A bottle hanging rack
By designing a new type of bottle reel rack, the problem of traditional bottle reel racks being inconvenient for patients to leave temporarily is solved, the stability of the bottle reel during movement and the infusion line is realized, the comfort and safety of the patient are improved, and the liquid level prompt function is provided.
Patent Information
- Application Number
- CN202310802245.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-30
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2043-06-30
AI Technical Summary
The traditional bottle reel holder is not convenient to leave temporarily when the patient is infused, which affects other patients and space utilization. The bottle reel is easily shaken during movement, and the infusion line may collapse and affect the infusion effect.
A new type of bottle hanging rack is designed, including a base, main rod and rotatable hanging part. A secondary rod is slided in the groove on the side of the main rod. A support mechanism is provided on the secondary rod. The arc-shaped clamp and tail plate hinged by the torsion spring realize the stable support of the bottle. Combined with the fixing ring and wire-control board, it ensures that the bottle does not shake during movement and the infusion line does not wrap around.
It enables the patient to leave temporarily conveniently during infusion, avoid affecting other patients. The reel bottle is stable during movement, and the infusion line is not entangled, which improves the patient's comfort and safety, and provides a liquid level prompt function.
Smart Images

Figure CN116688282B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of medical equipment, and in particular to a novel hanging bottle stand. Background Art
[0002] Hanging bottle, also known as infusion, is a large dose (one-time administration is more than 100ml) injection that is input into the body by intravenous drip. Injection is usually packaged in a hanging bottle of glass or plastic, without preservatives or antibacterial agents. During use, the drip rate is adjusted by an infusion set, and the liquid is continuously and stably introduced into the vein to replenish body fluids, electrolytes or provide nutrients. When performing infusion, a hanging bottle stand is a frequently used infusion medical device. Traditional hanging bottle stands are usually steel pipes with a structure of a hook. Patients often want to go to the toilet when they are infused. When they go to the toilet, they often push the hanging bottle stand to go to the toilet. On the one hand, if this hanging bottle stand has other patients infused at the same time, it will cause inconvenience to other patients. On the other hand, the hanging bottle stand still has a certain volume. The hospital corridor itself is not wide. Some hospital corridors are also provided with beds or family beds. It is inconvenient to push the hanging bottle stand to walk. Therefore, a hanging bottle stand that can facilitate patients to temporarily leave when they are infused needs to be provided. Summary of the Invention
[0003] The present invention aims to provide a novel hanging bottle stand, so as to provide a hanging bottle stand which can be convenient for a patient to temporarily leave during infusion.
[0004] To achieve the above-mentioned purpose, the present invention adopts the following technical solutions: a new type of hanging bottle rack, comprising a base, a main rod connected to the top of the base, a hanging part rotatably provided on the top of the main rod, and a plurality of hanging bottles can be hung on the hanging part in the circumference. A groove is provided on the side of the main rod, and a secondary rod is slidably provided in the groove. A supporting mechanism for supporting the hanging bottle is provided at the upper end of the secondary rod. The supporting mechanism includes a torsion spring and two clamping parts. The clamping parts each include an arc-shaped splint and a tail plate fixed to the arc-shaped splint. The two clamping parts are hinged at one end close to the tail plate by a torsion spring. A first slide groove slidably connected to the two tail plates is also provided at the bottom of the groove. The width of the first slide groove gradually narrows from top to bottom, and the width of the top of the first slide groove is the same as the width between the two tail plates in the natural state.
[0005] The beneficial effects of this program are:
[0006] 1. The principle of this technical solution is that the solution includes a hanging part for hanging an IV bottle, a main rod and a sub-rod, the main rod and the sub-rod are slidably connected, and the ends of the two clamping parts close to the tail plate are hinged by a torsion spring. When the two tail plates approach each other, the two arc-shaped splints will be opened under the action of the torsion spring, and the two tail plates will slide along the first slide groove. The width of the first slide groove gradually narrows from top to bottom. When the supporting structure slides from top to bottom, the first slide groove gradually squeezes the two tail plates to make them close together, and the two arc-shaped splints are opened. Under the action of the torsion spring The two tail plates have the force to open to both sides, so that the supporting mechanism and the auxiliary rod are stuck in the embedded groove and do not fall off; when the hanging bottle needs to be removed, first rotate the hanging part so that the hanging part to be removed is aligned with the supporting mechanism, and the user pushes the auxiliary rod upward, and the supporting mechanism also slides upward synchronously, and the two tail plates move in the direction of the widening of the first slide groove. The two tail plates gradually open and the arc-shaped splints gradually close. When the supporting mechanism slides to the top of the first slide groove, the auxiliary rod and the supporting mechanism can be taken out, and the hanging bottle can be placed in the supporting mechanism.
[0007] 2. Easy and quick to use. In this technical solution, the auxiliary rod is embedded and installed on the main rod, becoming one with the main rod. The overall structure of the bottle holder is compact and can effectively utilize space. There is no need to hang or store the auxiliary rod separately. It can be quickly accessed when in use. The user can easily lift the auxiliary rod to move. Compared with hanging the bottle on the body or carrying it on the back, the patient can walk relatively comfortably, which improves the patient's comfort and convenience. In this technical solution, the hanging part is rotatably connected to the main rod, and the hanging part can hang multiple bottles to facilitate the provision of infusion function to multiple patients at the same time. When a patient wants to leave temporarily, he can rotate the hanging part to remove the corresponding bottle. There is no need to take away the entire bottle holder, and it will not affect the infusion or rest of other patients. The auxiliary rod in this technical solution has a certain height, which can also ensure that the bottle position is relatively high, so that the patient can continue to infuse when leaving.
[0008] 3. The design of the supporting mechanism in this technical solution includes a combination of an arc-shaped splint and a tail plate. Through the setting of the clamping part hinged by the torsion spring, the arc-shaped splint is gradually clamped during the sliding of the auxiliary rod from bottom to top to support the hanging bottle. The advantages of this setting are: on the one hand, since one end of the infusion line of the hanging bottle passes through the bottom of the hanging bottle during the infusion process, and the other end of the infusion line supplies fluid to the patient, when the two arc-shaped splints slide from bottom to top, the infusion line can be placed in the arc-shaped splints, and after the arc-shaped splints are closed, the hanging bottle is just supported to avoid bending the infusion line and affecting the infusion process; on the other hand, compared with hanging the hanging bottle with a hook, the use of the arc-shaped splint to support the hanging bottle has a better support and fixation effect on the hanging bottle during movement, and will not cause the problem of unstable holding of the auxiliary rod due to shaking.
[0009] Preferably, as an improvement, a fixing ring is provided at the bottom of the auxiliary rod, and the fixing ring includes two semi-annular plates, which can be sleeved on the outer surface of the main rod after being closed. The ends of the two semi-annular plates close to the auxiliary rod are hinged to the auxiliary rod, and the ends of the two semi-annular plates away from the auxiliary rod are provided with snap-fitting protrusions, and grooves for accommodating the snap-fitting protrusions are opened at the relative position of the main rod.
[0010] The beneficial effects are as follows: by setting a fixing ring, the auxiliary rod can be further fixed to the surface of the main rod, and at the same time the fixing ring is sleeved on the outer surface of the main rod, and the fixing ring can embrace the main rod to ensure the stability of the auxiliary rod fixation; by setting the snapping protrusions and grooves, since the supporting mechanism has a certain weight, the supporting mechanism has a tendency to tilt away from the main rod. When the snapping protrusions are inserted into the grooves, self-locking is formed to limit the fixing ring to prevent it from shifting or automatically opening when subjected to vibration; when the two half-annular plates are opened, the two half-annular plates can form handles, and the user can hold the two half-annular plates to push the auxiliary rod, providing a force point for sliding the auxiliary rod and reducing the difficulty of operation; when the user holds the two half-annular plates to slide the auxiliary rod to the set position, the snapping protrusions are inserted into the grooves to fix it. The operation process is simple and done in one go.
[0011] Preferably, as an improvement, the hanging part includes a fixed block and a bearing embedded in the center of the fixed block, the bearing sleeve is arranged on the top of the main shaft, and the fixed block has multiple suspension rods evenly distributed around the circumference, and a number of suspension hooks are slidably arranged on the suspension rods.
[0012] The beneficial effects are: the above-mentioned bearing arrangement ensures the smooth rotation of the hanging part, and the arrangement of multiple hanging rods and hooks facilitates the fixing of multiple hanging bottles. Rotating the hanging rods also makes it convenient for medical staff to hang hanging bottles and enables the same hanging bottle rack to be used for multiple patients.
[0013] Preferably, as an improvement, it also includes a wire-managing plate mounted on the main rod, the upper surface of the wire-managing plate can contact the bottom of the auxiliary rod, a plurality of second slide grooves are evenly distributed circumferentially on the main rod, the wire-managing plate is slidably connected to the main rod through the second slide grooves, the main rod is provided with a plurality of elastic members, the upper ends of the elastic members are connected to the wire-managing plate, the wire-managing plate is evenly distributed circumferentially with a plurality of support plates, the number of support plates is the same as the number of suspension rods, a number of through holes are arranged on the support plates, and channels are provided around the through holes to connect with the edges of the support plates.
[0014] The beneficial effects are: 1. There are several through holes arranged on the support plates for accommodating and organizing the infusion lines of multiple hanging bottles. The hanging bottle rack in this technical solution can hang multiple hanging bottles, and the hanging part can be rotated. By setting a wire management plate and the number of support plates on the wire management plate is the same as the number of hanging rods, the corresponding infusion lines are inserted into the corresponding through holes when in use. After rotating the hanging part, multiple infusion lines will not be entangled together; 2. When the user takes the sub-rod, the hanging part must be rotated first to align the corresponding hanging bottle and the supporting mechanism. During the rotation, the infusion line may shake with the hanging bottle, causing the end of the infusion line close to the patient's hand to shift. By setting the wire management plate, the wire management plate will not rotate with the hanging part, thereby reducing the discomfort caused to the patient by the displacement of the lower end of the infusion line with the upper part. 3. When removing the auxiliary rod, it is necessary to slide the auxiliary rod upward. In this technical solution, the upper surface of the wire management plate can contact the bottom of the auxiliary rod. When the auxiliary rod moves upward, the wire management plate slides upward synchronously under the action of the elastic member. On the one hand, this sliding process can sort out the infusion lines to prevent the infusion lines from bending when the hanging part is rotated, resulting in poor liquid flow, avoiding problems such as untimely infusion and blood return; on the other hand, it makes the infusion lines in higher positions move toward the direction close to the main rod to facilitate the placement of the infusion lines in the two arc-shaped splints; 4. In this technical solution, an elastic member is provided to support the wire management plate. When the user removes the auxiliary rod, the elastic force of the elastic member will lift the wire management plate and the auxiliary rod upward, thereby assisting the process of removing the auxiliary rod and making the process of removing the auxiliary rod easier.
[0015] Preferably, as an improvement, magnetic parts are embedded in the opposite surfaces of the two snap-fitting protrusions, and a handle is fixed on the outer surface of the auxiliary rod, and the surface of the handle is made of soft rubber material.
[0016] The beneficial effects are: by arranging the magnetic parts, the free ends of the two half-ring plates tend to move closer to each other. On the one hand, when the fixing ring holds the main rod tightly, the fixing effect of the fixing ring is better, and the two free ends will not fall off due to easy shaking; on the other hand, after the user removes the auxiliary rod, the hand can be passed through the fixing ring from the bottom and then hold the handle, so that the fixing ring surrounds the user's hand. When the hanging bottle is fixed on the top of the auxiliary rod, the hanging bottle is easy to tilt around due to its heavy weight. Through the setting of the fixing ring and the handle, the user can hold the auxiliary rod well, making it not easy to tip over, thereby improving the safety of the hanging bottle rack during use; the surface of the handle is set to be soft rubber material, which has greater friction and better grip.
[0017] Preferably, as an improvement, the hook parts include a sliding block, a weighing sensor, a controller and a hook. The hook is connected to the sliding block through the weighing sensor. An LED lighting assembly is provided at the bottom of the sliding block. The controller is electrically connected to the weighing sensor and the LED lighting assembly. A battery is provided in the fixed block and is electrically connected to the controller.
[0018] The beneficial effects are: through the above-mentioned setting, when an IV bottle is hung on the hook, when the weighing sensor senses the weight of the IV bottle, the LED light component is turned on by the controller, and the LED light component is set at the bottom of the sliding block to facilitate the patient and family members to observe the liquid level in the IV bottle; during the infusion process, it often happens that the liquid in the IV bottle has been delivered, but the patient and family members fail to notice it in time, resulting in other dangerous conditions such as blood backflow. When the weighing sensor senses that the liquid in the IV bottle gradually decreases until it reaches a set dangerous value, the controller can control the LED light component to turn on and off (i.e. flash) at a certain rhythm. Through the above-mentioned setting, medical staff and patients' families can be reminded to avoid the occurrence of the above-mentioned dangerous conditions; setting a hook can facilitate medical staff to take and replace IV bottles in time.
[0019] Preferably, as an improvement, it further includes a fixing frame connected to the auxiliary rod, the fixing frame includes a column and a clamping plate that can be clamped with the auxiliary rod, and the fixing frame can be fixed on the inner wall of the toilet.
[0020] The beneficial effect is that through the above arrangement, the patient can use the auxiliary rod independently, and when the patient goes to the toilet, the auxiliary rod can be fixed on the fixing frame, so that the patient can go to the toilet independently without the accompaniment of a caregiver. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 Schematic diagram of the structure of an embodiment of the present invention;
[0022] Figure 2 is a top view of the supporting mechanism of the present invention;
[0023] Figure 3 Schematic diagram of the structure of the auxiliary rod of the present invention;
[0024] Figure 4 This is a cross-sectional view of the bottom of the second chute of the main rod of the present invention;
[0025] Figure 5 Schematic diagram of the internal structure of the boom of the present invention;
[0026] Figure 6 This is a schematic diagram of the upper structure of the embedded groove of the present invention;
[0027] Figure 7 A top view of the cable management board of the present invention;
[0028] Figure 8 This is a schematic diagram of the auxiliary rod after installation of the present invention;
[0029] Figure 9 Schematic diagram of the structure of the fixing frame of the present invention. DETAILED DESCRIPTION
[0030] The following is further described in detail through specific implementation methods:
[0031] The figure marks in the drawings of the specification include: base 1, main rod 2, fixed block 3, suspension rod 4, embedded groove 5, auxiliary rod 6, torsion spring 7, arc splint 8, tail plate 9, first slide groove 10, semi-annular plate 11, snap-on protrusion 12, wire management plate 13, second slide groove 14, spring 15, support plate 16, through hole 17, channel 18, handle 19, column 20, card plate 21, sliding block 22, weighing sensor 23, hook 24, fixing pin 25, groove 26, circular groove 27, limit strip 28.
[0032] Example
[0033] The embodiment is basically as follows Figures 1-9 As shown, Figure 1 and Figure 8 The new type of bottle hanging rack shown in the figure includes a base 1, the top of the base 1 is connected to a main rod 2, the top of the main rod 2 is rotatably provided with a hanging part, and the hanging part can hang multiple bottles in the circumference. Specifically, the hanging part includes a fixed block 3 and a bearing embedded in the center of the fixed block 3. The bearing sleeve is set on the top of the main shaft. The fixed block 3 is evenly distributed with three hanging rods 4 in the circumference. Two hanging hooks are slidably provided on the hanging rods 4. A groove 5 is opened on the side of the main rod 2, and a secondary rod 6 is slidably provided in the groove 5. The upper end of the secondary rod 6 is provided with a supporting mechanism for supporting the bottle, such as Figure 2 As shown, the supporting mechanism includes a torsion spring 7 and two clamping parts, each of which includes an arc-shaped clamping plate 8 and a tail plate 9 integrally formed with the arc-shaped clamping plate 8. The ends of the two clamping parts close to the tail plate 9 are hinged by the torsion spring 7, as shown in FIG. Figure 3 As shown, the connection between the supporting mechanism and the auxiliary rod 6 is as follows: a through slot is provided on the upper side of the auxiliary rod 6, a fixing pin 25 is longitudinally provided in the through slot, the two clamping parts and the torsion spring 7 are fixed through the fixing pin 25, and a first sliding slot 10 is provided at the bottom of the embedded slot 5 for sliding connection with the two tail plates 9, as shown in FIG. Figure 6 The width of the first chute 10 shown in the figure gradually narrows from top to bottom. A limit strip 28 is also provided at the connection between the first chute 10 and the embedded groove 5. The limit strip 28 can limit the tail plate 9 from sliding in the first chute 10 all the time and not popping out. The width of the top of the first chute 10 is the same as the width of the two tail plates 9 in the natural state. During the sliding process of the auxiliary rod 6 from bottom to top, the arc splint 8 gradually approaches to support the hanging bottle. The advantages of such a setting are: since one end of the infusion line of the hanging bottle passes through the bottom of the hanging bottle during the infusion process, and the other end of the infusion line supplies the patient with fluid, when the two arc splints 8 slide from bottom to top, the infusion line can be placed in the arc splint 8. After the arc splint 8 slowly closes, the hanging bottle is supported, avoiding bending the infusion line and affecting the infusion process. On the other hand, compared with hanging the hanging bottle with the hook 24, the arc splint 8 has a better support and fixation effect on the hanging bottle during movement, and will not cause the problem of unstable holding of the auxiliary rod 6 due to shaking.
[0034] like Figure 3 When the user holds the two half-annular plates 11 and slides the auxiliary rod 6 to the set position, the snapping protrusion 12 is inserted into the groove 26 for fixing. The operation process is simple and can be completed in one go. In this embodiment, magnetic parts are embedded on the opposite surfaces of the two snap-fit protrusions 12, and a handle 19 is fixed on the outer surface of the auxiliary rod 6. The surface of the handle 19 is made of soft rubber. When the user removes the auxiliary rod 6, the user can pass his hand through the fixing ring from the bottom and then hold the handle 19, so that the fixing ring surrounds the user's hand. When the hanging bottle is fixed on the top of the auxiliary rod 6, it is easy to tilt around due to its heavy weight. Through the setting of the fixing ring and the handle 19, the user can hold the auxiliary rod 6 well and prevent it from tipping over easily; the surface of the handle 19 is set to be made of soft rubber, which has greater friction and a better grip.
[0035] like Figure 1 and Figure 7 As shown, it also includes a wire management plate 13 sleeved on the main rod 2, and the upper surface of the wire management plate 13 can contact the bottom of the auxiliary rod 6, as shown in FIG. Figure 4The main rod 2 shown is evenly distributed with a plurality of second slide grooves 14 (4 in this embodiment), the wire management plate 13 is slidably connected to the main rod 2 through the second slide grooves 14, and the main rod 2 is provided with a plurality of elastic members (4 in this embodiment), and the bottom of the second slide grooves 14 is provided with a circular groove 27 for accommodating the elastic members, and the upper ends of the elastic members are fixed to the wire management plate 13. The elastic members in this embodiment are springs 15. When the user removes the auxiliary rod 6, the elastic force of the spring 15 will lift the wire management plate 13 and the auxiliary rod 6 upward, forming an assist in the process of removing the auxiliary rod 6. The wire management plate 13 is evenly distributed with a plurality of support plates 16 in the circumferential direction, and the number of support plates 16 is the same as the number of suspension rods 4. A plurality of through holes 17 (2 through holes 17 in this embodiment) are arranged on the support plates 16, and the through holes 17 are arranged around The periphery is provided with a channel 18 connected to the edge of the support plate 16. At the same time, the wire management plate 13 slides upward synchronously under the action of the spring 15. On the one hand, this sliding process can enable the wire management plate 13 to sort out multiple infusion lines, and prevent a certain infusion line from being excessively bent when the hanging part is rotated, resulting in poor liquid flow, and avoiding the resulting problems of untimely infusion and blood return. The provision of the through hole 17 facilitates the infusion tube to be placed in the through hole 17 for limiting. When the hanging part is rotated, multiple infusion lines will not be entangled together, and it is also convenient for medical staff to distinguish them. At the same time, the wire management plate 13 will not rotate synchronously with the hanging part. The upper end of the infusion line will move with the hanging bottle when the hanging part rotates, but the lower end of the infusion line will not rotate and the displacement distance is also small, avoiding discomfort to the patient.
[0036] like Figure 5 As shown, the hook parts include a sliding block 22, a weighing sensor 23, a controller and a hook 24. The hook 24 is connected to the sliding block 22 through the weighing sensor 23. An LED lighting component is provided at the bottom of the sliding block 22. The controller is electrically connected to the weighing sensor 23 and the LED lighting component. A battery is provided in the fixed block 3 and is electrically connected to the controller. The controller model in this technical solution is an STM32 microcontroller.
[0037] like Figure 9 As shown, this embodiment also includes a fixing frame connected to the auxiliary rod 6, the fixing frame includes a column 20 and a clamping plate 21 that can be clamped with the auxiliary rod 6, the column 20 is provided with a mounting groove that matches the auxiliary rod, the clamping plate 21 is provided with a mounting hole for supporting the supporting mechanism, and a through groove is provided on the right side of the clamping plate 21 so that the auxiliary rod 6 can pass through the clamping plate 21 into the mounting hole and the mounting groove. The fixing frame can be fixed to the inner wall of the toilet, so that the patient can use the auxiliary rod 6 independently, and when the patient goes to the toilet, the auxiliary rod 6 can be clamped on the fixing frame. The specific fixing method is: so that the patient can go to the toilet independently without the accompaniment of a caregiver.
[0038] The specific implementation process is as follows:
[0039] The present embodiment includes a hanging portion for hanging an IV bottle, a main rod 2 and a subsidiary rod 6, the main rod 2 and the subsidiary rod 6 are slidably connected, and one end of the two clamping portions close to the tail plate 9 is hinged by a torsion spring 7. When the two tail plates 9 are close to each other, the two arc-shaped splints 8 are opened under the action of the torsion spring 7, and the two tail plates 9 slide along the first slide groove 10. The width of the first slide groove 10 gradually narrows from top to bottom. When the supporting structure slides from top to bottom, the first slide groove 10 gradually squeezes the two tail plates 9 to bring them closer together, and the two arc-shaped splints 8 are opened. Under the action of the torsion spring 7 The two tail plates 9 have the force to open to both sides, so that the supporting mechanism and the auxiliary rod 6 are stuck in the embedded groove 5 and do not fall off; when the hanging bottle needs to be removed, first rotate the hanging part so that the hanging part to be removed is aligned with the supporting mechanism, and the user pushes the auxiliary rod 6 upward, and the supporting mechanism also slides upward synchronously, and the two tail plates 9 move in the direction of the widening of the first slide groove 10. The two tail plates 9 gradually open and the arc-shaped splint 8 gradually closes. When the supporting mechanism slides to the top of the first slide groove 10, the auxiliary rod 6 and the supporting mechanism can be taken out, and the hanging bottle can be placed in the supporting mechanism.
[0040] In the present technical solution, the auxiliary rod 6 is embedded and mounted on the main rod 2. When not in use, it becomes one with the main rod 2. The overall structure of the bottle holder is compact and can effectively utilize space. There is no need to hang or store the auxiliary rod 6 separately. It can be quickly accessed when in use. The user can easily lift the auxiliary rod 6 to move. Compared with hanging the bottle on the body or carrying it on the back, the patient can walk relatively comfortably, which improves the patient's comfort and convenience. In the present technical solution, the hanging part is rotatably connected to the main rod 2, and the hanging part can hang multiple bottles to facilitate the provision of infusion function to multiple patients at the same time. When a patient wants to leave temporarily, the hanging part can be rotated to remove the corresponding bottle. There is no need to take the entire bottle holder away, and it will not affect the infusion or rest of other patients. In the present technical solution, the auxiliary rod 6 has a certain height, which can also ensure that the bottle position is relatively high, so that the patient can continue to infuse when leaving.
[0041] When an IV bottle is hung on the hook 24, the weighing sensor 23 senses the weight of the IV bottle and turns on the LED light assembly through the controller. The LED light assembly is set at the bottom of the sliding block 22 to facilitate the patient and family members to observe the liquid level in the IV bottle. During the infusion process, it often happens that the liquid in the IV bottle has been delivered, but the patient and family members fail to notice it in time, resulting in other dangerous conditions such as blood backflow. When the weighing sensor 23 senses that the liquid in the IV bottle gradually decreases until it reaches a set dangerous value, the controller can control the LED light assembly to turn on and off (i.e. flash) at a certain rhythm. The above setting can remind medical staff and patients' families to avoid the occurrence of the above dangerous conditions.
[0042] The above is only an embodiment of the present invention, and the common knowledge such as the specific technical solutions and / or characteristics in the solution are not described in detail here. It should be pointed out that for those skilled in the art, without departing from the technical solution of the present invention, several variations and improvements can be made, which should also be regarded as the scope of protection of the present invention, and these will not affect the effect of the implementation of the present invention and the practicality of the patent. The scope of protection required by this application shall be based on the content of its claims, and the specific implementation methods and other records in the description can be used to interpret the content of the claims.
Claims
1. A hanging bottle stand, characterized by: The utility model comprises a base, the top of the base is connected with a main rod, the top of the main rod is rotatably provided with a hanging part, the hanging part can hang multiple hanging bottles in the circumference, the side of the main rod is provided with an embedding groove, a sub-rod is slidably provided in the embedding groove, the upper end of the sub-rod is provided with a supporting mechanism for supporting the hanging bottle, the supporting mechanism comprises a torsion spring and two clamping parts, the clamping parts each comprise an arc-shaped splint and a tail plate fixed with the arc-shaped splint, the two clamping parts are hinged at one end close to the tail plate by a torsion spring, the bottom of the embedding groove is also provided with a first slide groove slidably connected with the two tail plates, the width of the first slide groove It gradually becomes narrower from top to bottom, and the width of the top of the first slide is the same as the width between the two tail plates in the natural state; a limit strip is also provided at the connection between the first slide and the embedded groove. When the supporting structure slides from top to bottom, the first slide gradually squeezes the two tail plates to make them close together, and makes the two arc-shaped splints open. Under the action of the torsion spring, the two tail plates have the force to open to both sides, so that the supporting mechanism and the auxiliary rod are stuck in the embedded groove and do not fall off; during the sliding process of the auxiliary rod from bottom to top, the arc-shaped splints gradually approach to support the hanging bottle.
2. A bottle hanging stand according to claim 1, characterized in that: A fixing ring is provided at the bottom of the auxiliary rod, which includes two semi-annular plates. When the two semi-annular plates are closed, they can be sleeved on the outer surface of the main rod. The ends of the two semi-annular plates close to the auxiliary rod are hinged to the auxiliary rod, and the ends of the two semi-annular plates away from the auxiliary rod are provided with snap-fitting protrusions. A groove for accommodating the snap-fitting protrusions is opened at the relative position of the main rod.
3. A bottle hanging stand according to claim 2, characterized in that: The hanging part includes a fixed block and a bearing embedded in the center of the fixed block. The bearing sleeve is arranged on the top of the main shaft. The fixed block has multiple hanging rods evenly distributed around the circumference. Several hanging hooks are slidably arranged on the hanging rods.
4. The hanging bottle stand according to claim 3, characterized in that: It also includes a wire-managing plate mounted on the main rod, the upper surface of the wire-managing plate can contact the bottom of the auxiliary rod, a plurality of second slide grooves are evenly distributed circumferentially on the main rod, the wire-managing plate is slidably connected to the main rod through the second slide grooves, the main rod is provided with a plurality of elastic members, the upper ends of the elastic members are connected to the wire-managing plate, the wire-managing plate is evenly distributed circumferentially with a plurality of support plates, the number of support plates is the same as the number of suspension rods, a number of through holes are arranged on the support plates, and channels are provided around the through holes to connect with the edges of the support plates.
5. The hanging bottle stand according to claim 4, characterized in that: Magnetic parts are embedded in the opposite surfaces of the two clamping protrusions, and a handle is fixed on the outer surface of the auxiliary rod, and the surface of the handle is made of soft rubber material.
6. The hanging bottle stand according to claim 5, characterized in that: The hook parts all include a sliding block, a weighing sensor, a controller and a hook. The hook is connected to the sliding block through the weighing sensor. An LED light assembly is provided at the bottom of the sliding block. The controller is electrically connected to the weighing sensor and the LED light assembly. A battery is provided in the fixed block and is electrically connected to the controller.
7. The hanging bottle stand according to claim 6, characterized in that: It also includes a fixing frame connected with the auxiliary rod, the fixing frame includes a column and a clamping plate that can be clamped with the auxiliary rod, and the fixing frame can be fixed on the inner wall of the toilet.
Citation Information
Patent Citations
Infusion bottle rack structure for medical nursing
CN113975522A
Convenient infusion support
CN215740972U