Portable ultrasonic equipment transfer box
By designing a portable ultrasonic equipment transport box, the problem of the equipment being easily bumped and shaken during transportation was solved, providing a stable and safe storage and carrying solution.
Patent Information
- Application Number
- CN202423240000.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Existing technologies lack suitable devices for storing, carrying, and transporting portable ultrasound equipment, which is easily subject to bumps and shaking during transport.
A portable ultrasonic equipment transport box was designed, comprising a first shell, a second shell, and an inner liner. The inner liner has a suitable receiving slot and a storage slot. The equipment is protected by a flexible material and combined with locking components and a partition layer to ensure the stability and safety of the equipment during transport.
It enables stable transport of portable ultrasound equipment, prevents bumps and shaking, provides a convenient storage and carrying environment, and protects equipment accessories.
Smart Images

Figure CN223812865U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a transfer case, especially a portable ultrasonic equipment transfer case. BACKGROUND
[0002] In recent years, ultrasonic examination has become one of the main auxiliary means of doctors' diagnosis because of its safety, convenience, non-destructive and cheapness, and as a portable ultrasonic equipment for ultrasonic examination, there is no suitable device for personnel to store, carry and transfer the portable ultrasonic equipment and its accessories when transferring between two places or needing to carry out outdoor ultrasonic examination; in addition, the portable ultrasonic equipment is easy to be bumped, and there is also no suitable device for protecting the portable ultrasonic equipment from bumping during the transfer process. SUMMARY
[0003] The utility model provides a portable ultrasonic equipment transfer case which is convenient for storing, carrying and transferring the portable ultrasonic equipment and can prevent the portable ultrasonic equipment from shaking during the transfer process and protect the portable ultrasonic equipment from bumping.
[0004] In the first aspect, in order to solve the above technical problems, the utility model provides a portable ultrasonic equipment transfer case, including first shell, second shell and inner lining, one end of first shell and one end of second shell are movably connected, the inner lining is detachable in the second shell, the size of the inner lining and the size of the second shell are matched, when the inner lining is assembled in the second shell, the outer circumferential side of the inner lining and the inner circumferential side of the second shell are in abutment with each other, the inner lining has at least one accommodating groove, the accommodating groove is used for receiving the portable ultrasonic equipment, the size of the accommodating groove and the size of the portable ultrasonic equipment are matched, when the portable ultrasonic equipment is placed in the accommodating groove, the portable ultrasonic equipment and the inner circumferential side of the accommodating groove are in abutment with each other.
[0005] Further, the inner lining comprises a flexible material.
[0006] Further, the flexible material is a foam material.
[0007] Further, the first shell and the second shell have a partition layer.
[0008] Further, one end of the partition layer is arranged on the first shell or the second shell, and the other end of the partition layer is detachably connected with the first shell or the second shell.
[0009] Further, a plurality of second storage bags are arranged on the side of the partition layer facing the first shell.
[0010] Further, the first shell is further provided with a plurality of first storage bags on the side facing the partition layer, and the height of any first storage bag plus the height of any second storage bag is greater than or equal to the height of the first shell.
[0011] Further, the inner liner further comprises at least one storage groove, the size of the at least one storage groove is matched with the size of the ultrasonic probe, and the ultrasonic probe abuts against the inner circumferential side of the storage groove when the ultrasonic probe is placed in the storage groove.
[0012] Further, a partition plate is arranged between the partial storage groove and the accommodation groove.
[0013] Further, the portable ultrasonic equipment transfer box further comprises a locking assembly.
[0014] Further, the locking assembly comprises a fixed buckle and a lock buckle, the fixed buckle is arranged on the first shell, the lock buckle is arranged on the second shell, or the fixed buckle is arranged on the second shell and the lock buckle is arranged on the first shell, and the fixed buckle can be buckled in the lock buckle.
[0015] Further, the lock buckle comprises a fixed part, a movable part, a first elastic part and a button.
[0016] The fixed part is arranged on the first shell or the second shell, the fixed part comprises a limiting buckle, the movable part is movably connected to the fixed part, the movable part comprises a stopper, one end of the stopper is arranged on the movable part, one end of the first elastic part is fixedly connected to the movable part, and the other end of the first elastic part is fixedly connected to the button, the button and the limiting buckle are clamped with each other when the locking assembly is in a locked state, and the other end of the stopper is buckled on the fixed buckle.
[0017] Further, the lock buckle further comprises a second elastic part, one end of the second elastic part is fixedly connected to the fixed part, and the other end of the second elastic part is fixedly connected to the movable part.
[0018] In the second aspect, in order to solve the above technical problems, the utility model provides a portable ultrasonic equipment transfer box, which comprises a first shell, a second shell and an inner liner, one end of the first shell and one end of the second shell are movably connected, the inner liner is integrally formed with the second shell or fixedly connected with the second shell, the inner liner has at least one accommodation groove, the accommodation groove is used for accommodating the portable ultrasonic equipment, the size of the accommodation groove is matched with the size of the portable ultrasonic equipment, and the portable ultrasonic equipment abuts against the inner circumferential side of the accommodation groove when the portable ultrasonic equipment is placed in the accommodation groove.
[0019] Further, the inner liner comprises a flexible material.
[0020] Beneficial effects: the utility model provides a portable ultrasonic equipment transfer case, convenient portable ultrasonic equipment's storage, carry and transfer, the second casing of this portable ultrasonic equipment transfer case has and the inner lining body accommodating groove of portable ultrasonic equipment size adaptation, when portable ultrasonic equipment is placed in accommodating groove, the inner periphery side of accommodating groove and portable ultrasonic equipment abut each other, accommodating groove can prevent portable ultrasonic equipment from shaking during the transfer process, protect portable ultrasonic equipment from bumping, in addition, due to the double protection of inner lining body and high strength hard casing, portable ultrasonic equipment placed in the inner lining body accommodating groove can withstand a certain degree of external impact. The portable ultrasonic equipment transfer case still has a storage bag or / and storage groove, and the storage bag or / and storage groove can be used to store, carry and transfer the probe, charger and data line and other portable ultrasonic equipment accessories. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is another schematic view of the open state of the portable ultrasonic equipment transfer case of example 1;
[0022] Figure 2 It is another schematic view of the open state of the portable ultrasonic equipment transfer case of example 1;
[0023] Figure 3 It is the locking schematic view of the portable ultrasonic equipment transfer case locking assembly of example 1;
[0024] Figure 4 It is the unlocking schematic view of the portable ultrasonic equipment transfer case locking assembly of example 1;
[0025] Figure 5 It is the schematic view of the open state of the portable ultrasonic equipment transfer case of example 2;
[0026] Figure 6 It is the explosion drawing of the portable ultrasonic equipment transfer case of example 2.
[0027] Explanation of reference signs:
[0028] First casing 100, first storage bag 110, fixed buckle 120, magic tape pull belt 130
[0029] Second casing 200, first handle 210, lock catch 220, fixing piece 221, limiting buckle 2211, first protrusion 2212, movable piece 222, second protrusion 2221, third protrusion 2222, stopper 2223, button 223, fourth protrusion 2231, rotating shaft 224, first elastic piece 225, second elastic piece 226, second handle 230
[0030] Inner lining body 300, accommodating groove 310, storage groove 320
[0031] partition layer 400, second storage bag 410
[0032] support hinge 500, movable connection device 600, isolation plate 700 DETAILED DESCRIPTION
[0033] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0034] It should also be understood that the terms used in the specification of the present application are only for the purpose of describing specific embodiments of the present application in the description of the present application. It should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first" and "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features limited by "first" and "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise specifically limited.
[0035] Some embodiments of the present application will be described in detail below with reference to the accompanying drawings. The following embodiments and features in the embodiments can be combined with each other without conflict.
[0036] A portable ultrasonic device transfer box comprises a first shell 100, a second shell 200 and an inner liner 300. One end of the first shell 100 and one end of the second shell 200 are movably connected. The inner liner 300 is detachable in the second shell 200. The size of the inner liner 300 and the size of the second shell 200 are matched. When the inner liner 300 is assembled in the second shell 200, the outer circumferential side of the inner liner 300 and the inner circumferential side of the second shell 200 abut each other.
[0037] The inner lining body 300 has at least one accommodating groove 310 for accommodating the portable ultrasonic device, the size of the accommodating groove 310 is matched with the size of the portable ultrasonic device, when the portable ultrasonic device is placed in the accommodating groove 310, the portable ultrasonic device and the inner circumferential side of the accommodating groove 310 abut each other, which can prevent the portable ultrasonic device from shaking during transportation and protect the portable ultrasonic device from being bumped.
[0038] The inner lining body 300 further comprises at least one storage groove 320, the size of the at least one storage groove 320 is matched with the size of the ultrasonic probe, when the ultrasonic probe is placed in the storage groove 320, the ultrasonic probe and the inner circumferential side of the storage groove 320 abut each other, which can prevent the portable ultrasonic device from shaking during transportation and protect the portable ultrasonic device from being bumped.
[0039] The inner lining body 300 comprises a flexible material, which can be a foam material, so as to better protect the portable ultrasonic device and the ultrasonic probe. Embodiment 1
[0040] As shown in Figure 1 and 2 , in the first embodiment, a portable ultrasonic device transportation box comprises a first shell 100, a second shell 200 and an inner lining body 300, one end of the first shell 100 and one end of the second shell 200 are movably connected through a movable connecting device, specifically, one end of the first shell 100 and one end of the second shell 200 are movably connected through a hinge device.
[0041] The inner lining body 300 is detachable in the second shell 200, in other embodiments, the inner lining body 300 is integrally formed with the second shell 200, or the inner lining body 300 is fixedly connected with the second shell 200, specifically, for example, the inner lining body 300 and the second shell 200 can be detachably connected through screws. The size of the inner lining body 300 is matched with the size of the second shell 200, when the inner lining body 300 is assembled in the second shell 200, the outer circumferential side of the inner lining body 300 and the inner circumferential side of the second shell 200 abut each other.
[0042] The inner lining body 300 has at least one accommodating groove 310 for accommodating the portable ultrasonic device, specifically, the inner lining body 300 has only one accommodating groove 310 in this embodiment, of course, in other embodiments, the number of the accommodating grooves 310 can be more, for example, 2, 3 or the like, the size of the accommodating groove 310 is matched with the size of the portable ultrasonic device, when the portable ultrasonic device is placed in the accommodating groove 310, the portable ultrasonic device and the inner circumferential side of the accommodating groove 310 abut each other, which can prevent the portable ultrasonic device from shaking during transportation and protect the portable ultrasonic device from being bumped.
[0043] The inner lining body 300 further comprises at least one storage groove 320, and in the embodiment, the inner lining body 300 has four storage grooves 320. In other embodiments, the number of the storage grooves 320 can be one, two, three, five, or the like. The storage grooves 320 can be used to store portable ultrasonic equipment accessories such as a probe, a charger, and a data line. The size of the at least one storage groove 320 is adapted to the size of the ultrasonic probe. When the ultrasonic probe is placed in the storage groove 320, the ultrasonic probe and the inner circumferential side of the storage groove 320 abut each other, which can prevent the portable ultrasonic equipment from shaking during transportation and protect the portable ultrasonic equipment from being knocked.
[0044] The inner lining body 300 comprises a flexible material, which can be one or a combination of more than two of a foam material, a silica gel material, and a rubber material. In the embodiment, the inner lining body 300 is made of a foam material, which can better protect the portable ultrasonic equipment and the ultrasonic probe. In other embodiments, the inner lining body 300 can be made of both a hard material and a flexible material. For example, the side of the inner lining body 300 abutting the second shell 200 is made of a hard material, and the side of the inner lining body 300 abutting the portable ultrasonic equipment and / or the ultrasonic probe is made of a flexible material. In this way, the inner lining body 300 can better abut the second shell 200 and better protect the portable ultrasonic equipment and the ultrasonic probe.
[0045] A partition plate 700 (not shown in the figure) is further arranged between the partial storage grooves 320 and the accommodation grooves 310. Preferably, the partition plate 700 is a planar plate. The arrangement of the partition plate 700 is more conducive to the stable arrangement of the portable ultrasonic equipment and the ultrasonic probe in the accommodation grooves 310 and the storage grooves 320 of the inner lining body 300, respectively.
[0046] The first shell 100 and the second shell 200 have a partition layer 400. One end of the partition layer 400 is arranged on the first shell 100 or the second shell 200, and the other end of the partition layer 400 is detachably connected to the first shell 100 or the second shell 200. In the embodiment, the partition layer 400 is a partition plate. One end of the partition layer 400 is arranged on the first shell 100, and the other end of the partition layer 400 is detachably connected to the first shell 100.
[0047] Preferably, the partition layer 400 is provided with Velcro, and the first shell 100 is provided with Velcro pull tape 130 corresponding to the Velcro, and the Velcro pull tape 130 is detachably attached to the Velcro. Of course, in other embodiments, the partition layer 400 can be provided with Velcro pull tape 130, and the first shell 100 is provided with Velcro corresponding to the Velcro pull tape 130. In this embodiment, the number of Velcro and Velcro pull tape 130 is 2. Of course, in other embodiments, the number of Velcro and Velcro pull tape 130 can also be other numbers, such as 1, 3, 4, etc. Of course, in other embodiments, one end of the partition layer 400 can be fixedly connected to the second shell 200, and the other end of the partition layer 400 can be detachably connected to the second shell 200.
[0048] The side of the partition layer 400 facing the first shell 100 is provided with a plurality of second storage bags 410. In this embodiment, the number of second storage bags 410 is 4. Of course, in other embodiments, the number of second storage bags 410 can also be other numbers. The side of the first shell 100 facing the partition layer 400 is also provided with a plurality of first storage bags 110. In this embodiment, the number of second storage bags 410 is 3. Of course, in other embodiments, the number of second storage bags 410 can also be other numbers. The sum of the height of any first storage bag 110 and the height of any second storage bag 410 is greater than or equal to the height of the first shell 100. In this way, when the portable ultrasonic equipment in the second shell 200 is placed in contact with the ground or other object surface, the portable ultrasonic equipment in the second shell 200 can be stably located in the second shell 200 due to the combined action of the inner liner 300 containing groove 310 and the partition layer 400, the first storage bag 110 and the second storage bag 410.
[0049] As shown in Figure 3 and 4 , the portable ultrasonic equipment transport box further comprises a locking assembly. The locking assembly comprises a fixed buckle 120 and a lock buckle 220. The fixed buckle 120 is arranged on the first shell 100, and the lock buckle 220 is arranged on the second shell 200. The fixed buckle 120 can be buckled in the lock buckle 220. Of course, in other embodiments, the fixed buckle 120 can be arranged on the second shell 200, and the lock buckle 220 can be arranged on the first shell 100. The fixed buckle 120 can be buckled in the lock buckle 220.
[0050] The lock 220 comprises a fixed part 221, a movable part 222, a first elastic part 225 and a button 223. In the embodiment, the fixed part 221 is arranged on the second housing 200, and specifically, the fixed part 221 is integrally formed with the second housing 200. In other embodiments, the fixed part 221 is detachably connected with the second housing 200, or the fixed part 221 is a part of the second housing 200. In other embodiments, the fixed part 221 can also be arranged on the first housing 100. The fixed part 221 comprises a limiting buckle 2211. The movable part 222 is movably connected with the fixed part 221 through a rotating shaft 224. The movable part 222 comprises a stopper 2223. One end of the stopper 2223 is fixedly connected with the movable part 222, and the other end of the stopper 2223 can be arranged on the fixed buckle 120. One end of the first elastic part 225 is connected with a third protrusion 2222 of the movable part 222, and the other end of the first elastic part 225 is connected with a fourth protrusion 2231 of the button 223. As shown in Figure 3 , when the locking assembly is in the locked state, the other end of the stopper 2223 is arranged on the fixed buckle 120, and the hook of the button 223 is clamped with the hook of the limiting buckle 2211, so that the fixed buckle 120 is stably locked in the lock 220.
[0051] As shown in Figure 3 and 4 , the lock 220 further comprises a second elastic part 226. One end of the second elastic part 226 is fixedly connected with a first protrusion 2212 of the fixed part 221, and the other end of the second elastic part 226 is fixedly connected with a second protrusion 2221 of the movable part 222. When the locking assembly is in the locked state, the second elastic part 226 is in a compressed state, and the button 223 is pushed. After the hook of the button 223 is separated from the hook of the limiting buckle 2211, the second elastic part 226 is reset to return, so that the movable part 222 of the lock 220 is automatically rotated around the fixed part 221 to be opened. Preferably, the first elastic part 225 and the second elastic part 226 are both springs.
[0052] The working principle of the locking assembly is as follows: when the locking assembly is ready to be closed, the fixed buckle 120 on the first shell 100 is inserted into the lock buckle 220 on the second shell 200, and then the button 223 is pushed, the button 223 moves to compress the first elastic member 225 between the button 223 and the third protrusion 2222 of the movable piece 222, at the same time, the first inclined surface of the hook of the button 223 slides along the second inclined surface of the hook of the limiting buckle 2211, until the hook of the button 223 and the hook of the limiting buckle 2211 are mutually clamped, the pushing of the button 223 is stopped, and in the process, at the same time, the second elastic member 226 is also compressed, and the other end of the stop block 2223 passes through the fixed buckle 120. When the locking assembly is ready to be opened, the button 223 is pushed, the hook of the button 223 is disengaged from the hook of the limiting buckle 2211, at this time, the manual pushing of the button 223 is stopped, the first elastic member 225 is automatically returned to the original position, thereby pushing the button 223 to automatically reset, at the same time, the second elastic member 226 is also returned to the original position, thereby rotating the movable piece 222 of the lock buckle 220 around the fixed piece 221 to open.
[0053] In other embodiments, the locking assembly can also be matched with a password lock, the password lock can set the password as needed, after setting the number password, only the correct password is input, the operator can manually push the button 223, otherwise, the operator cannot push the button 223 to unlock; in addition, in the open state of the locking assembly, in the case that the password is not input correctly, the fixed buckle 120 cannot be inserted into the lock buckle 220.
[0054] Between the first shell 100 and the second shell 200, a support hinge 500 is further included, the first shell 100 and the second shell 200 are connected through the hinge, so that the first shell 100 and the second shell 200 can be flipped with each other, for example, the first shell 100 can be flipped around the second shell 200, when the flipping angle reaches 100 degrees, the support hinge 500 is straightened, preventing the first shell 100 from falling down.
[0055] A handle is further provided on the transfer box, the handle can be provided on the first shell 100 or / and the second shell 200, preferably, in the embodiment, the first handle 210 and the second handle 230 are both provided on the second shell 200, the first handle 210 is provided on one side of the transfer box, the second handle 230 is provided on the side of the transfer box adjacent to the first handle 210, a telescopic rod is further provided below the first handle 210, the telescopic rod can change the length in an extendable and retractable manner, in addition, a roller is further provided on the same side of the first shell 100 and the second shell 200, facilitating the operator to easily move the transfer box. Embodiment 2
[0056] As Figure 5 and 6As shown, in the second embodiment, a partition plate 700 is further arranged between the storage groove 320 and the accommodating groove 310, and in this embodiment, the partition plate 700 is a flat plate. The arrangement of the partition plate 700 is more conducive to the stable arrangement of the portable ultrasonic device and the ultrasonic probe in the accommodating groove 310 and the storage groove 320 of the inner lining body 300, respectively.
[0057] When the first shell 100 is closed with the second shell 200, the first shell 100 can be directly in contact with the portable ultrasonic device or / and the ultrasonic probe in the second shell 200, and abut against each other, so that the portable ultrasonic device or / and the ultrasonic probe in the second shell 200 can be stably arranged in the second shell 200. The inner side of the first shell 100 further comprises at least one layer of flexible material, which is integrally formed with the first shell 100. In other embodiments, the flexible material can be detachably connected with the first shell 100, or the flexible material is fixedly connected with the first shell 100 by sewing.
[0058] The portable ultrasonic device transport case further comprises a locking assembly, and in this embodiment, the locking assembly is a zipper assembly. The zipper assembly comprises a zipper tape and a zipper head. The zipper tape comprises a first zipper tape and a second zipper tape. The first zipper tape is arranged on the first shell 100, and the second zipper tape is arranged on the second shell 200. The zipper head is arranged on the first zipper tape and the second zipper tape, respectively, for opening and closing the first zipper tape and the second zipper tape, and further opening and closing the first shell 100 and the second shell 200. In other embodiments, the zipper assembly can also be used in cooperation with a password lock. The password lock can set a password as needed. After setting the password, only the correct password can be input to unlock the zipper head, otherwise, the operator cannot unlock the zipper head. In addition, in the open state of the zipper assembly, the pull tab of the zipper head cannot be inserted into the password lock slot in the case of incorrect password input.
[0059] A handle is further arranged on the transport case. The handle is arranged on the first shell 100 or / and the second shell 200. In this embodiment, a first handle 210 is arranged on one side of the second shell 200. A telescopic rod is further arranged below the first handle 210. The telescopic rod can change the length by extension and contraction. In addition, a roller is further arranged on one side of the second shell 200, which is convenient for the operator to move the transport case.
Claims
1. A portable ultrasound device transport case, characterized by, The portable ultrasonic equipment transfer box comprises a first shell (100), a second shell (200) and an inner lining (300), one end of the first shell (100) and one end of the second shell (200) are movably connected; The inner lining (300) is detachable in the second shell (200), the size of the inner lining (300) is matched with the size of the second shell (200), and the outer circumferential side of the inner lining (300) abuts against the inner circumferential side of the second shell (200) when the inner lining (300) is assembled in the second shell (200); The inner lining (300) has at least one accommodating groove (310) for accommodating the portable ultrasonic equipment, the size of the accommodating groove (310) is matched with the size of the portable ultrasonic equipment, and the portable ultrasonic equipment abuts against the inner circumferential side of the accommodating groove (310) when the portable ultrasonic equipment is placed in the accommodating groove (310).
2. The portable ultrasound device transport case of claim 1, wherein, The inner lining (300) comprises a flexible material.
3. The portable ultrasound device transport case of claim 2, wherein, The flexible material is a foam material.
4. The portable ultrasound device transport case of claim 2, wherein, The first shell (100) and the second shell (200) have a partition layer (400) therebetween.
5. The portable ultrasound device transport case of claim 4, wherein, One end of the partition layer (400) is arranged on the first shell (100) or the second shell (200), and the other end of the partition layer (400) is detachably connected with the first shell (100) or the second shell (200).
6. The portable ultrasound device transport case of claim 5, wherein, A plurality of second storage bags (410) are arranged on one side of the partition layer (400) facing the first shell (100).
7. The portable ultrasound device transport case of claim 6, wherein, A plurality of first storage bags (110) are arranged on one side of the first shell (100) facing the partition layer (400), and the sum of the height of any first storage bag (110) and the height of any second storage bag (410) is greater than or equal to the height of the first shell (100).
8. A portable ultrasound device transport case according to any one of claims 1-7, wherein, The inner lining (300) further comprises at least one storage groove (320) for accommodating an ultrasonic probe, the size of the at least one storage groove (320) is matched with the size of the ultrasonic probe, and the ultrasonic probe abuts against the inner circumferential side of the storage groove (320) when the ultrasonic probe is placed in the storage groove (320).
9. The portable ultrasound device transport case of claim 8, wherein, An isolation plate (700) is further arranged between the storage groove (320) and the accommodating groove (310).
10. A portable ultrasound device transport case according to any one of claims 1-7, wherein, The portable ultrasonic equipment transfer box further comprises a locking assembly.
11. The portable ultrasound device transport case of claim 10, wherein, The locking assembly comprises a fixed buckle (120) and a lock buckle (220); The fixed buckle (120) is arranged on the first shell (100), the lock buckle (220) is arranged on the second shell (200), or the fixed buckle (120) is arranged on the second shell (200) and the lock buckle (220) is arranged on the first shell (100), and the fixed buckle (120) is buckled in the lock buckle (220).
12. The portable ultrasound device transport case of claim 11, wherein, The lock buckle (220) comprises a fixed piece (221), a movable piece (222), a first elastic piece (225) and a button (223). The fixing part (221) is arranged on the first shell (100) or the second shell (200), and the fixing part (221) comprises a limiting buckle (2211); The movable part (222) is movably connected to the fixing part (221), and the movable part (222) comprises a stop block (2223), one end of the stop block (2223) being arranged on the movable part (222); One end of the first elastic part (225) is fixedly connected to the movable part (222), and the other end is fixedly connected to the button (223); When the locking assembly is in the locked state, the button (223) and the limiting buckle (2211) are mutually clamped, and the other end of the stop block (2223) is buckled on the fixing buckle (120).
13. The portable ultrasound device transport case of claim 12, wherein, The lock buckle (220) further comprises a second elastic part (226), one end of the second elastic part (226) being fixedly connected to the fixing part (221), and the other end being fixedly connected to the movable part (222).
14. A portable ultrasound device transport case characterized by, The first shell (100), the second shell (200) and the inner lining body (300) are arranged, one end of the first shell (100) and one end of the second shell (200) being movably connected; The inner lining body (300) is integrally formed with the second shell (200), or the inner lining body (300) is fixedly connected to the second shell (200). The inner lining body (300) has at least one accommodating groove (310) for accommodating the portable ultrasonic device, the size of the accommodating groove (310) being matched with the size of the portable ultrasonic device, and the portable ultrasonic device abutting against the inner circumferential side of the accommodating groove (310) when placed in the accommodating groove (310).
15. The portable ultrasound device transport case of claim 14, wherein, The inner lining body (300) comprises a flexible material.