Newborn lamb amniotic fluid cleaning device
By designing an amniotic fluid cleaning device that utilizes negative pressure to extract amniotic fluid, the problems of long amniotic fluid cleaning time and infection risk in newborn lambs have been solved, achieving rapid and safe amniotic fluid cleaning and improving the lambs' cold resistance and cleaning efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- TIANJIN ANIMAL DISEASE PREVENTION & CONTROL CENT
- Filing Date
- 2025-04-28
- Publication Date
- 2026-04-21
AI Technical Summary
The existing technology for cleaning amniotic fluid from newborn lambs is time-consuming, makes them susceptible to catching a cold or getting frostbite, and poses a risk of infection from pathogenic microorganisms when the ewe licks the fluid or when the handler wipes it. It is also not environmentally friendly.
An amniotic fluid cleaning device was designed, comprising a housing, a contact component, a hose assembly, and a pump body. It draws amniotic fluid through negative pressure to avoid direct contact, and uses mechanical linkage and electrode control to start the pump body. A support component helps the lamb stand upright, achieving rapid cleaning.
It enables rapid removal of amniotic fluid, reduces the risk of infection, improves the resistance of newborn lambs to cold conditions, reduces waste, and avoids microbial contamination.
Smart Images

Figure CN224139875U_ABST
Abstract
Description
Technical Field
[0001] This utility model generally relates to the field of animal technology, and specifically to a device for cleaning amniotic fluid from newborn lambs. Background Technology
[0002] In actual livestock farming, the amniotic fluid on the wool of newborn lambs is licked clean by the ewe and ingested, but this process takes a long time. During the cold autumn and winter seasons, newborn lambs are easily chilled or frostbitten, and there is a risk that pathogenic microorganisms (such as Staphylococcus and Streptococcus) from the ewe's reproductive tract can infect and spread to other tissues and organs of the ewe, leading to systemic infection. If farm workers use rags, straw, or rice husks to wipe newborn lambs promptly, it increases farm waste, which is not only environmentally unfriendly but may also lead to infection of farm workers by zoonotic pathogens (such as Brucella) carried in the amniotic fluid. Utility Model Content
[0003] In view of the above-mentioned defects or deficiencies in the prior art, it is desirable to provide a newborn lamb amniotic fluid cleaning device.
[0004] This utility model provides a device for cleaning amniotic fluid from newborn lambs, comprising:
[0005] A first housing, having a first opening and an interior space;
[0006] An abutment component, which is installed at the first opening and has a first through hole for contacting the body surface of a newborn lamb;
[0007] A hose assembly, wherein the hose assembly is disposed inside the first housing and communicates with the first through hole;
[0008] A pump body, which is connected to the hose assembly, is used to draw amniotic fluid from the surface of a newborn lamb through the first through hole via the hose assembly.
[0009] According to the technical solution provided by this utility model, the abutment component includes:
[0010] Multiple first abutment plates are rotatably mounted at the first opening;
[0011] The second abutment plate has its edges rotatably connected to a plurality of the first abutment plates;
[0012] The first through hole is provided on each of the first abutting plate and the second abutting plate.
[0013] According to the technical solution provided by this utility model, the hose assembly includes:
[0014] Multiple first hoses, each of the multiple first hoses being connected to the first through holes on the multiple first abutment plates;
[0015] The second hose has one end connected to the pump body and the other end connected to the first through hole on the second abutment plate;
[0016] Multiple of the first hoses are connected to the second hose.
[0017] According to the technical solution provided by this utility model, the inner sidewall of the first housing has a first protrusion; the first protrusion has a second through hole; the second flexible tube passes through the second through hole;
[0018] The cleaning device also includes:
[0019] The first elastic element is sleeved on the second flexible tube, with one end abutting against the first protrusion and the other end abutting against the second abutting plate.
[0020] According to the technical solution provided by this utility model, the inner sidewall of the first housing has a second protrusion; the second protrusion has a third through hole; and the sidewall of the first housing has a fourth through hole.
[0021] The cleaning device also includes:
[0022] An operating lever is slidably passed through the third through hole and the fourth through hole, and one end protrudes from the first housing; the portion of the operating lever located within the first space has a third protrusion; the second flexible tube is located between the third protrusion and the second protrusion;
[0023] The second elastic element is disposed in the first space, with one end abutting against the inner sidewall of the first housing and the other end abutting against the third protrusion. It is used to drive the third protrusion to move closer to the second protrusion and clamp the second hose to close the second hose.
[0024] The operating lever is used to move the third protrusion away from the second protrusion under the action of external force, to release the second hose and compress the second elastic element, so that the second hose is connected.
[0025] According to the technical solution provided by this utility model, a first electrode is provided on the inner sidewall of the first housing; a second electrode is provided on the side of the third protrusion away from the second protrusion;
[0026] When the third protrusion moves away from the second protrusion, the first electrode abuts against and is electrically connected to the second electrode, which is used to control the pump body to start.
[0027] According to the technical solution provided by this utility model, the cleaning device further includes:
[0028] A second housing, the second housing having a second space inside and a second opening;
[0029] A support component, which is slidably disposed on the second housing and partially protrudes from the second housing through the second opening, for contacting the chest or abdomen of the newborn lamb to support the newborn lamb in standing.
[0030] A first driving component is installed inside the second housing and connected to the support component, for driving the support component to move along a first direction.
[0031] According to the technical solution provided by this utility model, the support component includes:
[0032] A support sleeve, which is slidably mounted in the second housing along a first direction;
[0033] A telescopic rack, wherein a portion of the telescopic rack is slidably disposed within the support sleeve, a portion extends out of the support sleeve, and extends out of the second housing through the second opening;
[0034] An abutment pad, which is fixedly connected to the end of the telescopic rack extending out of the second housing, is used to abut against the chest or abdomen of a newborn lamb;
[0035] A first driving device is fixedly mounted on the support sleeve;
[0036] A transmission gear is fixedly connected to the rotating shaft of the first driving device and meshes with the telescopic rack. Under the action of the first driving device, the transmission gear drives the telescopic rack and the abutment pad to move along a second direction; the second direction is perpendicular to the first direction.
[0037] According to the technical solution provided by this utility model, the support sleeve has a threaded hole that is offset from the telescopic rack;
[0038] The first driving component includes:
[0039] The second drive device is fixedly installed inside the second housing;
[0040] A lead screw is rotatably mounted inside the second housing in a first direction; the lead screw is connected to the threaded hole, and one end is fixedly connected to the rotating shaft of the second drive device.
[0041] According to the technical solution provided by this utility model, the pump body is disposed in the second space;
[0042] The cleaning device further includes a storage tank, which is disposed in the second space and communicates with the pump body for storing the amniotic fluid drawn up by the pump body.
[0043] The beneficial effects of this utility model are as follows:
[0044] The first housing is equipped with an abutment component, which has a first through hole and is connected to the pump body via a hose assembly. During use, after taking protective measures, the operator holds the first housing and places the abutment component against the surface of the newborn lamb. Upon starting the pump, negative pressure is generated at the first through hole through the hose assembly; the amniotic fluid on the lamb's surface is drawn into a storage tank connected to the pump body under this negative pressure. This allows for relatively quick cleaning of the amniotic fluid from the newborn lamb's surface, preventing infection by pathogenic microorganisms during licking by the ewe or wiping by the handler, and improving the newborn lamb's resistance to cold conditions. Attached Figure Description
[0045] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:
[0046] Figure 1 This is a schematic diagram showing the connection relationship between the first housing, the pump body, and the liquid storage tank;
[0047] Figure 2 This is a partial enlarged view of the first shell;
[0048] Figure 3 for Figure 2 A magnified view of a section at point A in the middle;
[0049] Figure 4 This is a top view of the second shell.
[0050] Figure 5 A cross-sectional view of the interior of the second shell in the main view direction;
[0051] Figure 6 Another cross-sectional view of the interior of the second shell in the main view direction;
[0052] Figure 7 This is a side view of the abutment pad;
[0053] Figure 8 This is a cross-sectional view of the first slider in the side view direction;
[0054] Figure 9 Side view of the supporting sleeve;
[0055] The components are as follows: 1. First housing; 2. First opening; 3. Abutment assembly; 4. First through hole; 5. Pump body; 6. First abutment plate; 7. Second abutment plate; 8. First hose; 9. Second hose; 10. First protrusion; 11. Second through hole; 12. First elastic element; 13. Second protrusion; 14. Third through hole; 15. Fourth through hole; 16. Operating lever; 17. Third protrusion; 18. Second elastic element; 19. First electrode; 20. Second electrode; 21. Second housing; 22. Second opening; 23. Support sleeve; 24. Telescopic rack; 25. Abutment pad; 26. First drive device; 27. Transmission gear; 28. Threaded hole; 29. Second drive device; 30. Lead screw; 31. Liquid storage tank; 32. Anti-slip pad; 33. First slide rail; 34. First slider; 35. First sliding hole; 36. Corrugated plate; 37. Second slide rail; 38. Second slider. Detailed Implementation
[0056] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the relevant invention and not intended to limit it. Furthermore, it should be noted that, for ease of description, only the parts relevant to the invention are shown in the accompanying drawings.
[0057] It should be noted that, where there is no conflict, the embodiments and features in the embodiments of this utility model can be combined with each other. The present utility model will now be described in detail with reference to the accompanying drawings and embodiments.
[0058] Please refer to Figure 1 This utility model provides a device for cleaning amniotic fluid from newborn lambs, comprising:
[0059] A first housing 1, having a first opening 2 and an interior space;
[0060] Abutting component 3 is installed at the first opening 2 and has a first through hole 4 for contacting the body surface of a newborn lamb;
[0061] A hose assembly is disposed inside the first housing 1 and communicates with the first through hole 4;
[0062] Pump body 5, which is connected to the hose assembly, is used to draw amniotic fluid from the surface of the newborn lamb through the first through hole 4 via the hose assembly.
[0063] Specifically, during use, after taking protective measures, the operator holds the first housing 1 and places the contact component 3 against the surface of the newborn lamb. After starting the pump, negative pressure is generated at the first through-hole 4 through the hose assembly. The amniotic fluid on the surface of the newborn lamb is drawn into the storage tank 31 connected to the pump body 5 under the action of negative pressure. In this way, the amniotic fluid on the surface of the newborn lamb can be cleaned relatively quickly, avoiding the infection of pathogenic microorganisms during the process of the ewe licking it clean or the wiping by the breeder, and improving the newborn lamb's resistance to cold conditions.
[0064] Further, refer to Figure 2 The abutment component 3 includes:
[0065] Multiple first abutment plates 6 are rotatably installed at the first opening 2;
[0066] The second abutment plate 7, the edges of which are rotatably connected to a plurality of the first abutment plates 6 respectively;
[0067] The first through hole 4 is provided on each of the first abutting plate 6 and the second abutting plate 7.
[0068] In some embodiments, there are two first abutment plates 6, and the two first abutment plates 6 and the second abutment plate 7 are rotatably connected by mutually parallel axes, for example... Figure 2 As shown.
[0069] Further, refer to Figure 2 The hose assembly includes:
[0070] Multiple first hoses 8 are respectively connected to the first through holes 4 on multiple first abutment plates 6;
[0071] The second hose 9 has one end connected to the pump body 5 and the other end connected to the first through hole 4 on the second abutment plate 7;
[0072] Multiple first hoses 8 are connected to the second hoses 9.
[0073] Further, refer to Figure 2 The first housing 1 has a first protrusion 10 on its inner sidewall; the first protrusion 10 has a second through hole 11; the second hose 9 passes through the second through hole 11;
[0074] The cleaning device also includes:
[0075] The first elastic element 12 is sleeved on the second hose 9, with one end abutting against the first protrusion 10 and the other end abutting against the second abutting plate 7.
[0076] In the initial state, the multiple first abutment plates 6 and second abutment plates 7 are coplanar;
[0077] During the cleaning of newborn lambs, multiple first abutment plates 6 and second abutment plates 7 come into contact with the lamb's body surface. Therefore, the second abutment plate 7 will shift horizontally into the first space, and the multiple first abutment plates 6 will tilt to one side of the second abutment plate 7. This causes the multiple first abutment plates 6 and second abutment plates 7 to adhere to the lamb's body surface, increasing the absorption area.
[0078] Once the cleaning is complete and the plate is no longer in contact with the lamb's body, the second abutment plate 7 can return to its initial state under the action of the first elastic member 12, and the multiple first abutment plates 6 and the second abutment plate 7 return to a coplanar state.
[0079] In some embodiments, the first through holes 4 on the multiple first abutting plates 6 and the second abutting plates 7 have an arc-shaped recessed structure on the side away from the first housing 1, which can increase the suction area and improve cleaning efficiency.
[0080] Further, refer to Figure 2 The inner sidewall of the first housing 1 has a second protrusion 13; the second protrusion 13 has a third through hole 14; and the sidewall of the first housing 1 has a fourth through hole 15.
[0081] The cleaning device also includes:
[0082] The operating lever 16 is slidably passed through the third through hole 14 and the fourth through hole 15, and one end protrudes from the first housing 1; the portion of the operating lever 16 located in the first space has a third protrusion 17; the second flexible hose 9 is located between the third protrusion 17 and the second protrusion 13;
[0083] The second elastic element 18 is disposed in the first space, with one end abutting against the inner sidewall of the first housing 1 and the other end abutting against the third protrusion 17, for driving the third protrusion 17 to move closer to the second protrusion 13 and clamping the second hose 9 to close the second hose 9.
[0084] The operating lever 16 is used to move the third protrusion 17 away from the second protrusion 13 under the action of external force, to release the second hose 9 and compress the second elastic element 18, so that the second hose 9 is connected.
[0085] Specifically, both the first elastic element 12 and the second elastic element 18 are springs. Figure 2 The direction of the middle arrow indicates that the operating lever 16 is being pressed.
[0086] The first housing 1 also has a limiting protrusion inside. The end of the second elastic member 18 that abuts against the inner side wall of the first housing 1 is sleeved on the outside of the limiting protrusion, thereby preventing the second elastic member 18 from being misaligned and causing the operating lever 16 to fail to reset.
[0087] Specifically, in the initial state, one end of the operating lever 16 extends a certain distance out of the fourth through hole 15; the second protrusion 13 and the third protrusion 17 are in a position close to each other and clamp the second hose 9, so that the second hose 9 is closed.
[0088] When the end of the operating lever 16 that extends out of the fourth through hole 15 is pressed, the second protrusion 13 and the third protrusion 17 move away from each other, compressing the second elastic element 18, thereby releasing the second hose 9 and keeping the second hose 9 connected.
[0089] When the pressing operation lever 16 is released, the second elastic element 18 causes the second protrusion 13 and the third protrusion 17 to move closer to each other, clamping the second hose 9 again, closing the second hose 9, and resetting the end of the operation lever 16 that extends out of the fourth through hole 15.
[0090] Based on the above structural design, when the pump body 5 does not generate negative pressure, the second protrusion 13 and the third protrusion 17 are used to close the second hose 9, which can prevent the amniotic fluid remaining in the second hose 9 from flowing out from the first through hole 4 and dripping into the external environment, causing microbial contamination.
[0091] Further, refer to Figure 3 The inner wall of the first housing 1 is provided with a first electrode 19; the third protrusion 17 is provided with a second electrode 20 on the side away from the second protrusion 13;
[0092] When the third protrusion 17 moves away from the second protrusion 13, the first electrode 19 abuts against and is electrically connected to the second electrode 20, which is used to control the pump body 5 to start.
[0093] Specifically, when the operating lever 16 is pressed, the first electrode 19 and the second electrode 20 come into contact with each other and become conductive. At this time, the control chip controls the pump body 5 to start and begin suction.
[0094] Pressing the operating lever 16 will also connect the second hose 9, and releasing the operating lever 16 will close the second hose 9; the above structural design realizes mechanical linkage and improves the convenience of use.
[0095] Specifically, newborn lambs usually have difficulty standing steadily, so they need to be supported during the cleaning process to prevent them from falling.
[0096] Further, refer to Figure 4-6 The cleaning device further includes:
[0097] The second housing 21 has a second space inside and a second opening 22;
[0098] A support component is slidably disposed on the second housing 21 and partially protrudes from the second housing 21 through the second opening 22. It is used to abut against the ground side of the chest and the ground side of the abdomen of the newborn lamb to support the newborn lamb, assist it in standing, and keep it in a restrained state.
[0099] Since lambs can only stand with difficulty after birth, the support component in this embodiment is used to assist them in standing and prevent them from falling.
[0100] A first driving component is installed inside the second housing 21 and connected to the support component, for driving the support component to move along a first direction.
[0101] Furthermore, the support component includes:
[0102] Support sleeve 23, which is slidably mounted in the second housing 21 along a first direction;
[0103] Telescopic rack 24, wherein part of the telescopic rack 24 is slidably disposed inside the support sleeve 23, part of the rack extends out of the support sleeve 23, and extends out of the second housing 21 through the second opening 22;
[0104] Abutment pad 25, which is fixedly connected to the end of the telescopic rack 24 extending out of the second housing 21, is used to abut against the near-ground side of the chest and abdomen of a newborn lamb; the shape of the abutment pad 25 is as follows: Figure 7 As shown.
[0105] A first driving device 26 is fixedly mounted on the support sleeve 23;
[0106] The transmission gear 27 is fixedly connected to the rotating shaft of the first driving device 26 and meshes with the telescopic rack 24. It is used to drive the telescopic rack 24 and the abutment pad 25 to move along a second direction under the action of the first driving device 26. The second direction is perpendicular to the first direction.
[0107] The first direction is Figure 5-6 The left and right directions, the second direction is Figure 5-6 The vertical direction within the support sleeve 23. As the support sleeve 23 moves along the first direction, the first drive device 26 and the transmission gear 27 move with the support sleeve 23.
[0108] Further, refer to Figure 9The support sleeve 23 has a threaded hole 28 that is offset from the telescopic rack 24;
[0109] The first driving component includes:
[0110] The second drive device 29 is fixedly installed inside the second housing 21;
[0111] A lead screw 30 is rotatably mounted inside the second housing 21 along a first direction; the lead screw 30 is connected to the threaded hole 28, and one end is fixedly connected to the rotating shaft of the second drive device 29.
[0112] Specifically, both the first drive device 26 and the second drive device 29 are electric motors.
[0113] The outer side of the second shell 21 is provided with an anti-slip mat 32. When the lamb's feet step on the anti-slip mat 32, it can prevent the lamb's feet from slipping and falling.
[0114] The top outer wall of the second housing 21, located on both sides of the second opening 22, has a first slide rail 33. A first slider 34 is slidably mounted on the first slide rail 33. The first slider 34 has a first sliding hole 35, through which the telescopic rack 24 can slide. The shape of the first slider 34 is as follows: Figure 8 As shown.
[0115] A second slide rail 37 is provided at the bottom of the inner side of the second housing 21, and a second slider 38 is slidably mounted on the second slide rail 37. The support sleeve 23 is fixedly connected to the second slider 38.
[0116] Two corrugated plates 36 are also provided at the second opening 22, and a first slider 34 is located between the two corrugated plates 36. When the first slider 34 slides along the first slide rail 33, one of the two corrugated plates 36 extends and the other retracts. This design can prevent amniotic fluid from dripping from the surface of the lamb during the cleaning process from entering the second space and contaminating the electrical equipment in the second space.
[0117] The second drive device 29 rotates forward, and can drive the telescopic rack 24 and the abutment pad 25 to move upward in the second direction through the transmission gear 27; the second drive device 29 rotates in reverse, and can drive the telescopic rack 24 and the abutment pad 25 to move downward in the second direction through the transmission gear 27.
[0118] Based on the above structural design, the support sleeve 23 can move along the first direction under the action of the lead screw 30, and the telescopic rack 24 drives the abutment pad 25 to move along the second direction, so as to achieve support for different positions of the lamb's chest and abdomen; the support position can be adjusted adaptively according to the lamb's body shape.
[0119] The specific work process includes:
[0120] Before cleaning, multiple layers of disinfection covers are placed on the contact pad 25 to prevent lambs from being infected with other pathogens, and also to prevent pathogens in the amniotic fluid from remaining on the contact pad 25.
[0121] Control the telescopic rack 24 to move upward in the second direction, so that the abutment pad 25 abuts against the first position of the lamb's chest or abdomen to achieve a support effect;
[0122] After cleaning the lamb's parts other than the first position, control the telescopic rack 24 to move downwards in the second direction, so that the abutment pad 25 separates from the first position of the lamb's chest or abdomen.
[0123] Since the outermost sterile cover is contaminated with amniotic fluid, in order to avoid it adhering to other parts again, it is necessary to remove the outermost sterile cover, then control the support sleeve 23, the telescopic rack 24 and the abutment pad 25 to move to other positions along the first direction, and control the telescopic rack 24 and the abutment pad 25, as well as the sterile cover on the abutment pad 25, to abut against other parts.
[0124] Finally, clean the first position, and then control the telescopic rack 24 and the abutment pad 25 to move downwards in the second direction to complete the cleaning.
[0125] Furthermore, the pump body 5 is disposed within the second space;
[0126] The cleaning device further includes a storage tank 31, which is disposed in the second space and communicates with the pump body 5, for storing the amniotic fluid drawn up by the pump body 5.
[0127] This method saves the pump body 5 and the reservoir 31 from occupying additional space. After cleaning, the amniotic fluid in the reservoir 31 is drained, and the first housing 1, the contact assembly 3, the pump body 5, and the reservoir 31 are cleaned and disinfected to avoid bacterial residue.
[0128] The above description is merely a preferred embodiment of this utility model and an explanation of the technical principles employed. Those skilled in the art should understand that the scope of this utility model is not limited to the specific combination of the above-described technical features, but should also cover other technical solutions formed by any combination of the above-described technical features or their equivalents without departing from the inventive concept. For example, technical solutions formed by substituting the above-described features with (but not limited to) technical features with similar functions disclosed in this utility model.
Claims
1. A new born lamb amniotic fluid cleaning device, characterized in that, include: A first housing (1) has a first opening (2) and an interior space; A contact component (3) is installed at the first opening (2) and has a first through hole (4) for contacting the body surface of a newborn lamb; A hose assembly is disposed inside the first housing (1) and communicates with the first through hole (4); Pump body (5), the pump body (5) is connected to the hose assembly, and is used to draw amniotic fluid from the surface of the newborn lamb through the first through hole (4) via the hose assembly.
2. A new born lamb amniotic fluid cleaning device as claimed in claim 1, wherein, The abutment component (3) includes: Multiple first abutment plates (6) are rotatably installed at the first opening (2); The edges of the second abutment plate (7) are rotatably connected to a plurality of the first abutment plates (6); The first through hole (4) is provided on each of the first abutting plate (6) and the second abutting plate (7).
3. A new born lamb amniotic fluid cleaning device as claimed in claim 2, wherein, The hose assembly includes: Multiple first hoses (8) are connected to the first through holes (4) on multiple first abutment plates (6); The second hose (9) has one end connected to the pump body (5) and the other end connected to the first through hole (4) on the second abutment plate (7); Multiple first hoses (8) are connected to the second hose (9).
4. A new born lamb amniotic fluid cleaning device as claimed in claim 3, wherein, The first housing (1) has a first protrusion (10) on its inner sidewall; the first protrusion (10) has a second through hole (11); the second hose (9) passes through the second through hole (11). The cleaning device also includes: The first elastic element (12) is sleeved on the second hose (9), with one end abutting against the first protrusion (10) and the other end abutting against the second abutting plate (7).
5. A new born lamb amniotic fluid cleaning device as claimed in claim 3, wherein, The first housing (1) has a second protrusion (13) on its inner sidewall; the second protrusion (13) has a third through hole (14); and the first housing (1) has a fourth through hole (15) on its sidewall. The cleaning device also includes: An operating lever (16) is slidably passed through the third through hole (14) and the fourth through hole (15), and one end protrudes from the first housing (1); the portion of the operating lever (16) located in the first space has a third protrusion (17); the second hose (9) is located between the third protrusion (17) and the second protrusion (13); The second elastic element (18) is disposed in the first space, and one end abuts against the inner side wall of the first housing (1), and the other end abuts against the third protrusion (17), for driving the third protrusion (17) to move closer to the second protrusion (13) and clamping the second hose (9) so that the second hose (9) is closed. The operating lever (16) is used to drive the third protrusion (17) away from the second protrusion (13) under the action of external force, loosen the second hose (9), and compress the second elastic element (18) so that the second hose (9) is connected.
6. A new born lamb amniotic fluid cleaning device as claimed in claim 5, wherein, The inner wall of the first housing (1) is provided with a first electrode (19); the third protrusion (17) is provided with a second electrode (20) on the side away from the second protrusion (13); When the third protrusion (17) moves away from the second protrusion (13), the first electrode (19) abuts against and is electrically connected to the second electrode (20) to control the pump body (5) to start.
7. A new born lamb amniotic fluid cleaning device as claimed in claim 1, wherein, The cleaning device also includes: The second housing (21) has a second space inside and a second opening (22). A support component is slidably disposed on the second housing (21) and partially protrudes from the second housing (21) through the second opening (22) to abut against the chest or abdomen of the newborn lamb and support the newborn lamb to stand. A first driving component is installed inside the second housing (21) and connected to the support component, for driving the support component to move along a first direction.
8. A new born lamb amniotic fluid cleaning device as claimed in claim 7, wherein, The support components include: A support sleeve (23) is slidably mounted in the second housing (21) along a first direction; Telescopic rack (24), the telescopic rack (24) is partially slidably disposed in the support sleeve (23), partially extends out of the support sleeve (23), and extends out of the second housing (21) through the second opening (22); Abutment pad (25) is fixedly connected to the end of the telescopic toothed rack (24) extending out of the second housing (21) for contacting the chest or abdomen of a newborn lamb; The first driving device (26) is fixedly installed on the support sleeve (23); The transmission gear (27) is fixedly connected to the rotating shaft of the first drive device (26) and meshes with the telescopic rack (24). Under the action of the first drive device (26), the telescopic rack (24) and the abutment pad (25) are driven to move along the second direction; the second direction is perpendicular to the first direction.
9. A new born lamb amniotic fluid cleaning device as claimed in claim 8, wherein, The support sleeve (23) has a threaded hole (28) that is offset from the telescopic rack (24). The first driving component includes: The second drive device (29) is fixedly installed inside the second housing (21); A lead screw (30) is rotatably mounted inside the second housing (21) in a first direction; the lead screw (30) is connected to the threaded hole (28), and one end is fixedly connected to the rotating shaft of the second drive device (29).
10. A new born lamb amniotic fluid cleaning device as claimed in claim 7, wherein, The pump body (5) is disposed within the second space; The cleaning device further comprises a liquid storage tank (31) arranged in the second space and communicating with the pump body (5) for storing the amniotic fluid pumped by the pump body (5).