CN215459812U - Auxiliary supporting device for traditional Chinese medicine meridian conditioning bed - Google Patents

Auxiliary supporting device for traditional Chinese medicine meridian conditioning bed Download PDF

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Publication number
CN215459812U
CN215459812U CN202122053413.4U CN202122053413U CN215459812U CN 215459812 U CN215459812 U CN 215459812U CN 202122053413 U CN202122053413 U CN 202122053413U CN 215459812 U CN215459812 U CN 215459812U
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guide rail
bracket
traditional chinese
supporting
chinese medicine
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刘贵臻
豆为飞
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Zhongke Shangyi Health Technology Beijing Co ltd
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Zhongke Shangyi Health Technology Beijing Co ltd
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Abstract

The application relates to an auxiliary supporting device for a traditional Chinese medicine meridian conditioning bed, which comprises a supporting frame, a left bracket and a right bracket, wherein the left bracket and the right bracket are used for supporting the upper limbs of a human body; the support frame is suitable for being detachably mounted on a bed plate of the conditioning bed; the left bracket and the right bracket are respectively arranged on two opposite sides of the supporting frame, so that the left bracket and the right bracket are respectively arranged on two sides of the conditioning bed. The device can be applied to occasions with large space limitation and beds with horizontally floating bed boards, and the movement of the bed boards can not be hindered due to the interference of equipment when the bed boards horizontally float.

Description

Auxiliary supporting device for traditional Chinese medicine meridian conditioning bed
Technical Field
The application relates to the field of conditioning auxiliary equipment, in particular to an auxiliary supporting device for a traditional Chinese medicine meridian conditioning bed.
Background
When a patient recuperates the channels and collaterals, the patient usually needs to keep the supine or prone position, and the channels and the collaterals needing to be recuperated and dredged are ensured to be fully exposed so as to be convenient for the operation of the conditioning equipment along the channels and the collaterals. A common solution today is to provide corresponding support attachments to the head, face and upper limbs respectively. For example, a round or approximately round head-face supporting pillow is provided for the head, and a foldable or rotatable bedside supporting device is additionally arranged for the upper limb.
However, the existing bedside turning or rotating type upper limb supporting accessories are more suitable for the occasion of fixing the bed board, and for the bed with the bed board floating horizontally in one direction or two directions, the movement of the bed board is possibly hindered due to the interference of equipment.
Disclosure of Invention
In view of this, the present application provides an auxiliary supporting device for a traditional Chinese medicine meridian conditioning bed, which is applicable to places with large space restrictions and beds with horizontally floating bed boards, and when the bed boards horizontally float, the movement of the bed boards is not hindered due to the interference of equipment.
According to an aspect of the present application, there is provided an auxiliary supporting device for a traditional Chinese medicine meridian conditioning bed, comprising a supporting frame, a left bracket and a right bracket for supporting upper limbs of a human body;
the support frame is suitable for being detachably mounted on a bed plate of the conditioning bed;
the left bracket and the right bracket are respectively arranged on two opposite sides of the supporting frame, so that the left bracket and the right bracket are respectively arranged on two sides of the conditioning bed.
In one possible implementation, the support frame includes a first support plate, a connection plate, and a second support plate;
the first supporting plate is fixed on one side of the connecting plate, the second supporting plate is fixed on the other side of the connecting plate, and the first supporting plate and the second supporting plate are both positioned at the top of the connecting plate; and is
The first supporting plate, the connecting plate and the second supporting plate are connected in a U shape;
the left bracket is movably installed at the top of the first supporting plate, the left bracket is suitable for placing the left forearm of a human body, the right bracket is movably installed at the top of the second supporting plate, and the right bracket is suitable for placing the right forearm of the human body.
In one possible implementation manner, a left guide hole and a right guide hole are respectively formed in two sides of the support frame;
the left bracket comprises a left bracket hand and a left moving piece, the left moving piece is detachably arranged at the bottom of the left bracket hand, and the left moving piece is movably arranged at the left guide hole;
the structure of the right bracket is the same as that of the left bracket.
In one possible implementation manner, the left moving member includes a rotating shaft, a first elastic member, a slider, and a platen;
the sliding block is provided with a through hole, and one end of the rotating shaft sequentially penetrates through the through hole and the left guide hole to be detachably connected with the left support hand;
the first elastic piece is sleeved on the rotating shaft, one end of the first elastic piece is connected with the left supporting hand, and the other end of the first elastic piece is connected with the rotating shaft;
the other end of the rotating shaft is provided with a first tooth surface;
the pressing plate is detachably mounted on one side, away from the left supporting hand, of the sliding block, and a second tooth surface is arranged on one side, facing the sliding block, of the pressing plate;
the first tooth surface is matched with the second tooth surface.
In one possible implementation, the first elastic member is a compression spring;
a surrounding part is arranged on one side, facing the pressure plate, of the rotating shaft, the surrounding part is annularly arranged, the surrounding part is circumferentially arranged around the side wall of the rotating shaft, and the side, facing the pressure plate, of the surrounding part is flush with one side, facing the pressure plate, of the rotating shaft;
the first tooth surface is arranged on the baffle surrounding part;
one side of the first elastic piece is abutted with the supporting frame, and the other side of the first elastic piece is abutted with the surrounding and blocking part.
In a possible implementation manner, a first guide rail and a second guide rail are respectively arranged in the directions of two opposite sides of the sliding block, and the first guide rail and the second guide rail are both connected with the supporting frame;
the first guide rail and the second guide rail are arranged along the moving direction of the sliding block;
a mounting hole is formed in the side wall of the sliding block, two ends of the mounting hole face the first guide rail and the second guide rail respectively, a fixed pin shaft is detachably mounted at one end of the mounting hole, and the fixed pin shaft is movably connected with the first guide rail;
and a second elastic piece is installed at the other end of the installation hole, a movable pin shaft is installed at the other end of the second elastic piece, and the movable pin shaft is movably connected with the second guide rail.
In a possible implementation manner, one side of the fixed pin shaft facing the first guide rail is a spherical surface protruding towards one side of the first guide rail;
a plurality of first grooves are formed in the first guide rail, the first grooves are all conical grooves, the first grooves are sequentially arranged along the length direction of the first guide rail, and the first grooves are matched with the spherical surface of the fixed pin shaft;
the structure of the movable pin shaft is the same as that of the fixed pin shaft, and the structure of the second guide rail is the same as that of the first guide rail.
In a possible implementation manner, more than two mounting holes are formed in the mounting holes, and the number of the fixed pin shafts and the number of the movable pin shafts are matched with the number of the mounting holes.
In a possible implementation manner, a head and face pad is arranged at the middle position of the top side of the support frame, and the head and face pad is suitable for placing the head of a human body;
arm pads are installed on the top of the left bracket and the top of the right bracket.
In one possible implementation manner, two opposite ends of the support frame can be detachably provided with fixed guide rails;
the fixed guide rail is suitable for being detachably mounted on the conditioning bed, a plurality of bolt holes are formed in the fixed guide rail, and the bolt holes are formed in a plurality of positions along the length direction of the fixed guide rail, so that the support frame and the fixed guide rail are detachably connected through bolts.
The utility model provides an auxiliary stay device for traditional chinese medical science main and collateral channels are taked care of bed is used for installing on taking care of the bed for traditional chinese medical science main and collateral channels are taked care of bed's auxiliary stay device is provided with support frame, left bracket and right bracket triplex, and wherein, left bracket and right bracket set up respectively in the both sides of the relative setting of support frame, and with support frame demountable installation on the bed board of taking care of the bed, and the support frame is located head of a bed one side. From this, the people can place the head on the support frame when carrying out the physiotherapy, and the arm of both sides is placed respectively on left bracket and right bracket for head and arm provide the position of placing when the human body carries out the physiotherapy in this application embodiment. Wherein, because this application embodiment auxiliary device, through the support frame direct mount on the bed board of taking care of the bed, the left side is opened up and is built and right bracket then install respectively in the both sides of support frame, thereby the portion of placing the head and the portion of placing of arm are integrated for a strutting arrangement, and the strutting arrangement who integrates as an organic whole passes through the support frame and installs on the bed board of the bed body, this just makes the bed board float along the horizontal direction on the bedstead when, this application embodiment is used for traditional chinese medical science main and collateral channels to take care of the supplementary strutting arrangement of bed can follow the bed board and move, and then just can not produce with the bed board and interfere the hindrance bed board motion. In addition, the auxiliary supporting devices for the traditional Chinese medicine meridian conditioning bed are not arranged on the two sides of the bed body, so that the bed board of the bed body is not widened, and the phenomenon that the movement of the bed board is hindered due to interference of external equipment is further prevented when the bed board moves. To sum up, this application embodiment is used for auxiliary stay device of traditional chinese medical science main and collateral channels recuperating bed can be applicable to the great occasion of space restriction and the bed board that the bed board has the level to float, can not hinder the motion of bed board because of the interference of equipment when the bed board carries out the level to float.
Other features and aspects of the present application will become apparent from the following detailed description of exemplary embodiments, which proceeds with reference to the accompanying drawings.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate exemplary embodiments, features, and aspects of the application and, together with the description, serve to explain the principles of the application.
Fig. 1 is a main body structure view of an auxiliary supporting device for a traditional Chinese medicine meridian conditioning bed according to an embodiment of the present application;
fig. 2 is an exploded view illustrating a left bracket and a right bracket of an auxiliary supporting device for a meridian conditioning bed of chinese medicine according to an embodiment of the present application;
fig. 3 is a structural view showing a rotating shaft and a pressing plate of the auxiliary supporting device for the traditional Chinese medicine meridian conditioning bed according to the embodiment of the present application;
fig. 4 shows an installation diagram of a support frame and a fixed guide rail of the auxiliary support device for the traditional Chinese medicine meridian conditioning bed according to the embodiment of the present application.
Detailed Description
Various exemplary embodiments, features and aspects of the present application will be described in detail below with reference to the accompanying drawings. In the drawings, like reference numbers can indicate functionally identical or similar elements. While the various aspects of the embodiments are presented in drawings, the drawings are not necessarily drawn to scale unless specifically indicated.
It will be understood, however, that the terms "central," "longitudinal," "lateral," "length," "width," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," "counterclockwise," "axial," "radial," "circumferential," and the like are used in an orientation or positional relationship indicated in the drawings for convenience in describing or simplifying the description, and do not indicate or imply that the device or element so referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus should not be considered as limiting the utility model.
Furthermore, the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present invention, "a plurality" means two or more unless specifically defined otherwise.
The word "exemplary" is used exclusively herein to mean "serving as an example, embodiment, or illustration. Any embodiment described herein as "exemplary" is not necessarily to be construed as preferred or advantageous over other embodiments.
Furthermore, in the following detailed description, numerous specific details are set forth in order to provide a better understanding of the present application. It will be understood by those skilled in the art that the present application may be practiced without some of these specific details. In some instances, methods, means, elements and circuits that are well known to those skilled in the art have not been described in detail so as not to obscure the present application.
Fig. 1 is a main body structure diagram of an auxiliary supporting device for a traditional Chinese medicine meridian conditioning bed according to an embodiment of the present application. Fig. 2 shows an exploded view of a left bracket and a right bracket of an auxiliary supporting device for a traditional Chinese medicine meridian conditioning bed according to an embodiment of the present application. Fig. 3 is a structural view showing a rotating shaft and a pressing plate of the auxiliary supporting device for the traditional Chinese medicine meridian conditioning bed according to the embodiment of the present application. Fig. 4 shows an installation diagram of a support frame and a fixed guide rail of the auxiliary support device for the traditional Chinese medicine meridian conditioning bed according to the embodiment of the present application. As shown in fig. 1, fig. 2, fig. 3 or fig. 4, the auxiliary supporting device for a meridian conditioning bed of chinese medicine comprises: the nursing bed comprises a support frame 100, a left bracket 200 and a right bracket 300, wherein the support frame 100 is detachably arranged on the nursing bed, and the left bracket 200 and the right bracket 300 are respectively arranged at two opposite sides of the support frame 100, so that the left bracket 200 and the right bracket 300 are respectively arranged at two sides of the nursing bed.
The auxiliary supporting device for the traditional Chinese medicine meridian conditioning bed is used for being installed on the conditioning bed, the auxiliary supporting device for the traditional Chinese medicine meridian conditioning bed is provided with three parts, namely a supporting frame 100, a left bracket 200 and a right bracket 300, wherein the left bracket 200 and the right bracket 300 are respectively arranged on two sides of the supporting frame 100, which are arranged oppositely, the supporting frame 100 is detachably installed on a bed board of the conditioning bed, and the supporting frame 100 is located on one side of a bed head. Therefore, when a person carries out physiotherapy, the head of the person can be placed on the support frame 100, and the arms on the two sides of the person are placed on the left bracket 200 and the right bracket 300 respectively, so that the placing positions of the head and the arms are provided when the person carries out physiotherapy in the embodiment of the application. Wherein, because this application embodiment auxiliary device, through support frame 100 direct mount on the bed board of recuperating the bed, left side is opened up and is built and right bracket 300 is then installed respectively in the both sides of support frame 100, thereby place the portion of placing of head and the portion of placing of arm and integrate for a strutting arrangement, and the strutting arrangement who integrates as an organic whole passes through support frame 100 and installs on the bed board of the bed body, this just makes the bed board float along the horizontal direction on the bed frame when, this application embodiment is used for traditional chinese medical science main and collateral channels to recuperate the auxiliary support device of bed and can follow the bed board and move, and then just can not produce with the bed board and interfere the hindrance bed board motion. In addition, the auxiliary supporting devices for the traditional Chinese medicine meridian conditioning bed are not arranged on the two sides of the bed body, so that the bed board of the bed body is not widened, and the phenomenon that the movement of the bed board is hindered due to interference of external equipment is further prevented when the bed board moves. To sum up, this application embodiment is used for auxiliary stay device of traditional chinese medical science main and collateral channels recuperating bed can be applicable to the great occasion of space restriction and the bed board that the bed board has the level to float, can not hinder the motion of bed board because of the interference of equipment when the bed board carries out the level to float.
In one possible implementation, the supporting frame 100 comprises a first supporting plate 110, a connecting plate 120 and a second supporting plate 130, wherein the first supporting plate 110 is fixed on one side of the connecting plate 120, the second supporting plate 130 is fixed on the other side of the connecting plate 120, the first supporting plate 110 and the second supporting plate 130 are both located on the top of the connecting plate 120, and the first supporting plate 110, the connecting plate 120 and the second supporting plate 130 are connected in a "U" shape. The left bracket 200 is movably installed on the top of the first support plate 110, the left bracket 200 is used for placing the left forearm of the human body, the right bracket 300 is movably installed on the top of the second support plate 130, and the right bracket 300 is used for placing the right forearm of the human body. Therefore, the structure of the embodiment of the application is further optimized.
It should be noted here that in a possible implementation, the connection of the first support plate 110, the connecting plate 120 and the second support plate 130 is not a "u" shape in a strict sense, and both sides of the "u" shape extend out of the bottom of the "u".
Further, in a possible implementation manner, a left guide hole and a right guide hole are respectively opened at two sides of the supporting frame 100, the left bracket 200 includes a left support hand 210 and a left moving member 220, wherein the left moving member is detachably mounted at the bottom of the left support hand 210, and the left moving member 220 is movably disposed at the left guide hole. The structure of the right bracket 300 is the same as that of the left bracket 200. Therefore, the structure of the embodiment of the application is further optimized, and meanwhile, the adjustment can be performed according to patients with different heights, so that the adaptation performance of the embodiment of the application is enhanced.
Here, it should be noted that, in one possible implementation, the left guide hole is opened on the plate surface of the first support plate 110, and the left guide hole is disposed through the plate surface of the first support plate 110. The right guide hole is formed in the plate surface of the second support plate 130, and the right guide hole penetrates through the plate surface of the second support plate 130.
Here, it should be noted that, in one possible implementation, the first support plate 110 and the second support plate 130 are each in the shape of a long plate, and the left guide hole and the right guide hole are each long round holes, the left guide hole is opened along the length direction of the first support plate 110, and the right guide hole is opened along the length direction of the second support plate 130. Therefore, the structure of the embodiment of the application is further optimized.
Here, it should also be noted that, in one possible implementation, the right bracket 300 includes a right holder hand and a right moving member, the right moving member is detachably mounted at the bottom of the left holder hand 210, and the right moving member is movably mounted at the right guide hole.
Here, it should also be noted that, in one possible implementation manner, a left cavity is opened at one side of the first support plate 110, the left guide hole is communicated with the left cavity, and the left moving member 220 is disposed inside the left cavity. The right cavity has been seted up to one side of second backup pad 130, and right guiding hole and right cavity intercommunication setting, and when right bracket 300 included right support hand and right moving member, right moving member set up in the inside of right cavity.
Further, in a possible implementation manner, the left moving member 220 includes a rotating shaft 221, a first elastic member 222, a sliding block 223, and a pressing plate 224, wherein a through hole is formed on the sliding block 223, and one end of the rotating shaft 221 is detachably connected to the left holder 210 through the through hole and the left guide hole in sequence. The first elastic member 222 is sleeved on the rotating shaft 221, one end of the first elastic member 222 is connected to the left holder 210, the other end of the first elastic member 222 is connected to the rotating shaft 221, and the other end of the rotating shaft 221 is provided with a tooth surface. The pressure plate 224 is detachably mounted on one side of the sliding block 223, which faces away from the left holding hand 210, a second tooth surface 2241 is arranged on one side of the pressure plate 224, which faces towards the sliding block 223, and the first tooth surface 2211 is matched with the second tooth surface 2241. Therefore, the first elastic piece 222 is arranged to realize axial telescopic connection, the first tooth surface 2211 of the rotating shaft 221 and the second tooth surface 2241 of the pressure plate 224 are in a jaw engagement state to form rotating position locking, when the rotating torque to the left holder hand 210 is larger than the locking force generated by the first elastic piece 222 and the jaw, the left holder hand 210 can realize angle adjustment, and the principle of angle adjustment of the right holder hand is the same as that of angle adjustment of the left holder hand 210.
Here, it should be noted that, in a possible implementation manner, the above-mentioned detachability may be implemented in the form of a bolt, and details are not described here.
Further, in a possible implementation manner, the first elastic member 222 is a compression spring, the side of the rotating shaft 221 facing the pressure plate 224 is provided with a surrounding portion 2212, the surrounding portion 2212 is in an annular structure, the surrounding portion 2212 is circumferentially arranged around the side wall of the rotating shaft 221, and the side of the surrounding portion 2212 facing the pressure plate 224 is flush with the side of the rotating shaft 221 facing the pressure plate 224. The first tooth surface 2211 is provided on the surrounding portion 2212, one side of the first elastic member 222 abuts against the first support plate 110, and the other side of the first elastic member 222 abuts against the surrounding portion 2212. Thus, the structure implemented by the present application is further optimized.
Further, in a possible implementation manner, a first guide rail 228 and a second guide rail are respectively disposed in two opposite directions of the sliding block 223, and the first guide rail 228 and the second guide rail are both connected to the supporting frame 100, and both the first guide rail 228 and the second guide rail are disposed along the moving direction of the sliding block 223. A mounting hole is formed in a side wall of the slider 223, and two ends of the mounting hole are respectively disposed toward the first rail 228 and the second rail. One end of the mounting hole is detachably mounted by a fixed pin shaft 225, and the fixed pin shaft 225 is movably connected with a first guide rail 228. The other end of the mounting hole is mounted with a second elastic member 227, the other end of the second elastic member 227 is mounted with a movable pin shaft 226, and the movable pin shaft 226 is movably connected with the second guide rail. Therefore, the slider 223 forms a linear adjustment structure through the cooperation of the fixed pin shaft 225, the movable pin shaft 226, the first guide rail 228 and the second guide rail, so that the slider 223 can drive the left holding hand 210 to move, and the left holding hand 210 can be linearly adjusted.
Here, it should be noted that in one possible implementation, the first rail 228 and the second rail are both mounted at the first support plate 110.
Here, it should also be noted that the structure of the straight line adjustment of the right hand pad is the same as that of the left hand pad 210.
Here, it should also be noted that in one possible implementation, the slider 223 has a rectangular block shape.
Here, it should also be noted that in a possible implementation manner, the bottom of the left cavity side of the first supporting plate 110 is provided with a first opening, and the first end cover 111 is detachably mounted at the first opening. The first rail 228 and the second rail are both installed inside the left cavity, the top of the first rail 228 can be abutted to the top of the left cavity, the bottom of the second rail can be abutted to the top of the first end cap 111, and the two ends of the first rail 228 are respectively abutted to the two ends of the left cavity. The second rail is mounted to the first rail 228. Therefore, the installation of the first rail 228 and the second rail can be simply and quickly completed through the limitation of the space size of the left cavity.
Further, in a possible implementation, the side of the fixed pin shaft 225 facing the first guide rail 228 is disposed as a spherical surface protruding to the side of the first guide rail 228. A plurality of first grooves are formed in the first guide rail 228, each of the plurality of first grooves is a tapered groove, the plurality of first grooves are sequentially arranged along the length direction of the first guide rail 228, and the plurality of first grooves are all matched with the spherical surface of the fixed pin shaft 225. The movable pin shaft 226 has the same structure as the fixed pin shaft 225, and the second guide rail has the same structure as the first guide rail 228. Therefore, the corresponding fixed pin shaft 225 and the corresponding movable pin shaft 226 share one second elastic piece 227, the fixed pin shaft 225 and the movable pin shaft 226 generate locking force in the first groove which is arranged in a conical shape under the pressure action of the second elastic piece 227, and when the force for sliding the left holding hand 210 is greater than the locking force generated by the fixed pin shaft 225, the movable pin shaft 226 and the first groove, the straight line adjustment of the left holding hand 210 can be realized.
Here, it should be noted that, in a possible implementation manner, since the structures of the fixed pin shaft 225 and the movable pin shaft 226 are the same, the structures of the fixed pin shaft 225 and the movable pin shaft 226 are described herein by taking the movable pin shaft 226 as an example. That is, the movable pin shaft 226 includes a first rod and a second rod, and the first rod and the second rod are coaxially disposed, one side of the second rod, which is far away from the first rod, is disposed in a spherical surface, the end surface of the first rod is smaller than that of the second rod, the second elastic member 227 is sleeved on the first rod, one end of the second elastic member 227 is connected with one end of the second rod, which is not disposed in the spherical surface, and the other end of the second elastic member 227 is fixedly mounted at a mounting hole formed in the sliding block 223. The first rod piece is matched with the mounting hole.
Here, it should also be noted that in one possible implementation, a side of the first rail 228 facing away from the second rail is removably mounted with a first baffle 229, and the structure of the first baffle 229 matches the structure of the first rail 228. A second baffle is detachably mounted on a side of the second rail opposite to the first rail 228, and the structure of the second baffle matches with the structure of the second rail. Therefore, the structure of the embodiment of the application is further optimized.
Here, it should also be noted that in one possible implementation, the first grooves are distributed in an array along the length of the first rail 228. The large mouth end of the first groove, which is conically arranged, is arranged towards the slider 223.
Further, in a possible implementation manner, more than two mounting holes are provided, and the number of the fixed pin shafts 225 and the number of the movable pin shafts 226 are matched with the number of the mounting holes. This makes the sliding movement of the slider 223 more stable.
The embodiment of the present application can rotate and swing through a structure formed by the rotating shaft 221, the first elastic member 222, the slider 223, and the pressure plate 224, and linearly extend and contract through a structure formed by the fixed pin shaft 225, the movable pin shaft 226, the slider 223, the second elastic member 227, the first guide rail 228, and the second guide rail. Therefore, the two degrees of freedom can be adjusted to adapt to patients with different heights and body types.
Further, in a possible implementation manner, a head and face pad 400 is provided at a top middle position of the support frame 100, and the head and face pad 400 is used for placing the head of the human body. The arm pad 500 is mounted on both the top of the left bracket 200 and the top of the right bracket 300. Therefore, the human body is more comfortable when physical therapy is carried out.
Here, it should be noted that in one possible implementation, the head and face pads 400 and 500 may each be made of a soft material. Here, it should also be noted that in one possible implementation, the head and face pads 400 and 500 may be adhesively secured to the support frame 100.
Further, in one possible implementation, the fixed rail 700 is detachably mounted to both opposite ends of the supporting stand 100. The fixed guide 700 is adapted to be detachably mounted on the conditioning bed, and a plurality of bolt holes are formed in the fixed guide 700 and arranged along the length direction of the fixed guide 700, so that the support frame 100 and the fixed guide 700 are detachably connected through bolts. Therefore, the position adjustment of the embodiment of the application can be realized by replacing different bolt hole positions.
Having described embodiments of the present application, the foregoing description is intended to be exemplary, not exhaustive, and not limited to the disclosed embodiments. Many modifications and variations will be apparent to those of ordinary skill in the art without departing from the scope and spirit of the described embodiments. The terminology used herein is chosen in order to best explain the principles of the embodiments, the practical application, or improvements made to the technology in the marketplace, or to enable others of ordinary skill in the art to understand the embodiments disclosed herein.

Claims (10)

1. An auxiliary supporting device for a traditional Chinese medicine meridian conditioning bed is characterized by comprising a supporting frame, a left bracket and a right bracket, wherein the left bracket and the right bracket are used for supporting the upper limbs of a human body;
the support frame is suitable for being detachably mounted on a bed plate of the conditioning bed;
the left bracket and the right bracket are respectively arranged on two opposite sides of the supporting frame, so that the left bracket and the right bracket are respectively arranged on two sides of the conditioning bed.
2. The auxiliary supporting device for a traditional Chinese medicine meridian conditioning bed according to claim 1, wherein the supporting frame includes a first supporting plate, a connecting plate and a second supporting plate;
the first supporting plate is fixed on one side of the connecting plate, the second supporting plate is fixed on the other side of the connecting plate, and the first supporting plate and the second supporting plate are both positioned at the top of the connecting plate; and is
The first supporting plate, the connecting plate and the second supporting plate are connected in a U shape;
the left bracket is movably installed at the top of the first supporting plate, the left bracket is suitable for placing the left forearm of a human body, the right bracket is movably installed at the top of the second supporting plate, and the right bracket is suitable for placing the right forearm of the human body.
3. The auxiliary supporting device for the traditional Chinese medicine meridian conditioning bed according to claim 1, wherein a left guide hole and a right guide hole are respectively formed at both sides of the supporting frame;
the left bracket comprises a left bracket hand and a left moving piece, the left moving piece is detachably arranged at the bottom of the left bracket hand, and the left moving piece is movably arranged at the left guide hole;
the structure of the right bracket is the same as that of the left bracket.
4. The auxiliary supporting device for a traditional Chinese medicine meridian conditioning bed according to claim 3, wherein the left moving member includes a rotating shaft, a first elastic member, a slider and a platen;
the sliding block is provided with a through hole, and one end of the rotating shaft sequentially penetrates through the through hole and the left guide hole to be detachably connected with the left support hand;
the first elastic piece is sleeved on the rotating shaft, one end of the first elastic piece is connected with the left supporting hand, and the other end of the first elastic piece is connected with the rotating shaft;
the other end of the rotating shaft is provided with a first tooth surface;
the pressing plate is detachably mounted on one side, away from the left supporting hand, of the sliding block, and a second tooth surface is arranged on one side, facing the sliding block, of the pressing plate;
the first tooth surface is matched with the second tooth surface.
5. The auxiliary supporting device for a traditional Chinese medicine meridian conditioning bed according to claim 4, wherein the first elastic member is a compression spring;
a surrounding part is arranged on one side, facing the pressure plate, of the rotating shaft, the surrounding part is annularly arranged, the surrounding part is circumferentially arranged around the side wall of the rotating shaft, and the side, facing the pressure plate, of the surrounding part is flush with one side, facing the pressure plate, of the rotating shaft;
the first tooth surface is arranged on the baffle surrounding part;
one side of the first elastic piece is abutted with the supporting frame, and the other side of the first elastic piece is abutted with the surrounding and blocking part.
6. The auxiliary supporting device for the traditional Chinese medicine meridian conditioning bed according to claim 4, wherein a first guide rail and a second guide rail are respectively arranged in the directions of two opposite sides of the sliding block, and the first guide rail and the second guide rail are both connected with the supporting frame;
the first guide rail and the second guide rail are arranged along the moving direction of the sliding block;
a mounting hole is formed in the side wall of the sliding block, two ends of the mounting hole face the first guide rail and the second guide rail respectively, a fixed pin shaft is detachably mounted at one end of the mounting hole, and the fixed pin shaft is movably connected with the first guide rail;
and a second elastic piece is installed at the other end of the installation hole, a movable pin shaft is installed at the other end of the second elastic piece, and the movable pin shaft is movably connected with the second guide rail.
7. The auxiliary supporting device for the traditional Chinese medicine meridian conditioning bed according to claim 6, wherein one side of the fixed pin shaft facing the first guide rail is a spherical surface protruding to one side of the first guide rail;
a plurality of first grooves are formed in the first guide rail, the first grooves are all conical grooves, the first grooves are sequentially arranged along the length direction of the first guide rail, and the first grooves are matched with the spherical surface of the fixed pin shaft;
the structure of the movable pin shaft is the same as that of the fixed pin shaft, and the structure of the second guide rail is the same as that of the first guide rail.
8. The auxiliary supporting device for the traditional Chinese medicine meridian conditioning bed as claimed in claim 6, wherein the number of the mounting holes is two or more, and the number of the fixed pins and the number of the movable pins are both matched with the number of the mounting holes.
9. The auxiliary supporting device for the traditional Chinese medicine meridian conditioning bed according to any one of claims 1 to 8, wherein a head and face pad is provided at a position of a top middle portion of the supporting frame, the head and face pad being adapted to place a head of a human body;
arm pads are installed on the top of the left bracket and the top of the right bracket.
10. The auxiliary supporting device for the traditional Chinese medicine meridian conditioning bed according to any one of claims 1 to 8, wherein both opposite ends of the supporting frame are detachably mounted with fixed guide rails;
the fixed guide rail is suitable for being detachably mounted on the conditioning bed, a plurality of bolt holes are formed in the fixed guide rail, and the bolt holes are formed in a plurality of positions along the length direction of the fixed guide rail, so that the support frame and the fixed guide rail are detachably connected through bolts.
CN202122053413.4U 2021-08-27 2021-08-27 Auxiliary supporting device for traditional Chinese medicine meridian conditioning bed Active CN215459812U (en)

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Application Number Priority Date Filing Date Title
CN202122053413.4U CN215459812U (en) 2021-08-27 2021-08-27 Auxiliary supporting device for traditional Chinese medicine meridian conditioning bed

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122053413.4U CN215459812U (en) 2021-08-27 2021-08-27 Auxiliary supporting device for traditional Chinese medicine meridian conditioning bed

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CN215459812U true CN215459812U (en) 2022-01-11

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Application Number Title Priority Date Filing Date
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