A mobile infusion stand
By designing a mobile IV stand, the problem of patients getting out of bed without family members accompanying them during IV infusion was solved. It enables single-handed operation for both movement and fixation, improving patients' ability to get out of bed and enhancing their safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- ZHEJIANG UNIV
- Filing Date
- 2023-04-17
- Publication Date
- 2026-07-31
AI Technical Summary
Existing IV stands are ineffective in providing mobility and intravenous injection assistance when patients need to get out of bed, especially when they are not accompanied by family members, which affects rehabilitation and safety.
A mobile infusion stand was designed, including an auxiliary mobile chassis, an infusion connection bracket, a lifting infusion stand, a handheld conversion component, a longitudinal tube clamping part, and a transverse tube clamping part. Through combination and disassembly, it enables patients to move and fix the infusion stand with one hand during infusion, providing stable clamping and convenience.
This allows patients to move and be immobilized with one hand during infusion, enhancing their ability to get out of bed and improving safety and rehabilitation efficiency.
Smart Images

Figure CN116421814B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of medical technology, specifically to a mobile infusion stand. Background Technology
[0002] Infusion stands have become indispensable in clinical work. There are various styles of infusion stands available, which can be broadly divided into two types: one is an infusion stand that is suspended above the hospital bed, and the other is an infusion stand that can be moved with the patient. Most of them are placed on the ground or directly fixed to the headboard.
[0003] Medical rehabilitation is developing very rapidly now, advocating early rehabilitation and early ambulation. Many patients still need to get out of bed and walk while receiving a lot of intravenous fluids, or patients who have just undergone some minimally invasive surgery or are pregnant may have difficulty walking when they get out of bed for the first time. They may not have family members by their side and may need to use assistive devices to walk. Patients who are receiving intravenous injections may find it difficult to walk or move without the assistance of family members, which is not conducive to their recovery. Summary of the Invention
[0004] To address the problems in the prior art, the present invention provides a mobile infusion stand.
[0005] The technical solution adopted by this invention to solve its technical problem is: A mobile infusion stand includes an auxiliary mobile chassis, an infusion connection bracket, a lifting infusion stand, a handheld conversion assembly, a longitudinal tube clamping part, and a transverse tube clamping part. The infusion connection bracket is slidably connected to the auxiliary mobile chassis, the lifting infusion stand is fixedly connected to the auxiliary mobile chassis, the handheld conversion assembly is rotatably connected to the lifting infusion stand, the transverse tube clamping part is fixedly connected to the handheld conversion assembly, the handheld conversion assembly is rotatably connected to the lifting infusion stand, and the longitudinal tube clamping part is fixedly connected to the handheld conversion assembly. The handheld conversion assembly can drive the transverse tube clamping part to clamp the tube by moving downward.
[0006] The infusion connection bracket includes a fixed plate and a guide groove, with the guide groove disposed on the fixed plate.
[0007] The handheld conversion assembly includes a polygonal limiting plate, a control frame, a handgrip control frame, a bottom rotating frame, a return spring, and a pressing plate. The bottom rotating frame is mounted on the polygonal limiting plate. The upper and lower ends of the control frame are respectively fixed to the lower end of the handgrip control frame and the upper end of the bottom rotating frame. The return spring is sleeved on the bottom rotating frame and its bottom is fixed to the polygonal limiting plate. The pressing plate is fixed to the bottom rotating frame. The control frame is slidably connected in the guide groove. A trigger linkage is provided at the bottom of the handgrip control frame.
[0008] The longitudinal tube clamping part includes a rotating right-angle arm, a limiting buckle, a bending plate, a clamping plate mounting plate, a flared clamping plate, a tail extension plate, a limiting slider, a synchronous moving frame, and a connecting shaft. The limiting buckle is fixed to the rotating right-angle arm, the bending plate is slidably connected to the limiting buckle, the bending plate is fixed to the synchronous moving frame, the synchronous moving frame is fixed to two limiting sliders, the two limiting sliders are slidably connected to multiple tail extension plates, the multiple tail extension plates are fixed to two flared clamping plates, the multiple tail extension plates are rotatably connected to the connecting shaft, the rotating rod of the connecting shaft is connected to the clamping plate mounting plate, the bending plate is fixed to the pressing plate, the two limiting sliders are slidably connected to the clamping plate mounting plate, and the multiple tail extension plates are arranged in a cross pattern.
[0009] The limiting slider includes a straight slide plate and inclined support plates. Two inclined support plates are fixed to the straight slide plate, and the distance between the two inclined support plates is the same as the distance between the two tail extension plates located on the same side at the front and rear.
[0010] The horizontal tube clamping part includes a horizontal tube clamping connecting plate, a clamping plate, a rack, a gear, and a drive motor. The horizontal tube clamping connecting plate is fixedly connected to the polygonal limiting plate. Both racks are slidably connected to the horizontal tube clamping connecting plate and fixedly connected to the clamping plate. Both racks mesh with the gear for transmission. The gear is rotatably connected to the horizontal tube clamping connecting plate and fixedly connected to the output shaft of the drive motor. The drive motor is fixedly connected to the horizontal tube clamping connecting plate.
[0011] The auxiliary mobile chassis includes an auxiliary support, hand auxiliary handles, casters, a standing area, and an equipment placement plate. Both hand auxiliary handles are fixed to the auxiliary support. The standing area is set on the auxiliary support, with the two hand auxiliary handles located on the left and right sides of the standing area. The equipment placement plate is set at the bottom of the auxiliary support, and multiple casters are rotatably connected to the four corners of the bottom of the auxiliary support.
[0012] The auxiliary mobile chassis also includes an infusion unit mounting plate, a clamping part placement groove, and a mid-section limiting groove. The infusion unit mounting plate is fixed to the auxiliary support, the clamping part placement groove is set on the infusion unit mounting plate, and the infusion unit mounting plate is provided with a mid-section limiting groove. A polygonal limiting plate is rotatably connected in the mid-section limiting groove.
[0013] The opening of the infusion unit mounting plate is the same size as that of the polygonal limiting plate.
[0014] The lifting infusion stand includes a lifting rod, a fixing bolt, a multi-hook hanger, and hooks. The lifting rod is fixed to a fixing plate, and the fixing bolt is threaded to the lifting rod. The multi-hook hanger is fixed to the upper end of the lifting rod, and multiple hooks are set on the multi-hook hanger.
[0015] The beneficial effects of this invention are: (1) They can be used in combination to assist movement during intravenous injection.
[0016] (2) It can be divided into two parts. One part is fixed on the hospital bed to achieve the effect of intravenous injection, and the other part can be used to assist in movement without taking up space.
[0017] (3) The patient can use it with one hand, which makes it easy to combine and disassemble the infusion with the non-infusion hand during infusion, making it easy to operate. Attached Figure Description
[0018] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0019] Figure 1 This is an overall diagram of the present invention; Figure 2 This is the auxiliary mobile chassis of the present invention; Figure 3 This is a partially enlarged view of the auxiliary mobile chassis of the present invention; Figure 4 This is a schematic diagram showing the connection between the infusion connection bracket and the lifting infusion stand of the present invention; Figure 5 This diagram illustrates the connection between the handheld conversion assembly, the longitudinal tube clamping part, and the transverse tube clamping part of the present invention. Figure 1 ; Figure 6 This diagram illustrates the connection between the handheld conversion assembly, the longitudinal tube clamping part, and the transverse tube clamping part of the present invention. Figure 2 ; Figure 7 This is a schematic diagram showing the connection between the handheld conversion component and the horizontal tube clamping part of the present invention; Figure 8 This diagram illustrates the connection between the handheld conversion assembly, the longitudinal tube clamping part, and the transverse tube clamping part of the present invention. Figure 3 ; Figure 9 This is the longitudinal tube clamping part of the present invention; Figure 10 This is another perspective of the longitudinal tube clamping part of the present invention; Figure 11 For the present invention Figure 10 Enlarged view of a specific area.
[0020] In the diagram: 1. Auxiliary mobile chassis; 2. Infusion connection bracket; 3. Lifting infusion stand; 4. Handheld conversion assembly; 5. Longitudinal tube clamping part; 6. Horizontal tube clamping part; 11. Auxiliary bracket; 12. Handheld auxiliary handle; 13. Casters; 14. Standing area; 15. Equipment placement plate; 16. Infusion unit placement plate; 17. Clamping part placement slot; 18. Mid-section limiting slot; 21. Fixing plate; 22. Guide slot; 31. Lifting rod; 32. Fixing bolt; 33. Multi-hook hanging; 34. Hook; 41. Polygonal limiting plate; 42. Control frame; 43. Handheld control frame; 43. Trigger linkage; 431. Bottom rotating frame; 44. Return spring; 45. Pressing plate; 46. Right angle arm; 51. Limiting buckle; 52. Bending plate; 53. Clamping plate mounting plate; 54. Flared clamping plate; 55. Tail extension plate; 56. Limiting slider; 57. Synchronous moving frame; 58. Connecting shaft; 59. Straight sliding plate; 571. Inclined support plate; 572. Detailed Implementation
[0021] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.
[0022] like Figures 1-11 As shown, the mobile infusion stand of the present invention includes an auxiliary mobile base 1, an infusion connection bracket 2, a lifting infusion stand 3, a handheld conversion assembly 4, a longitudinal tube clamping part 5, and a transverse tube clamping part 6. The infusion connection bracket 2 is slidably connected to the auxiliary mobile base 1, the lifting infusion stand 3 is fixedly connected to the auxiliary mobile base 1, the handheld conversion assembly 4 is rotatably connected to the lifting infusion stand 3, the transverse tube clamping part 6 is fixedly connected to the handheld conversion assembly 4, and the handheld conversion assembly 4 is rotatably connected to the lifting infusion stand 3. The longitudinal tube clamping part 5 is fixedly connected to the handheld conversion assembly 4. The handheld conversion assembly 4 can drive the transverse tube clamping part 6 to clamp the tube by moving downward. In use, the auxiliary mobile base 1 can be connected to the infusion connection bracket 2, the lifting infusion stand 3, the handheld conversion assembly 4, and the transverse tube clamping part 6. The holding part 5 and the horizontal tube clamping part 6 can be separated and used as individual parts. The handheld conversion component 4 is used to operate and drive the longitudinal tube clamping part 5 and the horizontal tube clamping part 6 to clamp onto the tubes arranged longitudinally and laterally on the bed. This can fix the infusion connection bracket 2, the lifting infusion stand 3, the handheld conversion component 4, the longitudinal tube clamping part 5 and the horizontal tube clamping part 6 at the head of the bed, serving as an infusion device fixed at the head of the bed. When the patient needs to get out of bed, the handheld conversion component 4 is used to separate the longitudinal tube clamping part 5 and the horizontal tube clamping part 6 from the clamping tubes. Then, the handheld conversion component 4 is connected to the auxiliary moving base 1, allowing the patient to move the auxiliary moving base 1 with assistance, which facilitates the patient's toileting or movement during intravenous injection.
[0023] Specifically, the infusion connection bracket 2 includes a fixed plate 21 and a guide groove 22. The guide groove 22 is disposed on the fixed plate 21 and restricts the sliding distance of the handheld conversion component 4 sliding on it.
[0024] Specifically, the handheld conversion assembly 4 includes a polygonal limiting plate 41, a control frame 42, a handgrip control frame 43, a bottom rotating frame 44, a return spring 45, and a pressure plate 46. The bottom rotating frame 44 is mounted on the polygonal limiting plate 41. The upper and lower ends of the control frame 42 are respectively fixed to the lower end of the handgrip control frame 43 and the upper end of the bottom rotating frame 44. The return spring 45 is sleeved on the bottom rotating frame 44, and its bottom is fixed to the polygonal limiting plate 41. The pressure plate 46 is fixed to the bottom rotating frame 44. A trigger linkage 431 is provided at the bottom of the handgrip control frame 43. The control frame 42 is slidably connected in the guide groove 22. When the patient is in bed receiving intravenous infusion and wants to get out of bed... When using the toilet or moving to relieve fatigue, the hand holding the control frame 43 is used by the hand that has not received a hand injection. Simply move the control frame 43 downward to loosen the clamps on the longitudinal tube clamp 5 and the transverse tube clamp 6, then rotate the control frame 43. The control frame 42 slides in the guide groove 22, causing the longitudinal tube clamp 5 to leave the longitudinally arranged tube. Then, move the control frame 43 upward to separate the transverse tube clamp 6 from the transverse tube. After that, the hand-held conversion component 4 is combined with the auxiliary moving chassis 1 to assist the patient in moving to use the toilet or for exercise.
[0025] Specifically, the longitudinal tube clamping part 5 includes a rotating right-angle arm 51, a limiting buckle 52, a bending plate 53, a clamping plate mounting plate 54, a flared clamping plate 55, a tail extension plate 56, a limiting slider 57, a synchronous moving frame 58, and a connecting shaft 59. The right-angle arm 51 is fixedly connected to the bottom rotating frame 44, the limiting buckle 52 is fixedly connected to the rotating right-angle arm 51, the bending plate 53 is slidably connected to the limiting buckle 52, and the bending plate 53 is fixedly connected to the synchronous moving frame 58. The synchronous moving frame 58 is fixedly connected to two limiting sliders 57, and the two limiting sliders 57 are respectively connected to multiple tail extension plates. The extension plates 56 are slidably connected, and multiple tail extension plates 56 are respectively fixed to two flared clamps 55. All tail extension plates 56 are rotatably connected to a connecting shaft 59. The rotating rod of the connecting shaft 59 is connected to a clamp mounting plate 54. The bending plate 53 is fixedly connected to the pressing plate 46. Two limiting sliders 57 are slidably connected to the clamp mounting plate 54. The multiple tail extension plates 56 are arranged in a crisscross pattern. Rotating the bottom rotating frame 44 causes the right-angle arm 51 to rotate accordingly. When the flared clamps 55 contact the longitudinally arranged pipe, the pipe slides into the two flared clamps. Between plates 55, pressing down on the control frame 43 causes the rotating base frame 44 and the pressing plate 46 to move, while the return spring 45 is compressed, causing the bending plate 53 to move downwards. The bending plate 53 slides in the limiting buckle 52 to prevent the limiting buckle 52 from shifting. The synchronous moving frame 58, fixed to the bottom of the bending plate 53, slides in coordination with the two limiting sliders 57. The two limiting sliders 57 respectively lift the corresponding tail extension plates 56. According to the lever principle, the two flared clamps 55 rotate in opposite directions, causing the openings of the two flared clamps 55 to... Enlarging the opening facilitates the longitudinally positioned pipe entering between the two flared clamps 55. After releasing the hand grip control 43, the hand grip control 43 returns to its previous position under the elastic force of the return spring 45. At the same time, the bending plate 53 and the synchronous moving frame 58 move upward. A torsion spring is provided between the two flared clamps 55 and the connecting shaft 59. The torsion spring maintains the tendency of the two flared clamps 55 to converge towards each other. As the two limiting sliders 57 move upward away from the corresponding tail extension plate 56, the two flared clamps 55 clamp the longitudinal pipe under the elastic force of the torsion spring.
[0026] Specifically, the limiting slider 57 includes a straight slide plate 571 and an inclined support plate 572. Two inclined support plates 572 are fixed on the straight slide plate 571. The distance between the two inclined support plates 572 is the same as the distance between the two tail extension plates 56 located on the same side at the front and rear. When the limiting slider 57 slides, the two inclined support plates 572 located on the straight slide plate 571 move and lift the corresponding tail extension plates 56 under the action of their inclined surfaces.
[0027] Specifically, the horizontal tube clamping part 6 includes a horizontal tube clamping connecting plate 61, a clamping plate 62, a rack 63, a gear 64, and a drive motor 65. The horizontal tube clamping connecting plate 61 is fixedly connected to the polygonal limiting plate 41. Both racks 63 are slidably connected to the horizontal tube clamping connecting plate 61, and both racks 63 are respectively fixedly connected to the clamping plate 62. Both racks 63 mesh with the gear 64 for transmission. The gear 64 is rotatably connected to the horizontal tube clamping connecting plate 61 and is fixedly connected to the output shaft of the drive motor 65. The drive motor 65 is fixedly connected to the horizontal tube clamping connecting plate 61. Pressure sensors are installed inside the two clamping plates 62 to transmit pressure. The sensor uses existing technology. When the hand holds the control frame 43, pressing down the trigger linkage 431 contacts the drive motor 65 switch, causing the drive motor 65 to start. The pressure sensor receives pressure, causing the gear 64 to rotate and the two racks 63 to move apart. The two clamping plates 62 connected to the racks 63 are in a relaxed action. When the pressure sensor does not receive pressure, the gear 64 rotates and the two racks 63 move towards each other. The two clamping plates 62 connected to the racks 63 are in a clamping action. The longitudinal tube clamping part 5 and the transverse tube clamping part 6 can be fixed separately with one hand to secure the whole device, making it convenient for patients to use for intravenous injection.
[0028] Specifically, the auxiliary mobile chassis 1 includes an auxiliary support 11, hand auxiliary handles 12, casters 13, a standing area 14, and an equipment placement plate 15. Both hand auxiliary handles 12 are fixed to the auxiliary support 11. The standing area 14 is set on the auxiliary support 11, with the two hand auxiliary handles 12 located on the left and right sides of the standing area 14. The equipment placement plate 15 is set at the bottom of the auxiliary support 11. Multiple casters 13 are rotatably connected to the four corners of the bottom of the auxiliary support 11. The multiple casters 13 enable the device to move freely, making it convenient for the patient to move. The hand auxiliary handles 12 make it easier for the patient to exert force when using the device. The equipment placement plate 15 can hold a micro-pump or chest traction bottle, making it convenient to carry heavier objects without affecting the patient's use for rehabilitation training or toileting.
[0029] Specifically, the auxiliary mobile chassis 1 further includes an infusion unit mounting plate 16, a clamping part placement groove 17, and a mid-section limiting groove 18. The infusion unit mounting plate 16 is fixedly connected to the auxiliary support 11. The clamping part placement groove 17 is disposed on the infusion unit mounting plate 16. The mid-section limiting groove 18 is provided on the infusion unit mounting plate 16. A polygonal limiting plate 41 is rotatably connected in the mid-section limiting groove 18. The opening of the infusion unit mounting plate 16 is the same size as that of the polygonal limiting plate 41. When placing the mid-section limiting groove 18, the opening of the infusion unit mounting plate 16 needs to be aligned with the polygonal limiting plate 41 so that the polygonal limiting plate 41 can slide down into the mid-section limiting groove 18. By rotating the hand grip control frame 43, the polygonal limiting plate 41 can be rotated so that multiple sides of the polygonal limiting plate 41 can be rotated into the infusion unit mounting plate 16, which can restrict the polygonal limiting plate 41 from flipping and keep the polygonal limiting plate 41 stable during movement.
[0030] Specifically, the lifting infusion stand 3 includes a lifting rod 31, a fixing bolt 32, a multi-hook hanger 33, and hooks 34. The lifting rod 31 is fixed to the fixing plate 21, and the fixing bolt 32 is threadedly connected to the lifting rod 31. The multi-hook hanger 33 is fixed to the upper end of the lifting rod 31, and multiple hooks 34 are set on the multi-hook hanger 33. By rotating the fixing bolt 32, the length can be fixed after the lifting rod 31 is raised or lowered. The multiple hooks 34 of the multi-hook hanger 33 are used to place the infusion bottle.
[0031] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0032] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A mobile infusion stand, characterized by: The device includes an auxiliary mobile chassis (1), an infusion connection bracket (2), a lifting infusion stand (3), a handheld conversion assembly (4), a longitudinal tube clamping part (5), and a transverse tube clamping part (6). The infusion connection bracket (2) is slidably connected to the auxiliary mobile chassis (1), the lifting infusion stand (3) is fixedly connected to the auxiliary mobile chassis (1), the handheld conversion assembly (4) is rotatably connected to the lifting infusion stand (3), the transverse tube clamping part (6) is fixedly connected to the handheld conversion assembly (4), the handheld conversion assembly (4) is rotatably connected to the lifting infusion stand (3), the longitudinal tube clamping part (5) is fixedly connected to the handheld conversion assembly (4), and the handheld conversion assembly (4) can drive the transverse tube clamping part (6) to clamp the tube by moving downward. The infusion connection bracket (2) includes a fixing plate (21) and a guide groove (22), the guide groove (22) being disposed on the fixing plate (21); The handheld conversion assembly (4) includes a polygonal limiting plate (41), a control frame (42), a hand grip control frame (43), a bottom rotating frame (44), a reset spring (45), and a pressing plate (46). The bottom rotating frame (44) is mounted on the polygonal limiting plate (41). The upper and lower ends of the control frame (42) are respectively fixed to the lower end of the hand grip control frame (43) and the upper end of the bottom rotating frame (44). The reset spring (45) is sleeved on the bottom rotating frame (44). The bottom of the reset spring (45) is fixed to the polygonal limiting plate (41). The pressing plate (46) is fixed to the bottom rotating frame (44). The control frame (42) is slidably connected in the guide groove (22). A trigger linkage (431) is provided at the bottom of the hand grip control frame (43). The longitudinal tube clamping part (5) includes a rotating right-angle arm (51), a limiting buckle (52), a bending plate (53), a clamping plate mounting plate (54), a flared clamping plate (55), a tail extension plate (56), a limiting slider (57), a synchronous moving frame (58), and a connecting shaft (59). The right-angle arm (51) is fixed to the bottom rotating frame (44), the limiting buckle (52) is fixed to the rotating right-angle arm (51), the bending plate (53) is slidably connected in the limiting buckle (52), and the bending plate (53) is fixed to the synchronous moving frame (58). The plate (53) is fixed to two limiting sliders (57), and the two limiting sliders (57) are slidably connected to multiple tail extension plates (56). The multiple tail extension plates (56) are fixedly connected to two flared clamps (55). The multiple tail extension plates (56) are rotatably connected to the connecting shaft (59). The rotating rod of the connecting shaft (59) is connected to the clamp mounting plate (54). The bending plate (53) is fixedly connected to the pressing plate (46). The two limiting sliders (57) are slidably connected to the clamp mounting plate (54). The multiple tail extension plates (56) are arranged in a cross pattern. The horizontal tube clamping part (6) includes a horizontal tube clamping connecting plate (61), a clamping plate (62), a rack (63), a gear (64), and a drive motor (65). The horizontal tube clamping connecting plate (61) is fixedly connected to the polygonal limiting plate (41). The two racks (63) are slidably connected to the horizontal tube clamping connecting plate (61). The two racks (63) are respectively fixedly connected to the clamping plate (62). The two racks (63) are meshed with the gear (64) for transmission. The gear (64) is rotatably connected to the horizontal tube clamping connecting plate (61). The gear (64) is fixedly connected to the output shaft of the drive motor (65). The drive motor (65) is fixedly connected to the horizontal tube clamping connecting plate (61). When the hand holds the control frame (43), pressing down the trigger linkage (431) contacts the drive motor (65) switch, causing the drive motor (65) to start. The pressure sensor receives pressure, causing the gear (64) to rotate and the two racks (63) to move away from each other. The two clamping plates (62) connected to the racks (63) are in a slack action. When the pressure sensor does not receive pressure, the gear (64) rotates and the two racks (63) move towards each other. The two clamping plates (62) connected to the racks (63) are in a clamping action.
2. The mobile infusion stand of claim 1, wherein: The limiting slider (57) includes a straight slide plate (571) and an inclined support plate (572). Two inclined support plates (572) are fixedly connected to the straight slide plate (571). The distance between the two inclined support plates (572) is the same as the distance between the two tail extension plates (56) located on the same side at the front and rear. The multiple inclined support plates (572) are slidably connected to the multiple tail extension plates (56).
3. The mobile medical fluid support of claim 1, wherein: The auxiliary mobile chassis (1) includes an auxiliary support (11), hand auxiliary handles (12), casters (13), a standing area (14), and an equipment placement plate (15). The two hand auxiliary handles (12) are fixed to the auxiliary support (11). The standing area (14) is set on the auxiliary support (11). The two hand auxiliary handles (12) are located on the left and right sides of the standing area (14). The equipment placement plate (15) is set at the bottom of the auxiliary support (11). Multiple casters (13) are rotatably connected to the four corners of the bottom of the auxiliary support (11).
4. The mobile medical fluid support of claim 3, wherein: The auxiliary mobile chassis (1) further includes an infusion section mounting plate (16), a clamping section placement groove (17), and a mid-section limiting groove (18). The infusion section mounting plate (16) is fixedly connected to the auxiliary support (11), the clamping section placement groove (17) is set on the infusion section mounting plate (16), and the mid-section limiting groove (18) is provided on the infusion section mounting plate (16). The polygonal limiting plate (41) is rotatably connected in the mid-section limiting groove (18).
5. The mobile infusion stand of claim 4, wherein: The opening of the infusion unit mounting plate (16) is the same size as that of the polygonal limiting plate (41).
6. The mobile medical fluid support of claim 5, wherein: The lifting infusion stand (3) includes a lifting rod (31), a fixing bolt (32), a multi-hook hanger (33), and hooks (34). The lifting rod (31) is fixed to the fixing plate (21). The fixing bolt (32) is connected to the lifting rod (31) by a thread. The multi-hook hanger (33) is fixed to the upper end of the lifting rod (31). Multiple hooks (34) are all set on the multi-hook hanger (33).