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CN-224220336-U - Medical electric transfer vehicle with smooth noninductive movable plate mechanism

CN224220336UCN 224220336 UCN224220336 UCN 224220336UCN-224220336-U

Abstract

The utility model relates to the field of medical electric transfer vehicles, in particular to a medical electric transfer vehicle with a smooth and noninductive moving plate mechanism, which comprises a medical electric transfer vehicle body for bearing a patient moving main body, the medical electric transfer vehicle upper frame is fixedly arranged above the medical electric transfer vehicle body and used for installing a moving assembly, and a sprocket moving mechanism group is fixedly arranged at the bottom of the medical electric transfer vehicle upper frame. When the medical electric transfer vehicle is used, 8 upper PC boards with the thickness of 5 mm, the width of 224.75 mm and the length of 246 mm are arranged in the upper frame of the medical electric transfer vehicle, so that the 8 upper PC boards are used for receiving patients, and then the upper PC boards, the main splice plate and the smooth non-inductive moving board form a smooth non-inductive moving board mechanism by the smooth non-inductive metal shaft and the PTFE wheel shaft.

Inventors

  • YU GUOFENG
  • WANG LIANGCHAO
  • ZHAO JIAN
  • ZHANG SHAOPING

Assignees

  • 众康安达医疗健康管理(天津)有限公司

Dates

Publication Date
20260512
Application Date
20250414

Claims (4)

  1. 1. A medical electric transfer vehicle with a smooth and noninductive moving plate mechanism is characterized by comprising A medical electric transfer vehicle body (1) for carrying a body for patient movement; The medical electric transfer vehicle upper frame (2) is fixedly arranged above the medical electric transfer vehicle body (1) and used for installing a moving assembly, and the chain wheel moving mechanism group (3) is fixedly arranged at the bottom of the medical electric transfer vehicle upper frame (2); The smooth noninductive metal shaft (4) is arranged in the upper frame (2) of the medical electric transfer vehicle and is used for being hinged with an upper PC board (5), a main splice plate (6) is fixedly arranged outside the upper PC board (5), a smooth movable plate (7) is connected below the main splice plate (6) in a sliding mode, and a PTFE wheel shaft (8) penetrates through the outer side of the main splice plate (6).
  2. 2. The medical electric transfer vehicle with the smooth and noninductive moving plate mechanism according to claim 1, wherein the number of the upper PC plates (5) is eight, and the eight upper PC plates (5) are distributed on an upper frame (2) of the medical electric transfer vehicle at equal intervals.
  3. 3. The medical electric transfer vehicle with the smooth and noninductive moving plate mechanism according to claim 1, wherein the upper PC plate (5) is movably connected with an upper frame (2) of the medical electric transfer vehicle, and the smooth and noninductive metal shaft (4) is cylindrical.
  4. 4. The medical electric transfer vehicle with the smooth and noninductive moving plate mechanism according to claim 1, wherein the number of the PTFE wheel shafts (8) is plural, and the PTFE wheel shafts (8) are distributed on the main splice plate (6) at equal intervals.

Description

Medical electric transfer vehicle with smooth noninductive movable plate mechanism Technical Field The utility model relates to the field of medical electric transfer vehicles, in particular to a medical electric transfer vehicle with a smooth noninductive moving plate mechanism. Background The medical electric transfer vehicle is an electric vehicle which is specially used for carrying patients in hospitals, is also called a medical stretcher vehicle or a medical nursing vehicle, and generally consists of a frame, a motor, a battery, a control system and the like. In the use process of the existing medical electric transfer vehicle, due to the fact that the medical electric transfer vehicle lacks a smooth noninductive moving plate mechanism, a traditional hard plate on the medical electric transfer vehicle cannot deform along with physiological curvature of a patient, namely head and neck, chest, waist and hip legs, when the patient with injuries of the parts is transported, painful muscle spasm of the patient is easily caused due to concentrated local pressure, and the medical electric transfer vehicle lacks the smooth noninductive moving plate mechanism after long-term use, vibration frequency is improved during transportation, and the medical electric transfer vehicle cannot bear the patient to move smoothly and safely. Therefore, it is necessary to invent a medical electric transfer vehicle with a smooth and noninductive moving plate mechanism to solve the above problems. Disclosure of utility model The utility model aims to provide a medical electric transfer vehicle with a smooth and noninductive moving plate mechanism, which is characterized in that the smooth and noninductive moving plate mechanism is formed by a smooth and noninductive metal shaft, an upper PC plate, a main splice plate, a smooth moving plate and a PTFE wheel shaft, the structural flexibility of the medical electric transfer vehicle can be used for independently deforming and supporting the body of a patient at different contact scene positions of the human body, the medical electric transfer vehicle is correspondingly and physiologically bent with the head, neck, chest, waist, buttocks and legs of the patient, the medical electric transfer vehicle is kept reasonably and reasonably combined to achieve the smooth and noninductive effect, the problem that the patient is uncomfortable feeling caused by the fact that the patient is caused by uncomfortable bearing of a part instrument in the moving process or secondary injury is caused by the part instrument in the moving process is solved, the medical electric transfer vehicle is enabled to be carried by the smooth and noninductive moving effect of the patient in order to solve the problem that the traditional hard plate on the medical electric transfer vehicle can not be automatically deformed along with the physiological curvature head, neck, chest, waist and legs of the patient in the use of the traditional electric transfer vehicle in the using process of the prior art, the medical electric transfer vehicle is easy to cause the smooth and noninductive moving effect of the patient is not caused by the smooth and the smooth moving effect of the patient in the moving condition of the patient because of the smooth and noninductive moving plate mechanism is not caused by the smooth and the smooth moving effect of the smooth and the patient in the long-time moving condition. In order to achieve the aim, the utility model provides the technical scheme that the medical electric transfer vehicle with the smooth noninductive moving plate mechanism comprises a medical electric transfer vehicle body and a main body, wherein the medical electric transfer vehicle body is used for bearing the movement of a patient; The medical electric transferring upper frame is fixedly arranged above the medical electric transferring vehicle body and used for installing a moving assembly, and the bottom of the medical electric transferring upper frame is fixedly provided with a chain wheel moving mechanism group; The smooth noninductive metal shaft is arranged in the upper frame of the medical electric transfer vehicle and is used for being hinged with an upper PC board, a main splice plate is fixedly arranged outside the upper PC board, a smooth moving plate is connected below the main splice plate in a sliding mode, and a PTFE wheel shaft penetrates through the outer side of the main splice plate. Preferably, the number of the upper PC boards is eight, and the eight upper PC boards are distributed on the medical electric transfer upper frame at equal intervals. Preferably, the upper PC board is movably connected with the medical electric transfer upper frame, and the smooth noninductive metal shaft is cylindrical. Preferably, the number of the PTFE wheel shafts is set to be a plurality, and the PTFE wheel shafts are distributed on the main splice plate at equal intervals. In the technical scheme, the utility