Ultrasonic perfusion lumen instrument cleaning device

By setting up a moving platform and hollow tube in the scrubbing tank, combined with brush bristles and ultrasonic cleaning, the problem of blockage at the corners of irregularly shaped suction tubes is solved, achieving thorough cleaning of irregularly shaped suction tubes and removal of dead corners, thus improving cleaning efficiency and effectiveness.

CN120901032APending Publication Date: 2025-11-07CHONGQING BISHAN DISTRICT PEOPLES HOSPITAL
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Patent Information

Application Number
CN202511243423.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-02
Publication Date
2025-11-07

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Abstract

The invention discloses an ultrasonic perfusion lumen instrument cleaning device, and particularly relates to the field of medical lumen instrument cleaning.The ultrasonic perfusion lumen instrument cleaning device comprises a cleaning pool, a scrubbing groove and a mounting groove are formed in the cleaning pool, the mounting groove communicates with one end of the scrubbing groove, a moving platform is movably arranged in the scrubbing groove, and a connector base is positioned and mounted in the scrubbing groove; a suction pipe is detachably installed on the moving platform, the connector base comprises a water passing pipe, an adapter plate is installed on one side of the water passing pipe, a hollow pipe is rotatably installed on the adapter plate, and the hollow pipe is movably arranged in the suction pipe; a first linear driver is mounted in the mounting groove, and the output end of the first linear driver is connected with the moving platform. According to the invention, the required pulse cleaning intensity is reduced, so that the separated and crushed residues are more easily discharged, and the blockage phenomenon caused by the fact that the residues in the tube cavity are gradually compacted at corners due to insufficient pulse cleaning intensity is avoided, so that the cleaning work is smoothly completed.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of cleaning luminal medical instruments, and more particularly to an ultrasonic perfusion luminal instrument cleaning device. BACKGROUND

[0002] In orthopedic surgery, some luminal instruments need to be cleaned for repeated use, such as special suction tubes, which are used to suck bone debris, blood, tissue fluid, etc. during the operation to keep the surgical field clear. Because of its hollow luminal structure, it is easy to leave contaminants, so it needs to be strictly cleaned to ensure safety for reuse. In order to meet the requirements of strength, stability and precision in orthopedic surgery, the special suction tube for orthopedics (referred to as suction tube) needs to cope with negative pressure suction, instrument collision and disinfectant soaking. Soft material is easy to deform and cannot meet the needs of guidance, support and negative pressure operation, so the material of the suction tube is generally hard stainless steel.

[0003] The prior art directly puts the linear suction tube into the ultrasonic cleaning tank, one end of the tube body is connected to the ultrasonic pulse head, and the inside of the tube cavity of the linear suction tube is cleaned by pulse, so that the stubborn bone debris, blood, tissue fluid and other residues in the tube cavity are completely cleaned out from the other end of the tube body.

[0004] However, in some special clinical operations, according to the functional requirements of different operations, the shape of the suction tube used is also different. For example, the L-shaped suction tube with a 90° right-angle bend at the end of the tube body is used in hip replacement surgery. When the acetabulum is polished or the femoral canal is reamed, the L-shaped suction tube can be vertically inserted into the acetabular fossa or femoral medullary cavity, and the right-angle end directly points to the area where bone debris is generated, avoiding interference from surrounding soft tissues by using the right-angle design of the end. There is also a single-bend arc-shaped suction tube with a 120°-150° arc-shaped bend in the whole tube body, which is used in shoulder arthroscopy surgery. When the subacromial space is decompressed or the rotator cuff is repaired, the arc-shaped tube body can enter along the anterior-inferior margin of the acromion, and the end can absorb subacromial bursitis fluid and proliferative tissue. There is also a multi-bend serpentine suction tube with more than two 135° bends in the tube body (similar to S-shaped), which is used in knee arthroscopy surgery. The S-shaped design can enter along the joint space (such as the patellofemoral joint and the tibiofemoral joint), and the end can absorb synovial fluid and tissue debris when the meniscus is trimmed or the synovial membrane is removed, avoiding damage to the crossing ligament. There is also a spiral-shaped suction tube with a spiral-shaped coil in the tube body (similar to a spring shape), which is used in intramedullary nail surgery. When the intramedullary nail is inserted into the femoral medullary cavity, the spiral-shaped suction tube can rotate along the central axis of the medullary cavity and enter, and the end can absorb the residual fat particles and bone cement debris in the medullary cavity to prevent the risk of pulmonary embolism.

[0005] When using existing ultrasonic cleaning technology, the aforementioned L-shaped, single-bend arc-shaped, multi-bend serpentine, and spiral-shaped suction tubes exhibit insufficient cleaning intensity during pulse cleaning due to the presence of corners in the middle and near the end of the tube. This results in the residue inside the tube being gradually compacted and blocked, preventing the discharge of bone fragments, blood clots, and other residues from the end of the tube, thus hindering the cleaning process. Summary of the Invention

[0006] The present invention provides an ultrasonic irrigation lumen instrument cleaning device, which aims to solve the problem that existing lumen instrument cleaning devices have a rapid decrease in flushing intensity at corners during pulse cleaning, resulting in insufficient flushing intensity in the middle and end of the tube, causing the residue in the lumen to be gradually compacted and blocked.

[0007] To achieve the above objectives, the present invention provides the following technical solution: an ultrasonic irrigation lumen instrument cleaning device, comprising a cleaning tank, the cleaning tank having a brushing tank and an installation tank inside, the installation tank being connected to one end of the brushing tank, a movable platform being movably mounted inside the brushing tank, a connector seat being positioned inside the brushing tank, a suction tube being detachably mounted on the movable platform, the connector seat including a water pipe, an adapter plate being mounted on one side of the water pipe, a hollow tube being rotatably mounted on the adapter plate, and the hollow tube being movably positioned inside the suction tube; a first linear actuator being mounted inside the installation tank, the output end of the first linear actuator being connected to the movable platform, a drive motor being mounted on the adapter plate, and the drive motor driving the corresponding hollow tube to rotate.

[0008] In a preferred embodiment, a water pump is installed at one end of the cleaning tank, an ultrasonic generator is installed at the output end of the water pump, a water inlet pipe is connected to the input end of the water pump, and a control box is installed on the cleaning tank, and the control box is electrically connected to the water pump and the ultrasonic generator.

[0009] In a preferred embodiment, the mobile platform includes a collection box with a detachable cover at the bottom and a collection port at the top.

[0010] In a preferred embodiment, a positioning plate is installed on one side of the collection box, a positioning sleeve is fixedly provided on the positioning plate, and a positioning opening is provided in the middle of the positioning sleeve.

[0011] In a preferred embodiment, bristles are fixedly provided on the outer periphery of the hollow tube, and water spray holes are opened on the surface of the hollow tube, with the water spray holes and bristles being staggered.

[0012] In a preferred embodiment, the suction pipe comprises a spiral pipe and an arc pipe, both of which comprise an input part, a transition part and an output part, the transition part of the spiral pipe is spiral-shaped, and the transition part of the arc pipe is single-arc-shaped or continuously multi-arc-shaped, the collecting opening is communicated with the input part of the suction pipe, and the shape of the positioning opening of the positioning sleeve is matched with the shape of the output part of the suction pipe.

[0013] In a preferred embodiment, an auxiliary hole is formed on the outer side of the input part of the spiral pipe and the arc pipe, a side hole cleaning mechanism is arranged on the outer side of the auxiliary hole of the spiral pipe and the arc pipe, the side hole cleaning mechanism comprises a sliding plate, a soft plug is mounted on the sliding plate, and the soft plug is movably arranged in the auxiliary hole.

[0014] In a preferred embodiment, the side hole cleaning mechanism further comprises a guide plate, the sliding plate is slidably arranged on the guide plate, a support plate is fixedly arranged at the end of the guide plate away from the sliding plate, a second linear driver is mounted on the support plate, and the output end of the second linear driver is connected with the sliding plate.

[0015] In a preferred embodiment, a contact switch is mounted in the inside of the collecting box, a butt joint block is fixedly arranged at one end of the hollow pipe, the contact switch is movably contacted with the butt joint block, and the contact switch is used for controlling the working of the second linear driver.

[0016] In a preferred embodiment, an elastic limiting piece is mounted on the guide plate, a limiting step is arranged on the side of the guide plate away from the sliding plate, and the limiting step is used for supporting the opening of the output part of the spiral pipe and the arc pipe.

[0017] The present application has the following advantages: The present application can make the separated and crushed residues more easily discharged by reducing the required pulse cleaning intensity, avoid the residues in the pipe cavity from being compacted and blocked at the corner due to insufficient pulse cleaning intensity, and thus successfully complete the cleaning work.

[0018] The present application can increase the annular rotary brushing on the basis of the forward and backward brushing, and thus the brushing times are more and the brushing strength is stronger, the brushing effect is more thorough, manual brushing is not needed, manpower is saved, the cleaning process can be homogenized, and the cleaning effect is enhanced by the cavitation effect of the ultrasonic cleaning machine in the cleaning process, and the water or cleaning liquid is continuously sprayed in the brushing process of the cleaning brush, and the cleaning effect is further enhanced.

[0019] The second linear driver pushes the sliding plate to be close to the input part of the suction pipe, the soft plug is arranged in the auxiliary hole, the butt joint block is pulled back to be separated from the contact switch, the second linear driver is reset to drive the sliding plate to be retracted, the soft plug is pulled out of the auxiliary hole, the process is repeated for multiple times, the pollutants remaining in the auxiliary hole can be cleaned, the "dead angle" of cleaning is eliminated, and the cleaning is ensured to be thorough. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 The overall structure of the present application is shown in the schematic diagram.

[0021] Figure 2 The schematic diagram of the present application is shown in the schematic diagram.

[0022] Figure 3 The schematic diagram of the present application is shown in the schematic diagram.

[0023] Figure 4 The schematic diagram of the present application is shown in the schematic diagram.

[0024] Figure 5 The schematic diagram of the present application is shown in the schematic diagram.

[0025] Figure 6 The schematic diagram of the present application is shown in the schematic diagram.

[0026] Figure 7 The schematic diagram of the present application is shown in the schematic diagram.

[0027] Figure 8 The schematic diagram of the present application is shown in the schematic diagram.

[0028] Figure 9 The schematic diagram of the present application is shown in the schematic diagram.

[0029] Figure 10 The schematic diagram of the present application is shown in the schematic diagram.

[0030] The drawing mark is: 1, cleaning pool; 11, brushing groove; 12, installation groove; 13, water pump; 14, ultrasonic generator; 15, water receiving pipe; 16, first linear driver; 17, control box; 2, moving platform; 21, collection box; 22, cover plate; 23, collection port; 24, positioning plate; 25, positioning sleeve; 26, contact switch; 3, connector seat; 31, water pipe; 32, adapter plate; 321, water cavity; 322, small bearing; 323, communication port; 33, hollow tube; 34, brush; 35, butt joint block; 36, water injection hole; 4, suction tube; 41, spiral tube; 411, output part; 412, transition part; 413, input part; 414, auxiliary hole; 42, arc-shaped tube; 5, side hole cleaning mechanism; 51, guide plate; 511, limiting step; 52, support plate; 53, sliding plate; 54, second linear driver; 55, soft plug; 56, elastic limiting sheet. DETAILED DESCRIPTION

[0031] The application will be described in further detail below with reference to the drawings. It is necessary to point out here that the following specific embodiments are only used to further illustrate the application and cannot be understood as limiting the scope of protection of the application. Those skilled in the art can make some non-essential improvements and adjustments to the application according to the above application content.

[0032] The application will be described in further detail below with reference to the drawings. It is necessary to point out here that the following specific embodiments are only used to further illustrate the application and cannot be understood as limiting the scope of protection of the application. Those skilled in the art can make some non-essential improvements and adjustments to the application according to the above application content. Figures 1 to 8 An ultrasonic perfusion pipe cavity instrument cleaning device, which comprises a cleaning pool 1, a brush cleaning groove 11 and a mounting groove 12 are arranged in the cleaning pool 1, the mounting groove 12 is arranged at one end of the brush cleaning groove 11 in communication, a movable platform 2 is movably arranged in the brush cleaning groove 11, a connector seat 3 is fixedly arranged in the brush cleaning groove 11, a suction pipe 4 is detachably arranged on the movable platform 2, the connector seat 3 comprises a water pipe 31, a transition plate 32 is arranged on one side of the water pipe 31, a hollow pipe 33 is rotatably arranged on the transition plate 32 and movably arranged in the suction pipe 4; a first linear driver 16 is arranged in the mounting groove 12, the output end of the first linear driver 16 is connected with the movable platform 2, a driving motor is arranged on the transition plate 32 and drives the corresponding hollow pipe 33 to rotate.

[0033] It should be noted that the depth of the mounting groove 12 is greater than the depth of the brush cleaning groove 11, and a disinfection device such as a disinfection pipe can be arranged in the mounting groove 12 to dry and disinfect after cleaning, the water pipe 31 and the transition plate 32 are communicated through the connector seat 3, the hollow pipe 33 is arranged in the transition plate 32 through a small bearing 322, a water cavity 321 is arranged in the transition plate 32 and directly communicated with the hollow pipe 33, and the water cavity 321 supplies water through a communication port 323.

[0034] In this embodiment, the specific implementation scenario is that the used suction tube 4 is pretreated first to soften the residual pollutants inside the lumen, thereby reducing the subsequent cleaning resistance. All types of suction tubes 4 need to be pretreated first to avoid the pollutants from being firmly attached to the inner wall of the lumen after drying. The pretreatment is performed by instant soaking, that is, the suction tube 4 is soaked in an enzyme washing solution containing protease at 37-40 DEG C immediately after the operation, the reference concentration of the enzyme washing solution is 1:100, the soaking time is 5-10 minutes, the enzyme washing solution quickly decomposes the fibrin in the blood clots and the organic matter on the surface of the bone debris, and the pollutants in the corner dead angle of the suction tube 4 are softened. Then, the suction tube 4 is installed on the moving platform 2, the initial position of the moving platform 2 is inside the installation groove 12, the axis of the suction tube 4 coincides with the axis of the hollow tube 33, the moving platform 2 is gradually moved close to the joint seat 3 by the first linear driver 16, and the hollow tube 33 gradually enters the lumen of the corresponding suction tube 4. This process can be regarded as the continuous advancement of the hollow tube 33 in the lumen of the suction tube 4, and the residual pollutants inside the lumen are pushed out. In the advancement process of the hollow tube 33, the residual pollutants in the lumen are separated and crushed by rotating the hollow tube 33 driven by the driving motor, the required pulse cleaning intensity is reduced, the separated and crushed residual pollutants are more easily discharged, the residual pollutants in the lumen are prevented from being compacted due to insufficient pulse cleaning intensity at the corner and causing blockage, and thus the cleaning work is successfully completed.

[0035] Further, the water pump 13 is installed at one end of the cleaning pool 1, the output end of the water pump 13 is provided with the ultrasonic generator 14, the input end of the water pump 13 is connected with the water inlet pipe 15, the control box 17 is installed on the cleaning pool 1, and the control box 17 is electrically connected with the water pump 13 and the ultrasonic generator 14.

[0036] It should be noted that the water inlet pipe 15 is connected with an external water tank, the water pump 13 provides cleaning water for the ultrasonic generator 14, the ultrasonic generator 14 performs pulse delivery on the cleaning water, the cleaning water entering the hollow tube 33 inside the joint seat 3 has pulse performance, and the residual pollutants in the lumen are flushed out.

[0037] Further, the moving platform 2 comprises the collection box 21, and the bottom of the collection box 21 is detachably provided with the cover plate 22. The top of the collection box 21 is provided with the collection opening 23.

[0038] It should be noted that the collection box 21 collects and stores the pollutants through the collection opening 23, and the pollutants collected by the collection box 21 can be concentrated and treated after the cover plate 22 is opened.

[0039] Further, the collection box 21 is provided with the positioning plate 24 on one side, the positioning plate 24 is fixedly provided with the positioning sleeve 25, and the middle of the positioning sleeve 25 is provided with the positioning opening.

[0040] It should be noted that the plurality of positioning sleeves 25 are supported by the positioning plate 24, the pipe body of the suction pipe 4 is clamped by the positioning sleeves 25, and the discharge port of the suction pipe 4 is aligned with the collection port 23.

[0041] Further, the outer periphery of the hollow pipe 33 is fixedly provided with bristles 34, and the surface of the hollow pipe 33 is provided with water spraying holes 36, and the water spraying holes 36 are arranged in a staggered manner with the bristles 34.

[0042] It should be noted that the bristles 34 provide the functions of separating and crushing the pollutants, and water is sprayed to the inner wall of the suction pipe 4 through the water spraying holes 36.

[0043] Further, the suction pipe 4 includes a spiral pipe 41 and an arc-shaped pipe 42, the spiral pipe 41 and the arc-shaped pipe 42 each include an input portion 413, a transition portion 412 and an output portion 411, the transition portion 412 of the spiral pipe 41 is spiral-shaped, the transition portion 412 of the arc-shaped pipe 42 is single-arc-shaped or continuously multi-arc-shaped, the collection port 23 is in communication with the input portion 413 of the suction pipe 4, and the shape of the positioning port of the positioning sleeve 25 is matched with the shape of the output portion 411 of the suction pipe 4.

[0044] It should be noted that, referring to the L-shaped, single-bend arc-shaped, multi-bend serpentine-shaped and spiral-shaped suction pipes 4 mentioned in the background art, the transition portions 412 of the L-shaped, single-bend arc-shaped and multi-bend serpentine-shaped suction pipes 4 are all linear arc-shaped.

[0045] In the embodiment, the installation scene is as follows: the output part 411 of the spiral pipe 41 or the arc-shaped pipe 42 is clamped on the positioning sleeve 25, the outlet of the input part 413 is aligned with the collecting port 23, the hollow pipe 33 is made of flexible nylon or nickel-titanium alloy material, can be slightly bent, has good resilience, is suitable for the shape of the transition part 412 of the spiral pipe 41 or the arc-shaped pipe 42, the hollow pipe 33 is slowly inserted from the inlet end of the suction pipe 4, actively bends in the process of encountering the corner, and slowly rotates the hollow pipe 33 in the clockwise / counterclockwise alternating mode, so that the bristles 34 are elastically attached to the inner wall of the corner of the suction pipe 4, the bristles 34 are prevented from falling off due to forced pushing, and the brushing action is mainly forward and backward movement and rotation brushing, the forward and backward reciprocating movement in the range of 10-15 cm in the lumen of the suction pipe 4 is performed at a speed in the range of 2-3 cm / s, the bone chips and blood clots attached to the pipe wall are removed through friction of the bristles 34, the hollow pipe 33 is rotated in the clockwise / counterclockwise alternating mode every 3-5 cm, so that the residues at the corners of the transition part 412 are cleaned, and the brushing effect is further enhanced.

[0046] Referring to the drawings accompanying the specification Figures 7 to 10 In order to enhance the suction effect, the outer side of the input part 413 at the end of the suction pipe is designed with an auxiliary hole 414, and the residues such as bone chips and blood clots at the end are easy to enter the auxiliary hole 414 and remain, and the bristles 34 cannot enter the auxiliary hole 414 to clean, so that a cleaning “dead angle” is formed, and pollution problems occur due to incomplete cleaning in the auxiliary hole 414.

[0047] In order to solve the problem, the following technical scheme is further provided: the outer side of the input part 413 of the spiral pipe 41 and the arc-shaped pipe 42 is provided with an auxiliary hole 414, the outer side of the auxiliary hole 414 of the spiral pipe 41 and the arc-shaped pipe 42 is provided with a side hole cleaning mechanism 5, the side hole cleaning mechanism 5 includes a sliding plate 53, a soft plug 55 is installed on the sliding plate 53, and the soft plug 55 is movably arranged in the auxiliary hole 414.

[0048] It should be noted that one end of the soft plug 55 is conically arranged, so as to facilitate entering the auxiliary hole 414.

[0049] Further, the side hole cleaning mechanism 5 further comprises a guide plate 51, the sliding plate 53 is slidably arranged on the guide plate 51, a supporting plate 52 is fixedly arranged at one end of the guide plate 51 away from the sliding plate 53, the second linear actuator 54 is installed on the supporting plate 52, and the output end of the second linear actuator 54 is connected with the sliding plate 53.

[0050] It should be noted that the second linear actuator 54 automatically drives the sliding plate 53 to approach the input portion 413 of the suction tube 4.

[0051] Further, the inside of the collecting box 21 is installed with a contact switch 26, one end of the hollow tube 33 is fixedly arranged with a butt block 35, the contact switch 26 is in movable contact with the butt block 35, and the contact switch 26 is used to control the working of the second linear actuator 54.

[0052] It should be noted that the contact between the contact switch 26 and the butt block 35 controls the starting of the second linear actuator 54.

[0053] Further, the guide plate 51 is installed with elastic limiting pieces 56, one side of the guide plate 51 away from the sliding plate 53 is a limiting step 511 corresponding to the elastic limiting pieces 56, and the limiting step 511 is used to support the opening of the output portion 411 of the spiral tube 41 and the arc-shaped tube 42.

[0054] It should be noted that the input portion 413 of the suction tube 4 is circumferentially clamped and positioned by the plurality of elastic limiting pieces 56, and the input portion 413 of the suction tube 4 is vertically positioned by the limiting step 511.

[0055] In the embodiment, the implementation scenario is specifically as follows: after the hollow tube 33 penetrates through the input portion 413 of the suction tube 4, the butt block 35 at one end contacts the contact switch 26, the second linear actuator 54 is started to push the sliding plate 53 to approach the input portion 413 of the suction tube 4, and the soft plug 55 enters the auxiliary hole 414, the butt block 35 is pulled back to be separated from the contact switch 26, the second linear actuator 54 is reset to drive the sliding plate 53 to retract, the soft plug 55 is pulled out of the auxiliary hole 414, and the process is repeated for multiple times, so that the residual pollutants in the auxiliary hole 414 can be cleaned, the cleaning “dead angle” is eliminated, and the cleaning is ensured to be thorough.

[0056] Working principle: I. Pretreatment: soften the pollutants in the tube cavity, reduce the cleaning resistance, all types of suction tubes 4 need to be pretreated first to avoid the pollutants from being attached firmly after drying; immediate soaking, immediately after the operation, the suction tube 4 is soaked in an enzyme washing liquid containing protease at 37-40℃, the soaking time is 5-10 minutes, the enzyme washing liquid can quickly decompose the fibrin in the blood clot and the organic matter on the surface of bone debris, and especially has a softening effect on the pollutants in the spiral gap of the spiral tube cavity and the corner dead angle of the right-angle tube.

[0057] II. The brush structure is inserted into the lumen, based on the brush structure of "hollow tube in the middle + peripheral bristles + open hole water spray", which is suitable for different curved shapes of the lumen, and takes into account the versatility and shape adaptability. The diameter of the bristles 34 is 0.5-1 mm smaller than the inner diameter of the lumen. For example, if the lumen diameter is 5 mm, the bristles 34 with a diameter of 4-4.5 mm are selected to ensure that the bristles 34 can fully adhere to the inner wall of the lumen, and at the same time have a certain deformation space at the curved part. The hollow tube 33 is made of flexible nylon or nickel-titanium alloy material, which is suitable for 90° right angle, 120-150° single bend, continuous 135° double bend and helical transition part 412 with a pitch of 1-2 cm. The hollow tube 33 is prevented from being stuck at the corner of the transition part 412.

[0058] III. Brushing, the brushing action is mainly forward and backward movement and rotation brushing. The forward and backward reciprocating movement is made in the lumen of the suction tube 4 within the range of 10-15 cm, and the speed is within the range of 2-3 cm / s. The bone chips and blood clots attached to the wall are removed by friction of the bristles 34. Every 3-5 cm of movement, the hollow tube 33 is rotated in the clockwise / counterclockwise alternating mode, so as to clean the residues at the corner of the transition part 412. The synchronous water spray is matched to flush and separate the contaminated materials.

[0059] IV. After the hollow tube 33 penetrates the input part 413 of the suction tube 4, the butt joint block 35 at one end contacts the contact switch 26. The second linear actuator 54 pushes the sliding plate 53 to approach the input part 413 of the suction tube 4, and the soft plug 55 enters the auxiliary hole 414. The butt joint block 35 is pulled back to disengage the contact switch 26. The second linear actuator 54 is reset to drive the sliding plate 53 to retract, so that the soft plug 55 is pulled out of the auxiliary hole 414. The process is repeated several times to clean the residues in the auxiliary hole 414.

[0060] The above embodiments only express several embodiments of the present application, and the description is more specific and detailed, but it cannot be understood as a limitation on the scope of the patent of the present application. It should be noted that for ordinary skilled persons in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which are within the scope of protection of the present application.

Claims

1. An ultrasonic perfusion luminal device cleaning apparatus, characterized by: Including the cleaning pool (1), the inside of the cleaning pool (1) is equipped with the brush washing groove (11) and the installation groove (12), and the installation groove (12) is communicated and is equipped with one end of the brush washing groove (11), the inside of the brush washing groove (11) is movably provided with a moving platform (2), the inside of the brush washing groove (11) is positioned and installed with a connector seat (3), the moving platform (2) is detachably installed with a suction pipe (4), the connector seat (3) includes a water pipe (31), one side of the water pipe (31) is installed with an adapter plate (32), the adapter plate (32) is rotatably installed with a hollow tube (33), and the hollow tube (33) is movably arranged in the inside of the suction pipe (4); The inside of the installation groove (12) is installed with a first linear driver (16), the output end of the first linear driver (16) is connected with the moving platform (2), the adapter plate (32) is installed with a driving motor, and the driving motor drives the corresponding hollow tube (33) to rotate.

2. The ultrasonic lumen device cleaning apparatus of claim 1, wherein: One end of the cleaning pool (1) is installed with a water pump (13), the output end of the water pump (13) is installed with an ultrasonic generator (14), the input end of the water pump (13) is connected with a water collecting pipe (15), the cleaning pool (1) is installed with a control box (17), and the control box (17) is electrically connected with the water pump (13) and the ultrasonic generator (14).

3. An ultrasonic lumen device cleaning apparatus as defined in claim 2, wherein: The moving platform (2) includes a collection box (21), the bottom of the collection box (21) is detachably installed with a cover plate (22), and the top of the collection box (21) is provided with a collection opening (23).

4. The ultrasonic lumen device cleaning apparatus of claim 3, wherein: One side of the collection box (21) is positioned and installed with a positioning plate (24), the positioning plate (24) is fixedly provided with a positioning sleeve (25), and the middle part of the positioning sleeve (25) is provided with a positioning opening.

5. An ultrasonic lumen device cleaning apparatus as defined in claim 4, wherein: The outer periphery of the hollow tube (33) is fixedly provided with a brush (34), and the surface of the hollow tube (33) is provided with a water spraying hole (36), and the water spraying hole (36) and the brush (34) are arranged in a staggered manner.

6. An ultrasonic lumen device cleaning apparatus as defined in claim 5, wherein: The suction pipe (4) includes a spiral pipe (41) and an arc-shaped pipe (42), the spiral pipe (41) and the arc-shaped pipe (42) each include an input portion (413), a transition portion (412) and an output portion (411), the transition portion (412) of the spiral pipe (41) is spiral-shaped, the transition portion (412) of the arc-shaped pipe (42) is single-arc-shaped or continuously multi-arc-shaped, the collection opening (23) is communicated with the input portion (413) of the suction pipe (4), and the shape of the positioning opening of the positioning sleeve (25) is matched with the shape of the output portion (411) of the suction pipe (4).

7. An ultrasonic lumen device cleaning apparatus as defined in claim 6, wherein: The input portion (413) of the spiral pipe (41) and the arc-shaped pipe (42) is provided with an auxiliary hole (414) on the outside, the spiral pipe (41) and the arc-shaped pipe (42) are provided with a side hole cleaning mechanism (5) on the outside corresponding to the auxiliary hole (414), and the side hole cleaning mechanism (5) includes a sliding plate (53), the sliding plate (53) is installed with a soft plug (55), and the soft plug (55) is movably arranged in the inside of the auxiliary hole (414).

8. The ultrasonic lumen purger apparatus of claim 7, wherein: The side hole cleaning mechanism (5) further comprises a guide plate (51), the sliding plate (53) is slidably arranged on the guide plate (51), one end of the guide plate (51) away from the sliding plate (53) is fixedly provided with a supporting plate (52), the second linear driver (54) is installed on the supporting plate (52), and the output end of the second linear driver (54) is connected with the sliding plate (53).

9. An ultrasonic lumen device cleaning apparatus as defined in claim 8, wherein: The inside of the collecting box (21) is provided with a contact switch (26), one end of the hollow pipe (33) is fixedly provided with a butt joint block (35), the contact switch (26) is in movable contact with the butt joint block (35), and the contact switch (26) is used for controlling the work of the second linear driver (54).

10. The ultrasonic lumen purger apparatus of claim 9, wherein: The guide plate (51) is provided with an elastic limiting piece (56), one side of the guide plate (51) away from the sliding plate (53) is provided with a limiting step (511), and the limiting step (511) is used for supporting the output part (411) opening of the spiral pipe (41) and the arc-shaped pipe (42).