Omnibearing clamping and flushing device for medical examination glassware

By setting up multiple sets of clamping components and spiral grooves in the cleaning box, combining the internal and external cross-type and front and rear three-wheeled flushing methods, the problems of incomplete cleaning and damage of the test tube are solved, and the comprehensive cleaning effect of the inner and outer walls of the test tube is achieved.

CN120362209APending Publication Date: 2025-07-25THE 901ST HOSPITAL OF THE CHINESE PEOPLES LIBERATION ARMY JOINT LOGISTICS SUPPORT FORCE
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Patent Information

Application Number
CN202510651123.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2025-07-25

AI Technical Summary

Technical Problem

Existing inspection equipment cleaning equipment is difficult to effectively clamp and position test tubes of different pipe sizes, resulting in incomplete cleaning and easy damage to glassware.

Method used

Multiple sets of spaced clamping components are installed in the cleaning box, and the inner and outer cross-type and front and rear three-wheeled flushing methods are adopted, combining the rotation of the spiral groove and the cleaning tampon to achieve all-round cleaning of the inner and outer walls of the test tube.

Benefits of technology

The comprehensive cleaning of the inner and outer walls of the test tube is achieved, avoiding damage to the instrument and improving the cleaning effect.

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Abstract

The invention discloses an omni-directional clamping and flushing device for medical examination glassware, and belongs to the field of medical instrument cleaning and disinfecting equipment.The omni-directional clamping and flushing device is characterized in that multiple sets of clamping assemblies distributed at intervals are additionally arranged in a cleaning box and used for conducting scattered clamping on test tubes with different tube diameters in a non-contact mode; the inner and outer walls of the test tubes are effectively and specifically flushed by adopting an all-dimensional flushing method combining'inner and outer crossed 'flushing and'front and back three-wheel' flushing, a spiral groove matched with a spiral pin shaft is formed in a cleaning tube, and the cleaning tube is always in adaptive contact with the spiral pin shaft when the cleaning tube is pushed up and down by a pushing assembly to move, so that the cleaning effect of the test tubes is improved. A special structure is adopted for limiting and matching, the cleaning pipe rotates along with the lifting movement of the cleaning pipe, and the multiple sets of cleaning cotton strips are thrown out by centrifugal rotation to be in a radiation dispersion state and play a role in vertically and deeply washing the inner wall of the test tube along with sprayed cleaning liquid.
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Description

Technical Field

[0001] The present invention relates to the field of medical instrument cleaning and disinfection equipment, and more specifically, to an all-round clamping and flushing device for medical inspection glass instruments. Background Art

[0002] Due to the variety of inspection types and the large number of patients in the inspection department, the demand for medical instruments by medical staff is increasing, and the cleaning and disinfection of medical instruments have become a serious concern for people;

[0003] Currently, most common inspection instrument cleaning and disinfection equipment mostly adopts the methods of flushing and drying. The inspection instruments are placed on the rack in the cleaning box and flushed with disinfectant, and after flushing, they are sterilized and dried by a sterilization lamp;

[0004] In the process of flushing, the inspection instruments are generally stacked directly in the cleaning basket for overall cleaning. Inevitably, it is difficult to clean the medical devices stacked together thoroughly, and there is a problem of incomplete cleaning. Especially for glass instruments, such as test tubes of various styles, the diameters of their tube openings are different, and it is difficult to uniformly clamp and position them. In addition, glass instruments such as test tubes have a certain depth. On the one hand, it is difficult to completely clean the inner wall, and on the other hand, if they are still cleaned collectively in the cleaning basket in a simple way, the glass instruments are prone to collide with each other when flushed with a high-pressure water gun, and inevitably, the phenomenon of end face damage will occur;

[0005] Therefore, we propose an all-round clamping and flushing device for medical inspection glass instruments for the above problems. Summary of the Invention

[0006] The purpose of the present invention is to solve the above problems. Now, an all-round clamping and flushing device for medical inspection glass instruments is provided. By adding multiple groups of clamping components distributed at intervals in the cleaning box, it is used for "non-contact" decentralized clamping of test tubes with different pipe diameters, and an all-round flushing method combining "inner and outer cross-type" flushing and "front and back three-round type" flushing is adopted to effectively flush the inner and outer walls of the test tubes specifically. A spiral groove matching the spiral pin shaft is opened on the cleaning pipe, and the cleaning pipe is always in adaptive contact with the spiral pin shaft. With special structure limit cooperation, the cleaning pipe realizes rotational motion while lifting, and multiple groups of cleaning cotton strips are centrifugally rotated and thrown out in a radially dispersed state, along with the sprayed cleaning liquid, which plays an up and down deep scrubbing role on the inner wall of the test tube.

[0007] The object of the present invention can be achieved by the following technical solutions: An all-round clamping and flushing device for medical inspection glassware, including a cleaning tank with a driving box at the bottom end. A partition is installed in the cleaning tank, and the partition divides the interior of the cleaning tank into an upper cleaning cavity and a lower installation cavity. A plurality of clamping components are evenly distributed on the upper end wall of the partition. The clamping component includes a fixed column fixedly embedded on the partition. The end of the fixed column above the partition is fixedly sleeved with a drain pan that reserves a water drainage space with the upper end face of the partition. A plurality of magnetic clamping members are annularly and rotatably distributed on the fixed column. A plurality of electromagnetic sheets matching the positions of the magnetic clamping members are annularly distributed on the upper end wall of the drain pan;

[0008] The lower end of the fixed column penetrates through the partition and is connected to a support pipe installed on the inner bottom wall of the lower installation cavity. A cleaning pipe is movably installed in the support pipe. The upper end of the cleaning pipe movably penetrates through the fixed column and extends outwards. A plurality of groups of spray holes are opened on its upper end wall. The bottom end of the cleaning pipe is fixedly connected to a pushing component communicated with its interior. The bottom ends of the plurality of pushing components sequentially penetrate through the support pipe, the bottom end of the cleaning tank and extend into the driving box and are fixedly connected to a lower water tank. Electric slide rails for vertically lifting the lower water tank are embedded and installed on the left and right end walls of the driving box;

[0009] A spiral groove is opened on the end wall of the cleaning pipe located inside the support pipe. A spiral limiting component extending into the spiral groove is embedded and installed on the support pipe. And a plurality of groups of cleaning cotton strips spaced up and down from the spray holes are also distributed on the upper end wall of the cleaning pipe.

[0010] Further, the magnetic clamping member includes a sleeve shaft rotatably installed on the fixed column. The sleeve shaft includes an upper shaft and a lower shaft arranged up and down. An arc-shaped flap located above the drain pan is fixedly connected to the outer end wall of the upper shaft. A torsion spring is sleeved on the lower shaft.

[0011] Further, an activity cavity for the rotation of the arc-shaped flap is opened on the outer end wall of the fixed column. The upper shaft is rotatably connected in the activity cavity. A hollow cavity for the rotational installation of the lower shaft is opened at the bottom end of the activity cavity. The bottom end of the upper shaft movably penetrates into the hollow cavity. The upper and lower ends of the torsion spring are respectively fixedly connected to the outer wall of the bottom end of the upper shaft and the bottom end wall of the hollow cavity.

[0012] Further, a magnetic strip magnetically attracted to the electromagnetic sheet is embedded and installed on the end wall of the arc-shaped flap close to the upper shaft. The arc-shaped flap is located between two adjacent electromagnetic sheets in the initial state, and the position of the magnetic strip is set in the direction directly opposite to one of the electromagnetic sheets.

[0013] Further, the pushing component includes a push rod fixedly connected to the driving box and communicating with the inside of the driving box. The upper end of the push rod sequentially penetrates through the driving box, the cleaning box and extends into the cleaning pipe, and is fixedly connected with a movable sleeve. The movable sleeve is fixedly sleeved on the bottom wall of the cleaning pipe and is movably connected with the inner wall of the support pipe. A buffer spring sleeved on the push rod is arranged between the movable sleeve and the inner bottom wall of the cleaning box.

[0014] Further, the spiral limiting component includes a spiral pin shaft movably embedded in the spiral groove. The outer end of the spiral pin shaft is connected with a limiting rod fixedly embedded in the outer end wall of the support pipe. The spiral pin shaft is adapted to the shape, width and spiral direction of the spiral groove. Thus, when the cleaning pipe moves up and down, the spiral groove is always in adaptive contact with the spiral pin shaft to realize the rotation operation of the cleaning pipe.

[0015] Further, the upper water tank and the lower water tank are both externally connected with water inlet pipes, and the bottom end of the partition board is externally connected with a sewage discharge pipe extending outside the cleaning box.

[0016] A method for using an all-round clamping and flushing device for medical inspection glassware includes the following steps:

[0017] A. First, place the test tube bodies to be cleaned and processed on multiple draining trays one by one, start multiple groups of electromagnetic sheets, and the free ends of the arc-shaped flaps rotate along the axis of the sleeve shaft until the free ends of the arc-shaped flaps abut against the inner wall of the tube orifice of the test tube body;

[0018] B. Inject water into multiple push rods through the water inlet pipe. The cleaning liquid is introduced into the cleaning pipe by the push rod and is sprayed from multiple spray holes on the cleaning pipe onto the inner wall of the test tube body for the first round of inner wall flushing. The sewage after flushing falls into the cleaning cavity along with the tube orifice of the test tube body and the draining tray and is discharged through the sewage discharge pipe:

[0019] During the first round of inner wall cleaning process, use multiple groups of electric slide rails to cooperate to push the lower water tank up and down. The lower water tank drives multiple push rods to push up and down. At this time, during the vertical movement of the cleaning pipe, since the spiral pin shaft is always movably embedded and connected with the inner wall of the spiral groove, the cleaning pipe rotates while moving up and down. Multiple groups of cleaning cotton strips are rotated and thrown out in a radially dispersed state to scrub the inner wall of the test tube body up and down. At the same time, use multiple nozzles to perform the first round of flushing on the outer wall of the test tube body;

[0020] C. After the first round of flushing is completed, drain all the primary sewage, close the sewage discharge pipe, and perform the second round of flushing. During this process, continue the operation in step B. There is enough cleaning liquid stored in the cleaning cavity, and the cleaning liquid submerges the test tube body. At this time, cooperate with ultrasonic cleaning to improve the cleaning effect;

[0021] D. After the second-round flushing is completed and the secondary sewage is completely drained, continuously open the sewage pipe for the third-round flushing, continue the operations in step B. After the third-round cleaning is completed, close the water inlet and other operations. After the electromagnetic sheet is closed, multiple arc-shaped flaps retract and reset under the elastic action of the torsion spring, and then take out the test tube body outward for subsequent drying operations.

[0022] Compared with the prior art, the advantages of the present invention are as follows:

[0023] (1) In this solution, multiple sets of clamping components are arranged at intervals in the cleaning box to disperse and clamp the test tube body to be cleaned and processed in a "non-contact" manner. By using the magnetic attraction of the electromagnetic sheet on the arc-shaped flaps, the arc-shaped flaps rotate outward until their free ends abut against the inner wall of the test tube mouth, which is suitable for clamping test tubes with different mouth sizes. In addition, a cleaning tube with multiple cleaning cotton strips at the top is inserted through the fixed column. The cleaning tube is provided with spiral grooves matching the spiral limit components. During the up-and-down movement of the pushing component to push the cleaning tube, the spiral grooves are always in adaptive contact with the spiral pins. Through the special structural limit cooperation, the cleaning tube rotates while moving up and down, that is, when the cleaning tube moves up and down, multiple cleaning cotton strips are rotated and thrown out in a radially dispersed state, and together with the cleaning liquid sprayed from the spray holes, it plays a role in deeply scrubbing the inner wall of the test tube body up and down.

[0024] (2) This solution adopts an all-round flushing method combining "internal and external cross-type" flushing and "front and back three-round type" flushing. The "internal and external cross-type" flushing is beneficial for targeted flushing of the inner and outer walls of the test tube body. The cleaning tube and the nozzle are independently cleaned and cooperate with each other inside and outside to achieve a more comprehensive cleaning effect. The "front and back three-round type" flushing method first uses the "flushing and discharging while flushing" method in the first-round flushing to timely remove the deep stains flushed from the tube wall, and it is not easy to cause stains to remain on the tube wall, cleaning cavity, and cleaning structure. During the second-round flushing process, a certain water depth is combined with ultrasonic waves, which is beneficial for flushing away stubborn stains on the tube wall. During the third-round cleaning process, the first-round flushing method is continued to play a role in further cleaning and flushing. Description of the Drawings

[0025] Figure 1 is the top view of the present invention;

[0026] Figure 2 is the side sectional view of the present invention;

[0027] Figure 3 is the structural schematic diagram of the clamping component of the present invention combined with the support tube and the cleaning tube;

[0028] Figure 4 is the structural schematic diagram of the clamping component of the present invention;

[0029] Figure 5 Schematic diagram of the disassembly at the clamping assembly of the present invention;

[0030] Figure 6 Partial cross-sectional view at the clamping assembly of the present invention;

[0031] Figure 7 Partial cross-sectional view when the clamping assembly of the present invention clamps the test tube body;

[0032] Figure 8 Partial enlarged view of the joint between the cleaning tube and the spiral limiting assembly of the present invention;

[0033] Figure 9 Schematic diagram of the structure where the cleaning tube of the present invention combines with multiple groups of cleaning cotton strips;

[0034] Figure 10 Schematic diagram of the state when the cleaning tube of the present invention and multiple groups of cleaning cotton strips are working.

[0035] Explanation of the reference numerals in the figure:

[0036] 1. Cleaning box; 2. Partition board; 3. Clamping assembly; 31. Fixed column; 310. Activity cavity; 311. Hollow cavity; 32. Drainage tray; 33. Magnetic clamping piece; 331. Arc-shaped flap; 332. Sleeve shaft; 333. Torsion spring; 34. Electromagnetic sheet; 4. Test tube body; 5. Upper water tank; 6. Nozzle; 7. Support tube; 8. Cleaning tube; 801. Spiral groove; 9. Cleaning cotton strip; 10. Spiral pin shaft; 101. Limiting rod; 11. Driving box; 12. Lower water tank; 13. Electric slide rail; 14. Push rod; 15. Movable sleeve; 16. Buffer spring. Specific embodiments

[0037] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0038] Embodiment 1:

[0039] The present invention discloses an all-round clamping and flushing device for medical inspection glassware. Please refer to Figure 1 , Figure 2 , which includes a cleaning box 1 with a driving box 11 at the bottom end. A partition board 2 is installed in the cleaning box 1. The partition board 2 divides the inside of the cleaning box 1 into an upper cleaning cavity and a lower installation cavity. A plurality of clamping assemblies 3 are evenly distributed on the upper end wall of the partition board 2.

[0040] Please refer to Figures 2 - 7, the clamping assembly 3 includes a fixed post 31 fixedly embedded and installed on the partition 2. The end of the fixed post 31 located above the partition 2 is fixedly sleeved with a water draining tray 32 that reserves a water draining space with the upper end face of the partition 2. A plurality of magnetic clamping members 33 are annularly and rotatably distributed on the fixed post 31. A plurality of electromagnetic sheets 34 that are position-matched with the magnetic clamping members 33 are annularly distributed on the upper end wall of the water draining tray 32;

[0041] Among them, the magnetic clamping member 33 includes a sleeve shaft 332 rotatably installed on the fixed post 31. The sleeve shaft 332 includes an upper shaft and a lower shaft arranged up and down. An arc-shaped flap 331 located above the water draining tray 32 is fixedly connected to the outer end wall of the upper shaft. A torsion spring 333 is sleeved on the lower shaft. An activity cavity 310 for the rotation and movement of the arc-shaped flap 331 is opened on the outer end wall of the fixed post 31. The upper shaft is rotatably connected in the activity cavity 310. A hollow cavity 311 for the rotational installation of the lower shaft is opened at the bottom of the activity cavity 310. The bottom end of the upper shaft movably penetrates the bottom of the activity cavity 310 and extends into the hollow cavity 311 to be fixedly connected to the lower shaft. The upper and lower ends of the torsion spring 333 are respectively fixedly connected to the outer wall of the bottom end of the upper shaft and the bottom wall of the hollow cavity 311. A magnetic strip magnetically attracted to the electromagnetic sheet 34 is embedded and installed on the end wall of the arc-shaped flap 331 close to the upper shaft;

[0042] In the initial state, the arc-shaped flap 331 is located between two adjacent electromagnetic sheets 34, and the position of the magnetic strip is set in the direction facing one of the electromagnetic sheets 34. In the initial state, relying on the elastic action of the torsion spring 333, the arc-shaped flap 331 is closely attached to the inner wall of the activity cavity 310. The plurality of arc-shaped flaps 331 are attached to the fixed post 31 in a stored state. After the test tube body 4 to be cleaned is sleeved on the top end of the water draining tray 32, a plurality of magnetic clamping members 33 are located inside the tube orifice of the test tube body 4, and a plurality of electromagnetic sheets 34 are located outside the tube orifice of the test tube body 4;

[0043] At this time, the electromagnetic sheet 34 is started. Relying on the magnetic attraction of the electromagnetic sheet 34 corresponding to the position to the magnetic strip, the free end of the arc-shaped flap 331 rotates along the axis of the sleeve shaft 332. Since the sleeve shaft 332 and the fixed post 31 are eccentrically arranged, after the plurality of arc-shaped flaps 331 rotate outwards, their overall limiting range gradually expands until the free end of the arc-shaped flap 331 abuts against the inner wall of the tube orifice of the test tube body 4 to complete the limiting of the test tube body 4, which is applicable to clamping test tube bodies 4 with different diameters. Multiple groups of clamping assemblies 3 are evenly spaced and distributed, and are used for "non-contact" decentralized clamping of test tube bodies 4 with different pipe diameters to be cleaned. Multiple groups of test tube bodies 4 to be cleaned will not collide and be damaged during the cleaning process.

[0044] Please refer to Figure 2 、 Figure 7 、 Figure 8, the lower end of the fixed column 31 penetrates through the partition plate 2 and is connected to a support pipe 7 installed on the bottom wall of the lower installation cavity. A cleaning pipe 8 is movably installed in the support pipe 7. The upper end of the cleaning pipe 8 movably penetrates through the fixed column 31 and extends outward. A plurality of spray holes are formed in the upper end wall of the cleaning pipe 8. The bottom end of the cleaning pipe 8 is fixedly connected to a pushing component communicated with its interior. The bottom end of the pushing component sequentially penetrates through the support pipe 7 and the bottom end of the cleaning box 1 and extends into the driving box 11 to be fixedly connected to a lower water tank 12. Electric slide rails 13 for vertically lifting the lower water tank 12 are embedded and installed on the left and right end walls of the driving box 11. The upper water tank 5 and the lower water tank 12 are both externally connected with water inlet pipes, and a sewage pipe extending outside the cleaning box 1 is externally connected to the bottom end of the partition plate 2.

[0045] Among them, the pushing component includes a push rod 14 fixedly connected to the driving box 11 and communicated with the interior of the driving box 11. The upper end of the push rod 14 sequentially penetrates through the driving box 11 and the cleaning box 1 and extends into the cleaning pipe 8 to be fixedly connected to a movable sleeve 15. The movable sleeve 15 is fixedly sleeved on the bottom end wall of the cleaning pipe 8 and is movably connected to the inner wall of the support pipe 7. A buffer spring 16 sleeved on the push rod 14 is arranged between the movable sleeve 15 and the inner bottom wall of the cleaning box 1. The lower water tank 12 is pushed up and down by means of the cooperation of a plurality of electric slide rails 13. The lower water tank 12 drives a plurality of push rods 14 connected to it to move up and down. The push rods 14 conduct the cleaning liquid into the cleaning pipe 8 and realize the up and down movement of the cleaning pipe 8, which is applicable to the flushing of test tube bodies 4 with different diameters and depths. Moreover, during the up and down reciprocating movement of the cleaning pipe 8, the cleaning liquid sprayed from a plurality of spray holes uniformly flushes the inner wall of the test tube body 4, which is beneficial to achieving a full - aspect flushing effect. The cooperation between the upper water tank 5 and a plurality of nozzles 6 realizes the flushing of the outer walls of a plurality of test tube bodies 4. The sewage after flushing is discharged through the sewage pipe.

[0046] Embodiment 2:

[0047] On the basis of Embodiment 1, this embodiment further optimizes the structure of the cleaning pipe 8 and cooperates with a plurality of cleaning cotton strips 9 that are in a hanging state in the initial state to further improve the flushing effect of the cleaning pipe 8 on the inner wall of the test tube body 4. Specifically as follows:

[0048] Please refer to Figures 7 - 10 , a spiral groove 801 is formed in the end wall of the cleaning pipe 8 located inside the support pipe 7. A spiral limiting component extending into the spiral groove 801 is embedded and installed on the support pipe 7, and a plurality of cleaning cotton strips 9 spaced up and down from the spray holes are also distributed on the upper end wall of the cleaning pipe 8;

[0049] Specifically, the spiral limit assembly includes a spiral pin shaft 10 movably embedded in the spiral groove 801. The outer end of the spiral pin shaft 10 is connected to a limit rod 101 fixedly embedded in the outer end wall of the support tube 7. The spiral pin shaft 10 is adapted to the shape, width and spiral direction of the spiral groove 801. A plurality of electric slide rails 13 are used in cooperation to push the lower water tank 12 in the vertical direction. The lower water tank 12 drives a plurality of push rods 14 connected thereto to move up and down. At this time, during the vertical movement of the cleaning tube 8, since the spiral pin shaft 10 is always movably embedded and connected to the inner wall of the spiral groove 801, the spiral limit assembly has a guiding and limiting effect on the movement of the cleaning tube 8. Therefore, while the cleaning tube 8 moves up and down in the vertical direction, it rotates. That is, when the cleaning tube 8 moves up and down, a plurality of groups of cleaning cotton strips 9 are centrifugally rotated and thrown out in a radially dispersed state. Along with the cleaning liquid sprayed from the spray holes with changed orientations, the cleaning liquid is also centrifugally thrown out, which plays an all-round deep washing role on the inner wall of the test tube body 4 in the up and down directions and can treat stubborn stains.

[0050] Combined with Embodiment 1 and Embodiment 2, a method for using an all-round clamping and flushing device for medical test glassware includes the following steps:

[0051] A. First, place the test tube bodies 4 to be cleaned and processed one by one on a plurality of draining trays 32. The plurality of test tube bodies 4 are spaced apart. Start a plurality of electromagnetic sheets 34. Relying on the magnetic attraction of the electromagnetic sheets 34 corresponding to each other in position on the arc-shaped flaps 331, the free ends of the arc-shaped flaps 331 rotate along the axis of the sleeve shaft 332 until the free ends of the arc-shaped flaps 331 abut against the inner wall of the tube orifice of the test tube body 4 to complete the limitation of the test tube body 4.

[0052] B. Inject water into a plurality of push rods 14 through the water inlet pipe connected to the lower water tank 12. The cleaning liquid is introduced into the cleaning tube 8 from the push rods 14 and is sprayed from a plurality of spray holes on the cleaning tube 8 onto the inner wall of the test tube body 4 for a round of inner wall flushing. The sewage after flushing falls into the cleaning tank along the tube orifice of the test tube body 4 and the draining tray 32 and is discharged through the sewage pipe.

[0053] During a round of inner wall cleaning, a plurality of electric slide rails 13 are used in cooperation to push the lower water tank 12 in the vertical direction. The lower water tank 12 drives a plurality of push rods 14 to move up and down. At this time, during the vertical movement of the cleaning tube 8, since the spiral pin shaft 10 is always movably embedded and connected to the inner wall of the spiral groove 801, the spiral pin shaft 10 has a guiding and limiting effect on the movement of the cleaning tube 8. Therefore, while the cleaning tube 8 moves up and down in the vertical direction, it rotates. That is, when the cleaning tube 8 moves up and down, a plurality of groups of cleaning cotton strips 9 are rotated and thrown out in a radially dispersed state, which plays an up and down washing role on the inner wall of the test tube body 4. At the same time, a plurality of nozzles 6 are used to perform a round of flushing on the outer wall of the test tube body 4.

[0054] C. After the first round of flushing is completed, drain all the primary sewage, then close the sewage discharge pipe and conduct the second round of flushing. During this process, continue the operation in step B. There is sufficient cleaning liquid stored in the cleaning chamber, and the cleaning liquid submerges the test tube body 4. At this time, combined with ultrasonic cleaning, it is beneficial to improve the cleaning effect.

[0055] D. After the second round of flushing is completed, drain all the secondary sewage, then continuously open the sewage discharge pipe and conduct the third round of flushing. Continue the operation in step B. After the third round of cleaning is completed, close the water inlet and other operations. After the electromagnetic sheet 34 is closed, multiple arc-shaped flaps 331 retract and reset under the elastic action of the torsion spring 333, and then take out the test tube body 4 outward to perform the subsequent drying operation.

[0056] The above; is only the preferred specific embodiment of the present invention; however, the protection scope of the present invention is not limited thereto; any person skilled in the art within the technical scope disclosed by the present invention; according to the technical solution of the present invention and its improved concept, making equivalent replacements or changes; should be covered by the protection scope of the present invention.

Claims

1. An all-round clamping and flushing device for medical inspection glassware, including a cleaning box (1) with a drive box (11) at the bottom end, characterized in that: A partition plate (2) is installed in the cleaning tank (1). The partition plate (2) divides the inside of the cleaning tank (1) into an upper cleaning cavity and a lower installation cavity. A plurality of clamping components (3) are evenly distributed on the upper end wall of the partition plate (2). The clamping component (3) includes a fixed column (31) fixedly embedded and installed on the partition plate (2). The end of the fixed column (31) above the partition plate (2) is fixedly sleeved with a water draining tray (32) that reserves a water draining space with the upper end surface of the partition plate (2). A plurality of magnetic clamping pieces (33) are annularly and rotatably distributed on the fixed column (31). A plurality of electromagnetic sheets (34) that match the positions of the magnetic clamping pieces (33) are annularly distributed on the upper end wall of the water draining tray (32). The lower end of the fixed column (31) penetrates through the partition plate (2) and is connected to a support pipe (7) installed on the inner bottom wall of the lower installation cavity. A cleaning pipe (8) is movably installed in the support pipe (7). The upper end of the cleaning pipe (8) movably penetrates through the fixed column (31) and extends outward. A plurality of groups of spray holes are opened on its upper end wall. The bottom end of the cleaning pipe (8) is fixedly connected to a pushing component communicated with its inside. The bottom ends of a plurality of the pushing components sequentially penetrate through the support pipe (7), the bottom end of the cleaning tank (1) and extend into the driving box (11) and are fixedly connected to a lower water tank (12). Electric slide rails (13) for vertically lifting the lower water tank (12) are embedded and installed on the left and right end walls of the driving box (11). A spiral groove (801) is opened on the end wall of the cleaning pipe (8) inside the support pipe (7). A spiral limiting component extending into the spiral groove (801) is embedded and installed on the support pipe (7). And a plurality of groups of cleaning cotton strips (9) that are spaced up and down from the spray holes are also distributed on the upper end wall of the cleaning pipe (8).

2. The all-round clamping and flushing device for a medical test glassware according to claim 1, characterized in that: The magnetic clamping piece (33) includes a sleeve shaft (332) rotatably installed on the fixed column (31). The sleeve shaft (332) includes an upper shaft and a lower shaft arranged up and down. An arc-shaped flap (331) located above the water draining tray (32) is fixedly connected to the outer end wall of the upper shaft. A torsion spring (333) is sleeved on the lower shaft.

3. The all-round clamping and flushing device for a medical inspection glassware according to claim 2, wherein: An activity cavity (310) for the rotation of the arc-shaped flap (331) is opened on the outer end wall of the fixed column (31). The upper shaft is rotatably connected to the activity cavity (310). A hollow cavity (311) for the rotational installation of the lower shaft is opened at the bottom end of the activity cavity (310). The bottom end of the upper shaft movably penetrates into the hollow cavity (311). The upper and lower ends of the torsion spring (333) are respectively fixedly connected to the outer wall of the bottom end of the upper shaft and the bottom end wall of the hollow cavity (311).

4. The all-round clamping and flushing device for a medical test glassware according to claim 3, characterized in that: A magnetic strip magnetically attracted to the electromagnetic sheet (34) is embedded and installed on the end wall of the arc-shaped flap (331) close to the upper shaft. The arc-shaped flap (331) is located between two adjacent electromagnetic sheets (34) in the initial state, and the position of the magnetic strip is set in the direction directly opposite to one of the electromagnetic sheets (34).

5. The all-round clamping and flushing device for a medical inspection glassware according to claim 1, characterized in that: The pushing component includes a push rod (14) fixedly connected to the driving box (11) and communicating with the inside of the driving box (11). The upper end of the push rod (14) sequentially penetrates through the driving box (11), the cleaning box (1) and extends into the cleaning pipe (8) to be fixedly connected with a movable sleeve (15). The movable sleeve (15) is fixedly sleeved on the bottom wall of the cleaning pipe (8) and is movably connected to the inner wall of the support pipe (7). A buffer spring (16) sleeved on the push rod (14) is arranged between the movable sleeve (15) and the inner bottom wall of the cleaning box (1).

6. The all-round clamping and flushing device for a medical inspection glassware according to claim 1, wherein: The spiral limiting component includes a spiral pin shaft (10) movably embedded in the spiral groove (801). The outer end of the spiral pin shaft (10) is connected with a limiting rod (101) fixedly embedded in the outer end wall of the support pipe (7).

7. The all-round clamping and flushing device for a medical inspection glassware according to claim 1, characterized in that: Both the upper water tank (5) and the lower water tank (12) are externally connected with water inlet pipes, and the bottom end of the partition plate (2) is externally connected with a sewage discharge pipe extending outside the cleaning box (1).

8. A method for using an all-round clamping and rinsing device for medical test glassware, which uses an all-round clamping and rinsing device for medical test glassware as described in any one of claims 1-7, characterized in that: It includes the following steps: A. First, place the test tube bodies (4) to be cleaned and processed on a plurality of draining trays (32) one by one, start multiple electromagnetic sheets (34), and the free end of the arc-shaped flap (331) rotates along the axis of the sleeve shaft (332) until the free end of the arc-shaped flap (331) abuts against the inner wall of the tube orifice of the test tube body (4). B. Inject water into a plurality of push rods (14) through the water inlet pipe. The cleaning liquid is introduced into the cleaning pipe (8) from the push rod (14) and is sprayed onto the inner wall of the test tube body (4) through a plurality of spray holes on the cleaning pipe (8) for the first-round inner wall flushing. The sewage after flushing falls into the cleaning cavity along the tube orifice of the test tube body (4) and the draining tray (32) and is discharged through the sewage discharge pipe: During the first-round inner wall cleaning process, use multiple groups of electric slide rails (13) to cooperate to push the lower water tank (12) up and down. The lower water tank (12) drives a plurality of push rods (14) to move up and down. At this time, during the vertical movement of the cleaning pipe (8), since the spiral pin shaft (10) is always movably embedded and connected to the inner wall of the spiral groove (801), the cleaning pipe (8) rotates while lifting and lowering. Multiple groups of cleaning cotton strips (9) are thrown out in a radially dispersed state by rotation to scrub the inner wall of the test tube body (4) up and down. At the same time, use a plurality of nozzles (6) to flush the outer wall of the test tube body (4) for the first round; C. After the first-round flushing is completed, drain all the primary sewage, close the sewage discharge pipe, and perform the second-round flushing. During this process, continue the operation in step B. There is enough cleaning liquid stored in the cleaning cavity, and the cleaning liquid submerges the test tube body (4). At this time, cooperate with ultrasonic cleaning to improve the cleaning effect; D. After the second-round flushing is completed, drain all the secondary sewage, then continuously open the sewage discharge pipe, perform the third-round flushing, and continue the operation in step B. After the third-round cleaning is completed, close the water inlet and other operations. After the electromagnetic sheets (34) are closed, multiple groups of arc-shaped flaps (331) retract and reset under the elastic action of the torsion springs (333), and then take out the test tube body (4) outward for subsequent drying operation.