CN110584888B - Medical treatment transfer car (buggy) - Google Patents

Medical treatment transfer car (buggy) Download PDF

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Publication number
CN110584888B
CN110584888B CN201910623817.7A CN201910623817A CN110584888B CN 110584888 B CN110584888 B CN 110584888B CN 201910623817 A CN201910623817 A CN 201910623817A CN 110584888 B CN110584888 B CN 110584888B
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China
Prior art keywords
lifting
telescopic
outer frame
stretcher
telescopic outer
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CN201910623817.7A
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Chinese (zh)
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CN110584888A (en
Inventor
张业容
杨友东
吴凡
杨浩隆
吴龙跃
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Zhejiang University of Technology ZJUT
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Zhejiang University of Technology ZJUT
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Publication of CN110584888A publication Critical patent/CN110584888A/en
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61GTRANSPORT, PERSONAL CONVEYANCES, OR ACCOMMODATION SPECIALLY ADAPTED FOR PATIENTS OR DISABLED PERSONS; OPERATING TABLES OR CHAIRS; CHAIRS FOR DENTISTRY; FUNERAL DEVICES
    • A61G1/00Stretchers
    • A61G1/02Stretchers with wheels
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61GTRANSPORT, PERSONAL CONVEYANCES, OR ACCOMMODATION SPECIALLY ADAPTED FOR PATIENTS OR DISABLED PERSONS; OPERATING TABLES OR CHAIRS; CHAIRS FOR DENTISTRY; FUNERAL DEVICES
    • A61G1/00Stretchers
    • A61G1/04Parts, details or accessories, e.g. head-, foot-, or like rests specially adapted for stretchers
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61GTRANSPORT, PERSONAL CONVEYANCES, OR ACCOMMODATION SPECIALLY ADAPTED FOR PATIENTS OR DISABLED PERSONS; OPERATING TABLES OR CHAIRS; CHAIRS FOR DENTISTRY; FUNERAL DEVICES
    • A61G2203/00General characteristics of devices
    • A61G2203/70General characteristics of devices with special adaptations, e.g. for safety or comfort

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Invalid Beds And Related Equipment (AREA)

Abstract

A medical transfer cart, comprising: the movable base mechanism comprises a chassis and universal wheels arranged on the chassis; the lifting mechanism is provided with a lifting part and a lifting platform, wherein the bottom of the lifting part is arranged on the underframe of the movable base mechanism, and the lifting platform is arranged on the upper part of the lifting part, so that the lifting platform is driven by the lifting part to vertically lift along the longitudinal direction; and the sideslip shovel type stretcher mechanism comprises a telescopic outer frame and a spliced inner stretcher formed by splicing two inner stretcher plates, wherein two opposite fixed rods of the telescopic outer frame are respectively fixed with an inner stretcher plate in sliding fit with the lifting platform, and the sliding direction of the inner stretcher plate is kept consistent with the telescopic direction of the telescopic outer stretcher, so that the two inner stretcher plates can move under the drive of the telescopic outer frame. The beneficial effects of the invention are as follows: simple and convenient operation. The patient can be in the supine state and only moved in parallel by one medical staff, so that the traditional method that a plurality of medical staff are needed to lift the patient to finish transferring is replaced, and the workload of the medical staff is reduced.

Description

Medical treatment transfer car (buggy)
Technical Field
The invention relates to a medical transfer trolley.
Background
Medical transfer vehicles are a common instrument used in daily life for rescuing patients or wounded persons. In hospitals, patients often need to change beds between operating beds, CT machine tools, B-ultrasonic examination beds, hospital beds, etc. due to examination or surgery. The bed conversion of the patient still depends on the manual transportation of medical staff in actual operation at present, and a plurality of people are often required to apply force to support the patient at the same time. The distance between the transfer trolley and the target bed is wider after the transfer trolley and the target bed are combined, so that the force application of transfer personnel is limited. In addition, the labor is uneven, the transportation is laborious, the stability is difficult to control, and severe jolt is easily caused, so that the patient is subjected to secondary wounds. Of course, the medical transfer trolley of the electromechanical equipment is not popularized and applied in various aspects, such as the high cost of the electromechanical equipment or the limitation of the oil leakage phenomenon of the hydraulic equipment to the places needing to be strictly disinfected in hospitals.
Disclosure of Invention
In order to solve the problems, the invention provides the medical transfer trolley which has the advantages of simple structure, simple and convenient operation and low manufacturing cost, and can complete the translation and bed change functions between different beds by only one medical staff.
The invention relates to a medical transfer trolley, which is characterized by comprising:
the movable base mechanism comprises a chassis and universal wheels arranged on the chassis and is used for driving the whole transfer trolley to move;
the lifting mechanism is provided with a lifting part and a lifting platform, wherein the bottom of the lifting part is arranged on the underframe of the movable base mechanism, and the lifting platform is arranged on the upper part of the lifting part, so that the lifting platform is driven by the lifting part to vertically lift along the longitudinal direction;
And the sideslip shovel type stretcher mechanism comprises a telescopic outer frame and a spliced inner stretcher formed by splicing two inner stretcher plates, wherein two opposite fixed rods of the telescopic outer frame are respectively fixed with an inner stretcher plate in sliding fit with the lifting platform, and the sliding direction of the inner stretcher plate is kept consistent with the telescopic direction of the telescopic outer stretcher, so that the two inner stretcher plates can move under the drive of the telescopic outer frame.
The telescopic outer frame is composed of two fixing rods and two telescopic rods, wherein the fixing rods and the telescopic rods are alternately connected end to end in sequence to form a closed rectangular structure.
The telescopic rod comprises a first telescopic rod and a second telescopic rod, wherein the first end of the first telescopic rod and the first end of the second telescopic rod are respectively fixedly connected with the end parts of the fixed rods on the same side, and the second end of the first telescopic rod and the second end of the second telescopic rod are hinged through bolts.
The lifting part comprises a scissor type lifting frame for controlling the height of the lifting platform, a sliding guide rail, a bearing seat and a lifting rocker assembly, wherein the sliding guide rail is in sliding connection with a sliding rail on the underframe, the bottom of the scissor type lifting frame is provided with two connecting head ends, a first head end of the bottom is hinged on the underframe through the bearing seat, and a second head end of the bottom is in threaded connection with the underframe through a sliding rail; the top of the scissor type lifting frame is also provided with two connecting head ends, the first head end of the top is hinged with the lifting platform through a bearing seat, and the second head end of the top is used as a lifting control end of the scissor type lifting frame and is in locking connection with the underframe through a sliding track; the lifting rocker assembly is suspended at the bottom of the lifting platform, and the pushing end of the lifting rocker assembly is connected with the second head end of the top of the scissor type lifting frame and used for adjusting the longitudinal height of the scissor type lifting frame.
The shear type lifting frame is composed of a plurality of lifting sub-units which are hinged with each other, wherein each lifting sub-unit comprises two lifting support rods which are hinged with each other at the middle position, and the two lifting support rods form a cross structure with four head ends; the lifting sub units are sequentially arranged from top to bottom, two head ends of the lifting sub unit positioned at the lower layer are respectively hinged with two head ends of the lifting sub unit positioned at the upper layer, wherein a first head end of the lifting sub unit positioned at the bottommost layer is hinged on a bearing seat on the base, and a second head end of the lifting sub unit positioned at the bottom is in threaded connection with the underframe through a sliding track; the first head end of the top of the uppermost lifting subunit is hinged with the lifting platform through a bearing seat, and the second head end of the top is used as a lifting control end of the scissor type lifting frame and is in locking connection with the underframe through a sliding track.
And a locking mechanism is arranged between the lifting platform and the telescopic outer frame and used for realizing the fixation between the telescopic outer frame and the lifting platform.
The anti-tilting support mechanism is an H-shaped support frame, the upper end of the H-shaped support frame is provided with a mounting hole which can be fixedly connected with a fixing rod of the telescopic outer frame, and the lower end of the H-shaped support frame is provided with a hook which is used for hooking with the edge of the underframe.
The bottom of the telescopic outer frame is provided with rollers for rolling on a bed board of a nursing bed.
The fixed rod of the telescopic outer frame is axially provided with a guardrail along the fixed rod.
The bottom of the inner stretcher plate is provided with a pulley which can be in sliding fit along a sliding rail on the surface of the lifting platform, and the axial direction of the sliding rail is consistent with the telescopic direction of the telescopic outer frame.
When the medical transfer trolley is used, medical staff firstly rotates the lifting rocker to adjust the height of the medical transfer trolley to enable the medical transfer trolley to be basically flush with a sickbed of a patient, then rotates the threaded turning hands to loosen the hooks, takes down the hooks from the telescopic outer frame, and puts down the H-shaped support rods. After the operation is finished, the lower part of the medical transfer trolley is U-shaped, the medical transfer trolley is pushed to enable the position of the medical transfer trolley to achieve the effects that the stretcher is on a patient's sickbed and the base mechanism is moved under the patient's sickbed, then the locking mechanism is opened, the stretcher is transversely moved through the pulleys to enable the stretcher and the sickbed to conduct secondary alignment, the sickbed is completely flush with the stretcher, after the secondary alignment is finished, the telescopic outer frame is pulled open again, the telescopic outer frame is achieved through the telescopic rod, at the moment, half of the body of the patient is smoothed onto the sickbed, the telescopic outer frame is turned over to 90 degrees, the inner stretcher slides back to the initial position through the pulleys, and at the same time, the other half of the body of the patient is smoothed onto the sickbed. In a similar manner, the patient can be transferred back from the patient bed to the medical transfer trolley by a similar operation.
The beneficial effects of the invention are as follows:
1) The H-shaped support rod optimizes the stress condition of the medical transfer bed and effectively prevents the possibility of inclination in the use process of the transfer trolley;
2) And when the threaded turning hand is loosened, the H-shaped supporting rod is put down. The medical transfer trolley can be pushed into the sickbed with less effort by utilizing the U-shaped structure presented at the lower part of the transfer trolley. The stretcher is positioned on the upper bottom plate and the lower bottom plate of the sickbed below the sickbed;
3) The roller wheels arranged at the lower part of the telescopic outer frame reduce the friction force of the spliced inner stretcher when the stretcher is pulled on a sickbed; the pulley is arranged at the lower part of the inner stretcher, so that the pushing distance of the stretcher can be conveniently adjusted secondarily;
4) The telescopic and rotary functions of the spliced inner stretcher are more beneficial to the transportation of patients on sickbeds and medical transport vehicles;
5) The locking mechanism on the lifting platform prevents the sliding phenomenon of the transverse shovel type stretcher mechanism in the running process, and achieves the fastening effect;
6) Simple and convenient operation. The patient can be moved in parallel by only one healthcare worker in the supine position. The device replaces the traditional method that a plurality of medical staff are needed to lift up the patient to finish transferring, thereby effectively reducing the workload of the medical staff.
Drawings
FIG. 1 is a general block diagram of the present invention;
FIG. 2 is a partial schematic view of the structure of FIG. 1;
FIG. 3 is a partial schematic view of the structure of FIG. 1;
FIG. 4 is a partial schematic view of the structure of FIG. 1;
FIG. 5 is a partial schematic view of the structure of FIG. 1;
FIG. 6 is a schematic drawing of the stretcher when pulled apart;
FIG. 7 is a partial schematic view of the structure of FIG. 6;
Fig. 8 is a detail view of the H-shaped support bar.
Detailed Description
The invention is further described below with reference to the drawings.
Referring to the drawings:
Embodiment 1a medical transfer vehicle according to the present invention comprises:
The movable base mechanism 1 comprises a chassis 11 and universal wheels 12 arranged on the chassis and used for driving the whole transfer trolley to move;
The lifting mechanism 2 is provided with a lifting part 21 and a lifting platform 22, wherein the bottom of the lifting part is arranged on the underframe 11 of the mobile base mechanism, and the lifting platform 22 is arranged on the upper part of the lifting part, so that the lifting platform 22 is driven by the lifting part to vertically lift along the longitudinal direction;
and the sideslip shovel type stretcher mechanism 3 comprises a telescopic outer frame 31 and a spliced inner stretcher 32 formed by splicing two inner stretcher plates 321, wherein two opposite fixing rods 311 of the telescopic outer frame 31 respectively fix one inner stretcher plate 321 which is in sliding fit with the lifting platform, and the sliding direction of the inner stretcher plate 321 is kept consistent with the telescopic direction of the telescopic outer stretcher 31, so that the two inner stretcher plates 321 can move under the driving of the telescopic outer frame 31.
The telescopic outer frame 31 is composed of two fixing rods 311 and two telescopic rods 312, wherein the fixing rods 311 and the telescopic rods 312 are alternately connected end to end in sequence to form a closed rectangular structure.
The telescopic rod 312 includes a first telescopic rod 3121 and a second telescopic rod 3122, wherein a first end of the first telescopic rod 3121 and a first end of the second telescopic rod 3122 are respectively fixedly connected with an end of the fixing rod 311 on the same side, and a second end of the first telescopic rod 3121 and a second end of the second telescopic rod 3122 are hinged by bolts.
The lifting part 21 comprises a scissor type lifting frame 211 for controlling the height of the lifting platform, a sliding guide rail 212 which is in sliding connection with a sliding rail on the underframe, a bearing seat 213 and a lifting rocker assembly 214, wherein the bottom of the scissor type lifting frame 211 is provided with two first ends 211a at the bottom of the connecting head ends which are hinged on the underframe through the bearing seat, and a second end 211b at the bottom is in threaded connection with the underframe through a sliding rail; the top of the scissor lift 211 is also provided with two connecting head ends, a top first head end 211c is hinged with the lift platform 22 through a bearing seat, and a top second head end 211d is used as a lift control end of the scissor lift 211 and is in locking connection with the underframe 11 through a sliding track; the lifting rocker assembly 214 is suspended at the bottom of the lifting platform 22, and the pushing end of the lifting rocker assembly 214 is connected to the top second head end of the scissor lift 211 for adjusting the longitudinal height of the scissor lift.
The scissor type lifting frame 211 is composed of a plurality of lifting sub-units hinged with each other, wherein each lifting sub-unit comprises two lifting support rods 2111 hinged with each other at the middle position, and the two lifting support rods form a cross structure with four head ends; the lifting sub units are sequentially arranged from top to bottom, two head ends of the lifting sub unit positioned at the lower layer are respectively hinged with two head ends of the lifting sub unit positioned at the upper layer, wherein a first head end of the lifting sub unit positioned at the bottommost layer is hinged on a bearing seat on the base, and a second head end of the lifting sub unit positioned at the bottom is in threaded connection with the underframe through a sliding track; the first head end of the top of the uppermost lifting subunit is hinged with the lifting platform through a bearing seat, and the second head end of the top is used as a lifting control end of the scissor type lifting frame and is in locking connection with the underframe through a sliding track.
A locking mechanism 23 is arranged between the lifting platform 22 and the telescopic outer frame 31, and is used for realizing the fixation between the telescopic outer frame and the lifting platform.
The device also comprises an anti-tilting support mechanism 4, wherein the anti-tilting support mechanism 4 is an H-shaped support frame, the upper end of the H-shaped support frame 43 is provided with a mounting hole 41 fixedly connected with a fixing rod of the telescopic outer frame 31, and the lower end of the H-shaped support frame is provided with a hook 42 for hooking with the edge of the underframe.
The bottom of the telescopic outer frame 31 is provided with rollers 313 for rolling on the bed board of the nursing bed.
The fixing rod of the telescopic outer frame 31 is provided with a guard rail 314 along its own axial direction.
The bottom of the inner stretcher plate 321 is provided with a pulley 322 which can be in sliding fit along the sliding rail on the surface of the lifting platform 22, and the axial direction of the sliding rail is consistent with the telescopic direction of the telescopic outer frame.
Example 2 this example differs from example 1 in that: the lifting rocker assembly 214 comprises a rocker 2141, an upper supporting plate 2142 and a lower supporting plate 2143, wherein the rocker 2141 is mounted at the bottom of the lifting platform 22 through the upper supporting plate 2142, and the telescopic end of the rocker 2141 is hinged with the sliding rail of the second head end of the scissor lift 211 through the lower supporting plate 2143, and keeps the telescopic direction of the rocker 2141 consistent with the slideway direction of the sliding rail.
Example 3 in this example: the movable base mechanism comprises a bottom frame 11 and universal wheels 12, and four universal wheels 12 are sequentially arranged below the bottom frame 11; the lifting mechanism comprises: the sliding guide rail 212 and the bearing seat 213 are respectively connected with the upper surfaces of the transverse frames on the two inner sides of the underframe and the lower surfaces of the transverse frames of the lifting platform through threads, and the lifting rocker assembly is simultaneously connected with the upper supporting piece 2142 and the lower supporting piece 2143 through bolts; in the transverse shovel type stretcher mechanism: the roller 313 is arranged at the lower part of the telescopic outer frame 31, the pulley 322 is arranged at the lower part of the inner stretcher plate of the inner stretcher 32, and the pulley 322 is matched with the sliding rail of the lifting platform 22; one side of the H-shaped supporting rod 43 of the anti-tilting supporting mechanism 4 is connected with the lifting platform 22 through bolts, and the other side is hung on two sides of the lower part of the telescopic outer frame 31.
The lifting platform 22 is also provided with a locking mechanism 23, and the locking mechanism 23 is in threaded connection with the lifting platform 22.
The upper part of the lifting platform 22 is provided with a sliding rail 221 for a pulley 322 to roll.
The lower supporting piece 2143 at the lower part of the lifting platform 22 is a T-shaped supporting piece, and is used for being connected with the telescopic end of the rocker 2141 in a threaded manner.
The lower supporting piece 2142 at the upper part of the lifting supporting rod 5 is used for being connected with the rocker 2141 in a threaded manner.
The inner stretcher plate consists of two inclined panels, so that the subsequent shovel-type work on patients is facilitated.
The telescopic outer frame is also provided with a guardrail 314, and the guardrail 314 is connected with the stretcher in a welding way.
The telescopic distance of the telescopic mechanism of the telescopic outer frame, which is the telescopic distance of the telescopic rod 312, is the width of the stretcher. The two telescopic rods 312 are connected by bolts, so that the rotating effect is achieved.
The upper side of the H-shaped supporting rod 43 is also provided with a hook 42, and the hook 42 is welded with the supporting rod 43. The hooks 42 are hung on the lower part of the telescopic outer frame 31 and fastened by screw-type swivel hands 44.
The embodiments described in the present specification are merely examples of implementation forms of the inventive concept, and the scope of protection of the present invention should not be construed as being limited to the specific forms set forth in the embodiments, but also equivalent technical means that can be conceived by those skilled in the art according to the inventive concept.

Claims (8)

1. A medical transfer vehicle, comprising:
the movable base mechanism comprises a chassis and universal wheels arranged on the chassis and is used for driving the whole transfer trolley to move;
The lifting mechanism is provided with a lifting part and a lifting platform, wherein the bottom of the lifting part is arranged on the underframe of the movable base mechanism, and the lifting platform is arranged on the upper part of the lifting part, so that the lifting platform is driven by the lifting part to vertically lift along the longitudinal direction; the lifting part comprises a scissor type lifting frame for controlling the height of the lifting platform, a sliding guide rail, a bearing seat and a lifting rocker assembly, wherein the sliding guide rail is in sliding connection with a sliding rail on the underframe, the bottom of the scissor type lifting frame is provided with two connecting head ends, a first head end of the bottom is hinged on the underframe through the bearing seat, and a second head end of the bottom is in threaded connection with the underframe through a sliding rail; the top of the scissor type lifting frame is also provided with two connecting head ends, the first head end of the top is hinged with the lifting platform through a bearing seat, and the second head end of the top is used as a lifting control end of the scissor type lifting frame and is in locking connection with the underframe through a sliding track; the lifting rocker assembly is suspended at the bottom of the lifting platform, and the pushing end of the lifting rocker assembly is connected with the second head end of the top of the scissor type lifting frame and used for adjusting the longitudinal height of the scissor type lifting frame;
the transverse shovel type stretcher mechanism comprises a telescopic outer frame and a spliced inner stretcher formed by splicing two inner stretcher plates, wherein two opposite fixed rods of the telescopic outer frame respectively fix an inner stretcher plate in sliding fit with the lifting platform and keep the sliding direction of the inner stretcher plate consistent with the telescopic direction of the telescopic outer stretcher, so that the two inner stretcher plates can move under the drive of the telescopic outer frame;
The device also comprises an anti-tilting supporting mechanism, wherein the anti-tilting supporting mechanism is an H-shaped supporting frame, the upper end of the H-shaped supporting frame is provided with a mounting hole which can be fixedly connected with a fixing rod of the telescopic outer frame, and the lower end of the H-shaped supporting frame is provided with a hook which is used for hooking with the edge of the underframe; when the medical transfer trolley is used, medical staff firstly rotates the lifting rocker to adjust the height of the medical transfer trolley to enable the medical transfer trolley to be basically flush with a sickbed of a patient, then rotates the threaded turning hands to loosen the hooks, takes the hooks off the telescopic outer frame, and puts down the H-shaped support rods; after the operation is finished, the lower part of the medical transfer trolley is U-shaped, and the medical transfer trolley is pushed to achieve the effects that the stretcher is arranged on a patient's sickbed and the base mechanism is moved under the patient's sickbed.
2. A medical transfer vehicle according to claim 1, wherein: the telescopic outer frame is composed of two fixing rods and two telescopic rods, wherein the fixing rods and the telescopic rods are alternately connected end to end in sequence to form a closed rectangular structure.
3. A medical transfer vehicle according to claim 2, wherein: the telescopic rod comprises a first telescopic rod and a second telescopic rod, wherein the first end of the first telescopic rod and the first end of the second telescopic rod are respectively fixedly connected with the end parts of the fixed rods on the same side, and the second end of the first telescopic rod and the second end of the second telescopic rod are hinged through bolts.
4. A medical transfer vehicle according to claim 3, wherein: the shear type lifting frame is composed of a plurality of lifting sub-units which are hinged with each other, wherein each lifting sub-unit comprises two lifting support rods which are hinged with each other at the middle position, and the two lifting support rods form a cross structure with four head ends; the lifting sub units are sequentially arranged from top to bottom, two head ends of the lifting sub unit positioned at the lower layer are respectively hinged with two head ends of the lifting sub unit positioned at the upper layer, wherein a first head end of the lifting sub unit positioned at the bottommost layer is hinged on a bearing seat on the base, and a second head end of the lifting sub unit positioned at the bottom is in threaded connection with the underframe through a sliding track; the first head end of the top of the uppermost lifting subunit is hinged with the lifting platform through a bearing seat, and the second head end of the top is used as a lifting control end of the scissor type lifting frame and is in locking connection with the underframe through a sliding track.
5. A medical transfer vehicle according to claim 1, wherein: and a locking mechanism is arranged between the lifting platform and the telescopic outer frame and used for realizing the fixation between the telescopic outer frame and the lifting platform.
6. A medical transfer vehicle according to any one of claims 1 to 3, wherein: the bottom of the telescopic outer frame is provided with rollers for rolling on a bed board of a nursing bed.
7. A medical transfer vehicle as in claim 6, wherein: the fixed rod of the telescopic outer frame is axially provided with a guardrail along the fixed rod.
8. A medical transfer vehicle according to claim 1, wherein: the bottom of the inner stretcher plate is provided with a pulley which can be in sliding fit along a sliding rail on the surface of the lifting platform, and the axial direction of the sliding rail is consistent with the telescopic direction of the telescopic outer frame.
CN201910623817.7A 2019-07-11 2019-07-11 Medical treatment transfer car (buggy) Active CN110584888B (en)

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CN110584888B true CN110584888B (en) 2024-05-03

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Publication number Priority date Publication date Assignee Title
CN111281679B (en) * 2020-03-10 2021-11-23 中国人民解放军陆军特色医学中心 Multifunctional safety emergency ambulance
CN115998178B (en) * 2023-02-21 2023-06-27 江苏浙泰机电科技有限公司 Stretcher lifting sliding device of bathing machine

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GB1176843A (en) * 1966-03-03 1970-01-07 Francis Xavier Keane Improvements in or relating to Hospital Beds.
US5187821A (en) * 1989-10-19 1993-02-23 A. Ahlstrom Corporation Hospital bed
CN1151862A (en) * 1995-09-21 1997-06-18 河南省西峡县人民医院 Hospital handcart capable of lifting and turning to carry patient in bed
CN202136496U (en) * 2011-07-13 2012-02-08 海南大学 Lifting wheel stretcher for translational bed transfer for patients
CN103190990A (en) * 2013-04-10 2013-07-10 海南大学 Automatic bed-transfer stretcher
KR20140086247A (en) * 2012-12-28 2014-07-08 심규식 stretcher
CN104352311A (en) * 2014-11-20 2015-02-18 孟红琳 Clinical operation cart for cardiology department
CN104921877A (en) * 2015-06-08 2015-09-23 哈尔滨理工大学 Robot for transferring wounded inpatient
CN105411762A (en) * 2016-01-14 2016-03-23 中国人民解放军第三军医大学第二附属医院 Moving hospital bed
CN206183495U (en) * 2016-08-26 2017-05-24 吕海燕 Novel scoop type stretcher
CN106943246A (en) * 2017-04-25 2017-07-14 温州大学 A kind of postoperative patient transfer stretcher car
CN208741358U (en) * 2017-11-30 2019-04-16 黄靖 Shovel patient's waggon of liftable translation
CN211095362U (en) * 2019-07-11 2020-07-28 浙江工业大学 Medical treatment transfer car (buggy)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1176843A (en) * 1966-03-03 1970-01-07 Francis Xavier Keane Improvements in or relating to Hospital Beds.
US5187821A (en) * 1989-10-19 1993-02-23 A. Ahlstrom Corporation Hospital bed
CN1151862A (en) * 1995-09-21 1997-06-18 河南省西峡县人民医院 Hospital handcart capable of lifting and turning to carry patient in bed
CN202136496U (en) * 2011-07-13 2012-02-08 海南大学 Lifting wheel stretcher for translational bed transfer for patients
KR20140086247A (en) * 2012-12-28 2014-07-08 심규식 stretcher
CN103190990A (en) * 2013-04-10 2013-07-10 海南大学 Automatic bed-transfer stretcher
CN104352311A (en) * 2014-11-20 2015-02-18 孟红琳 Clinical operation cart for cardiology department
CN104921877A (en) * 2015-06-08 2015-09-23 哈尔滨理工大学 Robot for transferring wounded inpatient
CN105411762A (en) * 2016-01-14 2016-03-23 中国人民解放军第三军医大学第二附属医院 Moving hospital bed
CN206183495U (en) * 2016-08-26 2017-05-24 吕海燕 Novel scoop type stretcher
CN106943246A (en) * 2017-04-25 2017-07-14 温州大学 A kind of postoperative patient transfer stretcher car
CN208741358U (en) * 2017-11-30 2019-04-16 黄靖 Shovel patient's waggon of liftable translation
CN211095362U (en) * 2019-07-11 2020-07-28 浙江工业大学 Medical treatment transfer car (buggy)

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