Medical device and medical apparatus
By combining the design of elastic anti-collision parts and support parts on portable medical equipment, the problem of structural damage to the equipment during transportation and placement is solved, the dual effects of cushioning and support are achieved, and the performance and life of the equipment are improved.
Patent Information
- Application Number
- CN202422217789.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-10
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-09-10
AI Technical Summary
During the transportation and placement of portable medical equipment, the lower rear corner is easily affected by impact, which can cause paint peeling and deformation, affecting its performance and lifespan.
The elastic anti-collision part and the support part are combined to form a structure. The elastic anti-collision part protrudes downward along the up and down direction of the portable body, and the support part extends backward along the front and back direction. The impact force is buffered by elastic deformation, and the support part provides stable support.
It effectively alleviates the problem of structural damage to the equipment during transportation and placement, improves performance and life, and maintains the buffering effect of the elastic anti-collision parts when not assuming a supporting role.
Smart Images

Figure CN223323596U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of medical devices, and in particular to a medical device and medical equipment having the same. Background Art
[0002] For ease of use, some medical devices are portable, such as portable ultrasound systems. These devices often need to be transported to different application scenarios. This is particularly advantageous in challenging scenarios, such as major disasters, where they can improve inspection efficiency and save time.
[0003] Since the host is often heavy, in order to save energy, the movers often tilt the lower rear corner of the host (i.e., the corner where the bottom and rear side of the host intersect) against the target position such as the table or the ground where it needs to be placed, and then place the entire host at the target position.
[0004] However, during the leaning process, the lower rear corner will be subjected to a large impact force, which may cause paint peeling or even deformation near the lower rear corner. Therefore, due to structural damage, the performance and service life of the host may be affected, resulting in a poor user experience. Utility Model Content
[0005] To at least partially address the problems existing in the prior art, according to one aspect of the present invention, a medical device is provided. The medical device includes: a portable body; and an elastic anti-collision member connected to the portable body, the elastic anti-collision member protruding downward from the bottom surface of the portable body in the vertical direction of the portable body, and extending rearward in the front-to-back direction of the portable body to at least the rear side surface of the portable body.
[0006] Exemplarily, the medical device further includes a support member connected to the portable body and protruding downward from the bottom surface of the portable body, and the elastic anti-collision member extends backward from the support member at least to the rear side of the portable body.
[0007] Exemplarily, the support member includes a support body and a pair of support protrusions, the support body is connected to the portable body, the pair of support protrusions protrude downward from both ends of the support body along the left and right directions of the portable body to the bottom surface of the portable body, the elastic anti-collision member includes a first elastic anti-collision member and a pair of second elastic anti-collision members, the first elastic anti-collision member extends backward from the support body at least to the rear side surface of the portable body, the pair of second elastic anti-collision members extend backward from the pair of support protrusions one by one to at least to the rear side surface of the portable body, and the first elastic anti-collision member and the pair of second elastic anti-collision members are spaced apart along the up and down directions of the portable body.
[0008] Exemplarily, the bottom surface of the portable body is provided with an upwardly concave mounting groove, the support member is inserted into the mounting groove, the front groove wall of the mounting groove along the front-to-back direction protrudes downward from the rear groove wall, and part of the elastic anti-collision member is higher than the front groove wall.
[0009] Exemplarily, a mounting hole is provided at the bottom of the portable body, and a mounting post protruding upward in the up-down direction of the portable body is provided on the support member, and the mounting post is detachably plugged into the mounting hole.
[0010] Exemplarily, the mounting column includes an elastic section and a penetrating section connected between the elastic section and the support member, the elastic section has a natural state in which it cannot pass through the mounting hole and a compressed state in which it can pass through the mounting hole, wherein the penetrating section and the elastic section in the compressed state can pass through the mounting hole, and the support member and the elastic section in the natural state are clamped at both ends of the mounting hole.
[0011] Exemplarily, the upper end of the elastic section is further connected to a guide section that can pass through the mounting hole.
[0012] Exemplarily, the upper end of the elastic section has a tapered structure.
[0013] Exemplarily, the lower end of the mounting hole has a gradually opening structure.
[0014] Exemplarily, the mounting holes include a plurality of mounting holes spaced apart along the left-right direction of the portable body, and the mounting posts are detachably plugged into the mounting holes in a one-to-one correspondence.
[0015] Illustratively, along the left-right direction of the portable body, a distance between adjacent mounting posts located at both ends of the support member is smaller than a distance between adjacent mounting posts located at a middle portion.
[0016] Exemplarily, the support member is in the shape of an elongated strip extending along the left-right direction of the portable body, and the elastic anti-collision member includes anti-collision ribs extending along the left-right direction of the portable body, and the anti-collision ribs are spaced apart from the bottom surface of the portable body and the bottom surface of the support member along the up-down direction of the portable body.
[0017] Exemplarily, the medical device further comprises an additional elastic anti-collision member provided on the rear side of the portable body.
[0018] According to another aspect of the present invention, a medical device is provided, which includes a trolley and any of the above medical devices, wherein the elastic anti-collision member is used to abut against the trolley.
[0019] Exemplarily, the top surface of the trolley is provided with a downwardly recessed guide groove, the support body is connected to the portable body, a pair of support protrusions protrude downward from the two ends of the support body along the left and right directions of the portable body from the bottom surface of the portable body, and the pair of support protrusions are inserted into the guide groove one by one and can slide relative to the guide groove.
[0020] In actual applications of medical devices, when the portable body needs to change its position, relevant personnel can carry the portable body to a target position such as a table or the ground. When placing the portable body, relevant personnel can tilt the angle where the bottom surface and the rear side surface of the portable body intersect toward the target position. In this process, the elastic anti-collision member can be abutted against the target position in advance, so that it can buffer the impact force during the abutment through its elastic deformation, thereby suppressing damage to the structure of the portable body. In this way, the portable body is not prone to problems such as paint peeling or even deformation and other structural damage, so that its performance and service life are not easily affected by placement. In addition, the elastic anti-collision member can also buffer the bumps generated during the transportation of the portable body, thereby further suppressing damage to the structure of the portable body.
[0021] The Summary of the Utility Model introduces a series of simplified concepts, which will be further described in detail in the Detailed Description of the Utility Model. This Summary of the Utility Model does not intend to limit the key features and essential technical features of the claimed technical solution, nor does it intend to determine the scope of protection of the claimed technical solution.
[0022] The advantages and features of the present invention are described in detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] The following drawings of the present invention are used as part of the present invention for understanding the present invention. The drawings show the embodiments of the present invention and their descriptions, and are used to explain the principles of the present invention. In the drawings,
[0024] Figure 1 is a perspective view of a medical device according to an exemplary embodiment of the present invention;
[0025] Figure 2 for Figure 1 A rear view of the medical device shown in FIG;
[0026] Figure 3 for Figure 1 A bottom view of the medical device shown in FIG;
[0027] Figure 4 for Figure 1 A cross-sectional view of the medical device shown in FIG.
[0028] Figure 5 for Figure 4 A partial enlarged view of the medical device shown in FIG.
[0029] Figure 6 for Figure 1 A perspective view of the elastic anti-collision member, the support member and the mounting column shown in FIG;
[0030] Figure 7 for Figure 6 A partial enlarged view of the elastic anti-collision member, support member and mounting column shown in FIG; and
[0031] Figure 8 It is a perspective view of a trolley according to an exemplary embodiment of the present invention.
[0032] The above drawings include the following reference numerals:
[0033] 100. Portable body; 101. Bottom surface; 102. Rear side surface; 110. Mounting groove; 111. Front groove wall; 112. Rear groove wall; 120. Mounting hole; 130. Heat dissipation hole; 140. Interface; 200. Elastic anti-collision member; 210. First elastic anti-collision member; 220. Second elastic anti-collision member; 300. Support member; 310. Support body; 320. Support protrusion; 400. Mounting column; 401. End mounting column; 402. Middle mounting column; 410. Elastic section; 420. Penetrating section; 430. Guide section; 500. Trolley; 510. Guide groove. DETAILED DESCRIPTION
[0034] In the following description, numerous details are provided to facilitate a thorough understanding of the present invention. However, those skilled in the art will appreciate that the following description merely illustrates preferred embodiments of the present invention, and that the present invention may be practiced without one or more of these details. Furthermore, to avoid confusion with the present invention, some technical features well known in the art have not been described in detail.
[0035] According to one aspect of the present invention, a medical device is provided. The medical device includes, but is not limited to, an ultrasound device or an endoscopic device. The medical device can be applied to any suitable device, including, but not limited to, medical equipment. Therefore, according to another aspect of the present invention, a medical device is also provided. The following describes in detail the medical device and medical equipment according to embodiments of the present invention in conjunction with the accompanying drawings.
[0036] like Figure 1-7 As shown, the medical device may include a portable body 100 and an elastic bumper 200 .
[0037] The portable main body 100 includes, but is not limited to, a main body of an ultrasound device or an endoscopy device. As main bodies become increasingly powerful, they are typically heavier. For clarity and simplicity, the portable main body 100 is defined as having a left-right direction XX, a front-back direction YY, and a top-bottom direction ZZ. Any two of the left-right direction XX, the front-back direction YY, and the top-bottom direction ZZ may be perpendicular to each other. The top-bottom direction YY may generally refer to the depth of the portable main body 100. Along the front-to-back direction YY of the portable main body 100, the portable main body 100 may have a front side and a rear side 102 disposed opposite each other. The front side may generally face the user and may be provided with components such as operating buttons and / or a display panel. The rear side 102 may generally face a structure such as a wall or a cabinet and may be provided with components such as heat dissipation holes 130 and / or an interface 140. The left-right direction XX may generally refer to the width of the portable main body 100. The top-bottom direction ZZ may generally refer to the height of the portable main body 100.
[0038] The elastic anti-collision member 200 can be connected to the portable main body 100 by any suitable means such as rubber coating, connection with connectors, insert injection molding combined with snap fasteners, insert injection molding combined with hot melt or suction. The elastic anti-collision member 200 can be connected to the portable main body 100 directly or indirectly through other components. Along the up-down direction ZZ of the portable main body 100, the elastic anti-collision member 200 can protrude downward from the bottom surface 101 of the portable main body 100. Moreover, along the front-to-back direction YY of the portable main body 100, the elastic anti-collision member 200 can extend backward at least to the rear side surface 102 of the portable main body 100. That is, the rear end of the elastic anti-collision member 200 can be flush with the rear side surface 102 of the portable main body 100, or protrude backward from the rear side surface 102 of the portable main body 100. The elastic anti-collision member 200 may include a spring or be made at least partially of an elastic material. Elastic materials include but are not limited to rubber or TPE (thermoplastic elastomer). In any case, the elastic anti-collision component 200 can have a certain elasticity through its structure and / or material, so as to offset a certain impact force.
[0039] In actual application of the medical device, when the portable main body 100 needs to change its position, the relevant personnel can carry the portable main body 100 to a target position such as a table or the ground. When placing the portable main body 100, the relevant personnel can place the angle where the bottom surface 101 and the rear side surface 102 of the portable main body 100 intersect toward the target position. In this process, the elastic anti-collision member 200 can be placed against the target position in advance, so that the impact force during the abutment can be buffered by its elastic deformation, thereby suppressing damage to the structure of the portable main body 100. In this way, the portable main body 100 is not prone to problems such as paint peeling or even deformation, and its performance and service life are not easily affected by handling. In addition, the elastic anti-collision member 200 can also buffer the bumps generated during the transportation of the portable main body 100, thereby further suppressing damage to the structure of the portable main body 100. Therefore, the elastic anti-collision member 200 is particularly suitable for some portable devices or equipment, such as portable hosts for ultrasound or endoscopy. Furthermore, by appropriately selecting the material of the elastic anti-collision member 200 , the elastic anti-collision member 200 can also function as an insulator, thereby preventing the current at the target position from entering the portable body 100 and causing damage to the circuit structure inside the portable body 100 .
[0040] For example, Figure 1-7 As shown, the medical device may further include a support member 300. The support member 300 may be connected to the portable main body 100 by any suitable means such as rubber encapsulation, connection with a connector, insert injection molding combined with a buckle, insert injection molding combined with hot melt or suction. The support member 300 may be directly or indirectly connected to the portable main body 100 through other components. Along the up-down direction ZZ of the portable main body 100, the support member 300 may protrude downward from the bottom surface 101 of the portable main body 100. Along the front-to-back direction YY of the portable main body 100, the elastic anti-collision member 200 may be connected to the rear side of the support member 300 by any suitable means such as welding or hot melt. In some embodiments, the elastic anti-collision member 200 and the support member 300 may be integrally formed by injection molding or the like. That is, both the elastic anti-collision member 200 and the support member 300 may be made of elastic materials such as TPU (thermoplastic polyurethane elastomer). Along the front-to-back direction YY of the portable body 100, the elastic anti-collision member 200 can extend rearward from the support member 300 to at least the rear side 102 of the portable body 100. The portable body 100 can be seated at a target location via the support member 300, which can provide support for the portable body 100. This eliminates the need for the elastic anti-collision member 200 to support the portable body 100, thereby preventing a decrease in its elasticity and, consequently, its cushioning effect, caused by prolonged seating at the target location.
[0041] For example, Figure 1-7As shown, the support member 300 includes a support body 310 and a pair of support protrusions 320. The support body 310 can be connected to the portable body 100 by any suitable means, such as overmolding, connection with connectors, insert injection molding with snap-fit, insert injection molding with hot melt, or suction. The support body 310 can be connected to the portable body 100 directly or indirectly through other components. Along the left-right direction XX of the portable body 100, the pair of support protrusions 320 can be connected to both ends of the support body 310 by any suitable means, such as welding or hot melt. Furthermore, along the vertical direction ZZ of the portable body 100, the pair of support protrusions 320 can extend downwardly from the support body 310. Along the vertical direction ZZ of the portable body 100, the pair of support protrusions 320 can protrude downwardly from the support body 310 to the bottom surface 101 of the portable body 100. In this way, the pair of support protrusions 320 can provide support for the portable body 100. When the pair of support protrusions 320 are seated at the target position, the area they occupy is relatively small, and only the relatively small area needs to be relatively flat. Therefore, the medical device can also be applied to a position where the contact surface is uneven.
[0042] The elastic anti-collision member 200 may include a first elastic anti-collision member 210 and a pair of second elastic anti-collision members 220. Along the front-to-back direction YY of the portable body 100, the first elastic anti-collision member 210 may extend rearward from the support body 310 to at least the rear side 102 of the portable body 100. Along the front-to-back direction YY of the portable body 100, the pair of second elastic anti-collision members 220 may extend rearward from the pair of support protrusions 320 in a one-to-one correspondence to at least the rear side 102 of the portable body 100. Furthermore, along the vertical direction ZZ of the portable body 100, the first elastic anti-collision member 210 and the pair of second elastic anti-collision members 220 may be spaced apart. This arrangement allows the elastic anti-collision member 200 to fully utilize the structure of the support body 310 and the pair of support protrusions 320, resulting in a larger size, thereby better providing a cushioning effect.
[0043] For example, Figure 4-5As shown, along the vertical direction ZZ of the portable body 100, the bottom surface 101 of the portable body 100 can be provided with an upwardly recessed mounting groove 110. The support member 300 can be inserted into the mounting groove 110. In this way, the mounting groove 110 can serve as a positioning function, thereby ensuring that the support member 300 and the elastic anti-collision member 200 connected to the support member 300 are in the desired position. Along the front-to-back direction YY of the portable body 100, the mounting groove 110 can have a front groove wall 111 and a rear groove wall 112 arranged opposite each other. Along the vertical direction ZZ of the portable body 100, the front groove wall 111 can protrude downwardly from the rear groove wall 112. In this way, the front groove wall 111 can effectively guide and position the support member 300. The rear groove wall 112 can reserve more space for the elastic anti-collision member 200. In this way, a portion of the elastic anti-collision member 200 can be higher than the front groove wall 111. With such a configuration, the elastic anti-collision member 200 can have a larger size, thereby being able to better play a buffering role.
[0044] For example, Figure 4-5 As shown, the bottom of the portable main body 100 may be provided with a mounting hole 120. In an embodiment in which the bottom surface 101 of the portable main body 100 is provided with an upwardly recessed mounting groove 110, the mounting hole 120 may be provided on the top wall of the mounting groove 110. A mounting post 400 may be provided on the support member 300. Along the up-down direction ZZ of the portable main body 100, the mounting post 400 may protrude upward from the support member 300. The mounting post 400 may be plugged into the mounting hole 120 in a detachable manner. The detachable manner includes but is not limited to a screw-on connection or a threaded connection. In some embodiments, the elastic anti-collision member 200, the support member 300 and the mounting post 400 may be integrally formed by injection molding or the like.
[0045] For example, Figure 4-7As shown, the mounting post 400 may include an elastic section 410 and a penetration section 420. Along the vertical direction ZZ of the portable body 100, the penetration section 420 may be connected between the elastic section 410 and the support member 300. The penetration section 420 may pass through the mounting hole 120. The elastic section 410 may have a natural state and a compressed state. When the elastic section 410 is in the natural state, its size is larger and thus it may not be able to pass through the mounting hole 120. For example, when the elastic section 410 is in the natural state, its diameter may be larger than the diameter of the mounting hole 120. When the elastic section 410 is in the compressed state, its size is smaller due to elastic deformation, so it can pass through the mounting hole 120. Along the vertical direction ZZ of the portable body 100, the support member 300 and the elastic section 410 in the natural state may be clamped at both ends of the mounting hole 120. In this way, the mounting post 400 can be detachably plugged into the mounting hole 120. Specifically, when installation is required, the relevant personnel only need to squeeze the elastic section 410 toward the mounting hole 120, so that the elastic section 410 can be switched to a compressed state, and then the elastic section 410 can be passed through the mounting hole 120 in the up-down direction ZZ of the portable body 100. After the elastic section 410 passes through the mounting hole 120, it is no longer squeezed by the mounting hole 120, so it can be restored to its natural state, and then it can be clamped at both ends of the mounting hole 120 with the support member 300. The principle of disassembly is similar, and for the sake of brevity, it will not be repeated here. The material of the elastic section 410 can be the same as or different from the material of the elastic anti-collision member 200.
[0046] For example, Figure 4-7 As shown, a guide section 430 may be connected to the upper end of the elastic section 410. The guide section 430 may pass through the mounting hole 120. For example, the diameter of the guide section 430 may be significantly smaller than the diameter of the mounting hole 120. The guide section 430 may be pre-inserted into the mounting hole 120, thereby providing a good guide and position-limiting effect for the elastic section 410 when inserted into the mounting hole 120. For example, the upper end of the guide section 430 may be dome-shaped to facilitate insertion into the mounting hole 120.
[0047] For example, Figure 5-7 As shown, the upper end of the elastic section 410 can be a tapered structure. In this way, the elastic section 410 has better guidance when inserted into the mounting hole 120, thereby facilitating installation.
[0048] For example, Figure 5 As shown, the lower end of the mounting hole 120 can be in a gradually opening structure. In this way, the elastic section 410 has better guidance when inserted into the mounting hole 120, thereby facilitating installation.
[0049] For example, Figure 6-7As shown, the mounting holes 120 may include a plurality of spaced-apart holes along the left-right direction XX of the portable body 100. The mounting posts 400 may be removably plugged into the mounting holes 120 in a one-to-one correspondence. With this arrangement, the mounting posts 400 may be connected to multiple locations of the portable body 100, thereby improving the connection strength between the two.
[0050] For example, Figure 6-7 As shown, along the left-right direction XX of the portable body 100, the distance between adjacent mounting posts at both ends of the support member 300 (i.e., the end mounting posts 401 located at the ends) is smaller than the distance between adjacent mounting posts in the middle (i.e., the middle mounting posts 402 located in the middle portion). The smaller distance between the end mounting posts 401 can provide stronger connection strength. For embodiments in which the support member 300 includes a support body 310 and a pair of support protrusions 320, the end mounting posts 401 can be located above the support protrusions 320.
[0051] For example, Figure 1-7 As shown, the support member 300 may be in the shape of an elongated strip extending along the left-right direction XX of the portable main body 100. The elastic anti-collision member 200 may include anti-collision ribs extending along the left-right direction XX of the portable main body 100. Along the up-down direction ZZ of the portable main body 100, the anti-collision ribs may be spaced apart from both the bottom surface 101 of the portable main body 100 and the bottom surface of the support member 300. In other embodiments, the elastic anti-collision member 200 may also have other structures such as multiple protrusions. Compared with other structures, the anti-collision ribs are larger in size, so that they can better play a buffering role. In the embodiment where the elastic anti-collision member 200 includes a first elastic anti-collision member 210 and a pair of second elastic anti-collision members 220, both the first elastic anti-collision member 210 and the pair of second elastic anti-collision members 220 may be anti-collision ribs.
[0052] For example, the medical device may further include an additional elastic anti-collision member, which may be disposed on the rear side 102 of the portable body 100 .
[0053] Specifically, the additional elastic anti-collision member can protrude from the rear side 102 of the portable main body 100 along the front-to-back direction YY of the portable main body 100. During specific implementation, the additional elastic anti-collision member can extend upward from the rear end of the elastic anti-collision member 200 along the up-down direction ZZ of the portable main body 100 to the rear side 102, and the elastic anti-collision member 200 and the additional elastic anti-collision member form an "L"-shaped structure that can wrap the edge where the rear side 102 intersects with the bottom surface 101. In this way, the additional elastic anti-collision member can protect the rear side 102 of the portable main body 100 and the edge where it intersects with the bottom surface 101. The elastic anti-collision member 200 and the additional elastic anti-collision member can be two structural members or can be integrally formed. In this way, even if the relevant personnel press the rear side 102 of the portable main body 100 toward the target position, the additional elastic anti-collision member can also play a better buffering role. The structure and function of the additional elastic anti-collision member can refer to the elastic anti-collision member 200. For the sake of brevity, this article will not go into details.
[0054] For example, Figure 8 As shown, in an embodiment in which the medical device is applied to a medical device, the medical device may further include a trolley 500. The elastic anti-collision member 200 can be used to abut against the trolley 500. Specifically, when the portable main body 100 (e.g., the host of a portable ultrasound device) needs to be placed on the trolley 500, the elastic anti-collision member 200 can be abutted against the trolley 500 in advance, thereby playing a buffering role and preventing the trolley 500 from causing damage to the host. Then, the host can be seated on the trolley 500, and relevant personnel can use the trolley 500 to drive the host to move.
[0055] For example, Figure 8 As shown, the top surface of the trolley 500 is provided with a downwardly recessed guide groove 510. A pair of support protrusions 320 can be inserted into the guide groove 510 in a one-to-one correspondence and can slide relative to the guide groove 510. In this way, the pair of support protrusions 320 can also serve as a guide, thereby allowing the host computer to move along the desired track on the trolley 500.
[0056] In the description of the present invention, it should be understood that the directions or positional relationships indicated by directional words such as "front", "back", "up", "down", "left", "right", "horizontal", "vertical", "vertical", "horizontal", "top", "bottom", etc. are usually based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description. Unless otherwise specified, these directional words do not indicate or imply that the device or element referred to must have a specific direction or be constructed and operated in a specific direction. Therefore, they cannot be understood as limiting the scope of protection of the present invention; the directional words "inside" and "outside" refer to the inside and outside relative to the outline of each component itself.
[0057] For ease of description, area-relative terms such as "above", "above", "on the upper surface of", "above", etc. may be used here to describe the regional positional relationship between one or more components or features shown in the figures and other components or features. It should be understood that area-relative terms include not only the orientation of the components as described in the figures, but also different orientations in use or operation. For example, if the components in the drawings are inverted as a whole, the situation where the components are "above other components or features" or "above other components or features" will include the situation where the components are "below other components or structures" or "below other components or structures". Thus, the exemplary term "above" may include both the orientations "above" and "below". In addition, these components or features may also be positioned at other different angles (e.g., rotated 90 degrees or other angles), and this document is intended to include all of these situations.
[0058] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, they indicate the presence of features, steps, operations, parts, components and / or combinations thereof.
[0059] It should be noted that the terms "first," "second," and the like in the specification and claims of this application and the accompanying drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or precedence. It should be understood that the terms used in this manner are interchangeable where appropriate, so that the embodiments of the present application described herein can be implemented in an order other than that illustrated or described herein.
[0060] The present invention has been described through the above embodiments. However, it should be understood that the above embodiments are for illustrative and illustrative purposes only and are not intended to limit the present invention to the described embodiments. Furthermore, those skilled in the art will appreciate that the present invention is not limited to the above embodiments and that various variations and modifications may be made based on the teachings of the present invention, all of which fall within the scope of the present invention. The scope of protection of the present invention is defined by the appended claims and their equivalents.
Claims
1. A medical device, characterized in that: include: portable body; as well as An elastic anti-collision piece is connected to the portable body, the elastic anti-collision piece protrudes downward from the bottom surface of the portable body along the up-down direction of the portable body, and extends backward along the front-to-back direction of the portable body at least to the rear side surface of the portable body.
2. The medical device according to claim 1, wherein The medical device further includes a support member connected to the portable body and protruding downward from the bottom surface of the portable body. The elastic anti-collision member extends backward from the support member at least to the rear side of the portable body.
3. The medical device according to claim 2, wherein The support member includes a support body and a pair of support protrusions, the support body is connected to the portable body, the pair of support protrusions protrude downward from both ends of the support body along the left and right directions of the portable body to the bottom surface of the portable body, the elastic anti-collision member includes a first elastic anti-collision member and a pair of second elastic anti-collision members, the first elastic anti-collision member extends backward from the support body at least to the rear side surface of the portable body, and the pair of second elastic anti-collision members extend backward from the pair of support protrusions at least to the rear side surface of the portable body one by one, and the first elastic anti-collision member and the pair of second elastic anti-collision members are spaced apart along the up and down directions of the portable body.
4. The medical device according to claim 2, wherein The bottom surface of the portable body is provided with an upwardly concave mounting groove, the support member is inserted into the mounting groove, the front groove wall of the mounting groove along the front-to-back direction of the portable body protrudes downward from the rear groove wall, and the portion of the elastic anti-collision member is higher than the front groove wall.
5. The medical device according to claim 2, wherein The bottom of the portable body is provided with a mounting hole, and the support member is provided with a mounting column protruding upward along the vertical direction of the portable body, and the mounting column is detachably plugged into the mounting hole.
6. The medical device according to claim 5, wherein The mounting column includes an elastic section and a penetrating section connected between the elastic section and the support member. The penetrating section and the elastic section in a compressed state can pass through the mounting hole. The support member and the elastic section in a natural state are clamped at both ends of the mounting hole.
7. The medical device according to claim 6, wherein The upper end of the elastic section is also connected to a guide section that can pass through the mounting hole.
8. The medical device according to claim 2, wherein The support member is in the shape of a long strip extending along the left and right directions of the portable body, and the elastic anti-collision member includes anti-collision ribs extending along the left and right directions of the portable body, and the anti-collision ribs are spaced apart from the bottom surface of the portable body and the bottom surface of the support member along the up and down directions of the portable body.
9. The medical device according to claim 1, wherein The medical device further includes an additional elastic anti-collision member arranged on the rear side of the portable body.
10. A medical device, characterized in that: The medical device comprises a trolley and the medical device according to any one of claims 1 to 9, wherein the elastic anti-collision member is used to abut against the trolley.