An ultrasonic probe suspension device for the ultrasonic department
By designing an ultrasonic probe suspension device including a suspension mechanism, a moving mechanism and an adjustment mechanism, the problem of easy drop of ultrasonic probes in the prior art is solved, stable suspension and fixation are achieved, damage risk is reduced, and disinfection convenience and safety are improved.
Patent Information
- Application Number
- CN202510526088.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-25
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2045-04-25
AI Technical Summary
The existing ultrasonic probe suspension devices are prone to falling off the probe due to accidental touch or equipment shaking during suspension and use, resulting in damage.
An ultrasonic probe suspension device including a first substrate, a suspension mechanism, a moving mechanism and an adjustment mechanism is designed. The suspension mechanism realizes stable suspension and clamping of the probe through the lifting plate and clamping piece, the moving mechanism realizes height adjustment of the probe through the slide and threaded rod, and the adjustment mechanism realizes limiting and fixing of the probe through the vertical plate and the panel.
Through the design of this device, stable suspension and fixation of different numbers and types of ultrasonic probes is achieved, which reduces the risk of falling, increases the protection strength, and comprehensive disinfection of the probe is achieved through the disinfection mechanism, improving the safety of use.
Smart Images

Figure CN120036821B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of ultrasonic probe suspension, and particularly relates to an ultrasonic probe suspension device for the ultrasonic department. Background Art
[0002] The correct usage methods of ultrasonic probes include selecting a suitable probe, cleaning and disinfection, correct operation, and maintenance. Selecting a suitable probe is the primary step in the correct usage of ultrasonic probes; different probes are selected according to the examination site, depth, and purpose. For example, for superficial tissue examinations such as muscles and blood vessels, a high-frequency probe can be selected; while for deep tissue examinations such as organs and fetuses, a low-frequency probe can be selected. Cleaning and disinfection are the key steps to ensure the safe use of ultrasonic probes; before and after use, the probe needs to be cleaned and disinfected. First, the surface of the probe can be wiped with non-woven fabric or gauze to remove obvious dirt; then, a special ultrasonic probe disinfectant or disinfection wipes are used to disinfect the probe to reduce the risk of cross-infection. It should be noted that the disinfectant should not be directly poured on the probe to avoid damaging the probe. Correct operation is the key to ensuring the effective operation of ultrasonic probes.
[0003] After the ultrasonic probe is used, it needs to be suspended, and thus a suspension device is required. However, when some existing suspension devices suspend the ultrasonic probe, the ultrasonic probe is usually directly placed on the suspension rack. Therefore, when someone accidentally touches it later, or the device shakes or moves, there is a risk that the ultrasonic probe will fall, resulting in damage to the ultrasonic probe. Summary of the Invention
[0004] In view of the problems that there are different types of ultrasonic probes and they need to be cleaned before and after use, and after the ultrasonic probe is used, it needs to be suspended, and when someone accidentally touches it, or the device shakes or moves, there is a risk that the ultrasonic probe will fall, the present invention is proposed.
[0005] Therefore, the object of the present invention is to provide an ultrasonic probe suspension device for the ultrasonic department.
[0006] To solve the above technical problems, the present invention provides the following technical solution: An ultrasonic probe suspension device for the ultrasonic department, comprising
[0007] A first base;
[0008] A suspension mechanism provided on the first base for suspending the ultrasonic probe;
[0009] A moving mechanism, a moving mechanism provided between the first base and the suspension mechanism for moving; and,
[0010] An adjustment mechanism is arranged on the first base and limits the ultrasonic probe as the suspension mechanism moves.
[0011] As a preferred solution of an ultrasonic probe suspension device for an ultrasonic department according to the present invention, wherein: the first base includes a support plate and a support column, and the support plate and the support column are fixedly connected perpendicular to each other.
[0012] As a preferred solution of an ultrasonic probe suspension device for an ultrasonic department according to the present invention, wherein: the suspension mechanism includes a housing member, and the housing member includes a lifting plate arranged between the support plate and the support column. A suspension cavity is formed on the lifting plate for suspending the probe.
[0013] As a preferred solution of an ultrasonic probe suspension device for an ultrasonic department according to the present invention, wherein: the suspension mechanism further includes a clamping member. The clamping member includes a pressing plate arranged in the suspension cavity, a toothed plate fixedly installed on the pressing plate, a transmission shaft rotatably connected in the lifting plate, a gear fixedly sleeved on the transmission shaft, and the gear is meshed with the toothed plate.
[0014] As a preferred solution of an ultrasonic probe suspension device for an ultrasonic department according to the present invention, wherein: the suspension mechanism further includes a driving member. The driving member includes a swing plate fixedly installed on one side of the transmission shaft, and a torsion spring movably sleeved on the transmission shaft. The torsion spring is fixedly connected between the swing plate and the lifting plate.
[0015] As a preferred solution of an ultrasonic probe suspension device for an ultrasonic department according to the present invention, wherein: the moving mechanism includes a slideway formed on the support column, a lifting block movably installed on the slideway, the lifting block is fixedly installed on one side of the lifting plate, a threaded rod rotatably connected in the slideway, the threaded rod is threadedly connected with the lifting block, and a first motor fixedly installed on the top of the support column. The output end of the first motor penetrates through the support column and extends into the interior of the slideway and is fixedly installed with the threaded rod.
[0016] As a preferred solution of an ultrasonic probe suspension device for an ultrasonic department according to the present invention, wherein: the adjustment mechanism includes a vertical plate fixedly installed between the support plate and the support column. One side of the vertical plate is provided with a moving surface, an adjusting surface and a limiting surface.
[0017] As a preferred solution of an ultrasonic probe suspension device for an ultrasonic department according to the present invention, wherein: an installation mechanism is arranged on the first base for installing the whole device, and it includes a concave frame fixedly installed on the support plate of the first base, a positioning plate movably connected in the concave frame, and a bolt installed on the positioning plate; and,
[0018] A disinfection mechanism is provided between the first base and the adjustment mechanism for protecting and disinfecting the probe.
[0019] As a preferred solution of an ultrasonic probe hanging device for the ultrasound department of the present invention, wherein: the disinfection mechanism includes a storage member, and the storage member includes a protective box fixedly installed on the adjustment mechanism, a storage box installed in the protective box, a connecting pipe and a water pump provided on the storage box, a delivery hose connected to the water pump, and a spray head connected to the delivery hose.
[0020] As a preferred solution of an ultrasonic probe hanging device for the ultrasound department of the present invention, wherein: the disinfection mechanism further includes a moving member, and the moving member includes a moving cavity opened in the protective box, a second motor fixedly installed on one side of the protective box, a moving rod fixedly installed at the output end of the second motor, a moving block fixedly connected to the moving rod, and the moving block moves in the moving cavity.
[0021] Beneficial effects of the present invention: Through the interaction between the first base, the hanging mechanism, the moving mechanism and the adjustment mechanism, the hanging of ultrasonic probes of different quantities and types and more stable clamping and fixing are realized, preventing the probe from moving or detaching, improving the hanging stability, reducing the risk of falling, enhancing the protection strength; being fixed on the edge of the ultrasonic device through the installation mechanism, facilitating quick installation and improving the fixing convenience of the device; realizing comprehensive disinfection of the probe through the disinfection mechanism, enhancing the use safety, disinfection convenience and reducing the risk of accidental touch and damage, reducing the probability of probe damage and strengthening the protection effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0023] Figure 1 It is a schematic diagram of the overall structure of an ultrasonic probe hanging device for the ultrasound department of the present invention.
[0024] Figure 2 For the present invention Figure 1 Schematic enlarged view of the structure at A in
[0025] Figure 3 It is a schematic diagram of the internal structure of the lifting plate of the hanging mechanism of an ultrasonic probe hanging device for the ultrasound department of the present invention.
[0026] Figure 4 It is a schematic side view of an ultrasonic probe hanging device for the ultrasound department of the present invention.
[0027] Figure 5 For the present invention Figure 4 Schematic enlarged view of the structure at position B in the present invention.
[0028] Figure 6 Schematic structural view of the installation mechanism of an ultrasonic probe suspension device for the ultrasonic department of the present invention.
[0029] Figure 7 Schematic structural view of the disinfection mechanism of an ultrasonic probe suspension device for the ultrasonic department of the present invention.
[0030] Reference numerals in the attached drawings: 1, first base; 11, support plate; 12, support column; 2, suspension mechanism; 21, accommodating member; 211, lifting plate; 212, suspension cavity; 22, clamping member; 221, pressing plate; 222, toothed plate; 223, transmission shaft; 224, gear; 23, driving member; 231, swinging plate; 232, torsion spring; 3, moving mechanism; 31, slideway; 32, lifting block; 33, threaded rod; 34, first motor; 4, adjustment mechanism; 41, vertical plate; 42, moving surface; 43, adjustment surface; 44, limiting surface; 5, installation mechanism; 51, concave frame; 52, positioning plate; 53, bolt; 6, disinfection mechanism; 61, storage member; 611, protective box; 612, storage box; 613, connecting pipe; 614, water pump; 615, delivery hose; 616, spray head; 62, moving member; 621, moving cavity; 622, second motor; 623, moving rod; 624, moving block. Detailed implementation manners
[0031] To make the above objects, features and advantages of the present invention more obvious and understandable, the following detailed description of the specific implementation manners of the present invention will be given in conjunction with the drawings in the specification.
[0032] In the following description, many specific details are set forth to fully understand the present invention. However, the present invention can also be implemented in other ways different from the description herein. Those skilled in the art can make similar generalizations without departing from the connotation of the present invention. Therefore, the present invention is not limited by the specific embodiments disclosed below.
[0033] Secondly, the so-called "one embodiment" or "embodiment" herein refers to a specific feature, structure or characteristic that can be included in at least one implementation manner of the present invention. The "in one embodiment" appearing in different places in this specification does not necessarily refer to the same embodiment, nor is it an embodiment that is separate or selectively mutually exclusive with other embodiments.
[0034] Next, the present invention will be described in detail with reference to the schematic diagrams. When describing the embodiments of the present invention in detail, for the convenience of explanation, the cross-sectional views showing the device structure will be locally enlarged not in accordance with the general scale, and the schematic diagrams are only examples and should not limit the scope of protection of the present invention herein. In addition, in actual production, three-dimensional spatial dimensions including length, width, and depth should be included.
[0035] Embodiment 1
[0036] Referring to Figure 1 - Figure 5 , which is the first embodiment of the present invention, provides an ultrasonic probe hanging device for the ultrasonic department. This device includes a first base 1; a hanging mechanism 2 provided on the first base 1 for hanging the ultrasonic probe; a moving mechanism 3 provided between the first base 1 and the hanging mechanism 2 to move the hanging mechanism 2 on the first base 1.
[0037] Specifically, the first base 1 includes a support plate 11 and a support column 12. The support plate 11 and the support column 12 are fixedly connected perpendicularly to each other. The support plate 11 is provided at the bottom position of the support column 12, and the support column 12 is fixedly connected to the middle position of the support plate 11. The connection structure formed by the support plate 11 and the support column 12 is simple and stable and serves as the base of the entire ultrasonic probe hanging device.
[0038] Furthermore, the hanging mechanism 2 includes a housing member 21. The housing member 21 includes a lifting plate 211 provided between the support plate 11 and the support column 12. The lifting plate 211 is a rectangular plate and is located between the upper side of the support plate 11 and one side of the support column 12. A hanging cavity 212 is formed on the lifting plate 211. There are several hanging cavities 212. The formation of the hanging cavities 212 makes the lifting plate 211 form multiple notches, which is convenient for hanging the ultrasonic probe and can also hang a certain number of probes, improving the convenience of hanging the ultrasonic probe.
[0039] Furthermore, the suspension mechanism 2 further includes a clamping member 22. The clamping member 22 includes a pressing plate 221 disposed in the suspension cavity 212. The pressing plate 221 is slidably connected to the inside of the suspension cavity 212. One side of the two pressing plates 221 facing each other is located inside a suspension cavity 212. A toothed plate 222 is fixedly installed on the pressing plate 221. A toothed plate 222 is fixedly installed on one side of each of the two pressing plates 221. A transmission shaft 223 rotatably connected in the lifting plate 211 is located on the lifting plate 211 on the side far from the suspension cavity 212. The transmission shaft 223 is located between the two toothed plates 222. A gear 224 is fixedly sleeved on the transmission shaft 223. The gear 224 is meshed with the toothed plate 222. The gear 224 is meshed with the two toothed plates 222. By rotating the transmission shaft 223 to drive the gear 224 to rotate, the two toothed plates 222 move relatively, thereby driving the two pressing plates 221 to move relatively, so that the two pressing plates 221 slide inside the lifting plate 211, and then the two pressing plates 221 clamp the cable on the ultrasonic probe, thereby limiting the ultrasonic probe to prevent the ultrasonic probe from moving and separating from the lifting plate 211, maximizing the stability of the suspension of the ultrasonic probe, reducing the risk of the ultrasonic probe falling, and at the same time increasing the protection strength of the ultrasonic probe.
[0040] Furthermore, the suspension mechanism 2 further includes a driving member 23. The driving member 23 includes a swing plate 231 fixedly installed on one side of the transmission shaft 223. When one side of the swing plate 231 is stressed and rotates, it will drive the transmission shaft 223 to rotate synchronously. A torsion spring 232 is movably sleeved on the transmission shaft 223. The torsion spring 232 is fixedly connected between the swing plate 231 and the lifting plate 211. One end of the torsion spring 232 close to the swing plate 231 is fixedly connected to the swing plate 231. The end of the torsion spring 232 far from the swing plate 231 is fixedly connected to the lifting plate 211. When the swing plate 231 is parallel to the lifting plate 211, the torsion spring 232 does not generate torsion. When the swing plate 231 is not parallel to the lifting plate 211, the torsion spring 232 generates torsion. When the swing plate 231 loses the rotational force after receiving the rotational force, under the reaction of the torsion spring 232, the swing plate 231 will return to be parallel to the lifting plate 211.
[0041] Furthermore, the moving mechanism 3 includes a slideway 31 formed on the supporting column 12, a lifting block 32 movably installed on the slideway 31, the lifting block 32 is slidably connected inside the slideway 31, the lifting block 32 is fixedly installed on one side of the lifting plate 211, a threaded rod 33 rotatably connected inside the slideway 31, the threaded rod 33 is a long rod with threads, the threaded rod 33 is threadedly connected with the lifting block 32, the surface of the threaded rod 33 is threadedly connected with the inside of the lifting block 32, a first motor 34 fixedly installed on the top of the supporting column 12, the output end of the first motor 34 penetrates through the supporting column 12 and extends into the inside of the slideway 31 and is fixedly installed with the threaded rod 33. Starting the first motor 34 drives the threaded rod 33 to rotate, so that the lifting block 32 and the lifting plate 211 reciprocate along the slideway 31 inside the supporting column 12, thereby driving the ultrasonic probe in the suspension cavity 212 on the lifting plate 211 to move upward or downward.
[0042] During the operation, the ultrasonic probe is suspended in the suspension cavity 212 of the lifting plate 211. Start the first motor 34 to drive the threaded rod 33 to rotate, so that the lifting block 32 and the lifting plate 211 move up and down in the slideway 31 of the supporting column 12 to adjust the height of the ultrasonic probe.
[0043] Embodiment 2
[0044] Refer to Figure 1 - Figure 5 This is the second embodiment of the present invention, which provides an ultrasonic probe suspension device for the ultrasonic department. This device includes an adjustment mechanism 4 arranged on the first base 1 to limit the probe as the suspension mechanism 2 moves.
[0045] Specifically, the adjustment mechanism 4 includes a vertical plate 41 fixedly installed between the support plate 11 and the support column 12. The number of the vertical plates 41 corresponds to that of the suspension cavities 212, and the installation positions are also corresponding. One side of the vertical plate 41 is provided with a moving surface 42, an adjustment surface 43 and a limiting surface 44. The moving surface 42, the adjustment surface 43 and the limiting surface 44 are successively connected to one side of the vertical plate 41.
[0046] Further, the moving surface 42 is provided on the vertical plate 41 and gradually extends upward from the bottom of the vertical plate 41. The moving surface 42 is a horizontal surface with a certain length and parallel to the vertical plate 41, and the moving surface 42 will not apply a rotational force to the swing plate 231 connected to the transmission shaft 223 on the lifting plate 211. The adjusting surface 43 is connected to the moving surface 42 and is a surface that gradually slopes upward horizontally along the moving surface 42. When the lifting plate 211 drives the swing plate 231 on the transmission shaft 223 to move past the adjusting surface 43, the swing plate 231 will rotate toward the support plate 11 side due to the resistance of the adjusting surface 43, which will drive the transmission shaft 223 to rotate and drive the gear 224 to rotate, causing the two toothed plates 222 to move relative to each other, and further driving the two pressing plates 221 to move relative to each other, so that the two pressing plates 221 slide inside the lifting plate 211, and further enabling the two pressing plates 221 to clamp the cable on the ultrasonic probe. The limiting surface 44 connected to the adjusting surface 43 is the outer surface of the vertical plate 41. As the lifting plate 211 moves, the contact of the swing plate moves from the adjusting surface 43 to the limiting surface 44 and contacts the limiting surface 44, causing the swing plate 231 to rotate 90 degrees clockwise and be restricted from rotating by the limiting surface 44, so that the torsion spring 232 on the swing plate 231 will not drive the swing plate 231 to move in the reverse direction and return to the initial position, which also enables the pressing plate 221 to continuously clamp the cable on the ultrasonic probe. When the lifting plate 211 moves into the moving surface 42 of the vertical plate 41, the pressing plate 221 will not clamp the cable on the ultrasonic probe.
[0047] During the operation, the ultrasonic probe is suspended in the suspension cavity 212 of the lifting plate 211. The first motor 34 is started to drive the threaded rod 33 to rotate, so that the lifting block 32 and the lifting plate 211 move up and down in the slideway 31 of the support column 12 to adjust the height of the ultrasonic probe. The moving mechanism 3 drives the ultrasonic probe to move upward. At the same time, the swing plate 231 moves along with the lifting plate 211. After the swing plate 231 contacts the vertical plate 41 and moves onto the vertical plate 41, when moving from the moving surface 42 to the adjusting surface 43, the swing plate 231 gradually rotates towards the support plate 11 side due to the resistance of the adjusting surface 43, thereby driving the transmission shaft 223 to rotate. The rotation of the transmission shaft 223 causes the two pressing plates 221 to move relative to each other through the meshing of the gear 224 and the toothed plate 222, clamping the probe cable to ensure that the probe is fixed stably and prevent it from moving or falling. When the swing plate 231 rotates clockwise by 90 degrees and moves to the limiting surface 44 and continuously contacts the limiting surface 44 and is restricted by the limiting surface 44, it is to prevent the torsion spring 232 from driving the swing plate 231 to move in the reverse direction and ensure that the pressing plate 221 continuously clamps the probe cable; when the swing plate 231 is forced to rotate, the torsion spring 232 generates torsion. Once the rotational force of the vertical plate 41 on the swing plate 231 disappears, the swing plate 231 returns to be parallel to the lifting plate 211 under the reaction of the torsion spring 232. At this time, the pressing plate 221 will release the clamping of the ultrasonic probe, and the probe can move freely.
[0048] Embodiment 3
[0049] Refer to Figure 1 - Figure 7 This is the third embodiment of the present invention, which provides an ultrasonic probe suspension device for the ultrasound department. This device includes an installation mechanism 5, which is arranged on the first base 1 and used to install the entire device. It includes a concave frame 51 fixedly installed on the support plate 11 of the first base 1, a positioning plate 52 movably connected inside the concave frame 51, and a bolt 53 installed on the positioning plate 52; and a disinfection mechanism 6, which is arranged between the first base 1 and the adjustment mechanism 4 and used to protect and disinfect the probe.
[0050] Among them, a concave frame 51 is fixedly installed at the bottom of the support plate 11. A bolt 53 is threadedly connected inside the concave frame 51. The upper end of the bolt 53 is rotatably connected to a positioning plate 52. The positioning plate 52 is a "U" - shaped plate. The positioning plate 52 moves inside the concave frame 51, clamps the concave frame 51 on the edge of the ultrasonic device equipped with the ultrasonic probe, and then rotates the bolt 53 to drive the positioning plate 52 to move upward, so that the positioning plate 52 and the concave frame 51 squeeze the edge of the ultrasonic device, thereby realizing the fixation of the support plate 11, facilitating the fixation of the device on the ultrasonic device, and improving the convenience of device fixation.
[0051] Specifically, the disinfection mechanism 6 includes a storage member 61. The storage member 61 includes a protective box 611 fixedly installed on the adjustment mechanism 4, a storage box 612 installed inside the protective box 611, a connecting pipe 613 and a water pump 614 provided on the storage box 612, a delivery hose 615 connected to the water pump 614, and a spray head 616 connected to the delivery hose 615. The protective box 611 is fixedly installed on the vertical plate 41 of the adjustment mechanism 4. The storage box 612 is fixedly installed inside the protective box 611. The storage box 612 contains disinfectant. The top of the storage box 612 is fixedly installed with a connecting pipe 613. One end of the connecting pipe 613 penetrates through the protective box 611 and extends to the outside of the protective box 611. The water pump 614 is fixedly installed inside the storage box 612. The water outlet end of the water pump 614 is fixedly installed with a delivery hose 615. The delivery hose 615 penetrates through the storage box 612 and extends to the inside of the protective box 611. One end of the delivery hose 615 is connected to the spray head 616.
[0052] Furthermore, the disinfection mechanism 6 further includes a moving member 62. The moving member 62 includes a moving cavity 621 opened inside the protective box 611, a second motor 622 fixedly installed on one side of the protective box 611, a moving rod 623 fixedly installed at the output end of the second motor 622, a moving block 624 fixedly connected to the moving rod 623. The moving block 624 moves inside the moving cavity 621. The moving block 624 is slidably connected inside the moving cavity 621. The moving rod 623 is rotatably connected inside the protective box 611. The moving block 624 is threadedly connected to the moving rod 623. The bottom of the moving block 624 is fixedly installed with the spray head 616.
[0053] During the operation, after the ultrasonic probe enters the inside of the protective box 611, start the water pump 614. The water pump 614 transports the disinfectant inside the storage box 612 into the inside of the delivery hose 615, and then into the inside of the spray head 616, and sprays it out through the spray head 616. Then start the second motor 622 to drive the moving rod 623 to rotate. Then, due to the restriction of the moving cavity 621 on the moving block 624, the moving block 624 can only slide inside the moving cavity 621, so that the moving block 624 and the spray head 616 move, and the spray head 616 sprays the disinfectant evenly on the ultrasonic probe, thereby improving the convenience of disinfecting the ultrasonic probe, preventing bacteria from appearing on the ultrasonic probe, and improving the safety of using the ultrasonic probe.
[0054] Start the first motor 34, which in turn drives the threaded rod 33 to rotate, causing the lifting block 32 and the lifting plate 211 to move upward, and further causing the ultrasonic probe to move upward and enter the interior of the protection box 611, thereby facilitating the protection of the ultrasonic probe. When the lifting plate 211 moves upward, the swing plate 231 will be blocked by the adjustment surface 43 on the vertical plate 41, so that one end of the swing plate 231 will no longer move upward. Since the lifting plate 211 continues to move upward, the swing plate 231 follows the lifting plate 211 upward. Since one end of the swing plate 231 is blocked, the swing plate 231 drives the transmission shaft 223 to rotate, causing the torsion spring 232 to deform. When the transmission shaft 223 rotates, it drives the gear 224 to rotate, causing the two toothed plates 222 to move relative to each other, driving the two pressing plates 221 to move relative to each other, and causing the two pressing plates 221 to slide inside the lifting plate 211, so that the two pressing plates 221 clamp the cable on the ultrasonic probe, thereby fixing the ultrasonic probe. When the threaded rod 33 is rotated in the reverse direction, the lifting block 32 moves downward inside the slideway 31, causing the lifting plate 211 to move downward. At the same time, the swing plate 231 will no longer be blocked by the adjustment surface 43 and the limiting surface 44 of the vertical plate 41. The swing plate 231 and the transmission shaft 223 are reset by the torsion of the torsion spring 232, causing the gear 224 to rotate in the reverse direction, causing the two toothed plates 222 to move away from each other, driving the two pressing plates 221 to move away from each other, and the two pressing plates 221 no longer clamp the cable on the ultrasonic probe.
[0055] After the ultrasonic probe enters the interior of the protection box 611, start the water pump 614 to pump the disinfectant liquid stored in the storage box 612 into the interior of the delivery hose 615, and then into the interior of the spray head 616, and spray it out through the spray head 616. Then start the second motor 622 to drive the moving rod 623 to rotate. Since the moving block 624 is restricted by the moving cavity 621, the moving block 624 can only slide inside the moving cavity 621, causing the moving block 624 and the spray head 616 to move, so that the spray head 616 evenly sprays the disinfectant liquid on the ultrasonic probe.
[0056] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not restrictive. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention, and they should all be covered within the scope of the claims of the present invention.
Claims
1. An ultrasound probe suspension device for ultrasound department, characterized in that: include, A first substrate (1); A suspension mechanism (2) disposed on the first substrate (1) and used for suspending an ultrasonic probe; a moving mechanism (3) disposed between the first substrate (1) and the suspension mechanism (2) to enable the suspension mechanism (2) to move on the first substrate (1); and An adjustment mechanism (4) is arranged on the first substrate (1) and limits the position of the ultrasonic probe as the suspension mechanism (2) moves; The first base (1) comprises a support plate (11) and a support column (12), wherein the support plate (11) and the support column (12) are vertically fixedly connected to each other; The adjustment mechanism (4) comprises a vertical plate (41) fixedly mounted between the support plate (11) and the support column (12); one side of the vertical plate (41) is provided with a moving surface (42), an adjustment surface (43) and a limiting surface (44); The suspension mechanism (2) comprises a receiving member (21), wherein the receiving member (21) comprises a lifting plate (211) arranged between the supporting plate (11) and the supporting column (12), and a suspension cavity (212) is provided on the lifting plate (211) for suspending the probe; The suspension mechanism (2) further comprises a clamping member (22), the clamping member (22) comprising an extrusion plate (221) arranged opposite to each other in the suspension cavity (212), a toothed plate (222) fixedly mounted on the extrusion plate (221), a transmission shaft (223) rotatably connected in the lifting plate (211), a gear (224) fixedly sleeved on the transmission shaft (223), the gear (224) and the toothed plate (222) being meshedly connected to each other; The suspension mechanism (2) further comprises a driving member (23), the driving member (23) comprising a swing plate (231) fixedly mounted on one side of the transmission shaft (223), a torsion spring (232) movably sleeved on the transmission shaft (223), and the torsion spring (232) fixedly connected between the swing plate (231) and the lifting plate (211); The number of the vertical plates (41) corresponds to the suspension cavity (212), and the installation positions also correspond. A moving surface (42), an adjustment surface (43) and a limiting surface (44) are connected in series on one side of the vertical plate (41); The moving mechanism (3) drives the ultrasonic probe to move upward. At the same time, the swing plate (231) moves along with the lifting plate (211). The swing plate (231) contacts the vertical plate (41) and moves onto the vertical plate (41). When the swing plate (231) moves from the moving surface (42) to the adjustment surface (43), the swing plate (231) gradually rotates toward the side of the support plate (11) due to the resistance of the adjustment surface (43), thereby driving the transmission shaft (223) to rotate. The rotation of the transmission shaft (223) causes the two extrusion plates (221) to move relative to each other through the meshing of the gear (224) and the toothed plate (222), thereby clamping the probe cable. When the swing plate (231) moves clockwise, The needle rotates 90 degrees to move to the limiting surface (44), and continues to contact the limiting surface (44) and is restricted by the limiting surface (44), so as to prevent the torsion spring (232) from driving the swing plate (231) to move in the opposite direction, thereby ensuring that the squeezing plate (221) continues to clamp the probe cable; when the swing plate (231) is rotated under force, the torsion spring (232) generates a torsion force. Once the rotational force of the vertical plate (41) on the swing plate (231) disappears, the swing plate (231) is reset to be parallel to the lifting plate (211) under the reaction of the torsion spring (232), and at this time, the squeezing plate (221) releases the clamping of the ultrasonic probe, and the probe moves freely.
2. The ultrasonic probe suspension device for ultrasound department according to claim 1, characterized in that: The moving mechanism (3) comprises a slideway (31) provided on the supporting column (12), a lifting block (32) movably mounted on the slideway (31), the lifting block (32) being fixedly mounted on one side of the lifting plate (211), a threaded rod (33) rotatably connected in the slideway (31), the threaded rod (33) being threadedly connected to the lifting block (32), and a first motor (34) fixedly mounted on the top of the supporting column (12), the output end of the first motor (34) passing through the supporting column (12) and extending to the interior of the slideway (31) and being fixedly mounted on the threaded rod (33).
3. An ultrasound probe suspension device for ultrasound department according to any one of claims 1 to 2, characterized in that: Also includes, A mounting mechanism (5) is arranged on the first base (1) and is used to mount the entire device, comprising a concave frame (51) fixedly mounted on the support plate (11) on the first base (1), a positioning plate (52) movably connected in the concave frame (51), and bolts (53) mounted on the positioning plate (52); and The disinfection mechanism (6) is arranged between the first substrate (1) and the adjustment mechanism (4) and is used to protect and disinfect the probe.
4. The ultrasonic probe suspension device for ultrasound department according to claim 3, characterized in that: The disinfection mechanism (6) comprises a storage element (61), wherein the storage element (61) comprises a protection box (611) fixedly mounted on the adjustment mechanism (4), a storage box (612) mounted in the protection box (611), a connecting pipe (613) and a water pump (614) provided on the storage box (612), a delivery hose (615) connected to the water pump (614), and a nozzle (616) connected to the delivery hose (615).
5. The ultrasonic probe suspension device for ultrasound department according to claim 4, characterized in that: The disinfection mechanism (6) further comprises a moving member (62), wherein the moving member (62) comprises a moving cavity (621) opened in the protection box (611), a second motor (622) fixedly mounted on one side of the protection box (611), a moving rod (623) fixedly mounted on the output end of the second motor (622), and a moving block (624) fixedly connected to the moving rod (623), wherein the moving block (624) moves in the moving cavity (621).
Citation Information
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