with the prior art, the present invention has the following beneficial effects: 1. The present invention can increase the functions of medicine placement and oscillation by setting an integrated machine body, that is, the staff can complete the whole process of medicine placement, oscillation and disinfection on the equipment, which not only reduces the operation steps, but also saves working time, improves the use effect of the disinfection machine, and also improves the use efficiency of the disinfection machine. When it is necessary to perform medicine placement, oscillation and disinfection operations on the vial preparation, the lock is first unlocked, and then the shell can be opened by the cooperation of the handle, the gas support and the hinge, and then the vial preparation can be placed on the electromagnetic vibration platform by the cooperation of the cylindrical groove, and then the controller can be connected to the external power supply by the cooperation of the cabinet door, and then the solvent is injected into the interior of the vial preparation, and then the sterile cotton swab can be fixed on the shell by the cooperation of the cylindrical hole, and then alcohol is sprayed on the bottle stopper of the vial preparation, and finally the shell can be closed by the cooperation of the handle, the gas support and the hinge.

[0017] 2. According to the present invention, when the shell is closed, the lock is first locked, and then the electromagnetic vibration platform can be started by the cooperation of the touch screen, the first button, the second button and the controller. Then, the vial preparation can be oscillated by the cooperation of the started electromagnetic vibration platform, the rectangular hole and the cylindrical groove. Then, the vial preparation can be disinfected by the cooperation of the started electromagnetic vibration platform, the cylindrical groove and the sterile cotton swab. When the vial preparation completes the operation of placing medicine, oscillating and disinfecting, the vial preparation can be separated from the electromagnetic vibration platform by the cooperation of the handle, the gas support, the hinge and the cylindrical groove, and then the shell can be reset to its original position by the cooperation of the handle, the gas support, the hinge and the lock.

[0018] 3. The present invention can provide anti-collision protection for the pressing ends of each button on the integrated machine body and the human-machine interaction interface of the touch screen by setting a protective mechanism, and can also provide dust protection for the cylindrical hole on the shell. When the integrated machine body needs to be used, the rectangular plate can be separated from the shell by first using the cooperation of the hand-tightened bolts, the U-shaped block and the connecting block, and then the sealing ring can be separated from the shell by using the cooperation of the rectangular plate and the annular groove.

[0019] 4. The present invention utilizes the cooperation of the protective plate and the auxiliary hole to separate the magnetic buckle from the iron buckle. When the integrated machine body is finished using, the sealing ring is firstly brought into contact with the shell by utilizing the cooperation of the rectangular plate and the annular groove. Subsequently, the rectangular plate and the shell are fixed together by utilizing the cooperation of the connecting block, the jack, the hand-tightening bolt and the U-shaped block. Subsequently, the protective plate and the frame are fixed together by utilizing the cooperation of the auxiliary hole, the magnetic buckle and the iron buckle. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 A three-dimensional diagram of a disinfection machine with integrated medicine placement and oscillation functions according to the present invention; Figure 2 It is a partial stereoscopic diagram of a disinfection all-in-one machine with integrated medicine placement and oscillation functions according to the present invention; Figure 3 It is a partial cross-sectional structural schematic diagram of a disinfection all-in-one machine with integrated medicine placement and oscillation functions according to the present invention; Figure 4 It is a partially cutaway stereoscopic diagram of a disinfection all-in-one machine with integrated medicine placement and oscillation functions according to the present invention; Figure 5 It is a three-dimensional diagram of the main body of the integrated disinfection machine with integrated medicine placement and oscillation functions of the present invention; Figure 6 It is a partially cutaway stereoscopic view of a protective mechanism of a disinfection all-in-one machine with integrated medicine placement and oscillation functions according to the present invention; Figure 7 It is a partial three-dimensional diagram of the protective mechanism of a disinfection machine with integrated medicine placement and oscillation functions according to the present invention; Figure 8 This is a partially cutaway stereoscopic view from another angle of the protective mechanism of the integrated disinfection machine with integrated medicine placement and oscillation functions of the present invention.

[0021] In the figure: 1. All-in-one body; 101. Cabinet; 102. Foot pad; 103. Rectangular hole; 104. Placement slot; 105. Cabinet door; 106. Rubber pad; 107. Electromagnetic vibration platform; 108. Cylindrical groove; 109. First rubber ring; 110. Shell; 111. Cylindrical hole; 112. Second rubber ring; 113. Handle; 114. Controller; 115. Touch screen; 116. First button; 117. Second button; 118. Emergency stop button; 119. Gas support; 120. Lock; 2. Protection mechanism; 201. Rectangular plate; 202. Connecting block; 203. U-shaped block; 204. Thumb bolt; 205. Annular groove; 206. Sealing ring; 207. Frame; 208. Auxiliary hole; 209. Protection plate; 210. Magnetic buckle; 211. Iron buckle; 212. Socket. DETAILED DESCRIPTION

[0022] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the implementation regulations described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0023] Example 1: Please refer to Figure 1-Figure 5As shown, the present invention provides a technical solution: a disinfection machine with integrated medicine placement and oscillation functions, including an integrated machine body 1, the integrated machine body 1 includes a cabinet 101, each support leg of the cabinet 101 is provided with a foot pad 102 at the bottom, the top of the inner wall of the cabinet 101 is provided with a rectangular hole 103, the bottom of the inner wall of the cabinet 101 is provided with two symmetrical placement grooves 104, the surface of the cabinet 101 is installed with a cabinet door 105, each placement groove 104 is provided with a rubber pad 106, and an electromagnetic vibration flat plate is provided between the two rubber pads 106. The top end surface of the electromagnetic vibration platform 107 is provided with a plurality of cylindrical grooves 108, the inner wall of the rectangular hole 103 is bonded with a first rubber ring 109, the top corner of the cabinet 101 is rotatably connected with a shell 110 through a hinge, the top of the inner wall of the shell 110 is provided with a plurality of cylindrical holes 111, the bottom of the shell 110 is bonded with a second rubber ring 112, two handles 113 are installed on the front surface of the shell 110, a controller 114 is installed on one side of the inner wall of the cabinet 101, a touch screen 115 is installed on the inclined surface of the inner wall of the cabinet 101, and the cabinet 101 is provided with a plurality of cylindrical holes 111. The inner wall slope of the cabinet 101 is provided with a first button 116, a second button 117 and an emergency stop button 118. Two symmetrical gas struts 119 are provided on the top of the cabinet 101. Two symmetrical locks 120 are provided between the cabinet 101 and the housing 110. The electromagnetic vibration platform 107 is electrically connected to the controller 114. The top of the electromagnetic vibration platform 107 is movably sleeved inside the first rubber ring 109. The touch screen 115 is electrically connected to the controller 114. The center of each cylindrical groove 108 is on the same straight line with the center of each cylindrical hole 111. The bottom of the second rubber ring 112 contacts the top of the cabinet 101, the first button 116 is electrically connected to the controller 114, the second button 117 is electrically connected to the controller 114, the emergency stop button 118 is electrically connected to the controller 114, the pressing end of the first button 116 moves through the inner wall slope of the cabinet 101, the pressing end of the second button 117 moves through the inner wall slope of the cabinet 101, the pressing end of the emergency stop button 118 moves through the inner wall slope of the cabinet 101, and the human-computer interaction interface of the touch screen 115 moves through the inner wall slope of the cabinet 101.

[0024] In this embodiment, when it is necessary to perform drug placement, oscillation and sterilization operations on the vial preparation, the two locks 120 are first unlocked, and then the shell 110 is opened by using the cooperation of the two handles 113, the two gas struts 119 and the hinge. At this time, the opened shell 110 will drive the second rubber ring 112 to move together. When the shell 110 is fully opened, the prepared vial preparations are first placed in the cylindrical groove 108, that is, the drug placement operation of the vial preparation is completed, and then the cabinet door 105 is removed, and then the controller 114 is connected to the external power supply, and then the bottle cap of the vial preparation placed in the cylindrical groove 108 is removed, and then the corresponding solvent (prepared in advance) is injected into the interior of the vial preparation, and then the prepared The prepared sterile cotton swabs are fixed inside the cylindrical hole 111 respectively, and then the prepared alcohol spray bottle is used to spray alcohol on all the stoppers of the preparation bottles of the vials. Finally, the shell 110 is reset by using the cooperation of the two handles 113, the two gas struts 119 and the hinge. At this time, the shell 110 that is reset will drive the second rubber ring 112 to reset. At the same time, the shell 110 that is reset will move all the sterile cotton swabs with the cooperation of the cylindrical hole 111. When the shell 110 completes the reset movement, all the sterile cotton swabs are just in contact with all the stoppers of the preparation bottles of the vials. Then the two lock buckles 120 are locked, and then the touch screen 115, the first button 116, the second button 117 and the control are used. The electromagnetic vibration platform 107 is started with the cooperation of the cylindrical groove 108 and the rectangular hole 103. At this time, the started electromagnetic vibration platform 107 will drive the vial preparation inside the cylindrical groove 108 to vibrate, that is, oscillate the liquid inside the vial preparation. At the same time, the started electromagnetic vibration platform 107 will prevent the vibration force generated when the electromagnetic vibration platform 107 is started from being transmitted to the cabinet 101 with the cooperation of the rubber pad 106, the two placement grooves 104 and the first rubber ring 109, and further increase the stability of the cabinet 101 with the cooperation of the four foot pads 102. When the vial preparation vibrates, the vial preparation can be disinfected with the cooperation of the sterile cotton swab and the alcohol at the vial stopper of the vial preparation. When the electromagnetic vibration platform 107 fails, the emergency stop button 118 and the controller 114 can be used to urgently shut down the electromagnetic vibration platform 107. When all the vials of preparations have completed the drug placement, oscillation and disinfection operations, the above-mentioned operating steps are first performed to open the shell 110, then take out the vials of preparations in the cylindrical groove 108, then remove all the sterile cotton swabs from the corresponding cylindrical holes 111, and then follow the above-mentioned operating steps to close the shell 110, then lock both locks 120, then remove the cabinet door 105, then disconnect the controller 114 from the external power supply, and then reset the cabinet door 105 to its original position, and finally follow the above-mentioned operating steps.The remaining vials can then be placed, shaken and sterilized.

[0025] Embodiment 2: According to Figure 1-Figure 8 As shown, a protective mechanism 2 is provided on the integrated machine body 1, and the protective mechanism 2 includes a rectangular plate 201, two U-shaped blocks 203 and a frame 207. Connecting blocks 202 are fixed on both sides of the rectangular plate 201, and hand-tightening bolts 204 are threaded through the opposite sides of the two U-shaped blocks 203. An annular groove 205 is provided at the bottom of the rectangular plate 201, and a sealing ring 206 is provided inside the annular groove 205. Auxiliary holes 208 are provided on both sides of the inner wall of the frame 207, and a protective plate 209 is movably sleeved between the insides of the two auxiliary holes 208. Two symmetrical magnetic buckles 210 are fixedly embedded on one side of the frame 207, and two symmetrical iron buckles 210 are fixedly embedded on the surface of the protective plate 209. 11. A socket 212 is provided on one side of each connection block 202. The opposite sides of the two U-shaped blocks 203 are respectively fixed to the two sides of the shell 110. The frame 207 is fixed to the outer surface of the cabinet 101. The bottom of the rectangular plate 201 contacts the top of the shell 110. The bottom of the sealing ring 206 contacts the top of the shell 110. Each connection block 202 is movably sleeved inside each U-shaped block 203. The threaded end of each hand-tightening bolt 204 is movably sleeved inside each socket 212. The threaded ends of the two hand-tightening bolts 204 are respectively threadedly connected to the two sides of the shell 110. The surface of each magnetic buckle 210 contacts the surface of each iron buckle 211.

[0026] In this embodiment, when the integrated machine body 1 needs to be used, the two hand-tightening bolts 204 are first loosened so that the threaded ends of the two hand-tightening bolts 204 are separated from the two insertion holes 212 respectively, and then a force is applied to the rectangular plate 201 to make the rectangular plate 201 move vertically upward. At this time, the rectangular plate 201 moving vertically upward will drive the sealing ring 206 to move vertically upward with the cooperation of the annular groove 205. At the same time, the rectangular plate 201 moving vertically upward will drive the two connecting blocks 202 to move vertically upward together. When the two connecting blocks 202 are respectively moved out from the inside of the two U-shaped blocks 203, the rectangular plate 201 is directly After the protective plate 209 is removed, a force is applied to the protective plate 209 to move the protective plate 209 away from the magnetic buckle 210. At this time, the moving protective plate 209 will drive the two iron buckles 211 to move together, and the two moving iron buckles 211 will be separated from the two magnetic buckles 210 respectively. When the protective plate 209 is moved out from between the two auxiliary holes 208, the protective plate 209 can be directly removed, and then the all-in-one body 1 can be used. When the all-in-one body 1 is finished using, first reset the protective plate 209 and the rectangular plate 201 back to their original positions, and then reset the two hand-tightening bolts 204 back to their original positions.

[0027] The effect and working principle achieved by the entire mechanism are as follows: when it is necessary to perform drug placement, oscillation and disinfection operations on the vial preparation, the two hand-tightening bolts 204 are first loosened so that the threaded ends of the two hand-tightening bolts 204 are separated from the two insertion holes 212 respectively, and then a force is applied to the rectangular plate 201 to make the rectangular plate 201 move vertically upward. At this time, the rectangular plate 201 moving vertically upward will drive the sealing ring 206 to move vertically upward with the cooperation of the annular groove 205, and at the same time, the rectangular plate 201 moving vertically upward will drive the two connecting blocks 202 to move vertically upward together. When the two connecting blocks 202 are respectively moved out from the inside of the two U-shaped blocks 203, the rectangular plate 201 can be directly removed, and then the protective plate 20 9 applies a force to move the protective plate 209 in the direction away from the magnetic buckle 210. At this time, the moving protective plate 209 will drive the two iron buckles 211 to move together, and the two moving iron buckles 211 will be separated from the two magnetic buckles 210 respectively. When the protective plate 209 moves out from between the insides of the two auxiliary holes 208, the protective plate 209 can be directly moved away, and then the two lock buckles 120 are unlocked, and then the shell 110 is opened by using the cooperation of the two handles 113, the two gas struts 119 and the hinge. At this time, the opened shell 110 will drive the second rubber ring 112 to move together. When the shell 110 is fully opened, the prepared vial preparations are first placed in the cylindrical groove 108 respectively, and the vial preparations are completed. The vial preparation is placed, and then the cabinet door 105 is removed, and then the controller 114 is connected to the external power supply, and then the bottle cap of the vial preparation placed in the cylindrical groove 108 is removed, and then the corresponding solvent (prepared in advance) is injected into the inside of the vial preparation, and then the prepared sterile cotton swabs are fixed in the inside of the cylindrical hole 111, and then the prepared alcohol spray bottle is used to spray alcohol on all the vial stoppers of the vial preparation, and finally the two handles 113, the two gas struts 119 and the hinge are used to make the shell 110 reset and move, and the shell 110 that is reset and moves will drive the second rubber ring 112 to reset and move, and at the same time, the shell 110 that is reset and moves will be in the cylindrical hole 1 11, all the sterile cotton swabs are moved. When the shell 110 completes the reset movement, all the sterile cotton swabs are just in contact with all the vial stoppers of the vials, and then the two lock buckles 120 are locked. Then, the electromagnetic vibration platform 107 is started by using the touch screen 115, the first button 116, the second button 117 and the controller 114. At this time, the started electromagnetic vibration platform 107 will drive the vial preparation inside the cylindrical groove 108 to vibrate under the cooperation of the cylindrical groove 108 and the rectangular hole 103, that is, the liquid inside the vial preparation is oscillated. At the same time, the started electromagnetic vibration platform 107 will, under the cooperation of the rubber pad 106, the two placement grooves 104 and the first rubber ring 109,The vibration force generated when the electromagnetic vibration platform 107 is started is prevented from being transmitted to the cabinet 101, and the stability of the cabinet 101 is further increased with the cooperation of the four foot pads 102. When the vial of preparation is vibrating, the vial of preparation can be disinfected with the cooperation of a sterile cotton swab and alcohol at the vial stopper of the vial of preparation. When the started electromagnetic vibration platform 107 fails, the electromagnetic vibration platform 107 can be urgently shut down with the cooperation of the emergency stop button 118 and the controller 114. When all the vials of preparation have completed the operation of placing the medicine, oscillating and disinfecting, the above-mentioned operation steps are first performed to open the shell 110, and then the cylindrical groove 108 is Take out all the vials of preparations, then remove all the sterile cotton swabs from the corresponding cylindrical holes 111, and then follow the above steps to close the housing 110, then lock both lock buckles 120, and then reset the protective plate 209 and the rectangular plate 201. When the protective plate 209 and the rectangular plate 201 have completed the reset movement, first reset the two hand-tightening bolts 204 to their original positions, then remove the cabinet door 105, then disconnect the controller 114 from the external power supply, and then reset the cabinet door 105 to its original position, and then follow the above steps to place, shake and disinfect the remaining vials of preparations.

[0028] Among them, hinges are common parts in real life.

[0029] Among them, the human-computer interaction interface of the touch screen 115 , the pressing end of the first button 116 , the pressing end of the second button 117 , and the pressing end of the emergency stop button 118 are all located inside the frame 207 .

[0030] The electromagnetic vibration platform 107 is generally composed of the following main components: Vibration motor: The vibration motor is the core component of the electromagnetic vibration platform 107 and provides power for the vibration of the platform.

[0031] Spring: The spring plays a supporting and buffering role in the electromagnetic vibration platform 107, and it connects the table and the base.

[0032] Table: The table is the part of the electromagnetic vibration platform 107 that is in direct contact with the material and is used to carry the material.

[0033] Machine base: The machine base is the basic component of the electromagnetic vibration platform 107, which is used to support and fix other components such as the vibration motor, the support base and the table.

[0034] Shell: used to protect the internal components of the electromagnetic vibration platform 107.

[0035] Working principle: The working principle of the electromagnetic vibration platform 107 is based on the law of electromagnetic induction and the principle of mechanical vibration. When the vibration motor is powered on, the stator winding of the motor will generate a rotating magnetic field, which will cut the rotor winding and generate induced electromotive force and induced current in the rotor winding. Under the action of the rotating magnetic field, the induced current will generate electromagnetic force, which will drive the rotor to rotate. Since an eccentric block is installed on the rotor shaft of the vibration motor, when the rotor rotates, the eccentric block will rotate with the rotor, thereby generating centrifugal force. The magnitude and direction of this centrifugal force will change continuously with the rotation of the rotor, thereby generating a directional exciting force at the output end of the vibration motor. This exciting force will be transmitted to the spring and the table through the base of the vibration motor, so that the table vibrates under the support and buffering action of the spring. The function of the spring is to support the table so that the table can bear the weight of the material, while buffering the vibration of the table, reducing the impact of the vibration on the base and the surrounding environment, and making the vibration of the table more stable and uniform. When the material is fixed on the table, the vibration of the table will be transmitted to the material, causing the material to vibrate on the table.

[0036] Among them, the controller 114 (PLC controller), the electromagnetic vibration platform 107, the touch screen 115, the first button 116, the second button 117 and the emergency stop button 118 are all existing technologies, and their working principles are all public technologies. Their models can be selected according to actual conditions and no excessive explanation is given here.

[0037] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A disinfection machine with integrated medicine placement and oscillation functions, characterized in that: The integrated machine body (1) comprises an integrated machine body (1), wherein the integrated machine body (1) comprises a cabinet (101), wherein each support leg of the cabinet (101) is provided with a foot pad (102) at the bottom, wherein a rectangular hole (103) is provided at the top of the inner wall of the cabinet (101), wherein two symmetrical placement grooves (104) are provided at the bottom of the inner wall of the cabinet (101), wherein a cabinet door (105) is installed on the surface of the cabinet (101), wherein a rubber pad (106) is provided inside each placement groove (104), wherein an electromagnetic vibration platform (107) is provided between the insides of the two rubber pads (106), wherein a plurality of cylindrical grooves (108) are provided on the top end surface of the electromagnetic vibration platform (107), wherein a first rubber ring (109) is bonded and connected to the inner wall of the rectangular hole (103), wherein the cabinet (101) is provided with a plurality of cylindrical grooves (108), wherein the inner wall of the rectangular hole (103) is provided with a first rubber ring (109 ... 1) is rotatably connected to a shell (110) at the top corner thereof via a hinge, a plurality of cylindrical holes (111) are provided at the top of the inner wall of the shell (110), a second rubber ring (112) is bonded to the bottom of the shell (110), two handles (113) are installed on the front surface of the shell (110), a controller (114) is installed on one side of the inner wall of the cabinet (101), a touch screen (115) is installed on the inclined surface of the inner wall of the cabinet (101), a first button (116), a second button (117) and an emergency stop button (118) are installed on the inclined surface of the inner wall of the cabinet (101), two symmetrical gas struts (119) are installed on the top of the cabinet (101), and two symmetrical lock buckles (120) are provided between the cabinet (101) and the shell (110).

2. The integrated disinfection machine with integrated medicine placement and oscillation functions according to claim 1, characterized in that: The electromagnetic vibration platform (107) is electrically connected to the controller (114); the top end of the electromagnetic vibration platform (107) is movably sleeved inside the first rubber ring (109); the touch screen (115) is electrically connected to the controller (114); and the center of each cylindrical groove (108) is located on the same straight line as the center of each cylindrical hole (111).

3. The integrated disinfection machine with integrated medicine placement and oscillation functions according to claim 1, characterized in that: The bottom of the second rubber ring (112) is in contact with the top of the cabinet (101), the first button (116) is electrically connected to the controller (114), the second button (117) is electrically connected to the controller (114), and the emergency stop button (118) is electrically connected to the controller (114).

4. The integrated disinfection machine with integrated medicine placement and oscillation functions according to claim 1, characterized in that: The pressing end of the first button (116) moves through the inner wall slope of the cabinet (101), the pressing end of the second button (117) moves through the inner wall slope of the cabinet (101), the pressing end of the emergency stop button (118) moves through the inner wall slope of the cabinet (101), and the human-machine interaction interface of the touch screen (115) moves through the inner wall slope of the cabinet (101).

5. The integrated disinfection machine with integrated medicine placement and oscillation functions according to claim 1, characterized in that: The integrated machine body (1) is provided with a protection mechanism (2), the protection mechanism (2) comprising a rectangular plate (201), two U-shaped blocks (203) and a frame (207), connecting blocks (202) being fixed on both sides of the rectangular plate (201), and hand-tightened bolts (204) being threadedly penetrated on opposite sides of the two U-shaped blocks (203).

6. The integrated disinfection machine with integrated medicine placement and oscillation functions according to claim 5, characterized in that: An annular groove (205) is provided at the bottom of the rectangular plate (201), a sealing ring (206) is provided inside the annular groove (205), auxiliary holes (208) are provided on both sides of the inner wall of the frame (207), and a protective plate (209) is movably sleeved between the insides of the two auxiliary holes (208).

7. The integrated disinfection machine with integrated medicine placement and oscillation functions according to claim 6, characterized in that: Two symmetrical magnetic buckles (210) are fixedly embedded on one side of the frame (207), two symmetrical iron buckles (211) are fixedly embedded on the surface of the protective plate (209), and a plug hole (212) is provided on one side of each connection block (202).

8. The integrated disinfection machine with integrated medicine placement and oscillation functions according to claim 5, characterized in that: The opposite sides of the two U-shaped blocks (203) are respectively fixed to the two sides of the shell (110), the frame (207) is fixed to the outer surface of the cabinet (101), and the bottom of the rectangular plate (201) is in contact with the top of the shell (110).

9. The integrated disinfection machine with integrated medicine placement and oscillation functions according to claim 7, characterized in that: The bottom of the sealing ring (206) contacts the top of the housing (110), each of the connecting blocks (202) is movably sleeved inside each U-shaped block (203), and the threaded end of each hand-tightening bolt (204) is movably sleeved inside each insertion hole (212).

10. The integrated disinfection machine with integrated medicine placement and oscillation functions according to claim 7, characterized in that: The threaded ends of the two hand-tightening bolts (204) are respectively threadedly connected to the two sides of the housing (110), and the surface of each magnetic buckle (210) is in contact with the surface of each iron buckle (211).