A urology stone flushing device

The combination of a servo motor-controlled drive component and an internal drive component solves the problems of inconsistent flow and secondary damage during kidney stone flushing, achieving a clear surgical field of view and safe lithotripsy.

CN119326979BActive Publication Date: 2025-09-23FOURTH MILITARY MEDICAL UNIVERSITY
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Patent Information

Application Number
CN202411838829.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-09-23
Estimated Expiration
2044-12-13

AI Technical Summary

Technical Problem

During the flushing process of kidney stones, it is difficult to keep the flushing volume consistent with the aspiration volume, resulting in unclear lesions and easily causing secondary damage to the gravel attached to human tissues during flushing.

Method used

The design combines the drive component and the internal drive component. The servo motor controls the synchronization and asynchrony of the flushing flow and the back-suction flow. The pneumatic self-locking component is used to increase the flushing force, ensure the freedom of the gravel and retain the flushing fluid buffer to avoid tissue damage.

Benefits of technology

It can keep the surgical field clear during the kidney stone flushing process, avoid the impact damage of stones to tissues, and ensure the safety and effectiveness of the operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a urological stone flushing device, comprising an outer box body, a movable disk one, a push rod one, a guide block one, a movable disk two, a push rod two, a guide block two, a driving assembly, a flushing tube and a back-suction tube; the outer box body is symmetrically provided with a storage cylinder one and a storage cylinder two from the upper end toward the inside, the movable disk one is sealingly slidably arranged in the storage cylinder one, the push rod one is fixed at the center of the upper end surface of the movable disk one, the guide block one is fixed at the upper end of the push rod one, the movable disk two is sealingly slidably arranged in the storage cylinder two, the push rod two is fixed at the center of the upper end surface of the movable disk two, the guide block two is fixed at the upper end of the push rod two, the driving assembly is arranged between the guide block one and the guide block two, the flushing tube is sealingly connected and arranged at the lower end of the storage cylinder, the back-suction tube is sealingly connected and arranged at the lower end of the storage cylinder two, and pressure valves are provided in both the flushing tube and the back-suction tube.
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Description

Technical Field

[0001] The present invention relates to the technical field of medical treatment, in particular to a urology stone flushing device. Background Art

[0002] With the deterioration of the current environment and the influence of people's own eating habits, kidney stones have become a common disease. Kidney stones are a common disease of the urinary system and are more common in men than in women. They mostly occur in young and middle-aged people, and there is no significant difference in the incidence rate between the left and right sides.

[0003] After kidney stones are formed, they generally need to be crushed. During the stone treatment process, the treated stones need to be flushed. However, when flushing some free stones, it is difficult to ensure that the flushing volume and the reabsorption volume are consistent, resulting in unclear lesions. Moreover, when flushing stones attached to the walls of human tissues, pressurized flushing is required, which causes the flushed stones to impact human tissues, easily causing secondary damage to the patient.

[0004] Therefore, it is necessary to invent a urology stone flushing device to solve the above problems. Summary of the Invention

[0005] In view of the above problems, the present invention provides a urology stone flushing device, which solves the problems of unclear operation and secondary damage to tissues during the flushing process.

[0006] The technical solution adopted by the present invention is: it includes an outer box body, a movable disk one, a push rod one, a guide block one, a movable disk two, a push rod two, a guide block two, a driving assembly, a flushing pipe and a back-suction pipe; the outer box body is symmetrically provided with a storage cylinder one and a storage cylinder two from the upper end to the inside, the movable disk one is sealingly slidably arranged in the storage cylinder one, the push rod one is fixed at the center of the upper end surface of the movable disk one, the guide block one is fixed at the upper end of the push rod one, the movable disk two is sealingly slidably arranged in the storage cylinder two, the push rod two is fixed at the center of the upper end surface of the movable disk two, the guide block two is fixed at the upper end of the push rod two, the driving assembly is arranged between the guide block one and the guide block two, the flushing pipe is sealingly connected and arranged at the lower end of the storage cylinder, the back-suction pipe is sealingly connected and arranged at the lower end of the storage cylinder two, and pressure valves are provided in both the flushing pipe and the back-suction pipe.

[0007] Further, as a preference, the driving assembly includes a fixed frame, a servo motor, a rotating shaft, a rotating rod, a sleeve rod 1, a sleeve rod 2 and an internal drive assembly; the fixed frame is fixed to the upper end surface of the outer box body, the servo motor is fixed to the fixed frame, the rotating shaft is fixed to the output end of the servo motor and rotates through the fixed frame, the rotating rod is fixed to the rotating shaft, and straight slot 1 and straight slot 2 are respectively opened on both sides of the rotating rod, the sleeve rod 1 is fixed to one side of the guide block 1 and is slidably arranged in the straight slot 1, the guide block 2 is provided with a sliding groove inward along the end surface, the sleeve rod 2 is arranged in the sliding groove and is slidably arranged in the straight slot 2, and the internal drive assembly is arranged in the sliding groove.

[0008] Further, as a preference, the internal drive assembly includes a micro electric push rod, a pressure sensing sheet, a control main component and a pressure rod; the micro electric push rod is fixedly mounted on the upper end of the inner wall of the slide groove, the pressure sensing sheet is fixed to the output end of the micro electric push rod, the control main component is mounted in the second guide block, one end of the pressure rod is fixed to the second sleeve rod, and the other end is fixed to the pressure sensing sheet;

[0009] The input end of the control main component is electrically connected to the pressure sensing sheet, and the output end of the control main component is electrically connected to the micro electric push rod.

[0010] Furthermore, as a preference, a pneumatic self-locking assembly is also provided between the second sleeve rod and the second movable disk, and the pneumatic self-locking assembly includes a linkage rod, an L-shaped rod, a plug and a rubber column; the second guide block is connected to the second push rod and a through groove is provided, the linkage rod is slidably arranged in the through groove, and the upper end of the linkage rod is fixed to the second sleeve rod, the lower end of the linkage rod is sealed and slides through the second movable disk, a plurality of flow channels are provided on the inner circumference of the second movable disk, and a guide groove is provided under each flow channel, a plurality of plugs are arranged on the circumference, respectively fixed at one end of a plurality of L-shaped rods away from each other, and a plurality of plugs are respectively slidably arranged in a plurality of guide grooves, a plurality of rubber columns are arranged on the circumference, and are respectively sealed and slidably arranged in a plurality of flow channels.

[0011] Furthermore, preferably, a feeding end is provided on the movable disk.

[0012] Furthermore, preferably, a communication channel is provided between the lower ends of the first storage cylinder and the second storage cylinder, a micro suction pump is provided in the communication channel, and the micro suction pump is controlled by an external control unit.

[0013] Furthermore, as a preference, the return suction pipe is also provided with a U-shaped tube, a block, a filter screen and a collection chamber; the two ends of the U-shaped tube are respectively connected and arranged on the return suction pipe, the block is fixed in the return suction pipe between the two ends of the U-shaped tube, the filter screen is fixed obliquely in the U-shaped tube, and the collection chamber is connected and arranged on the U-shaped tube, and is located on the front end side of the filter screen.

[0014] Advantages of the present invention:

[0015] In the present invention, by using the driving component, the flushing flow and the back-suction flow can be synchronized, and the lesion position can be kept in a dry state during the flushing and free-state lithotripsy process, ensuring a clear surgical field of view;

[0016] By combining the internal drive component with the pneumatic self-locking component, the impact force of the flushing fluid can be increased, and the gravel attached to the tissue can be flushed into a free state. At the same time, the flushing flow rate can be made greater than the back suction flow rate, so that a certain amount of flushing fluid can be retained at the lesion site. The retained flushing fluid can have a certain buffering effect on the flushed gravel, thereby preventing the flushed gravel from causing impact damage to human tissue.

[0017] In addition to the above-described objects, features and advantages, the present invention has other objects, features and advantages. The present invention will be further described in detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The drawings constituting a part of this application are used to provide a further understanding of the present invention. The illustrative embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute improper limitations on the present invention.

[0019] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0020] Figure 2 It is a front cross-sectional view of the overall structure of the present invention;

[0021] Figure 3 It is a schematic diagram of the structure of the drive assembly of the present invention;

[0022] Figure 4 It is a schematic structural diagram of the inner drive assembly of the present invention;

[0023] Figure 5 It is a schematic structural diagram of the pneumatic self-locking assembly of the present invention;

[0024] Figure 6 This is a bottom view of the drive self-locking assembly of the present invention;

[0025] Figure 7 It is a schematic diagram of the internal structure of the U-shaped tube and the back-suction tube of the present invention;

[0026] Figures 8 to 11 It is a state change diagram of the present invention.

[0027] Reference numerals: 1, outer box; 2, moving plate 1; 3, push rod 1; 4, guide block 1; 5, moving plate 2; 6, push rod 2; 7, guide block 2; 8, drive assembly; 9, flushing pipe; 10, back-suction pipe; 11, storage cylinder 1; 12, storage cylinder 2; 101, pressure valve; 81, fixing bracket; 82, servo motor; 83, rotating shaft; 84, rotating rod; 85, sleeve rod 1; 86, sleeve rod 2; 87, internal drive assembly; 71, slideway; 84 1. Straight slot opening 1; 842. Straight slot opening 2; 871. Micro electric push rod; 872. Pressure sensing plate; 873. Pressure rod; 13. Connecting flow channel; 14. Micro suction pump; 102. U-shaped tube; 103. Block; 104. Filter; 105. Collection chamber; 21. Feed end; 88. Pneumatic self-locking assembly; 881. Linking rod; 882. L-shaped rod; 883. Plug; 884. Rubber column; 51. Flow channel; 52. Guide groove. DETAILED DESCRIPTION

[0028] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0029] In the description of the present invention, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inside", "outside", etc., indicating directions or positional relationships, are based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and therefore should not be understood as limiting the present invention.

[0030] refer to Figures 1 to 11A urological stone flushing device includes an outer box body 1, a movable disk 2, a push rod 3, a guide block 4, a movable disk 5, a push rod 6, a guide block 7, a drive assembly 8, a flushing tube 9 and a back suction tube 10; the outer box body 1 is symmetrically provided with a storage cylinder 11 and a storage cylinder 2 12 from the upper end to the inside, the movable disk 2 is sealingly and slidingly arranged in the storage cylinder 11, the push rod 3 is fixed to the center of the upper end surface of the movable disk 2, and the guide block 4 is fixed to the push rod 6. At the upper end of rod 13, the movable disk 2 5 is sealingly and slidably arranged in the storage cylinder 2 12, the push rod 2 6 is fixed to the center of the upper end surface of the movable disk 2 5, the guide block 2 7 is fixed to the upper end of the push rod 2 6, the drive assembly 8 is arranged between the guide block 1 4 and the guide block 2 7, the flushing pipe 9 is sealingly connected and arranged at the lower end of the storage cylinder 11, the back-suction pipe 10 is sealingly connected and arranged at the lower end of the storage cylinder 2 12, and a pressure valve 101 is provided in both the flushing pipe 9 and the back-suction pipe 10.

[0031] It should be explained that when the push rod 13 pushes the movable disk 12 downward, the positive pressure in the storage cylinder 11 will open the pressure valve 101 on this side, and the flushing liquid in the storage cylinder 11 will enter the lesion position through the flushing tube 9 to flush the gravel. When the push rod 26 pulls the movable disk 25 upward, the negative pressure in the storage cylinder 2 12 will open the pressure valve 101 on this side, and the flushing liquid after flushing will enter the storage cylinder 2 12 through the return suction tube 10.

[0032] As a preferred embodiment, the driving assembly 8 includes a fixed frame 81, a servo motor 82, a rotating shaft 83, a rotating rod 84, a sleeve rod 1 85, a sleeve rod 2 86 and an internal drive assembly 87; the fixed frame 81 is fixed to the upper end surface of the outer box body 1, the servo motor 82 is fixed to the fixed frame 81, the rotating shaft 83 is fixed to the output end of the servo motor 82, and rotates through the fixed frame 81, the rotating rod 84 is fixed to the rotating shaft 83, and a straight slot 1 841 and a straight slot 2 842 are respectively provided on both sides of the rotating rod 84, the sleeve rod 1 85 is fixed to one side of the guide block 1 4, and is slidably arranged in the straight slot 1 841, the guide block 2 7 is provided with a slide groove 71 along the end surface inward, the sleeve rod 2 86 is arranged in the slide groove 71, and is slidably arranged in the straight slot 2 842, and the internal drive assembly 87 is arranged in the slide groove 71.

[0033] It should be noted that when the flushed gravel is in a free state, the upper limit of the impact force of the required flushing fluid is T1. When the flushed gravel is attached to the tissue, the required impact force of the flushing fluid is T2, T2>T1, that is, the gravel attached to the human tissue requires a larger impact force to make the gravel in a free state.

[0034] For details, please refer to Figure 3When the servo motor 82 drives the rotating shaft 83 to rotate, the rotating shaft 83 can drive the rotating rod 84 to rotate synchronously. Therefore, under the guidance of the rotating rod 84, the inner wall of the straight slot 1 841 can push the sleeve rod 1 85 to move downward. At the same time, under the guidance of the rotating rod 84, the inner wall of the straight slot 2 842 can push the sleeve rod 2 86 to move upward. Therefore, the downward movement of the movable disk 1 2 is equal to the upward movement of the movable disk 2 5, that is, the output amount of the flushing liquid is consistent with the back-absorption amount of the flushing liquid, so that while collecting the free gravel, the flushing liquid will not accumulate during the operation, ensuring a clear surgical field of view.

[0035] It should be noted that the servo motor 82 is controlled by an external control unit. Specifically, the servo motor 82 can drive the rotating shaft 83 to rotate at rates of V1 and V2. When the rotating shaft 83 rotates at a rate of V1, the maximum pressure value in the flushing pipe 9 and the back-suction pipe 10 is T1. At this time, the flushing and back-suction processes are synchronized. Then, the servo motor 82 continues to drive and drives the rotating shaft 83 to rotate at a rate of V2. The pressure value in the flushing pipe 9 is T2. At this time, the flushing process is carried out and the back-suction process is paused.

[0036] As a preferred embodiment, the internal drive assembly 87 includes a micro electric push rod 871, a pressure sensing sheet 872, a control main component and a pressure rod 873; the micro electric push rod 871 is fixedly mounted on the upper end of the inner wall of the slide 71, the pressure sensing sheet 872 is fixed to the output end of the micro electric push rod 871, the control main component is mounted in the second guide block 7, and one end of the pressure rod 873 is fixed to the second sleeve rod 86, and the other end is fixed to the pressure sensing sheet 872;

[0037] The input end of the control main component is electrically connected to the pressure sensing sheet 872 , and the output end of the control main component is electrically connected to the micro electric push rod 871 .

[0038] For explanation, see Figure 4 When it is necessary to flush the gravel attached to the human tissue, the driving force of the servo motor 82 is adjusted to accelerate the rotating shaft 83 from V1 to V2, thereby increasing the pressure of the inner wall of the straight slot 2 842 of the rotating rod 84 on the sleeve rod 2 86. That is, when the pressure sensing piece 872 monitors that the squeezing force of the pressure rod 873 on it rises to T2, the pressure sensing piece 872 will convert this pressure increase value into an electrical signal and transmit it to the control main component. The control main component will issue an instruction to the micro electric push rod 871 to control the hydraulic oil in the micro electric push rod 871 to flow to the side away from the hydraulic rod, so that the micro electric push rod 871 will shorten.

[0039] As a preferred embodiment, a pneumatic self-locking assembly 88 is further provided between the sleeve rod 2 86 and the movable disk 2 5, and the pneumatic self-locking assembly 88 includes a linkage rod 881, an L-shaped rod 882, a plug 883 and a rubber column 884; the guide block 2 7 is connected to the push rod 2 6 and a through groove is opened, the linkage rod 881 is slidably set in the through groove, and the upper end of the linkage rod 881 is fixed to the sleeve rod 2 86, and the lower end of the linkage rod 881 is sealed and slides through the movable disk 2 5, and a plurality of flow channels 51 are opened on the inner circumference of the movable disk 2 5, and a guide groove 52 is opened under each flow channel 51, and a plurality of plugs 883 are arranged on the circumference, respectively fixed at one end of the plurality of L-shaped rods 882 away from each other, and the plurality of plugs 883 are respectively slidably set in the plurality of guide grooves 52, and a plurality of rubber columns 884 are arranged on the circumference, respectively sealed and slidably set in the plurality of flow channels 51.

[0040] It should be explained that when the micro electric push rod 871 is not retracted, the sleeve rod 86 and the linkage rod 881 are integrated with the guide block 7. That is, when the sleeve rod 86 moves, the guide block 7 and the push rod 6 will move synchronously, so that the plug 883 is in a stationary state relative to the guide groove 52, that is, the air pressure in the flow channel 51 will not increase, and there is no friction between the rubber column 884 and the inner wall of the storage cylinder 12.

[0041] For details, please refer to Figures 4 to 6 When the micro electric push rod 871 contracts, that is, the limit between the sleeve rod 2 86 and the guide block 2 7 is released, the sleeve rod 2 86 will drive the linkage rod 881 to move upward relative to the push rod 2 6. During this process, the L-shaped rod 882 will push the plug 883 upward, and the space in the guide groove 52 and the flow channel 51 will decrease, so that the air pressure in the flow channel 51 will increase. This air pressure will push the rubber column 884 to squeeze the inner wall of the storage cylinder 2 12, thereby increasing the positive pressure between the rubber column 884 and the storage cylinder 2 12, that is, the friction force increases. Therefore, when the sleeve rod 2 86 moves upward with the output end of the micro electric push rod 871 In the process, there is a large friction between the movable disk 2 5 and the inner wall of the storage cylinder 2 12, so that the movable disk 2 5 and the guide block 2 7 will remain stationary, and then the back-absorption of the flushing liquid will be suspended during this period, and the movable disk 1 2 will move down a certain distance during this period, that is, pressurized flushing is performed during the time when the back-absorption of the flushing liquid is suspended. Therefore, during this period, the flushing liquid at the lesion can flush the gravel attached to the tissue into a free state, and at the same time, a certain amount of flushing liquid can be retained at the lesion. The retained flushing liquid can have a certain buffering effect on the flushed gravel, thereby preventing the flushed gravel from causing impact damage to human tissue.

[0042] It should be noted that, in the above description, the retraction rate of the micro electric push rod 871 is the same as the vertical movement rate of the sleeve rod 2 86 driven by the rotating rod 84. Specifically, when the micro electric push rod 871 contracts, the servo motor 82 drives the rotating rod 84 to rotate continuously, and the inner wall of the straight slot 841 squeezes the sleeve rod 1 85 downward. The micro electric push rod 871 will actively drive the sleeve rod 2 86 to move upward. When the rotating rod 84 rotates, the inner wall of the straight slot 2 842 and the sleeve rod 2 86 are in contact but no mutual squeezing occurs, thereby avoiding driving interference between the servo motor 82 and the micro electric push rod 871.

[0043] Specifically, during implementation:

[0044] Process I: When the free gravel is flushed, its state changes refer to Figures 8 and 9 The flushing process is synchronized with the aspiration process, and there is no accumulated flushing fluid at the lesion location, ensuring a clear surgical field of view;

[0045] Process II: When the gravel attached to the human tissue wall is washed, its state changes refer to Figures 9 and 10 During this process, the sleeve rod 86 drives the linkage rod 881 to move upward relative to the push rod 2 6, and the L-shaped rod 882 pushes the plug 883 upward. The air pressure in the flow channel 51 increases, and this air pressure pushes the rubber column 884 to squeeze the inner wall of the storage cylinder 2 12, thereby increasing the friction between the rubber column 884 and the storage cylinder 2 12. Therefore, when the sleeve rod 2 86 moves upward with the output end of the micro-electric push rod 871, there is a large friction between the movable disk 2 5 and the inner wall of the storage cylinder 2 12, so that the movable disk 2 5 and the guide block 2 7 will remain stationary, and then the flushing liquid will be suspended during this period of time. The movable disk 1 will move down a certain distance during this period of time, that is, pressurized flushing is performed during the time of suspension of the flushing liquid back suction. Therefore, during this period of time, the flushing liquid at the lesion can flush the gravel attached to the tissue into a free state, and at the same time, a certain amount of flushing liquid can be retained at the lesion. The retained flushing liquid can have a certain buffering effect on the flushed gravel, thereby preventing the flushed gravel from causing impact damage to human tissue.

[0046] Process III: After the flushing of the gravel attached to the human tissue wall, its state changes refer to Figures 10 and 11, the servo motor 82 drives the rotation speed of the rotating shaft 83 to decrease from V2 to below V1, that is, when the pressure sensing piece 872 monitors the squeezing force of the pressure rod 873 on it from T2 to below T1, thereafter, the pressure sensing piece 872 will again convert this pressure reduction value into an electrical signal and transmit it to the control main component. The control main component will control the hydraulic oil in the micro electric push rod 871 to flow to the side close to the hydraulic rod, so that the micro electric push rod 871 extends. That is to say, in this process, the plug 883 will move downward first, and the friction between the rubber column 884 and the inner wall of the storage cylinder 2 12 will decrease. When the limit between the movable disk 2 5 and the inner wall of the storage cylinder 2 12 is released, the guide block 2 7, the push rod 2 6 and the movable disk 2 5 will move upward relative to the sleeve rod 2 86, and finally move to the initial relative position with the sleeve rod 2 86, and then the downward movement distance of the movable disk 1 2 is the same as the upward movement distance of the movable disk 2 5. Therefore, the flushing fluid remaining in the lesion can be completely sucked back, so that the lesion position is restored to a dry state, ensuring a clear surgical field of view.

[0047] As a preferred embodiment, the movable disk 1 is provided with a feed end 21. That is, initially, the flushing liquid is filled into the storage cylinder 11 through the feed end 21, and then the storage cylinder 11 is closed to form a sealed state.

[0048] As a preferred embodiment, a communication channel 13 is opened between the lower ends of the storage cylinder 11 and the storage cylinder 2 12. A micro suction pump 14 is provided in the communication channel 13. The micro suction pump 14 is controlled by an external control unit.

[0049] It should be explained that after a flushing is completed, the flushing liquid sucked into the storage cylinder 2 12 can be pumped into the storage cylinder 1 11 by externally controlling the micro suction pump 14, so that the flushing liquid can be reused to avoid wasting resources.

[0050] As a preferred embodiment, the return suction pipe 10 is further provided with a U-shaped tube 102, a block 103, a filter 104 and a collection chamber 105; the two ends of the U-shaped tube 102 are respectively connected and arranged on the return suction pipe 10, the block 103 is fixed in the return suction pipe 10 between the two ends of the U-shaped tube 102, the filter 104 is fixed obliquely in the U-shaped tube 102, and the collection chamber 105 is connected and arranged on the U-shaped tube 102, and is located at the front end side of the filter 104.

[0051] See also Figure 6 The flushing liquid and the gravel are blocked by the block 103 and enter the U-shaped tube 102. The gravel is filtered by the filter screen 104 and enters the collection chamber 105, so that the flushing liquid can be reused.

[0052] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A urology stone flushing device, characterized in that: The invention comprises an outer box body (1), a movable disk (2), a push rod (3), a guide block (4), a movable disk (5), a push rod (6), a guide block (7), a drive assembly (8), a flushing pipe (9) and a back-suction pipe (10); the outer box body (1) is symmetrically provided with a storage cylinder (11) and a storage cylinder (12) from the upper end to the inside, the movable disk (2) is sealingly and slidingly arranged in the storage cylinder (11), the push rod (3) is fixed to the center of the upper end surface of the movable disk (2), and the guide block (4) is fixed on the push rod (3). end, the movable disk 2 (5) is sealingly slidably arranged in the storage cylinder 2 (12), the push rod 2 (6) is fixed to the center of the upper end surface of the movable disk 2 (5), the guide block 2 (7) is fixed to the upper end of the push rod 2 (6), the driving assembly (8) is arranged between the guide block 1 (4) and the guide block 2 (7), the flushing pipe (9) is sealingly connected and arranged at the lower end of the storage cylinder 1 (11), the return suction pipe (10) is sealingly connected and arranged at the lower end of the storage cylinder 2 (12), and pressure valves (101) are provided in both the flushing pipe (9) and the return suction pipe (10); The driving assembly (8) includes a fixed frame (81), a servo motor (82), a rotating shaft (83), a rotating rod (84), a sleeve rod 1 (85), a sleeve rod 2 (86) and an internal driving assembly (87); the fixed frame (81) is fixed to the upper end surface of the outer box body (1), the servo motor (82) is fixed on the fixed frame (81), the rotating shaft (83) is fixed to the output end of the servo motor (82) and rotates through the fixed frame (81), and the rotating rod (84) is fixed to the outer box body (1). On the rotating shaft (83), a straight slot opening 1 (841) and a straight slot opening 2 (842) are respectively provided on both sides of the rotating rod (84), the sleeve rod 1 (85) is fixed on one side of the guide block 1 (4) and is slidably arranged in the straight slot opening 1 (841), the guide block 2 (7) is provided with a sliding groove (71) along the end surface inward, the sleeve rod 2 (86) is arranged in the sliding groove (71) and is slidably arranged in the straight slot opening 2 (842), and the internal drive component (87) is arranged in the sliding groove (71); The internal drive assembly (87) includes a micro electric push rod (871), a pressure sensing plate (872), a control main part and a pressure rod (873); the micro electric push rod (871) is fixedly mounted on the upper end of the inner wall of the slide groove (71), the pressure sensing plate (872) is fixed to the output end of the micro electric push rod (871), the control main part is mounted in the second guide block (7), and one end of the pressure rod (873) is fixed to the second sleeve rod (86), and the other end is fixed to the pressure sensing plate (872); The input end of the control main component is electrically connected to the pressure sensing sheet (872), and the output end of the control main component is electrically connected to the micro electric push rod (871); A pneumatic self-locking assembly (88) is also provided between the sleeve rod 2 (86) and the movable plate 2 (5), and the pneumatic self-locking assembly (88) includes a linkage rod (881), an L-shaped rod (882), a plug (883) and a rubber column (884); a through slot is provided in the guide block 2 (7) and the push rod 2 (6), and the linkage rod (881) is slidably provided in the through slot, and the upper end of the linkage rod (881) is fixed to the sleeve rod 2 (86), and the lower end of the linkage rod (881) is fixed to the sleeve rod 2 (86). The end is sealed and slides through the movable disk 2 (5), the inner circumference of the movable disk 2 (5) is provided with a plurality of flow channels (51), and a guide groove (52) is provided below each flow channel (51), a plurality of the plugs (883) are arranged on the circumference, respectively fixed on one end of the plurality of L-shaped rods (882) away from each other, and the plurality of plugs (883) are respectively slidably arranged in the plurality of guide grooves (52), and a plurality of the rubber columns (884) are arranged on the circumference, respectively sealed and slidably arranged in the plurality of flow channels (51).

2. The urology stone flushing device according to claim 1, characterized in that: The movable disk 1 (2) is provided with a feed end (21).

3. The urology stone flushing device according to claim 1, characterized in that: A communication channel (13) is provided between the lower ends of the storage cylinder 1 (11) and the storage cylinder 2 (12), and a micro suction pump (14) is provided in the communication channel (13). The micro suction pump (14) is controlled by an external control unit.

4. The urology stone flushing device according to claim 1, characterized in that: The return suction pipe (10) is further provided with a U-shaped pipe (102), a blocking block (103), a filter screen (104) and a collection chamber (105); the two ends of the U-shaped pipe (102) are respectively connected and arranged on the return suction pipe (10); the blocking block (103) is fixed in the return suction pipe (10) between the two ends of the U-shaped pipe (102); the filter screen (104) is fixed obliquely in the U-shaped pipe (102); and the collection chamber (105) is connected and arranged on the U-shaped pipe (102) and is located at the front end side of the filter screen (104).

Citation Information

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