CN110353918A - A kind of department of anesthesia's clinic instrument conveying device - Google Patents
A kind of department of anesthesia's clinic instrument conveying device Download PDFInfo
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- CN110353918A CN110353918A CN201910664415.1A CN201910664415A CN110353918A CN 110353918 A CN110353918 A CN 110353918A CN 201910664415 A CN201910664415 A CN 201910664415A CN 110353918 A CN110353918 A CN 110353918A
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- carrier
- support board
- semiaxis
- anesthesia
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B50/00—Containers, covers, furniture or holders specially adapted for surgical or diagnostic appliances or instruments, e.g. sterile covers
- A61B50/10—Furniture specially adapted for surgical or diagnostic appliances or instruments
- A61B50/13—Trolleys, e.g. carts
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61G—TRANSPORT, PERSONAL CONVEYANCES, OR ACCOMMODATION SPECIALLY ADAPTED FOR PATIENTS OR DISABLED PERSONS; OPERATING TABLES OR CHAIRS; CHAIRS FOR DENTISTRY; FUNERAL DEVICES
- A61G12/00—Accommodation for nursing, e.g. in hospitals, not covered by groups A61G1/00 - A61G11/00, e.g. trolleys for transport of medicaments or food; Prescription lists
- A61G12/001—Trolleys for transport of medicaments, food, linen, nursing supplies
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- Health & Medical Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Animal Behavior & Ethology (AREA)
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- General Health & Medical Sciences (AREA)
- Public Health (AREA)
- Veterinary Medicine (AREA)
- Heart & Thoracic Surgery (AREA)
- Medical Informatics (AREA)
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- Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
- Nursing (AREA)
- Accommodation For Nursing Or Treatment Tables (AREA)
Abstract
The invention proposes a kind of department of anesthesia's clinic instrument conveying devices, it is separately adjustable to solve the problems, such as that single layer spatial altitude can not be carried out, its technical solution is: including carrier and multilayer support board, connection is successively slid vertically between multilayer support board, lowest level support board slides vertically with carrier to be connect;There is level differential drive device on carrier, level differential drive device is arranged layer by layer from small to large by the multiple differential mechanisms for sharing planet carrier and is formed;The semiaxis group of top is from top to bottom corresponded with multilayer support board respectively from the inside to the outside in level differential drive device is spirally connected and screw pitch is equal, the lower end of any semiaxis in the semiaxis group of lower section extends downwardly the lower section of the outer layer axis adjacent with any semiaxis, there is each semiaxis in the semiaxis group with lower section multiple locking parts correspondingly on carrier;The drive bevel gear for having the driven wheel of differential coaxially connected with planet carrier on carrier and engaging with driven wheel of differential has the driving portion with drive bevel gear transmission connection on carrier.
Description
Technical field
The present invention relates to anesthesia medical instruments field, especially a kind of department of anesthesia's clinic instrument conveying devices.
Background technique
Department of anesthesia's clinic device that instrument conveying device is for being conveyed to anesthesia medical instrument, faces in department of anesthesia
It is had a wide range of applications in bed;However existing same device is mostly the cart type rack of fixed structure, anaesthetic apparatus
Storage area space is limited, is unable to satisfy the broad applicability of the anesthesia medical instrument of different type and specification, therefore, the prior art
Middle there are some for solving the devices that instrument rest area space cannot extend, such as application No. is CN201810709798.5,
Subject name is a kind of patent of department of anesthesia's clinic instrument conveying device, gives specific, feasible technical solution, using turning over
Spatial spread is realized in the overturning tiling of revolving door, to place more anesthesia medical instruments.
But above-mentioned apparatus is to place more anaesthetic apparatus using the horizontal extension in space, rather than space
Height extension, still not can effectively solve for how large-sized instrument should be placed, and due to existing instrument
Conveying device generallys use the structure design of multilayer storing, and this structure type keeps the height adjustment of storage space more difficult,
A part of device uses shear shank structure and is attached each layer matter storage lattice in the prior art, is made respectively by the deformation of shear shank
The distance of layer storing compartment generates variation, but this adjust is that each layer synchronizes, and for the storage layer for not needing to adjust, is adjusted
The waste that space will be generated after section is also unfavorable for the safety storage of instrument, is easy to produce and falls during traveling.
Summary of the invention
For above situation, to make up technical deficiency present in the prior art, it is clinical that the present invention provides a kind of department of anesthesia
With instrument conveying device, keep the storage of instrument and taking-up inconvenient to solve storage space height adjustment difficulty existing for existing apparatus
With can not carry out the separately adjustable problem of single layer spatial altitude, while simplifying and adjusting and positioning step, it is better to medical staff
Usage experience.
Its technical solution solved is: including carrier and the multilayer support board being placed on carrier, which is characterized in that described
Connection is successively slid vertically between multilayer support board, lowest level support board slides vertically with carrier to be connect;Have on the carrier
The level differential drive device being placed in below multilayer support board, the level differential drive device with support board by corresponding
The identical differential mechanism composition of multiple gear ratios of different sizes and at different levels, multiple differential mechanisms are arranged layer by layer from small to large: institute
The multiple differential mechanisms stated share the vertically arranged planet carrier of axis, and the ipsilateral semiaxis of multiple differential mechanisms sequentially coaxially turns from inside to outside
Dynamic socket constitutes two semiaxis groups;The semiaxis group of the top is from top to bottom one a pair of with multilayer support board respectively from the inside to the outside
It should be spirally connected and screw pitch is equal, the lower end of any semiaxis in the semiaxis group of the lower section extends downwardly and any semiaxis phase
The lower section of adjacent outer layer axis has each semiaxis in the semiaxis group with lower section multiple locking parts correspondingly on carrier;Described
The horizontally disposed initiative taper of axial direction for having the driven wheel of differential coaxially connected with planet carrier on carrier and being engaged with driven wheel of differential
Gear has the driving portion with drive bevel gear transmission connection on the carrier.
Structure of the invention is ingenious, and it is convenient to manipulate, and using the cooperation of level differential drive device and locking part, only passes through switching
The height adjustment of any support board can be realized in the state of locking part, to reach the complementary adjusting of adjacent interlayers space size
Or any interlayer space size is separately adjustable, the size without will affect other interlayer spaces both ensure that the safety of instrument
Storage and convenient taking-up, also save unnecessary space waste;After the present invention is adjusted, it can be realized using screw thread self-locking
Stablizing for interlayer space is kept, and is reduced the operating procedure of medical staff, is improved stability and safety when use, can have
Effect avoids medical supplies brought by the solid failure of position from damaging problem, eliminates potential risk.
Detailed description of the invention
Fig. 1 is main view of the invention.
Fig. 2 is the enlarged drawing of part A in Fig. 1 of the invention.
Fig. 3 is B-B cross-sectional view of the invention.
Fig. 4 is C-C cross-sectional view of the invention.
Fig. 5 is top view of the invention.
Fig. 6 is axonometric drawing of the invention.
Fig. 7 is three-dimensional cutaway view of the invention.
Specific embodiment
Below in conjunction with attached drawing, specific embodiments of the present invention will be described in further detail.
It is provided by Fig. 1 to Fig. 7, the present invention includes connecting the L shape carrier with wheel 3 formed by vertical part and the horizontal part
1 and the multilayer support board 2 that is placed in above 1 horizontal part of carrier, connection is successively slid vertically between the multilayer support board 2, most
Lower layer's support board 2 slides vertically with the horizontal part of carrier 1 and connect;The horizontal part of the carrier 1 is placed in lowest level support board 2
The level differential drive device 4 of lower section, the level differential drive device 4 by with the one-to-one multiple sizes of support board 2
The identical differential mechanism 401 of gear ratio different and at different levels forms, and multiple differential mechanisms 401 are arranged layer by layer from small to large: described
Multiple differential mechanisms 401 share the vertically arranged planet carrier 402 of axis, and the ipsilateral semiaxis of multiple differential mechanisms 401 is from inside to outside successively
It rotates coaxially socket and constitutes two semiaxis groups 403;Each semiaxis in the semiaxis group 403 of the top is pressed by the sequence except interior
Respectively with multilayer support board 2 by sequence one-to-one correspondence from top to bottom and through being threadedly coupled, and it is fifty-fifty in the semiaxis group 403 of top
The screw pitch of screw thread on axis is equal, is adjusted using height of the screw-driven to support board 2, the semiaxis group of the lower section
The lower end of any semiaxis in 403 extends downwardly the lower section of the outer layer axis adjacent with any semiaxis, and the horizontal part of carrier 1 has
Multiple locking parts 5, locking part 5 are used to control the semiaxis group of lower section correspondingly with each semiaxis in the semiaxis group 403 of lower section
The motion state (rotation stop or releasing rotation stop) of each semiaxis in 403;Have on the carrier 1 coaxially connected with planet carrier 402
Driven wheel of differential 6 and the horizontally disposed drive bevel gear 7 of the axial direction engaged with driven wheel of differential 6, the vertical portion of the carrier 1
There is the driving portion 8 for being used to drive drive bevel gear 7 being sequentially connected with drive bevel gear 7.
Further, there are the multiple vertically arranged vertical bars 9 for being placed in 2 lower section of support board on the support board 2, appoint
Have opening up on the adjacent support board 2 of the lower section of one support board 2 and is corresponded with the vertical bar 9 on any support board 2
The multiple vertically arranged vertical cores 10 matched, the vertical bar 9 on any support board 2 are corresponding on the adjacent support board in lower section 2
Vertical core 10 slides vertically connection one by one, constitutes the structure that connection is successively slid vertically between multilayer support board 2.
Further, have on the undermost support board 2 and be placed in the multiple perpendicular of 2 lower section of undermost support board
To the straight-bar 11 of setting, the horizontal part of carrier 1 has opening up and corresponds with straight-bar 11 matched multiple vertically arranged
Straight hole 12, straight-bar 11 slides vertically one by one with straight hole 12 and connect, and constitutes the horizontal part of the lowest level support board 2 and carrier 1
Slide vertically the structure of connection.
Further, the locking part 5 includes the slide bar 501 and be placed in 501 right end of slide bar that level is slided on carrier 1
And the semi-ring 502 to match with the corresponding semiaxis in the semiaxis group 403 of lower section, multiple slide bars 501 are along the vertical direction and front and back
To being uniformly arranged respectively, the vertical portion of the carrier 1 is placed in 5 left side of slide bar and one-to-one multiple vertical with slide bar 5
There are a lozenges towards lower right in the driving lever 13 of sliding, the lower end of driving lever 13, the left end of the slide bar 5 and corresponding driving lever 13
The wedge-shaped face contact of lower end;There is the horizontal lockhole 14 for running through driving lever 13 on the driving lever 13, the vertical portion of carrier 1 has and lockhole
14 correspond the wedge-shaped lock pins 15 of matched multiple horizontal slidings, and the tapered end of wedge-shaped lock pin 15 is towards lockhole 14, wedge-lock
The other end of pin 15 is placed in outside carrier 1;Due to the semiaxis group of wedge-shaped lock pin 15, lockhole 14, driving lever 13, slide bar 501 and lower section
Each semiaxis in 403 successively corresponds, and each semiaxis in the semiaxis group 403 of top and support board 2 correspond, and any difference
Only unique corresponding two semiaxis in fast device 401, then in each semiaxis in any semiaxis group 403 and another semiaxis group 403
Each semiaxis corresponds, and therefore, driving lever 13 and support board 2 correspond, and utilizes matching for wedge-shaped lock pin 15 and corresponding lockhole 14
Conjunction controls corresponding driving lever 13, can realize under the revolving speed distributional effects of differential mechanism 401 to corresponding support board 2
The control of screw-driven: when any wedge-shaped lock pin 15 is inserted into corresponding lockhole 14, corresponding driving lever 13 is by wedge-shaped lock pin
The extruding of 15 tapered end and slide downward, to make the lozenges of 13 lower end of driving lever that slide bar 501 be pushed to slide to the right, then semi-ring
502, which compress corresponding semiaxis, makes the corresponding semiaxis rotation stop, and differential mechanism 401 corresponding to the corresponding semiaxis all distributes revolving speed
On to corresponding another semiaxis;The slide bar 501 is connect with the horizontal part of carrier 1 through tension spring 16, and slide bar 501 is through tension spring 16
Pulling force slides to the left separates semi-ring 502 with corresponding semiaxis, and the corresponding semiaxis described at this time releases rotation stop;The driving lever 13 and load
The vertical portion of frame 1 is connected through spring 17, and the upward sliding under the elastic force effect of spring 17 of driving lever 13 makes the wedge shape of 13 lower end of driving lever
Face moves up and loses the blocking and extruding to 501 left end of slide bar, then slide bar 501 slides to the left under the pulling force effect of tension spring 16.
Further, have on the driving lever 13 and correspond with support board 2 and run through in the multiple levels being distributed up and down
The lockhole 14 of driving lever 13, the vertical portion of carrier 1 has to be corresponded and from top to bottom multiple horizontal cunnings of arranged in sequence with support board 2
Dynamic lever 18 has at least one lock pin 15 on lever 18, the different lock pins 15 on the lever 18 respectively with difference
Driving lever 13 select one corresponding, any lock pin 15 is uniquely corresponding with multiple lockholes 14 on corresponding driving lever 13;Any operation handle 18
On lock pin 15 quantity it is equal with the ranking value of any operation handle 18, at least one lock pin 15 on any operation handle 18
For controlling the screw-driven of all support boards 2 of 2 top of any support board 2 and any support board, any operation handle 18
The quantity of the support board 2 of corresponding control is equal with the quantity of lock pin 15 on any operation handle 18.
Further, there is semiorbicular brake(-holder) block on the semi-ring 502, respective shaft is stopped for improving semi-ring 502
Turn effect.
Further, there is the spline being mutually matched respectively on the semi-ring 502 and its corresponding semiaxis, utilize spline engagement
Semi-ring 502 is improved to the rotation stop effect of respective shaft.
Further, the driving portion 8 includes the belt mechanism being made of belt 801 and two belt wheels 802, and is set
Rocking handle 803 on the left of 1 vertical portion of carrier, two belt wheels 802 coaxially connect with drive bevel gear 7 and rocking handle 803 respectively
It connects, rotates rocking handle 803 through belt mechanism driving drive bevel gear 7, and then level differential drive device 4 is driven to operate.
Further, the driving portion 8 includes the motor coaxially connected with drive bevel gear 7 and transports for controlling motor
Capable switch.
Further, there is the handrail being placed in above vertical portion 19 in the vertical portion of the carrier 1, in order to carrier 1 into
Row pushes and helps steady.
Further, there is the vertically arranged dust-proof sleeve 20 for being placed in 2 top of support board on the support board 2, it is described
Dust-proof sleeve 20 be sheathed on the periphery of the semiaxis being spirally connected with the support board 2, the adjacent support board 2 of any 2 top of support board
On have with the matched sliding slot 21 of dust-proof sleeve 20 on any support board 2, dust-proof sleeve 20 on any support board 2 with it is upper
Sliding slot 21 on the support board 2 of Fang Xianglin slides vertically connection, both ensure that the smooth implementation of 2 height change of support board, has avoided
Blocking or movement interference are generated between adjacent support board 2, also make support board 2 with the threaded joints of corresponding semiaxis by completely hidden
Hiding, avoid the screw thread on the correspondence semiaxis instrument being placed on support board 2 is caused to wear or fall into be difficult to after dust it is clear
Reason, improves safety and wholesomeness.
Further, there is the fence 22 for being placed in 2 top of support board on the support board 2, make institute's placer in support board 2
Tool will not be skidded off or be fallen easily.
In use, support board 2 is for placing common anesthesia medical instrument, promotion carrier 1 makes the rotation of wheel 3 advance, complete
At the conveying of instrument;When the height that adjacent support board 2 is formed by interlayer space is excessive or smaller, corresponding lock can be passed through
Correspondence semiaxis in the semiaxis group 403 of lower section is carried out rotation stop by stop 5, and drives drive bevel gear 7 to rotate using driving portion 8,
Drive bevel gear 7 drives planet carrier 402 to rotate through driven wheel of differential 6, due in addition to the lower section semiaxis of above-mentioned rotation stop, lower section
Remaining each semiaxis in semiaxis 403 is to release rotation stop namely idling conditions, and rotary resistance is minimum, therefore, the semiaxis of rotation stop
The differential mechanism 401 at place all distributes the rotation of planet carrier 402 to its top semiaxis, and corresponding support board 2 is made to generate spiral shell
Line is driven and moves up and down;Corresponding support board 2 is driven to generate screw thread due to existing on the top semiaxis in remaining differential mechanism 401
The frictional force of transmission, therefore rotary resistance is larger, therefore, remaining differential mechanism 401 all distributes the rotation of planet carrier 402 to lower section
Idling conditions semiaxis on, so that the semiaxis above it be made to remain stationary, then remaining corresponding support board 2 remains stationary,
It is achieved in the adjusting to the height of interlayer space above and below mobile support board 2 is generated, to obtain required size
Use space.
In order to advanced optimize using effect, the present invention is used and (is from top to bottom arranged with the 2 place number of plies of support board to be regulated
Column) driving lever 13 corresponding to remaining support board 2 of the identical lock pin 15 of quantity to support board 2 to be regulated and its top carries out together
When control, individually adjust so that the height of any interlayer be made to realize without will affect other interlayer spaces, with reference to attached drawing 1,3 and 7,
For adjusting the height of second interlayer between second and third two support boards 2 of number, second lever of number is pressed
18, then two lock pins 15 on the lever 18 are inserted into two driving levers 13 corresponding with second and third two support boards 2 (i.e. respectively
Two, left side driving lever 13 in attached drawing 3) in lockhole 14 in, so that two driving levers 13 be made to glide, remaining driving lever 13 is not
It is dynamic;When two driving levers 13 glide, with reference to attached drawing 4, the first and second two slide bars 501 of lower number are by two driving levers 13
Push and slide to the right, make the semi-rings 502 of two 501 right ends of slide bar respectively in the semiaxis group 403 of lower section by introversion
Outer the first and second two semiaxis squeeze contact and make two semiaxis rotation stops (with reference to attached drawing 2), two semiaxis of the lower section with
The first and second two semiaxis in the semiaxis group of top from inside to outside respectively correspond, therefore, when driving portion 8 starts, under described
Revolving speed is all transferred on two semiaxis of the top by the differential mechanism 401 where two semiaxis of side, and due to multiple
The revolving speed of two semiaxis of the identical therefore described top of the transmission ratio of corresponding gears at different levels is equal in differential mechanism 401, and because
The corresponding thread pitch of each semiaxis is equal in the semiaxis group 403 of top, therefore corresponding two loads of two semiaxis of the top
Object plate 2 is that the screw-driven speed of the first and second two support boards 2 of upper number is equal, and described the first and second two support boards 2 are synchronous
Mobile is that the spacing of the two does not generate variation, is changed so that the band height between second and third two support boards 2 only be made to generate,
Realize the independent adjusting of any interlayer space.
After the completion of above-mentioned adjusting, corresponding lever 18 is pulled out, it is fifty-fifty in the semiaxis group 403 of lower section at this time
Axis, which is in, releases rotation stop namely idling conditions, the operation of driving portion 8 will not the semiaxis group to top have an impact, carry multilayer
Each interlayer space height that object plate 2 is formed is constant, and due to the self-locking of threaded connection, the magnitude of load on support board 2 is not
Support board 2 can be made to generate lifting displacement, to be stablized, the using effect of safety.
The present invention utilizes the cooperation of level differential drive device and locking part, only can be real by the state of switching locking part
The height adjustment of an incumbent support board, to reach the complementary adjusting or any interlayer space size of adjacent interlayers space size
Separately adjustable, the size without will affect other interlayer spaces, avoid multilayer space and meanwhile adjust brought by space wave
Take problem, medical staff is allow to be truly realized on-demand adjusting, both ensure that the safety storage and convenient taking-up of instrument, also saved
Unnecessary space waste.
After the present invention carries out big minor adjustment to any interlayer space, it is not necessary to carry out subsequent position and fix, certainly using screw thread
Lock can be realized stablizing for interlayer space and keep, and reduce the operating procedure of medical staff, improve stability when use and
Safety can effectively avoid the damage problem of medical supplies brought by the solid failure of position, eliminate potential risk, makes to adjust and grasp
Make and use process more save worry with it is convenient.
Claims (10)
1. a kind of department of anesthesia's clinic instrument conveying device, including carrier (1) and the multilayer support board (2) being placed on carrier (1),
It is characterized in that, successively sliding vertically connection between the multilayer support board (2), lowest level support board (2) and carrier (1) are perpendicular
To being slidably connected;There is the level differential drive device (4) being placed in below multilayer support board (2) on the carrier (1), it is described
Level differential drive device (4) is by identical with the one-to-one multiple gear ratios of different sizes and at different levels of support board (2)
Differential mechanism (401) composition, multiple differential mechanisms (401) are arranged layer by layer from small to large: multiple differential mechanisms (401) share axis
Vertically arranged planet carrier (402), sequentially coaxially rotation socket constitutes two to the ipsilateral semiaxis of multiple differential mechanisms (401) from inside to outside
A semiaxis group (403);The semiaxis group (403) of the top from the inside to the outside respectively with multilayer support board (2) from top to bottom one by one
Correspondence is spirally connected and screw pitch is equal, and the lower end of any semiaxis in the semiaxis group (403) of the lower section extends downwardly and described
The lower section of the adjacent outer layer axis of one semiaxis has on carrier (1) each semiaxis in the semiaxis group (403) with lower section more correspondingly
A locking part (5);Have on the carrier (1) and planet carrier (402) coaxially connected driven wheel of differential (6) He Yucong mantle tooth
The horizontally disposed drive bevel gear of axial direction (7) of (6) engagement is taken turns, has on the carrier (1) and connects with drive bevel gear (7) transmission
The driving portion (8) connect.
2. a kind of department of anesthesia's clinic instrument conveying device according to claim 1, which is characterized in that on support board (2)
There are the multiple vertical bars (9) being placed in below the support board (2), has opening on the adjacent support board (2) below any support board (2)
Correspond matched multiple vertical cores (10), any support board upward and with the vertical bar (9) on any support board (2)
(2) vertical bar (9) on slides vertically connection with vertical core (10) corresponding on the adjacent support board in lower section (2) one by one, constitutes multilayer
The structure of connection is successively slid vertically between support board (2).
3. a kind of department of anesthesia's clinic instrument conveying device according to claim 1, which is characterized in that undermost loading
There are the multiple vertical straight-bars (11) being placed in below the undermost support board (2) on plate (2), carrier has opening court on (1)
It is upper and correspond matched multiple vertical straight holes (12) with straight-bar (11), straight-bar (11) and straight hole (12) company of sliding vertically one by one
It connects, constitutes the lowest level support board (2) and carrier (1) slides vertically the structure of connection.
4. a kind of department of anesthesia's clinic instrument conveying device according to claim 1, which is characterized in that locking part (5) packet
Include on carrier (1) slide bar (501) of horizontal sliding and be placed in slide bar (501) right end and in the semiaxis group (403) of lower section
The semi-ring (502) that semiaxis matches is corresponded to, be placed on the carrier (1) on the left of slide bar (5) and is corresponded with slide bar (5)
Multiple driving levers (13) slid vertically, there are the lozenges towards lower right, a left side for the slide bar (5) in the lower end of driving lever (13)
It holds and the wedge-shaped face contact of corresponding driving lever (13) lower end;There are horizontally disposed lockhole (14), carrier on the driving lever (13)
(1) there are the wedge-shaped lock pin (15) that matched multiple horizontal slidings are corresponded with lockhole (14), the wedge shape of wedge-shaped lock pin (15) on
Towards lockhole (14), it is external that the other end of wedge-shaped lock pin (15) is placed in carrier (1) at end;The slide bar (501) and carrier (1) passes through
Tension spring (16) connection, driving lever (13) are connect with carrier (1) through spring (17).
5. a kind of department of anesthesia's clinic instrument conveying device according to claim 4, which is characterized in that driving lever has on (13)
It corresponds and in multiple horizontally disposed lockholes (14) for being distributed up and down, has on carrier (1) and support board with support board (2)
(2) it corresponds and from top to bottom the lever (18) of multiple horizontal slidings of arranged in sequence, lever has at least one on (18)
The quantity of a lock pin (15), the lock pin (15) on any operation handle (18) is equal with the ranking value of any operation handle (18),
At least one lock pin (15) on any operation handle (18) is for controlling any support board (2) and any support board (2)
All support boards (2) of side, the quantity of the support board (2) of the corresponding control of any operation handle (18) and any operation handle (18)
On lock pin (15) quantity it is equal.
6. a kind of department of anesthesia's clinic instrument conveying device according to claim 4, which is characterized in that on semi-ring (502)
There is brake(-holder) block.
7. a kind of department of anesthesia's clinic instrument conveying device according to claim 4, which is characterized in that semi-ring (502) and
It is corresponded on semiaxis the spline being mutually matched respectively.
8. a kind of department of anesthesia's clinic instrument conveying device according to claim 1, which is characterized in that driving portion (8) packet
The belt mechanism being made of belt (801) and two belt wheels (802) is included, and is placed in the rocking handle (803) on the outside of carrier (1), institute
Two belt wheels (802) stated are coaxially connected with drive bevel gear (7) and rocking handle (803) respectively.
9. a kind of department of anesthesia's clinic instrument conveying device according to claim 1, which is characterized in that driving portion (8) packet
It includes and drive bevel gear (7) coaxially connected motor and the switch for controlling motor operation.
10. a kind of department of anesthesia's clinic instrument conveying device according to claim 1, which is characterized in that carrier has on (1)
The handrail (19) being placed in above carrier (1).
Priority Applications (1)
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CN201910664415.1A CN110353918B (en) | 2019-07-23 | 2019-07-23 | Clinical apparatus conveyor that uses of department of anesthesia |
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CN201910664415.1A CN110353918B (en) | 2019-07-23 | 2019-07-23 | Clinical apparatus conveyor that uses of department of anesthesia |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN112043510A (en) * | 2020-09-20 | 2020-12-08 | 孙维凤 | Special nursing shallow of clinical neonate of gynaecology and obstetrics |
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CN108836693A (en) * | 2018-07-02 | 2018-11-20 | 吉林大学 | A kind of department of anesthesia's clinic instrument conveying device |
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CN112043510A (en) * | 2020-09-20 | 2020-12-08 | 孙维凤 | Special nursing shallow of clinical neonate of gynaecology and obstetrics |
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