Medical equipment belt

By integrating the profile holes as gas pipelines in the base profile of the medical equipment belt, the long construction cycle caused by the need for welding of the copper pipe is solved, and rapid installation and safety improvement are achieved.

CN223232945UActive Publication Date: 2025-08-19HUNAN HESHENG MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202422414338.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-08-19
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

The copper pipes in the existing medical equipment belt need to be welded one by one, resulting in a long construction period.

Method used

Integrate the profile holes as gas pipes in the base profile, instead of copper pipes, the base profile can be pre-formed, eliminating welding operations.

Benefits of technology

It shortens the construction cycle, reduces material costs and installation difficulty, realizes electrical separation between gas pipelines and circuit components, and improves safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a medical equipment belt, and belongs to the field of medical equipment. According to the medical equipment belt, a base profile comprises a bottom plate, side plates, an upper wing plate, a lower wing plate and a pipeline base which is fixed to the bottom plate and located between the two side plates, the wing plates and the lower wing plate extend in the direction away from the side plates, the upper wing plate is obliquely arranged relative to the side plates, and the included angle between the upper wing plate and the lower wing plate is an obtuse angle; a profile hole is formed in the pipeline base, linearly extends from one end of the pipeline base to the other end of the pipeline base, directly serves as a gas pipeline and is used for transmitting medical gas, and the bottom plate, the side plate, the upper wing plate, the lower wing plate and the pipeline base are integrally formed. The section bar holes are directly integrated in the base section bar, the section bar holes serve as pipelines for conveying gas and replace copper pipelines in the prior art, welding operation can be omitted, the base section bar can be prefabricated and formed, and the construction period is greatly shortened.
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Description

Technical Field

[0001] The utility model belongs to the field of medical equipment, in particular to a medical equipment belt. Background Art

[0002] Medical equipment belts are commonly installed at the head of hospital beds. They typically integrate various gas terminals (medical oxygen pipes, medical negative pressure pipes, medical air pipes, etc.), call system terminals, lights, sockets, etc. Gas terminals require communication with external gas sources through pipelines. Conventional technology generally uses copper pipes as gas delivery conduits, which are enclosed within the chamber of the medical equipment belt. These copper pipes require individual welding during installation, resulting in a lengthy construction cycle. Addressing these issues is a pressing technical challenge facing the industry. Utility Model Content

[0003] In response to the above-mentioned defects of the prior art, the utility model provides a medical equipment belt, in which profile holes are directly integrated inside the base profile, and the profile holes are used as pipes for conveying gas, replacing the copper pipes in the prior art. The welding operation can be omitted, and the base profile can be prefabricated, which greatly shortens the construction period, thereby solving the defects mentioned in the background technology.

[0004] In order to solve the above problems, the technical solution of the present utility model is:

[0005] A medical equipment belt includes a mounting plate belt, the mounting plate belt includes a base profile, the base profile includes a bottom plate, side plates arranged on both sides of the bottom plate, an upper wing plate fixed to the top of the side plate, a lower wing plate fixed to the bottom of the side plate and spaced apart from the upper wing plate, and a pipe base fixed to the bottom plate and located between the two side plates, the upper wing plate and the lower wing plate both extend away from the side plates, the upper wing plate is inclined relative to the side plates, and the angle between the two is an obtuse angle, a profile hole is provided in the pipe base, the profile hole extends in a straight line from one end of the pipe base to the other end, the profile hole directly serves as a gas pipe for transmitting medical gas, and the bottom plate, side plates, upper wing plate, lower wing plate and pipe base are formed as one piece.

[0006] As a preferred improvement, the extension direction of the profile hole is consistent with the length direction of the base plate, the number of the profile holes is set to multiple, and the multiple profile holes are arranged side by side along the width direction of the base plate.

[0007] As a preferred improvement, the number of the profile holes is three, and the three profile holes are equidistantly spaced and serve as a medical oxygen pipeline, a medical negative pressure pipeline, and a medical air pipeline, respectively.

[0008] As a preferred improvement, the pipe base is flush with both ends of the bottom plate, the ends of the side plate, the upper wing plate and the lower wing plate are flush with each other, and the extension length of the side plate is greater than the extension length of the bottom plate.

[0009] As a preferred improvement, the mounting plate strip further includes side cover plates, an upper cover plate and an end cover plate, the end cover plates being arranged at both ends of the base profile for sealing and decorating the openings at both ends of the base profile, and the end cover plates being detachably connected to the base profile; the upper wing plate, the side plate and the lower wing plate located on the same side of the bottom plate cooperate to form a side mounting cavity with a side opening, the side cover plate is installed at the opening position of the side mounting cavity for sealing the side mounting cavity, the top of the side cover plate is detachably connected to the upper wing plate, and the bottom is detachably connected to the lower wing plate; the bottom plate cooperates with the two side plates located on different sides of the bottom plate and the two upper wing plates to form an upper mounting cavity with a top opening, the upper cover plate is installed at the opening position of the upper mounting cavity for sealing the upper mounting cavity, and the two sides of the upper cover plate are detachably connected to the two upper wing plates respectively.

[0010] As a preferred improvement, the edge of the lower wing plate protrudes upward to form a first clip, and the bottom of the side cover plate is provided with a first clip corresponding to the first clip, and the first clip is correspondingly engaged in the first clip; the edge of the upper wing plate is provided with a second clip, and the top of the side cover plate is provided with an elastic arm, and the elastic arm is provided with a second clip corresponding to the second clip, and the second clip is correspondingly engaged in the second clip; the edge of the upper wing plate is also provided with a third clip and a first hook, and the third clip and the first hook are arranged at intervals, and one side edge of the upper cover plate is provided with a third clip corresponding to the third clip, and the third clip is engaged in the third slot, and the upper cover plate can rotate around the third clip, and the other side of the upper cover plate is provided with a second hook matching the first hook, and the first hook and the second hook are hooked with each other.

[0011] As a preferred improvement, it further includes a gas terminal, which is fixed above the pipeline base, and the pipeline base is penetrated by an air hole connecting the gas pipeline and the gas terminal, and the upper cover plate is penetrated by a first installation window at a position corresponding to the gas terminal, the first installation window connects the upper installation cavity and the outside world, and the gas terminal is exposed through the first installation window.

[0012] As a preferred improvement, a sealing ring is provided on the connection interface between the gas terminal and the pipeline base, and the sealing ring surrounds the periphery of the air hole.

[0013] As a preferred improvement, it further includes a call system terminal, which is installed in the upper installation cavity. The upper cover plate is provided with a second installation window at a position corresponding to the call system terminal. The second installation window connects the upper installation cavity and the outside world, and the system terminal is exposed through the second installation window.

[0014] As a preferred improvement, it also includes a lighting lamp and a socket, the lighting lamp and the socket are arranged in different side mounting cavities, and a third mounting window is provided through the side cover plate corresponding to the position of the socket, the third mounting window connects the side mounting cavity and the outside world, and the socket is exposed through the third mounting window, and the side cover plate on the side mounting cavity for installing the lighting lamp is made of a light-transmitting material, and the light emitted by the lighting lamp is transmitted outward through the side cover plate.

[0015] The beneficial effects of the present invention are:

[0016] 1. A pipe base is integrated into the base profile, and a profile hole is provided in the pipe base. The profile hole is directly used as a pipe for conveying gas, replacing the copper pipe in the existing technology. This can save welding operations and the base profile can be prefabricated, greatly shortening the construction period;

[0017] 2. Gas pipelines and circuit components (sockets, lighting) are installed in different chambers, achieving electrical separation and improving safety;

[0018] 3. The upper cover and side cover are both snap-fitted to the profile base, making them easy to assemble and disassemble. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 A three-dimensional structural diagram showing a medical device belt provided by the present invention;

[0020] Figure 2 express Figure 1 An exploded structural diagram of a medical device belt is shown;

[0021] Figure 3 express Figure 1 A three-dimensional structural diagram of the base profile shown;

[0022] Figure 4 express Figure 1 A medical device is shown with a cross-sectional view along line II;

[0023] Figure 5 express Figure 4 Enlarged view of area A in the middle;

[0024] Figure 6 express Figure 4 Enlarged view of area B in the middle;

[0025] Figure 7 express Figure 4 Enlarged view of area C in the middle;

[0026] Figure 8 Schematic diagram showing the installation of gas terminals, call system terminals and lighting;

[0027] Figure 9 A schematic diagram showing the installation of gas terminals, call system terminals, and sockets. DETAILED DESCRIPTION

[0028] In the description of the present invention, it should be understood that the terms indicating orientation or positional relationships are based on the orientation or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the elements referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.

[0029] The embodiments of the present invention will be further described below with reference to the accompanying drawings.

[0030] like Figures 1-9 As shown, this embodiment provides a medical device belt 1, including a mounting plate belt 2 and a gas terminal 3, a call system 4, a lighting lamp 5 and a socket 6 integrated on the mounting plate belt 2.

[0031] The mounting plate strip 2 includes a base profile 21 , side cover plates 22 , an upper cover plate 23 and an end cover plate 24 .

[0032] The base profile 21 includes a bottom plate 211, side plates 212 disposed on both sides of the bottom plate 211, upper wing plates 213 fixed to the tops of the side plates 212, lower wing plates 214 fixed to the bottoms of the side plates 212 and spaced apart from the upper wing plates 213, and a pipe base 215 fixed to the bottom plate 211 and located between the two side plates 212. Preferably, the bottom plate 211, side plates 212, upper wing plates 213, lower wing plates 214, and pipe base 215 are integrally formed.

[0033] The upper wing plate 213 and the lower wing plate 214 both extend away from the side plate 212. The upper wing plate 213 is tilted relative to the side plate 212, and the angle between the upper wing plate 213 and the lower wing plate 214 is obtuse. The pipe base 215 is disposed above the bottom plate 211. The pipe base 215 is provided with a profile hole 2150. The profile hole 2150 extends linearly from one end of the pipe base 215 to the other end. The profile hole 2150 directly serves as a gas conduit for transmitting medical gas.

[0034] The profile holes 2150 extend in the same direction as the length of the base plate 211. The profile holes 2150 can be multiple, arranged side by side along the width of the base plate 211. In this embodiment, there are three profile holes 2150, spaced evenly apart, serving as a medical oxygen line, a medical negative pressure line, and a medical air line, respectively.

[0035] In the present invention, the profile holes 2150 are directly provided on the base profile 21 to serve as gas conduits for transmitting medical gases, eliminating the need for additional copper conduits. This effectively reduces material costs and eliminates the need for machining and welding copper conduits during installation, thus reducing installation difficulty. The base profile 21 can be prefabricated and then transported to the construction site for assembly, further shortening the construction period.

[0036] The end of the profile hole 2150 is further provided with a pipe joint or a pipe plug. The pipe joint is used to connect to other pipes or devices, and the pipe plug is used to seal the end of the profile hole 2150. Specifically, when the end of the profile hole 2150 needs to be connected to other pipes or devices, the pipe joint is provided at the end. The style of the pipe joint can be conventional technology in the field and is not limited in this embodiment. When the end of the profile hole 2150 serves as the end of a gas pipeline and does not need to be connected to other pipes or devices, the pipe plug is provided at the end for sealing.

[0037] Furthermore, this embodiment also provides a structure of a pipe joint, including a first connecting end and a second connecting end, the first connecting end is provided with an external thread, and the profile hole 2150 and the connecting end thereof are provided with a matching internal thread, and the first connecting end is screwed into the profile hole 2150 during installation. In order to ensure the stability and airtightness of the connection, the first connecting end can also be wrapped with raw tape, applied with thread sealant or provided with a sealing gasket; the second connecting end is provided with an internal thread for connecting to other pipelines or devices, and the other pipelines or devices are provided with matching external threads, and the other pipelines or devices are screwed into the second connecting end during installation.

[0038] The structure of the pipe plug is similar to that of the pipe joint, except that the pipe joint has a hollow structure inside, forming a channel for gas transmission, while the pipe plug has a solid structure inside, sealing the gas in the gas pipe.

[0039] The pipe base 215 is flush with both ends of the bottom plate 211, and the ends of the side plates 212, upper wing plates 213, and lower wing plates 214 are also flush. The side plates 212 extend longer than the bottom plate 211, forming notches 25 at both ends of the base profile 21. These notches 25 serve as mounting spaces for pipe joints and pipe plugs, and also as access for gas pipeline maintenance.

[0040] The end caps 24 are provided at both ends of the base profile 21 to seal and decorate the openings at both ends. The end caps 24 are detachably connected to the base profile 21, and are specifically designed as snap-on connections. During use, the end caps 24 are simply snapped onto the ends of the base profile 21, making installation easy. The outer surface of the end caps 24 is arc-shaped, enhancing the aesthetic appeal.

[0041] The upper wing plate 213, the side plate 212 and the lower wing plate 214 located on the same side of the bottom plate 211 cooperate to form a side mounting cavity 216 with a side opening. The side cover plate 22 is installed at the opening position of the side mounting cavity 216 to cover the side mounting cavity 216. The top of the side cover plate 22 is buckled with the upper wing plate 213, and the bottom is buckled with the lower wing plate 214.

[0042] The bottom plate 211 and the two side plates 212 located on different sides of the bottom plate 211 and the two upper wing plates 213 cooperate to form an upper mounting cavity 217 with a top opening. The upper cover plate 23 is installed at the opening position of the upper mounting cavity 217 to cover the upper mounting cavity 217. The two sides of the upper cover plate 23 are respectively buckled with the two upper wing plates 214.

[0043] The side cover plates 22 and the upper cover plate 23 are both detachably connected to the base profile 21. The snap-fitting method eliminates the need for additional third-party fasteners, such as screws, between the side cover plates 22 and the upper cover plate 23 and the base profile 21. The snap-fitting method can be a conventional snap-fit connection or a mortise and tenon connection in the art.

[0044] In this embodiment, a specific connection method of the side cover plate 22 and the upper cover plate 23 with the base profile 21 is provided as follows:

[0045] The edge of the lower wing panel 214 protrudes upward to form a first clip 2141. The bottom of the side cover 22 is provided with a first clip 221 corresponding to the first clip 2141, and the first clip 2141 is correspondingly engaged within the first clip 221. The edge of the upper wing panel 213 is provided with a second clip 2131. The top of the side cover 22 is provided with an elastic arm 222, and the elastic arm 222 is provided with a second clip 2221 corresponding to the second clip 2131. The second clip 2131 is correspondingly engaged within the second clip 2221. The first clip 2141 and the second clip 2131 are respectively engaged with the bottom and top of the side cover 22, thereby securing the side cover 22.

[0046] During installation, first align the first slot 221 with the first clip 2141 and snap them in, then push the side cover 22 inward, and after the second clip 2131 contacts the elastic arm 222, squeeze the elastic arm 222 to deform the elastic arm 222, and the second clip 2131 moves along the surface of the elastic arm 222 until it slides into the second slot 2221 and loses contact with the elastic arm 222, and the elastic arm 222 loses the squeezing force and rebounds, clamping the second clip 2131.

[0047] The edge of the upper wing plate 213 is also provided with a third clip 2132 and a first hook 2133, and the third clip 2132 and the first hook 2132 are arranged at intervals. A third clip groove 231 corresponding to the third clip 2132 is provided on one side edge of the upper cover plate 23, and the third clip 2132 is clipped into the third clip groove 231, and the upper cover plate 23 can rotate around the third clip 2132. Preferably, in order to ensure the smoothness of rotation, the contact surface between the third clip 2132 and the third clip groove 231 is an arc surface; the other side of the upper cover plate 23 is provided with a second clip hook 231 matching the first clip hook 2133, and the first clip hook 2133 and the second clip hook 231 are hooked with each other to fix the upper cover plate 23.

[0048] During installation, first put the third slot 231 on one side of the upper cover 23 onto the third clip 2132, and then press the other side of the upper cover 23 downward to rotate the upper cover 23 around the third clip 2132 until the second hook 231 contacts and engages with the first hook 2133.

[0049] The upper cover plate 23 and the side cover plate 22 are connected to the profile base 21 by snapping, so that the upper cover plate 23 and the side cover plate 22 can be disassembled and assembled perpendicular to the profile base 21. Compared with the method of inserting or withdrawing along the length direction in the prior art, the space required for disassembly and assembly is smaller.

[0050] The gas terminal 3 is fixed above the pipe base 215. The pipe base 215 is provided with an air hole 2151 connecting the gas pipe and the gas terminal 3. The upper cover 23 is provided with a first installation window 2301 corresponding to the position of the gas terminal 3. The first installation window 2301 connects the upper installation cavity 217 and the outside world. The gas terminal 3 is exposed to the outside through the first installation window 2301. The gas terminal 3 serves as a port for interacting with the patient, and is then connected to the patient's respiratory system through a mask (oxygen mask, nebulizer mask, etc.). Taking oxygen inhalation as an example, the medical oxygen pipeline is connected to the external oxygen source, and the supplied oxygen enters the gas terminal 3 through the air hole 2151 in turn, and is then transported to the oxygen mask through the gas terminal 3 for the patient to inhale oxygen.

[0051] In order to ensure the airtightness of the connection between the gas terminal 3 and the pipeline base 215 , a sealing ring is provided on the connection interface between the gas terminal 3 and the pipeline base 215 , and the sealing ring surrounds the periphery of the air hole 2151 .

[0052] The medical device belt 1 also includes a call system terminal 4, which is installed within the upper mounting cavity 217. A second mounting window 2302 is provided through the upper cover plate 23 corresponding to the location of the call system terminal 4. The second mounting window 2302 connects the upper mounting cavity 217 to the outside world, and the system terminal 4 is exposed through the second mounting window 2302. The call system terminal 4 includes a display panel and a voice module. The display panel serves as a human-computer interface, displaying patient information, including name, age, condition, and bed number; and allowing the patient to select desired actions, such as calling or hanging up. The voice module serves as an audio input and output port, collecting and outputting audio information during communication between the patient and the medical staff. The call system terminal 4 needs to communicate with the medical staff's intelligent management system, employing conventional techniques in the art, which will not be described in detail in this embodiment.

[0053] The medical device belt 1 also includes a lighting lamp 5 and a socket 6, which are mounted in different side mounting cavities 216. A third mounting window 220 is provided through the side cover 22 at a position corresponding to the socket 6. The third mounting window 220 connects the side mounting cavity 216 with the outside world, and the socket 6 is exposed to the outside through the third mounting window 220. The side cover 22 on the side mounting cavity 216 for mounting the lighting lamp 5 is made of a light-transmitting material, allowing light from the lighting lamp 5 to be transmitted outward through the side cover 22.

[0054] After the medical device belt 1 is installed, the base profile 2 is fixed to the wall. The lighting lamp 5 can be installed in the upper side mounting cavity 216 or the lower side mounting cavity 216, which is not limited in this embodiment. After the installation position of the lighting lamp 5 is determined, the position of the socket 6 can be adjusted accordingly.

[0055] It should be noted that the lighting lamp 5 and the socket 6 may also be equipped with corresponding power supply cables, which are also buried in the side mounting cavity 216 , so as to be well concealed.

[0056] The lighting lamp 5 and the socket 6 are located in different installation cavities from the gas pipeline, thereby achieving electrical separation and improving safety in use.

[0057] The above embodiments are intended only to illustrate the technical concepts and features of the present invention. Their purpose is to enable those familiar with the art to understand the contents of the present invention and implement them accordingly. They are not intended to limit the scope of protection of the present invention. Any equivalent changes or modifications based on the spirit of the present invention are intended to be included in the scope of protection of the present invention.

Claims

1. A medical equipment belt, characterized in that: The cam is secured to the bottom of the base plate and has a plurality of slots for securing the base to the cam, wherein the slots are secured to the bottom of the base plate and are adapted to engage the bottom of the base plate.

2. The medical device belt according to claim 1, characterized in that The extending direction of the profile hole is consistent with the length direction of the bottom plate. The number of the profile holes is set to be multiple, and the multiple profile holes are arranged side by side along the width direction of the bottom plate.

3. The medical device belt according to claim 2, characterized in that The number of the profile holes is three, and the three profile holes are equidistantly spaced and serve as a medical oxygen pipeline, a medical negative pressure pipeline, and a medical air pipeline, respectively.

4. The medical device belt according to claim 1, characterized in that The pipe base is flush with both ends of the bottom plate, and both ends of the side plate, upper wing plate and lower wing plate are flush with each other. The extension length of the side plate is greater than that of the bottom plate.

5. The medical device belt according to claim 1, characterized in that The mounting plate strip further includes a side cover plate, an upper cover plate and an end cover plate, the end cover plates being arranged at both ends of the base profile for blocking and decorating the openings at both ends of the base profile, and the end cover plates being detachably connected to the base profile; the upper wing plate, the side plate and the lower wing plate located on the same side of the bottom plate cooperate to form a side mounting cavity with a side opening, the side cover plate is installed at the opening position of the side mounting cavity for sealing the side mounting cavity, the top of the side cover plate is detachably connected to the upper wing plate, and the bottom is detachably connected to the lower wing plate; the bottom plate cooperates with the two side plates located on different sides of the bottom plate and the two upper wing plates to form an upper mounting cavity with a top opening, the upper cover plate is installed at the opening position of the upper mounting cavity for sealing the upper mounting cavity, and the two sides of the upper cover plate are detachably connected to the two upper wing plates respectively.

6. The medical device belt according to claim 5, characterized in that The edge of the lower wing plate protrudes upward to form a first clip, and the bottom of the side cover is provided with a first clip corresponding to the first clip, and the first clip is correspondingly engaged in the first clip; the edge of the upper wing plate is provided with a second clip, and the top of the side cover is provided with an elastic arm, and the elastic arm is provided with a second clip corresponding to the second clip, and the second clip is correspondingly engaged in the second clip; the edge of the upper wing plate is also provided with a third clip and a first hook, and the third clip and the first hook are arranged at intervals, and one side edge of the upper cover is provided with a third clip corresponding to the third clip, and the third clip is engaged in the third slot, and the upper cover can rotate around the third clip, and the other side of the upper cover is provided with a second hook matching the first hook, and the first hook and the second hook are hooked with each other.

7. The medical device belt according to claim 5, characterized in that It also includes a gas terminal, which is fixed above the pipeline base. The pipeline base is penetrated by an air hole connecting the gas pipeline and the gas terminal. The upper cover plate is penetrated by a first installation window at a position corresponding to the gas terminal. The first installation window connects the upper installation cavity and the outside world, and the gas terminal is exposed through the first installation window.

8. The medical device belt according to claim 7, characterized in that A sealing ring is provided on the connection interface between the gas terminal and the pipeline base, and the sealing ring surrounds the periphery of the air hole.

9. The medical device belt according to claim 5, characterized in that It also includes a call system terminal, which is installed in the upper installation cavity. The upper cover plate is provided with a second installation window at a position corresponding to the call system terminal. The second installation window connects the upper installation cavity and the outside world, and the system terminal is exposed through the second installation window.

10. The medical device belt according to claim 5, characterized in that It also includes a lighting lamp and a socket, which are arranged in different side mounting cavities. A third mounting window is provided through the side cover plate at a position corresponding to the socket. The third mounting window connects the side mounting cavity and the outside world. The socket is exposed through the third mounting window. The side cover plate on the side mounting cavity for installing the lighting lamp is made of a light-transmitting material. The light emitted by the lighting lamp is transmitted outward through the side cover plate.