Ultrasonic imaging instrument protection device

By designing a moving, storing, clamping, and sealing mechanism for the protective device of ultrasonic imaging instruments, the problems of easy damage and laborious handling of ultrasonic imaging instruments after use are solved, thus achieving instrument stability and protection.

CN121606386APending Publication Date: 2026-03-06NANYANG NANSHA HOSPITAL
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Patent Information

Application Number
CN202511934216.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-20
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

Ultrasonic imaging instruments are easily damaged by impacts when exposed to the outside after use, and are difficult to move, which affects their effectiveness.

Method used

An ultrasonic imaging instrument protection device was designed, comprising a protective box, a moving mechanism, a storage mechanism, a clamping mechanism, and a sealing mechanism. Through the coordinated use of these mechanisms, the instrument can be moved, stored, clamped, and sealed stably to prevent damage.

Benefits of technology

It improves the stability and protection of ultrasound imaging instruments, reduces the difficulty of handling, and prevents damage to the instruments after use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an ultrasonic imaging instrument protection device, and relates to the technical field of ultrasonic imaging instrument protection, the ultrasonic imaging instrument protection device comprises an ultrasonic imaging instrument body movably arranged in a protection box, and a moving mechanism for driving the ultrasonic imaging instrument body to move is arranged at the bottom of the protection box; a storage mechanism for driving the ultrasonic imager body to stretch out and draw back is arranged in the protection box below the ultrasonic imager body, and the storage mechanism is driven by a moving mechanism; a clamping mechanism for fixing the ultrasonic imager body is arranged in the protection box above the ultrasonic imager body, and the clamping mechanism is driven by a moving mechanism; a sealing mechanism for driving and protecting the ultrasonic imager body is arranged at the top of the protection box, and the sealing mechanism is driven by a storage mechanism; the device is simple and reliable in structure, good in protection effect on the ultrasonic imaging instrument, convenient to control and suitable for popularization.
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Description

Technical Field

[0001] This invention relates to the field of ultrasonic imaging instrument protection technology, and specifically to an ultrasonic imaging instrument protection device. Background Technology

[0002] Ultrasound imaging instruments, also known as ultrasound instruments, are medical instruments developed based on the principles of ultrasound. They are used in medical clinical, diagnostic, and health fields. They typically consist of a probe, ultrasound transmitting and receiving circuits, signal processing, and image display. Utilizing Doppler ultrasound technology and the principle of ultrasound echo, they are devices that simultaneously collect information on blood flow motion, tissue motion, and image of human organs and tissues. They are used for ultrasound imaging, measurement, and blood flow motion information acquisition for clinical ultrasound diagnostic examinations and applications. When ultrasound imaging equipment is used in hospitals, it is usually moved to the ward by medical staff and placed on the side of the bed. This is convenient for direct examination of patients, but it is quite laborious for medical staff. After use, the ultrasound imaging equipment is exposed to the outside without any protection, and it is easily damaged by collisions, which affects its use and thus fails to meet people's needs. Based on this, the present invention provides a protective device for ultrasound imaging instruments to solve the problems mentioned in the background art. Summary of the Invention

[0003] To address the aforementioned problems, this invention provides a protective device for ultrasound imaging instruments. This solves the problem that existing ultrasound imaging instruments are typically moved to the ward by medical staff and placed on the side of the bed, which is convenient for direct patient examination but is laborious for medical staff. Furthermore, after use, the ultrasound imaging instruments are directly exposed without any protection, making them susceptible to damage from impacts, thus affecting their usability.

[0004] The technical solution of the present invention is: a protective device for an ultrasonic imaging instrument, comprising a protective box and an ultrasonic imaging instrument body; The protective box contains an ultrasonic imaging device, and the bottom of the protective box is equipped with a moving mechanism that drives the ultrasonic imaging device to move. The protective box below the ultrasonic imaging device is equipped with a storage mechanism that drives the ultrasonic imaging device to extend and retract. The storage mechanism is driven by a moving mechanism. The protective box above the ultrasonic imaging device body is equipped with a clamping mechanism for fixing the ultrasonic imaging device body, and the clamping mechanism is driven by a moving mechanism. The top of the protective box is equipped with a sealing mechanism that drives and protects the ultrasonic imaging instrument body. The sealing mechanism is driven by a storage mechanism.

[0005] Furthermore, the moving mechanism includes a moving wheel, a driving component, a threaded rod, a mounting plate, a moving plate, a first gear, a first rotating shaft, a first rotating rod, a second rotating rod, a moving plate, and a moving rod; The ultrasonic imaging device is mounted on a mounting plate at its lower end. Both ends of the mounting plate are connected to the inner wall of the protective box. A movable plate slides beneath the mounting plate, and a threaded rod is threaded through the movable plate. Both ends of the threaded rod are rotatably connected to the inner wall of the protective box. One end of the threaded rod rotatably passes through the inner wall of the protective box and is connected to a driving component. A first rack is mounted below the movable plate, and a first gear meshes with it. A first rotating shaft passes through the first gear, and both ends of the first rotating shaft are rotatably connected to the inner wall of the protective box. A first rotating rod is vertically mounted on the first rotating shaft behind the first gear. A second rotating rod is rotatably connected to a first end of a second rotating rod. A movable plate is hinged to the second end of the second rotating rod. The movable plate is slidably connected to the inner wall of the protective box. A first end of a movable rod is connected below the movable plate. A through hole is provided in the bottom wall of the protective box below the movable rod. A movable wheel is rotatably connected to the through hole at the second end of the movable rod. The first rotating shaft drives the storage mechanism to work by rotating; The movable plate operates through a moving drive clamping mechanism.

[0006] Furthermore, the storage mechanism includes a protective plate, a third rotating rod, and a fourth rotating rod; The first end of the third rotating rod is horizontally sleeved on the first rotating shaft on the front side of the first gear and the rear side of the first rotating rod. The second end of the third rotating rod is rotatably connected to the first end of the fourth rotating rod. The second ends of the two fourth rotating rods are hinged to the same protective plate. The protective plate is slidably connected to the inner wall of the protective box. The protective plate is provided with a groove. The ultrasonic imaging instrument body is detachably installed in the groove. The protective plate operates via a moving drive sealing mechanism.

[0007] Furthermore, the clamping mechanism includes a limiting plate, a second gear, a second rotating shaft, a threaded cylinder, a moving block, a fifth rotating rod, and a first rectangular rod; The front side of the movable plate is provided with a second rack, the front side of the second rack is meshed with a second gear, the second gear is connected to the first end of the second rotating shaft, the second end of the second rotating shaft is slidably sleeved on the through mounting plate, the second end of the threaded cylinder is rotatably connected to the bottom wall of the protective plate, the threaded cylinder is threadedly sleeved with a movable block, and the two ends of the movable block are respectively hinged to the first end of the fifth rotating rod; The protective plates on both sides of the ultrasonic imaging instrument body are provided with a first rectangular through groove. A first rectangular rod slides through the first rectangular through groove. The first end of the first rectangular rod is connected to a limiting plate. The two limiting plates are detachably connected to the same ultrasonic imaging instrument body. The second end of the fifth rotating rod is hinged to the second end of the first rectangular rod.

[0008] Furthermore, the sealing mechanism includes a box cover, a second rectangular rod, a protective plate, a lever, a sliding column, a sixth rotating rod, a third rotating shaft, and a fixing block; The protective box has two fixing blocks on each side of the top. The two fixing blocks at the same end are connected by the same third rotating shaft. The first end of the box cover is fitted on the third rotating shaft. The second end of the box cover is provided with a sealing strip. The two sealing strips are detachably and sealingly connected. The first end of the sixth rotating rod is vertically sleeved on the fixed block located at the rear side through one end of the third rotating shaft, and the second end of the sixth rotating rod is vertically connected to a sliding column. The inner wall of the protective box behind the protective plate is provided with a second rectangular through groove. A second rectangular rod slides through the second rectangular through groove. The first end of the second rectangular rod is connected to the protective plate, and the second end of the second rectangular rod is vertically connected to the protective plate. The protective plate is slidably connected to the protective box. The top of the protective plate is provided with a lever. The lever is provided with a through groove. The two sliding columns are slidably connected and set in the same groove.

[0009] Furthermore, the driving component is a rotating handle.

[0010] Advantages of this invention: This invention, through the coordinated arrangement of a moving mechanism, a storage mechanism, a clamping mechanism, and a sealing mechanism, enables the moving wheels to move upwards and retract into the protective box through a through-hole, ensuring the bottom of the protective box contacts the ground. This increases the contact area between the device and the ground, improving stability during use. Simultaneously, the ultrasound imaging unit moves upwards and out of the protective box, facilitating use by medical personnel. Furthermore, the limiting plate moves away, releasing the clamping and fixing of the ultrasound imaging unit when not in use within the protective box, facilitating its use after removal. Additionally, the protective plate moves upwards to the top of the protective box, protecting the rear of the ultrasound imaging unit after removal and preventing damage during use. Finally, the two lids rotate and open, facilitating subsequent removal of the ultrasound imaging unit and allowing medical personnel to place medical supplies on the lids. This invention features a simple and reliable structure, provides excellent protection for ultrasound imaging instruments, is easy to control, and is suitable for widespread application.

[0011] In addition to the objectives, features, and advantages described above, the present invention has other objectives, features, and advantages. The invention will now be described in further detail with reference to the figures. Attached Figure Description

[0012] The accompanying drawings, which form part of this application, are used to provide a further understanding of the invention. The illustrative embodiments of the invention and their descriptions are used to explain the invention and do not constitute an improper limitation of the invention.

[0013] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the installation of the limiting plate of the present invention; Figure 3 This is a schematic diagram of the installation of the fourth rotating rod of the present invention; Figure 4 This is a schematic diagram of the installation of the protective plate of the present invention; Figure 5 This is a schematic diagram of the installation of the second rectangular rod of the present invention.

[0014] Figure label: 1 is the protective box, 101 is the ultrasonic imaging instrument body, 2 is the moving wheel, 21 is the driving component, 22 is the threaded rod, 23 is the mounting plate, 24 is the moving plate, 25 is the first gear, 26 is the first rotating shaft, 27 is the first rotating rod, 28 is the second rotating rod, 29 is the moving plate, 210 is the moving rod, 3 is the protective plate, 31 is the third rotating rod, 32 is the fourth rotating rod, 4 is the limiting plate, 41 is the second gear, 42 is the second rotating shaft, 43 is the threaded cylinder, 44 is the moving block, 45 is the fifth rotating rod, 46 is the first rectangular rod, 5 is the box cover, 51 is the second rectangular rod, 52 is the protective plate, 53 is the lever, 54 is the sliding column, 55 is the sixth rotating rod, 56 is the third rotating shaft, and 57 is the fixing block. Detailed Implementation

[0015] To make the objectives, technical solutions, and advantages of this invention clearer, the 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 merely illustrative and not intended to limit the invention.

[0016] In the description of this invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0017] refer to Figures 1 to 5 A protective device for an ultrasonic imaging instrument, comprising a protective box 1 and an ultrasonic imaging instrument body 101; The ultrasonic imaging device body 101 is installed inside the protective box 1, and a moving mechanism that drives the ultrasonic imaging device body 101 to move is installed at the bottom of the protective box 1. The protective box 1 below the ultrasonic imaging device body 101 is equipped with a storage mechanism that drives the extension and retraction of the ultrasonic imaging device body 101. The storage mechanism is driven by a moving mechanism. The protective box 1 above the ultrasonic imaging device body 101 is equipped with a clamping mechanism for fixing the ultrasonic imaging device body 101. The clamping mechanism is driven by a moving mechanism. The top of the protective box 1 is equipped with a sealing mechanism that drives the protective ultrasonic imaging instrument body 101. The sealing mechanism is driven by the storage mechanism. Preferably, the protective box 1 has a detachable maintenance door installed on the front side. The moving mechanism includes a moving wheel 2, a driving component 21, a threaded rod 22, a mounting plate 23, a moving plate 24, a first gear 25, a first rotating shaft 26, a first rotating rod 27, a second rotating rod 28, a moving plate 29, and a moving rod 210; An mounting plate 23 is installed below the ultrasonic imaging device body 101. Both ends of the mounting plate 23 are connected to the inner wall of the protective housing 1. A movable plate 24 is slidably mounted below the mounting plate 23. The mounting plate 23 is used to mount the movable plate 24. A threaded rod 22 passes through the inner thread of the movable plate 24. Both ends of the threaded rod 22 are rotatably connected to the inner wall of the protective housing 1. One end of the threaded rod 22 rotatably passes through the inner wall of the protective housing 1 and is connected to a driving component 21. A first rack is installed below the movable plate 24. A first gear 25 is meshed with the first rack. A first rotating shaft 26 passes through the first gear 25. The first rotating shaft 26 is rotatably connected to the inner wall of the protective box 1 at both ends. The first rotating shaft 26 on the rear side of the first gear 25 is vertically fixedly sleeved with the first end of the first rotating rod 27. The second end of the first rotating rod 27 is rotatably connected to the first end of the second rotating rod 28. The second end of the second rotating rod 28 is hinged to the moving plate 29. The moving plate 29 is slidably connected to the inner wall of the protective box 1. The first end of the moving rod 210 is connected to the lower part of the moving plate 29. The bottom wall of the protective box 1 below the moving rod 210 is provided with a through hole. The second end of the moving rod 210 is rotatably connected to the moving wheel 2 through the through hole. The first rotating shaft 26 drives the storage mechanism to work by rotating; The movable plate 24 operates via a movable drive clamping mechanism; Preferably, the driving component 21 drives the threaded rod 22 to rotate, the rotation of the threaded rod 22 drives the moving plate 24 to move to the left, the movement of the moving plate 24 to the left drives the first rack to move to the left, the movement of the first rack to the left drives the first gear 25 to rotate, the rotation of the first gear 25 drives the first rotating shaft 26 to rotate, the rotation of the first rotating shaft 26 drives the first rotating rod 27 to rotate, the rotation of the first rotating rod 27 drives the first end of the second rotating rod 28 to rotate, the rotation of the first end of the second rotating rod 28 drives the second end of the second rotating rod 28 to move upward, the upward movement of the second end of the second rotating rod 28 drives the moving plate 29 to move upward, the upward movement of the moving plate 29 drives the moving rod 210 to move upward, the upward movement of the moving rod 210 drives the moving wheel 2 to move upward, the upward movement of the moving wheel 2 then retracts into the protective box 1 through the through hole, so that the bottom of the protective box 1 contacts the ground, increasing the contact area between the device and the ground and improving the stability of the device during use; The storage mechanism includes a protective plate 3, a third rotating rod 31, and a fourth rotating rod 32; The first end of the third rotating rod 31 is horizontally fixedly sleeved on the first rotating shaft 26 on the front side of the first gear 25 and the rear side of the first rotating rod 27; the included angle between the third rotating rod 31 and the first rotating rod 27 is a right angle; the second end of the third rotating rod 31 is rotatably connected to the first end of the fourth rotating rod 32; the second ends of the two fourth rotating rods 32 are hinged to the same protective plate 3; the protective plate 3 is slidably connected to the inner wall of the protective box 1; the protective plate 3 is provided with a groove; the ultrasonic imaging instrument body 101 is detachably installed in the groove. The protective plate 3 operates by moving and driving the sealing mechanism; Preferably, the rotation of the first rotating shaft 26 drives the rotation of the third rotating rod 31, the rotation of the third rotating rod 31 drives the first end of the fourth rotating rod 32 to rotate, the rotation of the first end of the fourth rotating rod 32 drives the second end of the fourth rotating rod 32 to move upward, the upward movement of the second end of the fourth rotating rod 32 drives the protective plate 3 to move upward to the same level as the top of the protective box 1, and the protective plate 3 will not detach from the inner wall of the protective box 1. The upward movement of the protective plate 3 drives the ultrasound imaging instrument body 101 to move upward, and the upward movement of the ultrasound imaging instrument body 101 moves it out of the protective box 1, which is convenient for medical staff to use. The clamping mechanism includes a limiting plate 4, a second gear 41, a second rotating shaft 42, a threaded cylinder 43, a moving block 44, a fifth rotating rod 45, and a first rectangular rod 46; A second rack is installed on the front side of the movable plate 24. A second gear 41 is meshed with the front side of the second rack. The first end of the second rotating shaft 42 is connected to the second gear 41. The first end of the threaded cylinder 43 is slidably sleeved on the through mounting plate 23 through which the second end of the second rotating shaft 42 rotates. The second end of the threaded cylinder 43 is rotatably connected to the bottom wall of the protective plate 3. A movable block 44 is threadedly sleeved on the threaded cylinder 43. The first end of the fifth rotating rod 45 is hinged to both ends of the movable block 44. The protective plates 3 on both sides of the ultrasonic imaging instrument body 101 are provided with a first rectangular through groove. A first rectangular rod 46 slides through the first rectangular through groove. The first end of the first rectangular rod 46 is connected to a limiting plate 4. The two limiting plates 4 are detachably connected to the same ultrasonic imaging instrument body 101. The second end of the fifth rotating rod 45 is hinged to the second end of the first rectangular rod 46. Specifically, the threaded cylinder 43 is provided with a limiting groove, and the second rotating shaft 42 is equipped with a protrusion that cooperates with the limiting groove. The protrusion is slidably connected in the limiting groove. The cooperation between the limiting groove and the protrusion ensures that the second rotating shaft 42 slides stably in the threaded cylinder 43, and the second rotating shaft 42 can drive the threaded cylinder 43 to rotate. Preferably, the movement of the movable plate 24 to the left causes the second rack to move to the left, the movement of the second rack to the left causes the second gear 41 to rotate, the rotation of the second gear 41 causes the second rotating shaft 42 to rotate, the rotation of the second rotating shaft 42 causes the threaded cylinder 43 to rotate, the rotation of the threaded cylinder 43 causes the movable block 44 to move upward, the upward movement of the movable block 44 causes the first ends of the two fifth rotating rods 45 to move upward, the upward movement of the first ends of the two fifth rotating rods 45 causes the second ends of the two fifth rotating rods 45 to move apart, the moving apart of the second ends of the two fifth rotating rods 45 causes the two first rectangular rods 46 to move apart, the moving apart of the two first rectangular rods 46 causes the two limiting plates 4 to move apart, and the moving apart of the two limiting plates 4 thereby releases the clamping and fixing of the ultrasonic imaging instrument body 101 when it is not in use in the protective box 1, so as to facilitate the use of the ultrasonic imaging instrument body 101 after it is removed from the protective box 1; The sealing mechanism includes a box cover 5, a second rectangular rod 51, a protective plate 52, a lever 53, a sliding column 54, a sixth rotating rod 55, a third rotating shaft 56, and a fixing block 57; Two fixing blocks 57 are installed on the top two sides of the protective box 1, and the same third rotating shaft 56 is rotatably installed between the two fixing blocks 57 located at the same end; the fixing blocks 57 are used to install the third rotating shaft 56, and the first end of the box cover 5 is fixedly sleeved on the third rotating shaft 56. A commercially available sealing strip is installed on the second end of the box cover 5, and the two sealing strips are detachably sealed together. The first end of the sixth rotating rod 55 is vertically fixedly sleeved on the fixed block 57 located at the rear side through one end of the third rotating shaft 56. The second end of the sixth rotating rod 55 is vertically connected to the sliding column 54. Specifically, the angle between the sixth rotating rod 55 and the box cover 5 is an acute angle. A second rectangular through groove is provided on the inner wall of the protective box 1 behind the protective plate 3. A second rectangular rod 51 slides through the second rectangular through groove. The first end of the second rectangular rod 51 is connected to the protective plate 3. The second end of the second rectangular rod 51 is vertically connected to the protective plate 52. The protective plate 52 is slidably connected to the protective box 1. A lever 53 is installed on the top of the protective plate 52. A through groove is provided in the lever 53. Two sliding columns 54 are slidably connected in the same groove. Preferably, the protective plate 3 moves upward, causing the second rectangular rod 51 to move upward, and the second rectangular rod 51 moves upward, causing the protective plate 52 to move upward, and the protective plate 52 moves upward and then moves to the top of the protective box 1, thereby protecting the rear of the ultrasonic imaging instrument body 101 after it is removed from the protective box 1, and preventing the ultrasonic imaging instrument body 101 from being damaged during use. Simultaneously, the protective plate 52 moves upward, causing the lever 53 to move upward. The lever 53 moves upward, causing the sliding column 54 to rotate upward around the third rotating axis 56. The sliding column 54 rotates upward around the third rotating axis 56, causing the sixth rotating rod 55 to rotate upward around the third rotating axis 56. The sixth rotating rod 55 rotates upward around the third rotating axis 56, causing the third rotating axis 56 to rotate. The rotation of the third rotating axis 56 causes the box cover 5 to rotate, so that the two box covers 5 rotate and open, which facilitates the subsequent removal of the ultrasound imaging instrument body 101. It should be noted that the two box covers 5 rotate and open from a horizontal state to a near-horizontal state, which is convenient for medical staff to place medical items on the box covers 5. The sixth rotating rod 55 also rotates from a near-vertical state to a near-vertical state, which prevents the lever 53 from interfering with the movement of the sixth rotating rod 55 and the sliding column 54 during the up and down movement, and avoids the box cover 5 from getting stuck. The driving component 21 is a rotating handle.

[0018] The method of using the present invention is as follows: When it is necessary to use the ultrasound imaging instrument body 101, medical staff move the ultrasound imaging instrument protection device to the side of the ward where it is needed by pushing the protective box 1. Then, the medical staff drive the drive component 21. The driving component 21 drives the threaded rod 22 to rotate, the rotation of the threaded rod 22 drives the moving plate 24 to move to the left, the movement of the moving plate 24 to the left drives the first rack to move to the left, the movement of the first rack to the left drives the first gear 25 to rotate, the rotation of the first gear 25 drives the first rotating shaft 26 to rotate, the rotation of the first rotating shaft 26 drives the first rotating rod 27 to rotate, the rotation of the first rotating rod 27 drives the first end of the second rotating rod 28 to rotate, the rotation of the first end of the second rotating rod 28 drives the second end of the second rotating rod 28 to move upward, the upward movement of the second end of the second rotating rod 28 drives the moving plate 29 to move upward, the upward movement of the moving plate 29 drives the moving rod 210 to move upward, the upward movement of the moving rod 210 drives the moving wheel 2 to move upward, the upward movement of the moving wheel 2 then retracts into the protective box 1 through the through hole, so that the bottom of the protective box 1 contacts the ground, increasing the contact area between the device and the ground and improving the stability of the device during use; Simultaneously, the rotation of the first rotating shaft 26 drives the rotation of the third rotating rod 31, which in turn drives the first end of the fourth rotating rod 32 to rotate. The rotation of the first end of the fourth rotating rod 32 drives the second end of the fourth rotating rod 32 to move upward. The upward movement of the second end of the fourth rotating rod 32 drives the protective plate 3 to move upward until it is at the same level as the top of the protective box 1, and the protective plate 3 will not detach from the inner wall of the protective box 1. The upward movement of the protective plate 3 drives the ultrasound imaging instrument body 101 to move upward, and the ultrasound imaging instrument body 101 moves upward and then moves out of the protective box 1, making it convenient for medical staff to use. Simultaneously, the moving plate 24 moves to the left, causing the second rack to move to the left. The second rack moves to the left, causing the second gear 41 to rotate. The rotation of the second gear 41 causes the second rotating shaft 42 to rotate. The rotation of the second rotating shaft 42 causes the threaded cylinder 43 to rotate. The rotation of the threaded cylinder 43 causes the moving block 44 to move upward. The upward movement of the moving block 44 causes the first ends of the two fifth rotating rods 45 to move upward. The upward movement of the first ends of the two fifth rotating rods 45 causes the second ends of the two fifth rotating rods 45 to move apart. The movement of the second ends of the two fifth rotating rods 45 causes the two first rectangular rods 46 to move apart. The movement of the two first rectangular rods 46 causes the two limiting plates 4 to move apart. The movement of the two limiting plates 4 further releases the clamping and fixing of the ultrasonic imaging instrument body 101 when it is not in use in the protective box 1, making it convenient for the ultrasonic imaging instrument body 101 to be used after being removed from the protective box 1. At the same time, the protective plate 3 moves upward, causing the second rectangular rod 51 to move upward, and the second rectangular rod 51 moves upward, causing the protective plate 52 to move upward. The protective plate 52 moves upward and then moves to the top of the protective box 1, thereby protecting the rear of the ultrasonic imaging instrument body 101 after it is removed from the protective box 1, and preventing the ultrasonic imaging instrument body 101 from being damaged during use. Simultaneously, the protective plate 52 moves upward, causing the lever 53 to move upward. The lever 53 moves upward, causing the sliding column 54 to rotate upward around the third rotating axis 56. The sliding column 54 rotates upward around the third rotating axis 56, causing the sixth rotating rod 55 to rotate upward around the third rotating axis 56. The sixth rotating rod 55 rotates upward around the third rotating axis 56, causing the third rotating axis 56 to rotate. The rotation of the third rotating axis 56 causes the box cover 5 to rotate, so that the two box covers 5 rotate and open, which facilitates the subsequent removal of the ultrasound imaging instrument body 101. It should be noted that the two box covers 5 rotate and open from a horizontal state to a near-horizontal state, which is convenient for medical staff to place medical items on the box covers 5. The sixth rotating rod 55 also rotates from a near-vertical state to a near-vertical state, which prevents the lever 53 from interfering with the movement of the sixth rotating rod 55 and the sliding column 54 during the up and down movement, and avoids the box cover 5 from getting stuck. Medical staff can then use the ultrasound imaging device 101. After the ultrasound imaging device 101 has been used; Medical staff operate in reverse: the movable wheel 2 moves downwards and exits the protective box 1 through the through hole, causing the bottom of the protective box 1 to detach from the ground while the movable wheel 2 remains in contact with the ground, facilitating the movement of the protective device. Simultaneously, the protective plate 3 moves downwards, causing the ultrasound imaging instrument body 101 to move downwards and be stored inside the protective box 1, facilitating the protection of the ultrasound imaging instrument body 101. At the same time, the two limiting plates 4 move towards each other, clamping and fixing the ultrasound imaging instrument body 101 inside the protective box 1 when not in use, ensuring the stability of the ultrasound imaging instrument body 101 and improving the protection effect. Simultaneously, the protective plate 52 moves downwards to the lower rear side of the protective box 1, releasing the protection of the ultrasound imaging instrument body 101 when it is used after being removed from the protective box 1. Simultaneously, the two box covers 5 rotate and close, sealing the protective device and preventing the ultrasound imaging instrument from being directly exposed to the outside without any protection after use, which could easily be damaged by collisions and affect its use. Then, medical staff can push the protective device to move it.

[0019] This invention, through the coordinated arrangement of a moving mechanism, a storage mechanism, a clamping mechanism, and a sealing mechanism, enables the moving wheels to move upwards and retract into the protective box through a through-hole, ensuring the bottom of the protective box contacts the ground. This increases the contact area between the device and the ground, improving stability during use. Simultaneously, the ultrasound imaging unit moves upwards and out of the protective box, facilitating use by medical personnel. Furthermore, the limiting plate moves away, releasing the clamping and fixing of the ultrasound imaging unit when not in use within the protective box, facilitating its use after removal. Additionally, the protective plate moves upwards to the top of the protective box, protecting the rear of the ultrasound imaging unit after removal and preventing damage during use. Finally, the two lids rotate and open, facilitating subsequent removal of the ultrasound imaging unit and allowing medical personnel to place medical supplies on the lids. This invention features a simple and reliable structure, provides excellent protection for ultrasound imaging instruments, is easy to control, and is suitable for widespread application.

[0020] 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 within the protection scope of the present invention.

Claims

1. An ultrasound imaging instrument protection device, characterized by, Including protection box (1), ultrasonic imaging instrument body (101); The protection box (1) is movably provided with the ultrasonic imaging instrument body (101), and the bottom of the protection box (1) is provided with a moving mechanism for driving the ultrasonic imaging instrument body (101) to move; The protection box (1) below the ultrasonic imaging instrument body (101) is provided with a storage mechanism for driving the ultrasonic imaging instrument body (101) to stretch out and retract, and the storage mechanism is driven by the moving mechanism; The protection box (1) above the ultrasonic imaging instrument body (101) is provided with a clamping mechanism for fixing the ultrasonic imaging instrument body (101), and the clamping mechanism is driven by the moving mechanism; The top of the protection box (1) is provided with a sealing mechanism for protecting the ultrasonic imaging instrument body (101), and the sealing mechanism is driven by the storage mechanism.

2. The ultrasound imaging instrument protection apparatus of claim 1, wherein: The moving mechanism comprises a moving wheel (2), a driving part (21), a threaded rod (22), an installation plate (23), a moving plate (24), a first gear (25), a first rotating shaft (26), a first rotating rod (27), a second rotating rod (28), a moving plate (29) and a moving rod (210); The bottom of the ultrasonic imaging instrument body (101) is provided with an installation plate (23), both ends of the installation plate (23) are connected with the inner wall of the protection box (1), a moving plate (24) is slidably arranged below the installation plate (23), a threaded rod (22) is threadedly arranged in the moving plate (24), both ends of the threaded rod (22) are rotatably connected with the inner wall of the protection box (1), a driving part (21) is rotatably connected with the inner wall of the protection box (1) at one end of the threaded rod (22), a first rack is arranged below the moving plate (24), a first gear (25) is engagedly connected below the first rack, a first rotating shaft (26) is arranged in the first gear (25), both ends of the first rotating shaft (26) are rotatably connected with the inner wall of the protection box (1), a first rotating rod (27) is vertically arranged on the first rotating shaft (26) at the rear side of the first gear (25), a second rotating rod (28) is rotatably connected with the first rotating rod (27) at the second end, a moving plate (29) is hingedly connected with the second end of the second rotating rod (28), the moving plate (29) is slidably connected with the inner wall of the protection box (1), the moving plate (29) is connected with the moving rod (210) at the first end, the bottom wall of the protection box (1) below the moving rod (210) is provided with a through hole, and the moving wheel (2) is rotatably connected with the moving rod (210) at the second end and penetrates through the through hole; The first rotating shaft (26) drives the storage mechanism to work by rotating; The moving plate (24) drives the clamping mechanism to work by moving.

3. The ultrasound imaging instrument protection apparatus of claim 2, wherein: The storage mechanism comprises a protection plate (3), a third rotating rod (31) and a fourth rotating rod (32). The first gear (25) front side and the first rotating shaft (26) rear side of the first rotating rod (27) are both horizontally sleeved with the first end of the third rotating rod (31), the second end of the third rotating rod (31) is rotationally connected with the first end of the fourth rotating rod (32), the second ends of the two fourth rotating rods (32) are hingedly connected with the same protection plate (3), the protection plate (3) is slidably connected with the inner wall of the protection box (1), the protection plate (3) is provided with a groove, and the ultrasonic imaging instrument body (101) is detachably arranged in the groove. The protection plate (3) works through the moving driving sealing mechanism.

4. The ultrasound imaging instrument protection apparatus of claim 2, wherein: The clamping mechanism comprises a limiting plate (4), a second gear (41), a second rotating shaft (42), a threaded cylinder (43), a moving block (44), a fifth rotating rod (45) and a first rectangular rod (46). The front side of the moving plate (24) is provided with a second rack, the front side of the second rack is meshingly connected with a second gear (41), the second gear (41) is connected with the first end of a second rotating shaft (42), the second end of the second rotating shaft (42) is rotationally connected with a threaded cylinder (43) first end which is slidably sleeved on the mounting plate (23), the second end of the threaded cylinder (43) is rotationally connected with the bottom wall of the protection plate (3), the threaded cylinder (43) is threadedly sleeved with a moving block (44), and the moving block (44) is hingedly connected with the first end of a fifth rotating rod (45) at both ends. The protection plate (3) on both sides of the ultrasonic imaging instrument body (101) is provided with a first rectangular through groove, the first rectangular through groove is slidably penetrated by a first rectangular rod (46), the first end of the first rectangular rod (46) is connected with a limiting plate (4), and the two limiting plates (4) are detachably connected with the same ultrasonic imaging instrument body (101).

5. The ultrasound imaging instrument protection apparatus of claim 3, wherein: The sealing mechanism comprises a box cover (5), a second rectangular rod (51), a protection plate (52), a lever (53), a sliding column (54), a sixth rotating rod (55), a third rotating shaft (56) and a fixed block (57). The top of the protection box (1) is provided with two fixed blocks (57) on both sides, a third rotating shaft (56) is rotationally arranged between the two fixed blocks (57) on the same end, the first end of the box cover (5) is sleeved on the third rotating shaft (56), the second end of the box cover (5) is provided with a sealing strip, and the two sealing strips are detachably connected in a sealing manner. The first end of the sixth rotating rod (55) is vertically sleeved on the third rotating shaft (56) which rotationally penetrates the fixed block (57) on the rear side, and the second end of the sixth rotating rod (55) is vertically connected with a sliding column (54). The inner wall of the protection box (1) on the back side of the protection plate (3) is provided with a second rectangular through slot, a second rectangular rod (51) is slidably penetrated in the second rectangular through slot, the first end of the second rectangular rod (51) is connected with the protection plate (3), the second end of the second rectangular rod (51) is connected with a protection plate (52) perpendicularly, the protection plate (52) is slidably connected with the protection box (1), the top of the protection plate (52) is provided with a lever (53), the lever (53) is provided with a through sliding groove, and two sliding columns (54) are slidably connected in the same sliding groove.

6. The ultrasound imaging instrument protection apparatus of claim 2, wherein: The driving member (21) is a rotating handle.