CN116290942A - Quick assembly type clean operating room - Google Patents

Quick assembly type clean operating room Download PDF

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Publication number
CN116290942A
CN116290942A CN202310297792.2A CN202310297792A CN116290942A CN 116290942 A CN116290942 A CN 116290942A CN 202310297792 A CN202310297792 A CN 202310297792A CN 116290942 A CN116290942 A CN 116290942A
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CN
China
Prior art keywords
plate
groove
sliding
assembly
spring body
Prior art date
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Granted
Application number
CN202310297792.2A
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Chinese (zh)
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CN116290942B (en
Inventor
陈建明
陈思睿
刘丹丹
杨文�
古凤霞
刘琪
王华梅
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SICHUAN GANGTONG MEDICAL EQUIPMENT GROUP CO LTD
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SICHUAN GANGTONG MEDICAL EQUIPMENT GROUP CO LTD
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Priority to CN202310297792.2A priority Critical patent/CN116290942B/en
Publication of CN116290942A publication Critical patent/CN116290942A/en
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Publication of CN116290942B publication Critical patent/CN116290942B/en
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H3/00Buildings or groups of buildings for public or similar purposes; Institutions, e.g. infirmaries or prisons
    • E04H3/08Hospitals, infirmaries, or the like; Schools; Prisons
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47CCHAIRS; SOFAS; BEDS
    • A47C4/00Foldable, collapsible or dismountable chairs
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47CCHAIRS; SOFAS; BEDS
    • A47C7/00Parts, details, or accessories of chairs or stools
    • A47C7/02Seat parts
    • A47C7/14Seat parts of adjustable shape; elastically mounted ; adaptable to a user contour or ergonomic seating positions
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47CCHAIRS; SOFAS; BEDS
    • A47C7/00Parts, details, or accessories of chairs or stools
    • A47C7/36Support for the head or the back
    • A47C7/40Support for the head or the back for the back
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/343Structures characterised by movable, separable, or collapsible parts, e.g. for transport
    • E04B1/34315Structures characterised by movable, separable, or collapsible parts, e.g. for transport characterised by separable parts
    • E04B1/34321Structures characterised by movable, separable, or collapsible parts, e.g. for transport characterised by separable parts mainly constituted by panels
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/62Insulation or other protection; Elements or use of specified material therefor
    • E04B1/74Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls
    • E04B1/82Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls specifically with respect to sound only
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/74Removable non-load-bearing partitions; Partitions with a free upper edge
    • E04B2/82Removable non-load-bearing partitions; Partitions with a free upper edge characterised by the manner in which edges are connected to the building; Means therefor; Special details of easily-removable partitions as far as related to the connection with other parts of the building
    • E04B2/827Partitions constituted of sliding panels

Abstract

The quick assembly type clean operating room comprises a first assembly bottom plate, wherein one side end surface of the first assembly bottom plate is connected with a sliding column, the sliding column is in sliding fit with a second assembly bottom plate, the upper end surface of the first assembly bottom plate is provided with a mounting groove, a plurality of first assembly bottom plates and the second assembly bottom plate are matched to form a rectangular mounting groove, a first supporting plate is matched to slide in the mounting groove, and the first supporting plate is connected with a first sliding part in a sliding manner through the first sliding groove; first, the first assembly bottom plate and the second assembly bottom plate are matched, a sliding column on the first assembly bottom plate is utilized to slide on one side of the third sliding groove, the lower end face of the buckling block can be abutted against the bottom of the third sliding groove, the buckling block is upwards extruded on the first spring body and upwards slides in the telescopic groove, and after one end of the sliding column slides a distance, the lower end face of the buckling block moves towards the inside of the buckling groove through the first spring body.

Description

Quick assembly type clean operating room
Technical Field
The invention relates to the technical field of medical equipment, in particular to a rapid assembly type clean operating room.
Background
The operating room is a place for providing operation and rescue for patients, and is an important technical department of hospitals. The operating room should be connected with the operating room, and also be adjacent to the blood bank, guardian room, anesthesia resuscitation room, etc. The link management of four paths of surgical incision infection is grasped, namely: air in the operating room; articles required for surgery; the fingers of doctors and nurses and the skin of patients can prevent infection and ensure the success rate of operation. The requirement design is reasonable, equipment is complete, nurse work response is sensitive, swift, efficient work efficiency. The operating room has a set of strict and reasonable regulatory and sterile operating specifications. With the rapid development of surgical techniques, operating theatres are becoming increasingly modern.
Because a large number of bolts are needed for fixing in the matching installation in the prior art, a large amount of time is needed for installing the bolts to finish, after the matching is finished, medical treatment is required to be moved into an operating room with the matched finish, but the space of the matched operating room is limited, medical staff only need to move important medical equipment into the operating room, after a doctor performs high tension operation, the doctor can normally sit on a bottom plate of the operating room directly, even if the operating room is provided with a bench, the doctor can not sit on the bench, and after the doctor performs operation, the doctor is tired, no effort is needed to sit on the bench by supporting the body of the doctor, the bench occupies a relatively large space, and the bench is generally assembled in the operating room in a rapid manner, and no bench or other articles are needed.
In order to solve the problems, the invention provides a quick assembly type clean operating room.
Disclosure of Invention
(1) Technical problem to be solved
The invention aims to overcome the problems in the prior art, adapt to the actual needs, and provide a rapid assembly type clean operating room so as to solve the technical problems.
(2) Technical proposal
In order to achieve the purpose of the invention, the technical scheme adopted by the invention is as follows: the utility model provides a clean operating room of rapid Assembly formula, including first assembly bottom plate, first assembly bottom plate one side terminal surface is connected with the slip post, form rectangular shape's mounting groove after a plurality of first assembly bottom plates and the cooperation of second assembly bottom plate, this mounting groove cooperation slides and has first backup pad, this first backup pad has first sliding part through first sliding groove sliding connection, this first sliding part one side is connected with the second backup pad, the inside of mounting groove is inserted to terminal surface under this second backup pad, and this first backup pad and second backup pad appearance are L type, and second backup pad one side terminal surface is connected with the second sliding part through the second sliding groove, this second sliding part one side is connected with the acoustic celotex board, this acoustic celotex board lower terminal surface is connected with the inserted board, this insert board lower terminal surface inserts in the inside of mounting groove, a plurality of insert boards cooperate with sliding fit along the mounting groove inside, form three-dimensional rectangle, and acoustic celotex board up end has the cooperation groove through the fixed of mounting groove, it forms rectangular cooperation groove, this cooperation groove up end face sliding fit in the acoustic celotex cover; after the first support plate and the second support plate are in sliding fit, an opening is formed at the lower part due to assembly, and a medical door is connected inside the opening; the sound insulation board internally provided with a unfolding mechanism.
Preferably, the sliding column is slidably connected with a third sliding groove, the lower end face of one side of the sliding column is provided with a telescopic groove, the top wall of the telescopic groove is connected with a first spring body, the lower end face of the first spring body is connected with a buckling block, one side of the lower end face of the buckling block is propped against and pressed with a pushing block, the sliding block is slidably matched with the pushing block to form a buckling groove, one side end of the buckling groove penetrates through one side wall of the second assembly bottom plate, the buckling groove is formed in one side bottom of the third sliding groove, one side wall of the buckling groove is provided with a pressing groove, one side face of the first pushing block is connected with a second spring body, the outer surface of the second spring body is sleeved with a hole, the hole is formed in one side wall of the buckling groove, one side end of the pushing block is connected with a first pressing plate, the first pressing plate is slidably connected to one side of the buckling groove, and one side end of the first pressing plate extends to one side face of the second assembly bottom plate through one side of the buckling groove.
Preferably, the unfolding mechanism comprises a box body, one side of the box body is connected with a containing cavity, the containing cavity is formed in the lower portion of the sound insulation plate, the box body is connected to one side end of the containing cavity, one side end of the box body is also connected to one side wall of the sound insulation plate, one side of the bottom of the containing cavity is connected with an inclined block, the upper end face of the inclined block abuts against a transmission plate, the upper end face of the transmission plate abuts against a waist plate, two sides of the waist plate are connected with transmission blocks, the transmission blocks are slidably connected with first sliding shells, one side wall of each first sliding shell is connected with a third spring body, one side of each sliding shell is connected to two side walls of the containing cavity, the middle of the upper end face of each transmission block is connected with a transmission plate, two sides of each mobile plate are slidably connected with second sliding shells, each second sliding shell is connected to two side walls of the upper portion of the containing cavity, one side face of each mobile plate is connected with a fourth spring body, one end of each fourth spring body is connected to one side wall of the second sliding shell, one side wall of each mobile plate is connected with a telescopic plate, one side face of each sliding plate is connected with a back pushing plate, and one side wall is matched with a telescopic groove.
Preferably, the lower end face of the shaped groove is connected with an embedded groove, a clamping groove is formed in the middle of the upper wall of the embedded groove, a fifth spring body is connected to the upper wall of the clamping groove, a clamping column is connected to the lower end of the fifth spring body, a bayonet is formed in one side of the lower portion of the clamping column, a pressing groove is formed in one side of the outer surface of the clamping groove, a second pressing plate is slidably connected in the pressing groove, a sixth spring body is connected to one side of the second pressing plate, and one end of the sixth spring body is connected to one side of the lower portion of the shaped groove.
Preferably, the fourth sliding tray has been seted up to holding chamber upper wall both sides, this fourth sliding tray sliding connection has the shell of rotating, this rotates the shell and is connected with the resistance section of thick bamboo through first fixed axle, this resistance section of thick bamboo inside sliding connection has the resistance pole, this resistance pole one end is connected with the square groove through the second fixed axle, the both sides at the bedplate are seted up to this square groove, this bedplate one side is connected in one side that holds the chamber through the third fixed axle, and bedplate one side is connected with the slipmat, and bedplate one side intermediate junction has the catching groove, the surface of card post is located to this catching groove inside knot.
Preferably, the inclined surface of one side end of the second pressing plate abuts against the inner surface of the bayonet, and after the inclined surface abuts against the bayonet, the lower end surface of the clamping column is parallel to the upper wall of the embedding groove.
Preferably, the lower end face of the transmission plate is connected to the upper end face of the seat plate, and the outer surface of the push back is connected with a sponge bag.
(3) The beneficial effects are that:
A. firstly, a first assembly bottom plate and a second assembly bottom plate are matched, a sliding column on the first assembly bottom plate is utilized to slide on one side of a third sliding groove, the lower end face of a buckle block is abutted against the bottom of the third sliding groove, the buckle block is upwards extruded on a first spring body and upwards slides on a telescopic groove, after one end of the sliding column slides a distance, the lower end face of the buckle block moves towards the inside of the buckle groove through the first spring body, the lower end face of the buckle block is abutted against the outer surface of a push block, the push block is stressed to slide to one side at the bottom of the buckle groove, the second spring body at the upper part of one side of the push block is extruded and extruded in a hole, the power of the push block is transmitted to a first pressing plate, the first pressing plate outwards slides on one side of the buckle groove, the buckle block is just buckled on one side wall of the buckle groove, the installation is completed, the assembly speed is improved, and the disassembly is convenient;
B. the rectangular supporting body shown in figure 2 is formed by assembling a plurality of first assembling bottom plates and second assembling bottom plates, an opening is reserved between one sides of the first assembling bottom plates and the second assembling bottom plates, and the upper end face of each first assembling bottom plate and the upper end face of each second assembling bottom plate are provided with mounting grooves, so that rectangular mounting grooves are also formed, the lower end face of each first supporting plate is firstly and slidably mounted at one side end opposite to the opening of the mounting groove, then the second supporting plate is mounted, when the second supporting plate is mounted, the first sliding part on the second supporting plate is firstly and slidably mounted at the first sliding part for matching, the second supporting plate is vertically downwards along with the first sliding groove, the lower end face of the second supporting plate is slidably mounted at the other side end opposite to the opening of the mounting groove, and the mounting is completed, so that a space and an opening reserved between the lower end faces of the matched position of the second supporting plate and the first supporting plate are formed at the same time as shown in figure 5, the sound insulation board is installed on the medical door through the connecting piece, after the second supporting board and the first supporting board are completed, the sound insulation board is started to be installed, the sound insulation board slides in the second sliding groove through the second sliding part, the inserting plate on the sound insulation board is vertically downwards inserted into the installation groove along with the second sliding groove, the sound insulation boards are sequentially inserted and assembled, the upper end surfaces of the sound insulation boards are all provided with rectangular matching grooves formed by the matching grooves (also comprising the upper end surfaces of the second supporting board and the first supporting board), and then the sound insulation boards are slidably clamped in the rectangular matching grooves through the lower end surfaces of the sound insulation covers, the first assembling bottom board, the second assembling bottom board, the first supporting board, the second supporting board, the sound insulation boards and the sound insulation cover assembling inner walls are assembled on the same horizontal plane and the operating room, and as shown in figure 7, the assembling is not required to be fixed through bolts, time and labor are saved, the assembly speed is improved, and the disassembly and assembly are convenient;
C. the sound insulation plate can be provided with a single or a plurality of unfolding mechanisms which are special for rest of doctors, after the high tension operation of the doctors, the doctors can press the second pressing plate, the second pressing plate slides to one side of the pressing groove and is extruded on the sixth spring body, one side end inclined surface of the second pressing plate is in sliding contact with the bayonet, the clamping column gradually slides upwards along the inclined surface through the bayonet in the clamping groove, the upper end of the clamping column is extruded on the fifth spring body, the matched buckling groove of the embedding groove does not have the buckle of the clamping column, the seat plate can be unfolded for a certain angle, the hands of the doctors need to press downwards on the seat plate, the outward unfolding angle of the seat plate is increased, the seat plate can be opened without needing larger force (the seat plate can be opened by the assistance of other doctors), after the seat plate is opened by the buttocks, the back pushing and the waist propping plate can be started to jack up the waist and the back, when the seat plate is unfolded outwards, the transmission plate rotates outwards along with the seat plate, the upper end of the transmission plate props against the waist propping plate, the waist propping plate is stressed and transmitted to the transmission block, the two sides of the transmission block slide on the sliding shell and stretch in the third spring body, and the waist propping plate moves outwards along with the power of the transmission plate horizontally through the transmission block, so that the waist propping plate props up the waist of a doctor, the phenomenon that the waist of the doctor is not propped against objects is avoided, the discomfort of the waist of the doctor is avoided, and the functionality is improved;
D. in the transfer piece removes, simultaneously, the power transmission to the waist board through the transfer board is to on the transfer board, this transfer board slides in the second sliding shell to one side, and stretch in four spring bodies, and the outside removal of transfer board level, drive the expansion plate and push away the back and pass in the shape groove, with its doctor back of holding up, let doctor's better rest, improve the comfort level, should push away the back and support the waist board and be along with the angle of bedplate, and how much distance of removal, in the seat board is outwards expanded, utilize square groove and second fixed axle pulling in the resistance bar, this resistance bar atress outwards slides in the resistance cylinder, the resistance bar slides to the limit back of resistance cylinder, resistance cylinder utilization rotates shell and first fixed axle outwards to slide in the fourth sliding groove, until the bedplate is 90 degrees, accomplish the work above, this resistance cylinder and resistance bar can effectively support in the bedplate, and, after the doctor sits at fatigue wind doctor, doctor's back of the buttock is effectively avoided the doctor to slide on the bedplate up end, prevent to let doctor fall on ground because of sideslip, the protectiveness, on the doctor is tired doctor, the seat board is used to the back of sitting down, the seat board is avoided the back to have been stretched out to the back of the doctor, can not hold down in order to use the comfort again, the comfort level is avoided when the seat board is opened, the back is not had to have been used to have been avoided to have improved to sit down, and can hold up the comfort to have had to be more convenient to be opened.
Drawings
FIG. 1 is a schematic perspective view of a rapid-assembly clean operating room according to the present invention;
FIG. 2 is a schematic perspective view of a second assembly floor of a rapid-assembly clean operating room according to the present invention;
FIG. 3 is an enlarged view of a portion of a button of a quick assembly clean operating room according to the present invention;
FIG. 4 is an enlarged view of a portion of a pusher block of a quick assembly clean operating room according to the present invention;
FIG. 5 is an enlarged view of a portion of a first support plate of a quick-assembly clean operating room according to the present invention;
FIG. 6 is a schematic view of a sound baffle of a quick-assembly clean operating room according to the present invention;
FIG. 7 is a schematic view of a fitting groove of a rapid assembly type clean operating room according to the present invention;
FIG. 8 is an enlarged view of a portion of the deployment mechanism of a quick assembly clean operating room according to the present invention;
FIG. 9 is an enlarged view of a portion of a drive plate of a quick assembly clean operating room according to the present invention;
FIG. 10 is an enlarged view of a portion of an embedded slot of a quick assembly clean operating room according to the present invention;
FIG. 11 is an enlarged view of a portion of a fourth sliding channel of a rapid-assembly clean operating room according to the present invention;
FIG. 12 is an enlarged view of a portion of a cleat for a quick-assembly clean operating room according to the present invention;
fig. 13 is an enlarged view of a portion of a waist support plate of a rapid-assembly clean operating room according to the present invention.
The reference numerals are as follows:
1-first assembly base plate, 11-slide column, 111-expansion groove, 112-first spring body, 113-buckle block, 114-push block, 115-second spring body, 116-hole, 117-first pressing plate, 12-second assembly base plate, 121-third slide groove, 122-buckle groove, 123-pressing groove, 13-mounting groove, 2-first support plate, 21-first slide groove, 22-first slide part, 23-second support plate, 24-second slide groove, 25-second slide part, 26-acoustic baffle, 261-insert plate, 27-fitting groove, 3-acoustic cover, 4-medical door, 5-deployment mechanism, 51-box, 52-receiving chamber, 521-tilting block, 53-driving plate, 54-waist-supporting plate, 55-transmitting block, 56-sliding shell, 57-transmitting plate, 571-moving plate, 572-second sliding shell, 573-fourth spring body, 574-expansion plate, 575-pushing back, 576-shaped slot, 58-embedding slot, 581-clamping slot, 582-fifth spring body, 583-clamping column, 584-bayonet, 585-pressing slot, 586-second pressing plate, 587-sixth spring body, 59-fourth sliding slot, 591-rotating shell, 592-resistance cylinder, 593-resistance rod, 594-square slot, 595-seat plate, 596-anti-slip pad, 597-buckling slot.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments.
The invention is further illustrated by the following examples in connection with figures 1-13:
in this embodiment, as shown in fig. 1-13, a rapid assembly type clean operating room comprises a first assembly bottom plate 1, wherein one side end surface of the first assembly bottom plate 1 is connected with a sliding column 11, the sliding column 11 is in sliding fit with a second assembly bottom plate 12, a plurality of first assembly bottom plates 1 and the second assembly bottom plate 12 form a rectangular installation groove 13 after being matched, the installation groove 13 is matched and slides with a first support plate 2, the first support plate 2 is in sliding connection with a first sliding part 22 through a first sliding groove 21, one side of the first sliding part 22 is connected with a second support plate 23, the lower end surface of the second support plate 23 is inserted into the installation groove 13, the first support plate 2 and one side end surface of the second support plate 23 are in an L shape, one side end surface of the second support plate 23 is connected with a second sliding part 25 through a second sliding groove 24, one side of the second sliding part 25 is connected with a sound insulation plate 26, the lower end surface of the insertion plate 261 is inserted into the inside the installation groove 13, the plurality of insertion plates 261 are matched with the rectangular installation groove 13 along the inside the installation groove 13, the lower end surface of the sound insulation plate is matched with the rectangular installation groove 13, the sound insulation plate 27 is matched with the upper end surface of the sound insulation plate 27, and the sound insulation plate 27 is matched with the upper end surface of the sound insulation plate 13 through the rectangular installation groove, and the upper end surface is matched with the rectangular installation groove, 3, and the sound insulation plate is matched with the sound insulation plate 27, and the sound insulation plate is formed by the upper end surface is matched with the sound insulation plate 3, and the sound insulation plate is formed by the sound insulation plate 3; after the first support plate 2 and the second support plate 23 are in sliding fit, an opening is formed at the lower part due to assembly, and the medical door 4 is connected inside the opening; the acoustic panel 26 is internally provided with a deployment mechanism 5. The rectangular supporting body shown in fig. 2 is formed by assembling a plurality of first assembling bottom plates 1 and second assembling bottom plates 12, an opening is reserved between one sides of the first assembling bottom plates 1 and the second assembling bottom plates 12, and a mounting groove 13 is formed on the upper end face of each first assembling bottom plate 1 and the second assembling bottom plates 12, so that a rectangular mounting groove 13 is also formed, the lower end face of a first supporting plate 2 is firstly arranged at one side end opposite to the opening of the mounting groove 13 in a sliding way, then a second supporting plate 23 is arranged, when the second supporting plate 23 is arranged, a first sliding part 22 on the second supporting plate 23 is firstly arranged at the first sliding groove 21 in a sliding way to be matched, the second supporting plate 23 is vertically downwards along with the first sliding groove 21, the lower end face of the second supporting plate 23 is arranged at the other side end opposite to the opening of the mounting groove 13 in a sliding way, and the mounting is completed, as shown in fig. 5, and simultaneously, the space and opening left by the lower end face of the matching position of the second support plate 23 and the first support plate 2 can be installed on the medical door 4 through the connecting piece, after the second support plate 23 and the first support plate 2 are completed, the sound insulation plate 26 starts to be installed, the sound insulation plate 26 slides in the second sliding groove 24 through the second sliding part 25, the inserting plate 261 on the sound insulation plate 26 is vertically downwards inserted into the installation groove 13 along with the second sliding groove 24, the plurality of sound insulation plates 26 are sequentially inserted and assembled, the rectangular matching groove 27 formed by the matching grooves 27 (also comprising the upper end faces of the second support plate 23 and the first support plate 2) is formed on the upper end faces of the plurality of sound insulation plates 26, and then the sound insulation cover 3 is slidably clamped in the rectangular matching groove 27 through the lower end faces of the sound insulation cover 3, and the inner assembling walls of the first assembling bottom plate 1, the second assembling bottom plate 12, the first support plate 2, the second support plate 23, the sound insulation plate 26 and the sound insulation cover 3 are the same in the horizontal plane, and the operating room assembly is accomplished, and as shown in fig. 7, this assembly does not need the bolt to fix, labour saving and time saving improves the speed of assembly, improves the dismouting convenient.
In this embodiment, the sliding column 11 is slidably connected with a third sliding groove 121, a lower end surface of one side of the sliding column 11 is provided with a telescopic groove 111, a top wall of the telescopic groove 111 is connected with a first spring body 112, a lower end surface of the first spring body 112 is connected with a buckle block 113, one side of the lower end surface of the buckle block 113 is pressed against a push block 114, the push block 114 is slidably matched with and provided with a buckle groove 122, one side end of the buckle groove 122 penetrates through one side wall of the second assembly bottom plate 12, the buckle groove 122 is provided with a bottom of one side of the third sliding groove 121, one side wall of the buckle groove 122 is provided with a pressing groove 123, one side surface of the first push block 114 is connected with a second spring body 115, an outer surface of the second spring body 115 is sleeved with a hole 116, the hole 116 is provided with one side wall of the buckle groove 122, one side end of the push block 114 is connected with a first pressing plate 117, the first pressing plate 117 is slidably connected with one side of the buckle groove 122, and one side end of the first pressing plate 117 extends to one side surface of the second assembly bottom plate 12 through one side of the buckle groove 122. First, the first assembly bottom plate 1 and the second assembly bottom plate 12 are matched, the sliding column 11 on the first assembly bottom plate 1 is utilized to slide on one side of the third sliding groove 121, the lower end face of the buckle block 113 is abutted against the bottom of the third sliding groove 121, the buckle block 113 is upwards pressed on the first spring body 112 and upwards slides on the telescopic groove 111, after the sliding column 11 slides for a certain distance, the lower end face of the buckle block 113 moves towards the inside of the buckle groove 122 through the first spring body 112, the lower end face of the buckle block 113 is abutted against the outer surface of the push block 114, the push block 114 is stressed to slide towards one side to the bottom of the buckle groove 122, the second spring body 115 on one side upper part of the push block 114 is extruded and extruded in the hole 116, the power of the push block 114 is transmitted to the first pressing plate 117, the first pressing plate 117 outwards slides on one side of the buckle groove 122, the buckle block 113 is just buckled on one side wall of the buckle groove 122, the installation is completed, the assembly speed is improved, and the assembly is convenient.
In this embodiment, the deployment mechanism 5 includes a case 51, one side of the case 51 is connected with a receiving cavity 52, the receiving cavity 52 is opened at the lower part of the sound insulation board 26, and the case 51 is connected at one side end of the receiving cavity 52, one side end of the case 51 is also connected at one side wall of the sound insulation board 26, one side of the bottom of the receiving cavity 52 is connected with an inclined block 521, the upper end face of the inclined block 521 is abutted against a transmission board 53, the upper end face of the transmission board 53 is abutted against a waist board 54, two sides of the waist board 54 are connected with a transmission block 55, the transmission block 55 is slidably connected with a first sliding shell 56, one side wall of the first sliding shell 56 is connected with a third spring body 561, one side of the sliding shell 56 is connected with two side walls of the receiving cavity 52, the middle of the upper end face of the transmission block 55 is connected with a transmission board 57, the upper end face of the transmission board 57 is connected with a moving board 571, two sides of the moving board 571 are slidably connected with a second sliding shell 572, the upper end wall of the second sliding shell 572 is connected with two side walls of the upper part of the receiving cavity 52, one side wall 573 is connected with a fourth spring 573, one side wall 574 is connected with a telescopic groove 574, one side wall 574 is opened at one side of the telescopic groove 573, and is matched with the inner side wall 574. When the seat plate 595 is unfolded outwards, the transmission plate 53 rotates outwards along with the seat plate 595, the upper end of the transmission plate 53 is propped against the waist propping plate 54, the waist propping plate 54 is stressed and transmitted to the transmission block 55, two sides of the transmission block 55 slide on the sliding shell 56 and stretch the third spring body 561, the waist propping plate 54 moves outwards along with the power of the transmission plate 53 horizontally of the transmission block 55, the waist propping plate 54 props up the waist of a doctor, no object propping up on the waist is avoided, discomfort of the waist of the doctor is avoided, and the functionality is improved. During the movement of the transfer block 55, the power of the waist support plate 54 is transferred to the moving plate 571 through the transfer plate 57, the moving plate 571 slides to one side on the second sliding shell 572 and stretches to the four spring bodies 573, and the moving plate 571 moves horizontally outwards, so that the telescopic plate 574 and the push back 575 are driven to pass through the engineering groove 576, and the doctor back is supported, so that the doctor has a better rest, and the comfort is improved.
In this embodiment, the lower end surface of the said shaped slot 576 is connected with the embedded slot 58, the upper wall of the embedded slot 58 is provided with a clamping slot 581, the upper wall of the clamping slot 581 is connected with a fifth spring body 582, the lower end of the fifth spring body 582 is connected with a clamping column 583, one side of the lower portion of the clamping column 583 is provided with a bayonet 584, one side of the outer surface of the clamping slot 581 is provided with a pressing slot 585, the inside of the pressing slot 585 is slidably connected with a second pressing plate 586, one side of the second pressing plate 586 is connected with a sixth spring body 587, and one end of the sixth spring body 587 is connected with one side of the lower portion of the shaped slot 576. The unfolding mechanism 5 can be separately or multiple installed on the sound insulation plate 26, the unfolding mechanism 5 is special for providing rest for doctors, after the high tension operation of the doctors, the doctors can press the second pressing plate 586, the second pressing plate 586 slides to one side to the pressing groove 585 and presses the sixth spring body 587, one side inclined surface of the second pressing plate 586 is in sliding contact with the bayonet 584, the clamping column 583 slides upwards along the inclined surface through the bayonet 584 to the clamping groove 581, the upper end of the clamping column 583 is also pressed to the fifth spring body 582, the clamping groove 597 matched with the embedding groove 58 is free of the clamping column 583, the seat plate 595 can be unfolded outwards for a certain angle, the hands of the doctors need to press downwards to the seat plate 595, the outward unfolding angle of the seat plate 595 is enlarged enough to enable the buttocks of the doctors to be seated on the upper end surface of the seat plate 595, the seat plate can be opened without needing larger force (the seat plate can be opened by other doctors to assist), and the waist plate 54 can be pushed back and the waist support 575 to the waist support back part 595 after the seat plate is started up by the seat plate.
In this embodiment, the fourth sliding grooves 59 are provided on two sides of the upper wall of the accommodating cavity 52, the fourth sliding grooves 59 are slidably connected with a rotating housing 591, the rotating housing 591 is connected with a resistance cylinder 592 through a first fixing shaft, a resistance rod 593 is slidably connected inside the resistance cylinder 592, one end of the resistance rod 593 is connected with a square groove 594 through a second fixing shaft, the square groove 594 is provided on two sides of a seat plate 595, one side of the seat plate 595 is connected on one side of the accommodating cavity 52 through a third fixing shaft, one side of the seat plate 595 is connected with a non-slip mat 596, a buckling groove 597 is connected in the middle of one side of the seat plate 595, and the buckling groove 597 is buckled on the outer surface of the clamping column 583. The pushing back 575 and the waist supporting plate 54 move along with the angle of the seat plate 595, in the outward unfolding of the seat plate 595, the square groove 594 and the second fixing shaft are utilized to pull the resistance rod 593, the resistance rod 593 is forced to slide outwards in the resistance cylinder 592, after the resistance rod 593 slides to the limit of the resistance cylinder 592, the resistance cylinder 592 slides outwards in the fourth sliding groove 59 by utilizing the rotating shell 591 and the first fixing shaft until the seat plate 595 is 90 degrees, the above work is completed, the resistance cylinder 592 and the resistance rod 593 can be effectively supported on the seat plate 595, and after a fatigued doctor sits on, the resistance cylinder 592 and the resistance rod 593 effectively avoid the buttocks to slide outwards on the upper end surface of the seat plate 595, so as to prevent the doctor from falling down to the ground due to sideslip, after the fatigued doctor sits on the seat plate 596 is arranged, the doctor lifts the doctor's back by utilizing the waist supporting plate 54, the waist supporting of the doctor, the doctor is supported by the waist supporting back of the pushing back 575, the doctor 595 is not supported, the doctor can not improve the sitting comfort, the seat plate can be more easily unfolded, the sitting comfort is avoided, and the sitting comfort is not needed, and the sitting comfort is not can be conveniently realized, the sitting comfort is avoided, and the sitting comfort is not can be conveniently unfolded, the user is 5 is required.
In this embodiment, the inclined surface of one side end of the second pressing plate 586 abuts against the inner surface of the bayonet 584, and after the inclined surface abuts against the bayonet, the lower end surface of the locking post 583 is parallel to the upper wall of the insertion groove 58. The second pressing plate 586 can be pressed, the second pressing plate 586 slides to one side in the pressing groove 585 and is pressed on the sixth spring body 587, one side end inclined surface of the second pressing plate 586 is in sliding contact with the bayonet 584, the clamping column 583 gradually slides upwards along the inclined surface in the clamping groove 581 through the bayonet 584, the upper end of the clamping column 583 is also pressed on the fifth spring body 582, the buckling groove 597 matched with the embedding groove 58 does not have the buckle of the clamping column 583, the seat plate 595 can be unfolded for a certain angle, the seat plate 595 needs to be pressed downwards on the seat plate 595 through the hands of a doctor, the outward unfolding angle of the seat plate 595 is enlarged, the seat plate 595 can be opened, no large force is needed, and after the seat plate 595 is sat on the seat plate, the seat plate is pushed back 575 and the waist support plate 54 can be started to jack up and support the back.
In this embodiment, the lower end surface of the transmission plate 53 is connected to the upper end surface of the seat plate 595, and the outer surface of the push back 575 is connected to a sponge bag. The doctor can better feel comfort by using the sponge bag on the outer surface of the push back 575.
The invention has the beneficial effects that:
first, the first assembly bottom plate 1 and the second assembly bottom plate 12 are matched, the sliding column 11 on the first assembly bottom plate 1 is utilized to slide on one side of the third sliding groove 121, the lower end face of the buckle block 113 is abutted against the bottom of the third sliding groove 121, the buckle block 113 is upwards pressed on the first spring body 112 and upwards slides on the telescopic groove 111, after the sliding column 11 slides for a certain distance, the lower end face of the buckle block 113 moves towards the inside of the buckle groove 122 through the first spring body 112, the lower end face of the buckle block 113 is abutted against the outer surface of the push block 114, the push block 114 is stressed to slide towards one side to the bottom of the buckle groove 122, the second spring body 115 on one side upper part of the push block 114 is extruded and extruded in the hole 116, the power of the push block 114 is transmitted to the first pressing plate 117, the first pressing plate 117 outwards slides on one side of the buckle groove 122, the buckle block 113 is just buckled on one side wall of the buckle groove 122, the installation is completed, the assembly speed is improved, and the assembly is convenient.
The rectangular supporting body shown in fig. 2 is formed by assembling a plurality of first assembling bottom plates 1 and second assembling bottom plates 12, an opening is reserved between one sides of the first assembling bottom plates 1 and the second assembling bottom plates 12, and a mounting groove 13 is formed on the upper end face of each first assembling bottom plate 1 and the second assembling bottom plates 12, so that a rectangular mounting groove 13 is also formed, the lower end face of a first supporting plate 2 is firstly arranged at one side end opposite to the opening of the mounting groove 13 in a sliding way, then a second supporting plate 23 is arranged, when the second supporting plate 23 is arranged, a first sliding part 22 on the second supporting plate 23 is firstly arranged at the first sliding groove 21 in a sliding way to be matched, the second supporting plate 23 is vertically downwards along with the first sliding groove 21, the lower end face of the second supporting plate 23 is arranged at the other side end opposite to the opening of the mounting groove 13 in a sliding way, and the mounting is completed, as shown in fig. 5, and simultaneously, the space and the opening left by the lower end face of the matching position of the second support plate 23 and the first support plate 2 can be installed on the medical door 4 through the connecting piece, after the second support plate 23 and the first support plate 2 are completed, the sound insulation plate 26 starts to be installed, the sound insulation plate 26 slides in the second sliding groove 24 through the second sliding part 25, the inserting plate 261 on the sound insulation plate 26 is vertically downwards inserted into the installation groove 13 along with the second sliding groove 24, the plurality of sound insulation plates 26 are sequentially inserted and assembled, the rectangular matching groove 27 formed by the matching grooves 27 (comprising the upper end faces of the second support plate 23 and the first support plate 2) is formed on the upper end faces of the plurality of sound insulation plates 26, and then the sound insulation plate is slidably clamped in the rectangular matching groove 27 through the lower end face of the sound insulation cover 3, and the assembly of the operating room is completed, the assembly is not fixed by bolts, time and labor are saved, the assembly speed is improved, the disassembly and assembly are convenient and fast.
The unfolding mechanism 5 can be separately or multiple installed on the sound insulation plate 26, the unfolding mechanism 5 is special for providing rest for doctors, after the high tension operation of the doctors, the doctors can press the second pressing plate 586, the second pressing plate 586 slides to one side to the pressing groove 585 and presses the sixth spring body 587, one side inclined surface of the second pressing plate 586 is in sliding contact with the bayonet 584, the clamping column 583 slides upwards along the inclined surface through the bayonet 584 to the clamping groove 581, the upper end of the clamping column 583 is also pressed to the fifth spring body 582, the clamping groove 597 matched with the embedding groove 58 is free of the clamping column 583, the seat plate 595 can be unfolded outwards for a certain angle, the hands of the doctors need to press downwards to the seat plate 595, the outward unfolding angle of the seat plate 595 is enlarged enough to enable the buttocks of the doctors to be seated on the upper end surface of the seat plate 595, the seat plate can be opened without needing larger force (the seat plate can be opened by other doctors to assist), and the waist plate 54 can be pushed back and the waist support 575 to the waist support back part 595 after the seat plate is started up by the seat plate.
When the seat plate 595 is unfolded outwards, the transmission plate 53 rotates outwards along with the seat plate 595, the upper end of the transmission plate 53 is propped against the waist propping plate 54, the waist propping plate 54 is stressed and transmitted to the transmission block 55, two sides of the transmission block 55 slide on the sliding shell 56 and stretch the third spring body 561, the waist propping plate 54 moves outwards along with the power of the transmission plate 53 horizontally of the transmission block 55, the waist propping plate 54 props up the waist of a doctor, no object propping up on the waist is avoided, discomfort of the waist of the doctor is avoided, and the functionality is improved.
During the movement of the transfer block 55, the power of the waist support plate 54 is transferred to the moving plate 571 through the transfer plate 57, the moving plate 571 slides to one side on the second sliding shell 572 and stretches to the four spring bodies 573, and the moving plate 571 moves horizontally outwards, so that the telescopic plate 574 and the push back 575 are driven to pass through the engineering groove 576, and the doctor back is supported, so that the doctor has a better rest, and the comfort is improved.
The pushing back 575 and the waist supporting plate 54 move along with the angle of the seat plate 595, in the outward unfolding of the seat plate 595, the square groove 594 and the second fixing shaft are utilized to pull the resistance rod 593, the resistance rod 593 is forced to slide outwards in the resistance cylinder 592, after the resistance rod 593 slides to the limit of the resistance cylinder 592, the resistance cylinder 592 slides outwards in the fourth sliding groove 59 by utilizing the rotating shell 591 and the first fixing shaft until the seat plate 595 is 90 degrees, the above work is completed, the resistance cylinder 592 and the resistance rod 593 can be effectively supported on the seat plate 595, and after a fatigued doctor sits on, the resistance cylinder 592 and the resistance rod 593 effectively avoid the buttocks to slide outwards on the upper end surface of the seat plate 595, so as to prevent the doctor from falling down to the ground due to sideslip, after the fatigued doctor sits on the seat plate 596 is arranged, the doctor lifts the doctor's back by utilizing the waist supporting plate 54, the waist supporting of the doctor, the doctor is supported by the waist supporting back of the pushing back 575, the doctor 595 is not supported, the doctor can not improve the sitting comfort, the seat plate can be more easily unfolded, the sitting comfort is avoided, and the sitting comfort is not needed, and the sitting comfort is not can be conveniently realized, the sitting comfort is avoided, and the sitting comfort is not can be conveniently unfolded, the user is 5 is required.
Working principle:
first, the first assembly bottom plate 1 and the second assembly bottom plate 12 are matched, the sliding column 11 on the first assembly bottom plate 1 is utilized to slide on one side of the third sliding groove 121, the lower end face of the buckle block 113 is abutted against the bottom of the third sliding groove 121, the buckle block 113 is upwards pressed on the first spring body 112 and upwards slides on the telescopic groove 111, after the sliding column 11 slides for a certain distance, the lower end face of the buckle block 113 moves towards the inside of the buckle groove 122 through the first spring body 112, the lower end face of the buckle block 113 is abutted against the outer surface of the push block 114, the push block 114 is stressed to slide towards one side to the bottom of the buckle groove 122, the second spring body 115 on one side upper part of the push block 114 is extruded and extruded in the hole 116, the power of the push block 114 is transmitted to the first pressing plate 117, the first pressing plate 117 outwards slides on one side of the buckle groove 122, the buckle block 113 is just buckled on one side wall of the buckle groove 122, the installation is completed, the assembly speed is improved, and the assembly is convenient.
The rectangular supporting body shown in fig. 2 is formed by assembling a plurality of first assembling bottom plates 1 and second assembling bottom plates 12, an opening is reserved between one sides of the first assembling bottom plates 1 and the second assembling bottom plates 12, and a mounting groove 13 is formed on the upper end face of each first assembling bottom plate 1 and the second assembling bottom plates 12, so that a rectangular mounting groove 13 is also formed, the lower end face of a first supporting plate 2 is firstly arranged at one side end opposite to the opening of the mounting groove 13 in a sliding way, then a second supporting plate 23 is arranged, when the second supporting plate 23 is arranged, a first sliding part 22 on the second supporting plate 23 is firstly arranged at the first sliding groove 21 in a sliding way to be matched, the second supporting plate 23 is vertically downwards along with the first sliding groove 21, the lower end face of the second supporting plate 23 is arranged at the other side end opposite to the opening of the mounting groove 13 in a sliding way, and the mounting is completed, as shown in fig. 5, and simultaneously, the space and opening left by the lower end face of the mating part of the second support plate 23 and the first support plate 2 can be installed on the medical door 4 through the connecting piece, after the second support plate 23 and the first support plate 2 are completed, the sound insulation plate 26 starts to be installed, the sound insulation plate 26 slides in the second sliding groove 24 through the second sliding part 25, the inserting plate 261 on the sound insulation plate 26 is vertically downwards inserted into the installation groove 13 along with the second sliding groove 24, the plurality of sound insulation plates 26 are sequentially inserted and assembled, the rectangular mating groove 27 formed by the mating grooves 27 (also comprising the upper end faces of the second support plate 23 and the first support plate 2) is formed on the upper end faces of the plurality of sound insulation plates 26, and then the sound insulation plate 26 is slidably clamped in the rectangular mating groove 27 through the lower end face of the sound insulation cover 3, and the operating room is assembled, and the first assembly bottom plate 1, the second assembly bottom plate 12, the first support plate 2, the second support plate 23 are assembled, the baffle 26, the baffle cover 3 assembly inner wall are same with the horizontal plane, and as shown in fig. 7, this assembly does not need the bolt to fix, labour saving and time saving improves the speed of assembly, improves the dismouting convenient.
The unfolding mechanism 5 can be separately or multiple installed on the sound insulation plate 26, the unfolding mechanism 5 is special for providing rest for doctors, after the high tension operation of the doctors, the doctors can press the second pressing plate 586, the second pressing plate 586 slides to one side to the pressing groove 585 and presses the sixth spring body 587, one side inclined surface of the second pressing plate 586 is in sliding contact with the bayonet 584, the clamping column 583 slides upwards along the inclined surface through the bayonet 584 to the clamping groove 581, the upper end of the clamping column 583 is also pressed to the fifth spring body 582, the clamping groove 597 matched with the embedding groove 58 is free of the clamping column 583, the seat plate 595 can be unfolded outwards for a certain angle, the hands of the doctors need to press downwards to the seat plate 595, the outward unfolding angle of the seat plate 595 is enlarged enough to enable the buttocks of the doctors to be seated on the upper end surface of the seat plate 595, the seat plate can be opened without needing larger force (the seat plate can be opened by other doctors to assist), and the waist plate 54 can be pushed back and the waist support 575 to the waist support back part 595 after the seat plate is started up by the seat plate.
When the seat plate 595 is unfolded outwards, the transmission plate 53 rotates outwards along with the seat plate 595, the upper end of the transmission plate 53 is propped against the waist propping plate 54, the waist propping plate 54 is stressed and transmitted to the transmission block 55, two sides of the transmission block 55 slide on the sliding shell 56 and stretch the third spring body 561, the waist propping plate 54 moves outwards along with the power of the transmission plate 53 horizontally of the transmission block 55, the waist propping plate 54 props up the waist of a doctor, no object propping up on the waist is avoided, discomfort of the waist of the doctor is avoided, and the functionality is improved.
During the movement of the transfer block 55, the power of the waist support plate 54 is transferred to the moving plate 571 through the transfer plate 57, the moving plate 571 slides to one side on the second sliding shell 572 and stretches to the four spring bodies 573, and the moving plate 571 moves horizontally outwards, so that the telescopic plate 574 and the push back 575 are driven to pass through the engineering groove 576, and the doctor back is supported, so that the doctor has a better rest, and the comfort is improved.
The pushing back 575 and the waist supporting plate 54 move along with the angle of the seat plate 595, in the outward unfolding of the seat plate 595, the square groove 594 and the second fixing shaft are utilized to pull the resistance rod 593, the resistance rod 593 is forced to slide outwards in the resistance cylinder 592, after the resistance rod 593 slides to the limit of the resistance cylinder 592, the resistance cylinder 592 slides outwards in the fourth sliding groove 59 by utilizing the rotating shell 591 and the first fixing shaft until the seat plate 595 is 90 degrees, the above work is completed, the resistance cylinder 592 and the resistance rod 593 can be effectively supported on the seat plate 595, and after a fatigued doctor sits on, the resistance cylinder 592 and the resistance rod 593 effectively avoid the buttocks to slide outwards on the upper end surface of the seat plate 595, so as to prevent the doctor from falling down to the ground due to sideslip, after the fatigued doctor sits on the seat plate 596 is arranged, the doctor lifts the doctor's back by utilizing the waist supporting plate 54, the waist supporting of the doctor, the doctor is supported by the waist supporting back of the pushing back 575, the doctor 595 is not supported, the doctor can not improve the sitting comfort, the seat plate can be more easily unfolded, the sitting comfort is avoided, and the sitting comfort is not needed, and the sitting comfort is not can be conveniently realized, the sitting comfort is avoided, and the sitting comfort is not can be conveniently unfolded, the user is 5 is required.
The embodiments of the present invention are disclosed as preferred embodiments, but not limited thereto, and those skilled in the art will readily appreciate from the foregoing description that various extensions and modifications can be made without departing from the spirit of the present invention.

Claims (7)

1. The utility model provides a clean operating room of rapid Assembly, including first assembly bottom plate (1), a serial communication port, first assembly bottom plate (1) one side terminal surface is connected with slide column (11), this slide column (11) sliding fit has second assembly bottom plate (12), form mounting groove (13) of rectangle shape after a plurality of first assembly bottom plates (1) and second assembly bottom plate (12) cooperate, this mounting groove (13) cooperation slides has first backup pad (2), this first backup pad (2) are connected with first sliding part (22) through first sliding groove (21) sliding connection, this first sliding part (22) one side is connected with second backup pad (23), terminal surface inserts the inside of mounting groove (13) under this second backup pad (23), and this first backup pad (2) and second backup pad (23) appearance are the L type, and second backup pad (23) one side terminal surface is connected with second sliding part (25) through second sliding groove (24), this second sliding part (25) one side is connected with board (26), terminal surface connection has insert plate (261) under this acoustic celotex board (26), install in the interior side of the interior of three-dimensional cooperation groove (13) along the interior of inserting plate (261), form under the acoustic celotex board (261), the sound insulation plate (26) is fixed through the mounting groove (13) and forms a rectangular matching groove (27), and the upper end surface of the matching groove (27) is in sliding fit with the sound insulation cover (3); after the first support plate (2) and the second support plate (23) are in sliding fit, an opening is formed at the lower part due to assembly, and a medical door (4) is connected inside the opening; the sound insulation plate (26) is internally provided with a unfolding mechanism (5).
2. A rapid-assembly clean operating room as claimed in claim 1, wherein: the utility model provides a sliding column (11) sliding connection has third sliding tray (121), and telescopic slot (111) have been seted up to sliding column (11) one side lower terminal surface, this telescopic slot (111) roof is connected with first spring body (112), terminal surface is connected with button block (113) under this first spring body (112), terminal surface one side is supported down to this button block (113) has push block (114), button slot (122) have been seted up to this push block (114) sliding fit, this button slot (122) one side end runs through in one side wall of second assembly bottom plate (12), one side bottom at third sliding tray (121) is seted up in this button slot (122), and button slot (122) one side wall has seted up indent (123), first push block (114) one side is connected with second spring body (115), this second spring body (115) surface cover is equipped with hole (116), one side wall at button slot (122) is seted up in this hole (116), and push block (114) one side end is connected with first press clamp plate (117), this first press clamp plate (117) sliding connection is in one side wall of second assembly bottom plate (122) one side of first side (122) through the first side of button slot (122).
3. A rapid-assembly clean operating room as claimed in claim 2, characterized in that: the unfolding mechanism (5) comprises a box body (51), one side of the box body (51) is communicated with and connected with a containing cavity (52), the containing cavity (52) is arranged at the lower part of the sound insulation plate (26), the box body (51) is connected with one side end of the containing cavity (52), one side end of the box body (51) is also connected with one side wall of the sound insulation plate (26), one side of the bottom of the containing cavity (52) is connected with an inclined block (521), the upper end face of the inclined block (521) is abutted against a transmission plate (53), the upper end face of the transmission plate (53) is abutted against a waist support plate (54), two sides of the waist support plate (54) are connected with a transmission block (55), the transmission block (55) is connected with a first sliding shell (56) in a sliding mode, one side wall of the first sliding shell (56) is connected with a third spring body (561), one side of the sliding shell (56) is connected with two side walls of the containing cavity (52), the middle of the upper end face of the transmission block (55) is connected with a transmission plate (57), the upper end face of the transmission plate (57) is connected with a moving plate (521), two sides of the sliding shell (571) are connected with a second side wall (571) of the first sliding shell (571) and connected with the second side wall (572) of the second sliding shell (572), one end of the fourth spring body (573) is connected to one side wall inside the second sliding shell (572), one side of the moving plate (571) is connected with a telescopic plate (574), one side surface of the telescopic plate (574) is connected with a push back (575), the push back (575) is in sliding fit with an industrial groove (576), and the industrial groove (576) is arranged on one side wall on the upper portion of the accommodating cavity (52) and is communicated with the upper portion of the accommodating cavity.
4. A rapid-assembly clean operating room as claimed in claim 3, characterized in that: the utility model discloses a clamp is characterized by including two clamping grooves (586), clamping groove (581) are offered in the middle of the terminal surface was connected with embedded groove (58) under type groove (576), clamping groove (581) are offered in the middle of the upper wall of this embedded groove (58), and this clamping groove (581) upper wall is connected with fifth spring body (582), and this fifth spring body (582) lower extreme is connected with card post (583), and bayonet socket (584) have been offered on one side of this card post (583) lower part, indent (585) have been offered on one side of clamping groove (581) surface, and this indent (585) inside sliding connection has second to press board (586), and one side of this second press board (586) is connected with sixth spring body (587), and one end of this sixth spring body (587) is connected in one side of type groove (576) lower part.
5. A rapid tooling clean operating room as set forth in claim 4 wherein: the utility model discloses a novel anti-slip device for the automobile, including holding chamber (52), holding chamber (52) upper wall both sides have been seted up fourth sliding tray (59), this fourth sliding tray (59) sliding connection has rotation shell (591), this rotation shell (591) is connected with resistance section of thick bamboo (592) through first fixed axle, this inside sliding connection of resistance section of thick bamboo (592) has resistance pole (593), this resistance pole (593) one end is connected with square groove (594) through the second fixed axle, the both sides at bedplate (595) are seted up to this square groove (594), this bedplate (595) one side is connected in one side that holds chamber (52) through the third fixed axle, and bedplate (595) one side is connected with slipmat (596), and bedplate (597) one side intermediate connection has catching groove (597), the surface of card post (583) is located to inside knot of this catching groove (597).
6. A rapid tooling clean operating room as set forth in claim 4 wherein: the inclined surface of one side end of the second pressing plate (586) is abutted against the inner surface of the bayonet (584), and after the inclined surface is abutted against the bayonet, the lower end surface of the clamping column (583) is parallel to the upper wall of the embedded groove (58).
7. A rapid-assembly clean operating room as claimed in claim 3, characterized in that: the lower end face of the transmission plate (53) is connected to the upper end face of the seat plate (595), and a sponge bag is connected to the outer surface of the push back (575).
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