Assembly type diagnosis and treatment room structure
By combining the main unit, adjustment unit, partition unit, door panel unit and limiting unit, the problem of insufficient space utilization in prefabricated treatment rooms is solved, and the flexible adjustment and functional adaptability of the treatment room space are realized, thereby improving the efficiency of diagnosis and treatment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-25
- Publication Date
- 2026-03-27
AI Technical Summary
The existing prefabricated treatment rooms have relatively fixed functional layouts, resulting in insufficient space utilization, inability to meet the needs of different medical scenarios, increased construction costs, and are not conducive to the rational planning of medical facilities.
The design employs a combination of main body units, adjustment units, partition units, door panel units, and limiting units. By moving and connecting these units, different functional treatment areas can be constructed to meet the needs of various treatment processes. The closure of the door panel units and the stabilization of the limiting units ensure the independence and separation effect of the treatment room.
It enables flexible adjustment of the treatment room space to meet the needs of various treatment processes, enhances functional adaptability, provides an independent medical environment, and improves treatment efficiency.
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Figure CN224048786U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of diagnosis and treatment room assembly, especially to a kind of assembly type diagnosis and treatment room structure. BACKGROUND
[0002] At present, assembly type hospital building becomes the topic of industry, and assembly mode can meet the demand of rapid construction of temporary emergency infectious hospital in response to major infectious disease outbreaks, and assembly type building technology is used in emergency hospital in many places.Compared with traditional diagnosis and treatment room, assembly type diagnosis and treatment room greatly reduces decoration period and is convenient to install and transport.
[0003] The functional layout of the existing assembly type diagnosis and treatment room is relatively fixed, and the assembly space is not fully utilized, which leads to the fact that the space resources cannot be fully utilized.On the one hand, some special departments may need specific equipment placement space or special workflow layout, but the existing assembly type diagnosis and treatment room cannot meet the requirements, thereby limiting its application in different medical scenarios.On the other hand, the wasted space increases the construction cost, and in the case of limited land resources, it is also not conducive to the rational planning and layout of medical facilities.
[0004] At present, there is no effective solution to the problem of small assembly space utilization in the related technology. UTILITY MODEL CONTENT
[0005] The utility model aims at the deficiencies in the prior art, and provides an assembly type diagnosis and treatment room structure to solve the problem of small assembly space utilization in the related technology.
[0006] To achieve the above-mentioned purpose, the technical scheme adopted by the utility model is:
[0007] An assembly type diagnosis and treatment room structure comprises:
[0008] A main unit is arranged on a horizontal plane.
[0009] A plurality of adjusting units are arranged inside the main unit and are used to move along the length direction of the main unit.
[0010] A plurality of partition plate units are arranged inside the corresponding adjusting units and are connected with the corresponding adjusting units, and are used to move along the length direction of the main unit under the action of the adjusting units.
[0011] A plurality of door plate units are arranged inside the corresponding adjusting units and are located on the side of the corresponding partition plate units, and are connected with the corresponding adjusting units and the corresponding partition plate units, and are used to move along the length direction of the main unit under the action of the adjusting units.
[0012] A plurality of limiting units are arranged at the bottom end of the interior of the main unit and respectively abut against the main unit and the corresponding adjusting unit, for limiting the position of the adjusting unit.
[0013] In some embodiments, the main unit comprises:
[0014] A main element, the interior of the main element is provided with a plurality of adjusting units;
[0015] Two first sliding elements are symmetrically arranged in the interior of the main element, and the interior of one of the first sliding elements is provided with a plurality of limiting units and is respectively connected with a plurality of adjusting units in sliding mode.
[0016] In some embodiments, the main unit further comprises:
[0017] A first cavity element is arranged on the inner side of the main element;
[0018] A first magnetic attraction element is arranged on the inner side of the first cavity element and is magnetically connected with the corresponding door plate unit.
[0019] In some embodiments, the adjusting unit comprises:
[0020] Two lateral support elements are symmetrically arranged in the interior of the main unit, and the corresponding partition plate unit and the corresponding door plate unit are arranged between the two lateral support elements, for driving the partition plate unit and the door plate unit to move along the length direction of the main unit;
[0021] Two second sliding elements are respectively arranged on the corresponding lateral support element, and one of the second sliding elements abuts against the corresponding limiting unit and is respectively connected with the main unit in sliding mode;
[0022] A longitudinal support element is arranged between the two lateral support elements and is respectively connected with the two lateral support elements and the corresponding partition plate unit.
[0023] In some embodiments, the partition plate unit comprises:
[0024] A partition plate element is arranged on the inner side of the corresponding adjusting unit, and one side of the partition plate element is provided with the corresponding door plate unit and is respectively connected with the corresponding adjusting unit and the corresponding door plate unit, for moving along the length direction of the main unit under the action of the adjusting unit.
[0025] In some embodiments, the partition unit further comprises:
[0026] a second cavity element disposed on the other side of the partition element;
[0027] a second magnetic element disposed on the inner side of the second cavity element and magnetically connected with the corresponding door unit.
[0028] In some embodiments, the door unit further comprises:
[0029] a first door element disposed on the inner side of the corresponding adjustment unit and on the side of the corresponding partition unit, and connected with the corresponding adjustment unit and the corresponding partition unit, for moving along the length direction of the main unit under the action of the adjustment unit;
[0030] a third sliding element disposed on the side of the first door element;
[0031] a second door element slidingly disposed in the inner part of the third sliding element, for reciprocating along the length direction of the third sliding element and moving along the length direction of the main unit under the action of the first door element.
[0032] In some embodiments, the door unit further comprises:
[0033] a third cavity element disposed on the side of the second door element;
[0034] a third magnetic element disposed on the inner side of the third cavity element and magnetically connected with the main unit or the corresponding partition unit.
[0035] In some embodiments, the door unit further comprises:
[0036] two handle elements symmetrically disposed on the second door element and connected with the second door element, for driving the second door element to reciprocate along the length direction of the third sliding element.
[0037] In some embodiments, the limiting unit comprises:
[0038] a first limiting element disposed on the bottom end of the inner part of the main unit and abutting against the main unit or the corresponding adjustment unit;
[0039] A rotating element is arranged at the side of the first limiting element;
[0040] An adjusting element is rotatably arranged inside the rotating element;
[0041] A second limiting element is rotatably arranged at the end of the adjusting element and abuts against the corresponding adjusting unit, and is used to reciprocate along the axial direction of the adjusting element under the action of the adjusting element to cooperate with the first limiting element to limit the position of the adjusting unit.
[0042] The above technical scheme has the following technical effects compared with the prior art:
[0043] The assembled clinic room structure of the utility model utilizes the cooperation between the main unit, the adjusting unit and the partition plate unit to construct different function clinic areas. BRIEF DESCRIPTION OF DRAWINGS
[0044] Figure 1 It is a three-dimensional structure schematic diagram of the assembled clinic room structure according to the embodiment of the utility model;
[0045] Figure 2 It is an exploded view of the assembled clinic room structure according to the embodiment of the utility model;
[0046] Figure 3 It is a structure schematic diagram of another state of the assembled clinic room structure according to the embodiment of the utility model;
[0047] Figure 4a It is a three-dimensional structure schematic diagram of the main unit according to the embodiment of the utility model;
[0048] Figure 4b It is a wire frame diagram of the main unit according to the embodiment of the utility model;
[0049] Figure 5 It is a three-dimensional structure schematic diagram of the adjusting unit according to the embodiment of the utility model;
[0050] Figure 6is an exploded view of the partition unit according to the embodiment of the utility model;
[0051] Figure 7 is an exploded view of the door plate unit according to the embodiment of the utility model;
[0052] Figure 8 is an exploded view of the limiting unit according to the embodiment of the utility model.
[0053] The reference signs in it are: 10, main unit; 11, main element; 12, first sliding element; 13, first cavity element; 14, first magnetic attraction element;
[0054] 20, adjusting unit; 21, transverse support element; 22, second sliding element; 23, longitudinal support element;
[0055] 30, partition unit; 31, partition element; 32, second cavity element; 33, second magnetic attraction element;
[0056] 40, door plate unit; 41, first door plate element; 42, third sliding element; 43, second door plate element; 44, third cavity element; 45, third magnetic attraction element; 46, handle element;
[0057] 50, limiting unit; 51, first limiting element; 52, rotating element; 53, adjusting element; 54, second limiting element. DETAILED DESCRIPTION
[0058] The technical scheme in the embodiments of the utility model will be described clearly and completely in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model.
[0059] It should be noted that the embodiments in the utility model and the features in the embodiments can be combined with each other without conflict.
[0060] The utility model will be further described in combination with the drawings and specific embodiments, but not as the limitation of the utility model.
[0061] One illustrative embodiment of the utility model, such as Figure 1 、 Figure 2 、 Figure 3As shown in the figure, an assembled clinic structure includes a main unit 10, a plurality of adjusting units 20, a plurality of partition units 30, a plurality of door plate units 40 and a plurality of limiting units 50. Among them, the main unit 10 is arranged on the horizontal plane; a plurality of adjusting units 20 are arranged in the interior of the main unit 10 and are used to move along the length direction of the main unit 10; a plurality of partition units 30 are respectively arranged on the inner side of the corresponding adjusting unit 20 and are respectively connected with the corresponding adjusting unit 20, and are used to move along the length direction of the main unit 10 under the action of the adjusting unit 20; a plurality of door plate units 40 are respectively arranged on the inner side of the corresponding adjusting unit 20 and are respectively located on the side of the corresponding partition unit 30, and are respectively connected with the corresponding adjusting unit 20 and the corresponding partition unit 30, and are used to move along the length direction of the main unit 10 under the action of the adjusting unit 20; a plurality of limiting units 50 are arranged at the bottom end of the interior of the main unit 10 and are respectively in contact with the main unit 10 and the corresponding adjusting unit 20, and are used to limit the position of the adjusting unit 20.
[0062] In some embodiments, a plurality of adjusting units 20 are arranged at intervals along the length direction of the main unit 10.
[0063] The number of partition units 30 matches the number of adjusting units 20. Generally, the number of partition units 30 is equal to the number of adjusting units 20. That is, each adjusting unit 20 is correspondingly provided with a partition unit 30.
[0064] The number of door plate units 40 matches the number of adjusting units 20. Generally, the number of door plate units 40 is equal to the number of adjusting units 20. That is, each adjusting unit 20 is correspondingly provided with a door plate unit 40.
[0065] The number of limiting units 50 matches the number of adjusting units 20. Generally, the number of limiting units 50 is equal to the number of adjusting units 20. That is, each adjusting unit 20 is correspondingly provided with a limiting unit 50.
[0066] As shown in the figure, Figure 4a , Figure 4b The main unit 10 includes a main element 11 and two first sliding elements 12. Among them, the interior of the main element 11 is provided with a plurality of adjusting units 20; the two first sliding elements 12 are symmetrically arranged in the interior of the main element 11, and the interior of a first sliding element 12 is provided with a plurality of limiting units 50 and is respectively connected with a plurality of adjusting units 20.
[0067] The main element 11 is a structure with an open front end and a closed rear end.
[0068] In some embodiments, the main element 11 is made of steel structure.
[0069] In some embodiments, the main body element 11 is a main body frame.
[0070] The cross section of the first sliding element 12 is rectangular.
[0071] The size of the first sliding element 12 matches the size of the main body element 11. Generally, the length of the first sliding element 12 is equal to the inner length of the main body element 11, the width of the first sliding element 12 is less than the inner width of the main body element 11, and the height of the first sliding element 12 is less than the bottom wall thickness and the top wall thickness of the main body element 11.
[0072] In some embodiments, the first sliding element 12 is a first sliding groove.
[0073] Further, the main body unit 10 further comprises a first cavity element 13 and a first magnetic attraction element 14. The first cavity element 13 is arranged on the inner side of the main body element 11, and the first magnetic attraction element 14 is arranged on the inner side of the first cavity element 13 and is magnetically attracted to the corresponding door panel unit 40.
[0074] The cross section of the first cavity element 13 is rectangular.
[0075] The size of the first cavity element 13 matches the size of the main body element 11. Generally, the length of the first cavity element 13 is less than the inner width of the main body element 11, the width of the first cavity element 13 is less than the side wall thickness of the main body element 11, and the height of the first cavity element 13 is less than the inner height of the main body element 11.
[0076] In some embodiments, the first cavity element 13 is a first cavity.
[0077] The cross section of the first magnetic attraction element 14 is rectangular.
[0078] The size of the first magnetic attraction element 14 matches the size of the first cavity element 13. Generally, the length of the first magnetic attraction element 14 is equal to the length of the first cavity element 13, the width of the first magnetic attraction element 14 is equal to the width of the first cavity element 13, and the height of the first magnetic attraction element 14 is equal to the height of the first cavity element 13.
[0079] In some embodiments, the first magnetic attraction element 14 is fixedly connected to the main body element 11, including but not limited to bolt connection.
[0080] In some embodiments, the first magnetic attraction element 14 is made of neodymium iron boron magnet material.
[0081] In some embodiments, the first magnetic attraction element 14 is a first magnetic attraction block.
[0082] As Figure 5As shown, the adjusting unit 20 comprises two lateral support elements 21, two second sliding elements 22 and a longitudinal support element 23. Among them, the two lateral support elements 21 are symmetrically arranged in the interior of the main body unit 10, and the corresponding partition plate unit 30 and the corresponding door plate unit 40 are arranged between the two lateral support elements 21, which are used to drive the partition plate unit 30 and the door plate unit 40 to move along the length direction of the main body unit 10; the two second sliding elements 22 are respectively arranged in the corresponding lateral support element 21, and a second sliding element 22 is in abutment with the corresponding limiting unit 50 and is respectively connected with the main body unit 10 in sliding mode; the longitudinal support element 23 is arranged between the two lateral support elements 21 and is respectively connected with the two lateral support elements 21 and the corresponding partition plate unit 30.
[0083] Specifically, the two lateral support elements 21 are symmetrically arranged in the interior of the main body element 11; the two second sliding elements 22 are respectively connected with the corresponding first sliding element 12 in sliding mode.
[0084] The cross section of the lateral support element 21 is rectangular.
[0085] The size of the lateral support element 21 matches the size of the main body element 11. Generally, the length of the lateral support element 21 is equal to the inner width of the main body element 11, the width of the lateral support element 21 is less than the inner length of the main body element 11, and the height of the lateral support element 21 is less than the inner height of the main body element 11.
[0086] In some embodiments, the lateral support element 21 is made of steel structure.
[0087] In some embodiments, the lateral support element 21 is a lateral support plate.
[0088] The cross section of the second sliding element 22 is rectangular.
[0089] The size of the second sliding element 22 matches the size of the lateral support element 21. Generally, the length of the second sliding element 22 is equal to the width of the lateral support element 21, the width of the second sliding element 22 is less than the length of the lateral support element 21, and the height of the second sliding element 22 is greater than the height of the lateral support element 21.
[0090] The size of the second sliding element 22 matches the size of the first sliding element 12. Generally, the length of the second sliding element 22 is less than the length of the first sliding element 12, the width of the second sliding element 22 is equal to the width of the first sliding element 12, and the height of the second sliding element 22 is equal to the height of the first sliding element 12.
[0091] In some embodiments, the second sliding element 22 is fixedly connected with the lateral support element 21, including but not limited to bolt connection.
[0092] In some embodiments, the second sliding element 22 is made of steel structure.
[0093] In some embodiments, the second sliding element 22 is a sliding plate.
[0094] The cross section of the longitudinal support element 23 is rectangular.
[0095] The size of the longitudinal support element 23 matches the size of the transverse support element 21. Generally, the length of the longitudinal support element 23 is equal to the width of the transverse support element 21, the width of the longitudinal support element 23 is less than the length of the transverse support element 21, and the height of the longitudinal support element 23 is greater than the height of the transverse support element 21.
[0096] In some embodiments, the height of the longitudinal support element 23 is equal to the sum of the heights of the two second sliding elements 22.
[0097] In some embodiments, the longitudinal support element 23 is fixedly connected to the transverse support element 21, including but not limited to bolt connection.
[0098] In some embodiments, the longitudinal support element 23 is made of steel structure.
[0099] In some embodiments, the longitudinal support element 23 is a longitudinal support plate.
[0100] As shown in Figure 6 The partition plate unit 30 includes a partition plate element 31. The partition plate element 31 is arranged on the inner side of the corresponding adjustment unit 20, one side of the partition plate element 31 is provided with a corresponding door plate unit 40, and the partition plate element 31 is connected with the corresponding adjustment unit 20 and the corresponding door plate unit 40 respectively, and is used to move along the length direction of the main body unit 10 under the action of the adjustment unit 20.
[0101] Specifically, the partition plate element 31 is arranged between the corresponding two transverse support elements 21 and is connected with the corresponding two transverse support elements 21 and the corresponding longitudinal support element 23.
[0102] The cross section of the partition plate element 31 is rectangular.
[0103] The size of the partition plate element 31 matches the size of the transverse support element 21. Generally, the length of the partition plate element 31 is less than the length of the transverse support element 21, the width of the partition plate element 31 is less than the width of the transverse support element 21, and the height of the partition plate element 31 is greater than the height of the transverse support element 21.
[0104] The size of the partition element 31 matches the size of the longitudinal support element 23. Generally, the width of the partition element 31 is less than the length of the longitudinal support element 23, and the height of the partition element 31 is equal to the height of the longitudinal support element 23.
[0105] The length of the partition element 31 plus the width of the longitudinal support element 23 is equal to the length of the transverse support element 21.
[0106] In some embodiments, the partition element 31 is fixedly connected to the transverse support element 21 and the longitudinal support element 23, including but not limited to bolt connection.
[0107] In some embodiments, the partition element 31 is made of steel structure.
[0108] In some embodiments, the partition element 31 is a partition.
[0109] Further, the partition unit 30 further comprises a second cavity element 32 and a second magnetic attraction element 33. The second cavity element 32 is arranged on the other side of the partition element 31, and the second magnetic attraction element 33 is arranged on the inner side of the second cavity element 32 and is magnetically attracted to the corresponding door panel unit 40.
[0110] The cross section of the second cavity element 32 is rectangular.
[0111] The size of the second cavity element 32 matches the size of the partition element 31. Generally, the length of the second cavity element 32 is less than the length of the partition element 31, the width of the second cavity element 32 is less than the width of the partition element 31, and the height of the second cavity element 32 is less than the height of the partition element 31.
[0112] In some embodiments, the second cavity element 32 is a second cavity.
[0113] The cross section of the second magnetic attraction element 33 is rectangular.
[0114] The size of the second magnetic attraction element 33 matches the size of the second cavity element 32. Generally, the length of the second magnetic attraction element 33 is equal to the length of the second cavity element 32, the width of the second magnetic attraction element 33 is equal to the width of the second cavity element 32, and the height of the second magnetic attraction element 33 is equal to the height of the second cavity element 32.
[0115] In some embodiments, the second magnetic attraction element 33 is fixedly connected to the partition element 31, including but not limited to bolt connection.
[0116] In some embodiments, the second magnetic attraction element 33 is made of neodymium iron boron magnet material.
[0117] In some of these embodiments, the second magnetic element 33 is a second magnetic block.
[0118] like Figure 7 As shown, the door panel unit 40 includes a first door panel element 41, a third sliding element 42, and a second door panel element 43. The first door panel element 41 is disposed inside the corresponding adjustment unit 20 and on the side of the corresponding partition unit 30, and is connected to both the corresponding adjustment unit 20 and the corresponding partition unit 30, for moving along the length direction of the main body unit 10 under the action of the adjustment unit 20. The third sliding element 42 is disposed on the side of the first door panel element 41. The second door panel element 43 is slidably disposed inside the third sliding element 42, for reciprocating along the length direction of the third sliding element 42 and moving along the length direction of the main body unit 10 under the action of the first door panel element 41.
[0119] Specifically, the first door panel element 41 is disposed between the two corresponding horizontal support elements 21 and is located on the side of the corresponding partition element 31, and is connected to the two corresponding horizontal support elements 21 and the corresponding partition element 31 respectively.
[0120] The cross-section of the first door panel element 41 is rectangular.
[0121] The dimensions of the first door panel element 41 are matched with the dimensions of the horizontal support element 21. Generally, the length of the first door panel element 41 is greater than the width of the horizontal support element 21, the width of the first door panel element 41 is less than the length of the horizontal support element 21, and the height of the first door panel element 41 is greater than the height of the horizontal support element 21.
[0122] The dimensions of the first door panel element 41 are matched with the dimensions of the partition element 31. Generally, the height of the first door panel element 41 is equal to the height of the partition element 31.
[0123] In some embodiments, the first door panel element 41 is fixedly connected to the partition element 31 and the transverse support element 21, including but not limited to bolt connections.
[0124] In some of these embodiments, the first door panel element 41 is made of steel.
[0125] In some of these embodiments, the first door panel element 41 is a first door panel.
[0126] The cross-section of the third sliding element 42 is convex. Specifically, the third sliding element 42 includes a second sliding groove and a third sliding groove. The second sliding groove is disposed on the side of the first door panel element 41 and is slidably connected to the second door panel element 43; the third sliding groove is disposed inside the second sliding groove and is slidably connected to the second door panel element 43.
[0127] The size of the second sliding groove matches the size of the first door plate element 41. Generally, the length of the second sliding groove is less than the length of the first door plate element 41, the width of the second sliding groove is less than the width of the first door plate element 41, and the height of the second sliding groove is less than the height of the first door plate element 41.
[0128] The size of the third sliding groove matches the size of the first door plate element 41. Generally, the length of the third sliding groove is less than the length of the first door plate element 41, the width of the third sliding groove is less than the width of the first door plate element 41, and the height of the third sliding groove is less than the height of the first door plate element 41.
[0129] The size of the third sliding groove matches the size of the second sliding groove. Generally, the length of the third sliding groove is greater than the length of the second sliding groove, the width of the third sliding groove is greater than the width of the second sliding groove, and the height of the third sliding groove is equal to the height of the second sliding groove.
[0130] The cross section of the second door plate element 43 is convex. Specifically, the second door plate element 43 includes a second door plate and a limiting block. The second door plate is slidingly arranged inside the second sliding groove, and the limiting block is arranged at the first side of the second door plate and slidingly connected with the third sliding groove.
[0131] The size of the second door plate matches the size of the third sliding element 42. Generally, the length of the second door plate is greater than the length of the second sliding groove, the width of the second door plate is equal to the width of the second sliding groove, and the height of the second door plate is equal to the height of the second sliding groove.
[0132] The size of the limiting block matches the size of the third sliding element 42. Generally, the length of the limiting block is less than the length of the third sliding groove, the width of the limiting block is equal to the width of the third sliding groove, and the height of the limiting block is equal to the height of the third sliding groove.
[0133] The size of the limiting block matches the size of the second door plate. Generally, the length of the limiting block is less than the length of the second door plate, the width of the limiting block is greater than the width of the second door plate, and the height of the limiting block is equal to the height of the second door plate.
[0134] In some embodiments, the second door plate element 43 is made of a steel structure.
[0135] Further, the door plate unit 40 further includes a third cavity element 44 and a third magnetic attraction element 45. The third cavity element 44 is arranged at the side of the second door plate element 43, and the third magnetic attraction element 45 is arranged at the inner side of the third cavity element 44 and magnetically attracted to the main body unit 10 or the corresponding partition plate unit 30.
[0136] Specifically, the third cavity element 44 is arranged on the second side of the second door plate; the third magnetic attraction element 45 is magnetically attracted to the first magnetic attraction element 14 or the corresponding second magnetic attraction element 33.
[0137] The third cavity element 44 has a rectangular cross section.
[0138] The third cavity element 44 has a size matching that of the second door plate element 43. Generally, the length of the third cavity element 44 is less than the width of the second door plate, the width of the third cavity element 44 is less than the length of the second door plate, and the height of the third cavity element 44 is less than the height of the second door plate.
[0139] In some embodiments, the third cavity element 44 is a third cavity.
[0140] The third magnetic attraction element 45 has a rectangular cross section.
[0141] The third magnetic attraction element 45 has a size matching that of the third cavity element 44. Generally, the length of the third magnetic attraction element 45 is equal to the length of the third cavity element 44, the width of the third magnetic attraction element 45 is equal to the width of the third cavity element 44, and the height of the third magnetic attraction element 45 is equal to the height of the third cavity element 44.
[0142] The third magnetic attraction element 45 has a size matching that of the first magnetic attraction element 14 (the second magnetic attraction element 33). Generally, the length of the third magnetic attraction element 45 is equal to the length of the first magnetic attraction element 14 (the second magnetic attraction element 33), the width of the third magnetic attraction element 45 is equal to the width of the first magnetic attraction element 14 (the second magnetic attraction element 33), and the height of the third magnetic attraction element 45 is equal to the height of the first magnetic attraction element 14 (the second magnetic attraction element 33).
[0143] In some embodiments, the third magnetic attraction element 45 is fixedly connected to the second door plate element 43, including but not limited to bolt connection.
[0144] In some embodiments, the third magnetic attraction element 45 is made of neodymium iron boron magnetic material.
[0145] In some embodiments, the third magnetic attraction element 45 is a third magnetic attraction block.
[0146] Further, the door plate unit 40 further comprises two handle elements 46. The two handle elements 46 are symmetrically arranged on the second door plate element 43 and connected to the second door plate element 43 respectively, for driving the second door plate element 43 to reciprocate along the length direction of the third sliding element 42.
[0147] Specifically, the two handle elements 46 are symmetrically arranged on the second door plate element 43 and connected to the second door plate respectively.
[0148] In some embodiments, the grip element 46 is fixedly connected to the second door panel element 43, including but not limited to bolt connections.
[0149] In some of these embodiments, the grip element 46 is made of plastic.
[0150] In some of these embodiments, the grip element 46 is a door handle.
[0151] like Figure 8 As shown, the limiting unit 50 includes a first limiting element 51, a rotating element 52, an adjusting element 53, and a second limiting element 54. The first limiting element 51 is disposed at the bottom end inside the main body unit 10 and abuts against the main body unit 10 or the corresponding adjusting unit 20; the rotating element 52 is disposed on the side of the first limiting element 51; the adjusting element 53 is rotatably disposed inside the rotating element 52; the second limiting element 54 is rotatably disposed at the end of the adjusting element 53 and abuts against the corresponding adjusting unit 20, and is used to reciprocate along the axial direction of the adjusting element 53 under the action of the adjusting element 53 to cooperate with the first limiting element 51 to limit the position of the adjusting unit 20.
[0152] Specifically, the first limiting element 51 is disposed inside a first sliding element 12 and abuts against the main element 11 or the corresponding second sliding element 22; the second limiting element 54 is disposed inside a first sliding element 12 and abuts against the corresponding second sliding element 22.
[0153] The cross-section of the first limiting element 51 is rectangular.
[0154] The dimensions of the first limiting element 51 are matched with the dimensions of the first sliding element 12. Generally, the length of the first limiting element 51 is less than the length of the first sliding element 12, the width of the first limiting element 51 is equal to the width of the first sliding element 12, and the height of the first limiting element 51 is equal to the height of the first sliding element 12.
[0155] The dimensions of the first limiting element 51 are matched with the dimensions of the second sliding element 22. Generally, the length of the first limiting element 51 is greater than the length of the second sliding element 22, the width of the first limiting element 51 is equal to the width of the second sliding element 22, and the height of the first limiting element 51 is equal to the height of the second sliding element 22.
[0156] In some of these embodiments, the first limiting element 51 is made of metal.
[0157] In some of these embodiments, the first limiting element 51 is a first limiting post.
[0158] The cross-section of the rotating element 52 is circular.
[0159] The rotating element 52 has a size matching that of the first limiting element 51. Generally, the rotating element 52 has a radial dimension smaller than the width and height of the first limiting element 51, and has an axial dimension smaller than the length of the first limiting element 51.
[0160] In some embodiments, the rotating element 52 is a threaded hole.
[0161] The regulating element 53 has a circular cross section.
[0162] The regulating element 53 has a size matching that of the rotating element 52. Generally, the regulating element 53 has a radial dimension equal to that of the rotating element 52, and has an axial dimension not smaller than that of the rotating element 52.
[0163] In some embodiments, the regulating element 53 is threadedly connected to the rotating element 52.
[0164] In some embodiments, the regulating element 53 is made of metal.
[0165] In some embodiments, the regulating element 53 is a threaded rod.
[0166] The second limiting element 54 has a rectangular cross section.
[0167] The second limiting element 54 has a size matching that of the regulating element 53. Generally, the second limiting element 54 has a width and height greater than the radial dimension of the regulating element 53, and has a length smaller than the axial dimension of the regulating element 53.
[0168] The second limiting element 54 has a size matching that of the first limiting element 51. Generally, the second limiting element 54 has a length smaller than that of the first limiting element 51, and has a width and height equal to those of the first limiting element 51.
[0169] The second limiting element 54 has a size matching that of the first sliding element 12. Generally, the second limiting element 54 has a length smaller than that of the first sliding element 12, and has a width and height equal to those of the first sliding element 12.
[0170] The second limiting element 54 has a size matching that of the second sliding element 22. Generally, the second limiting element 54 has a width and height equal to those of the second sliding element 22.
[0171] In some embodiments, the second limiting element 54 is made of metal.
[0172] In some embodiments, the second limiting element 54 is a second limiting column.
[0173] The use method of the utility model is as follows:
[0174] (I) adjustment operation
[0175] Pull the partition element 31 to move along the length direction of the first sliding element 12 through the second sliding element 22 until it is adjusted to the appropriate position.
[0176] Place the first limiting element 51 and the second limiting element 54 in a first sliding element 12 (in the first sliding element 12 at the bottom end inside the main element 11).
[0177] Twist the adjustment element 53 to rotate along the circumference of the rotating element 52 while moving along the axial direction of the rotating element 52, and drive the second limiting element 54 to move correspondingly through the adjustment element 53 until it abuts the corresponding second sliding element 22.
[0178] (II) door plate use
[0179] Move the second door plate element 43 along the length direction of the third sliding element 42 through the handle element 46 until the third magnetic attraction element 45 is magnetically connected with the first magnetic attraction element 14 or the second magnetic attraction element 33.
[0180] The utility model has the advantages that the cooperation of the main unit, the adjustment unit and the partition unit can build diagnosis and treatment areas with different functions. For example, part of the space is set as a regular consultation area, and the other part is set as an examination area to meet the needs of various diagnosis and treatment processes. At the same time, according to the characteristics of different departments, the partition is adjusted to enhance the functional adaptability of the diagnosis and treatment room. The door plate unit can be used to close each diagnosis and treatment room, and is matched with flexible space adjustment. When independent diagnosis and treatment space is needed, the door plate unit is closed to ensure patient privacy. The limiting unit is used to ensure the stability of the partition unit to prevent displacement during use, ensure effective separation between diagnosis and treatment rooms, avoid interference between different diagnosis and treatment areas, provide a quiet and independent medical environment for patients, and also help medical staff focus on work and improve diagnosis and treatment efficiency.
[0181] The above only describes the preferred embodiments of the utility model, and does not limit the implementation and protection scope of the utility model. For those skilled in the art, it should be realized that any equivalent replacement and obvious changes made according to the content of the utility model specification and drawings should be included in the protection scope of the utility model.
Claims
1. A prefabricated clinic structure, characterized by, The utility model relates to a kind of adjustable storage cabinet, including: Main unit (10), the main unit (10) is arranged in horizontal plane; Several adjusting units (20), several adjusting units (20) are distributed and arranged inside the main unit (10), for moving along the length direction of the main unit (10); Several partition plate units (30), several partition plate units (30) are respectively arranged inside corresponding adjusting unit (20), and are respectively connected with corresponding adjusting unit (20), for moving along the length direction of the main unit (10) under the action of adjusting unit (20); Several door plate units (40), several door plate units (40) are respectively arranged inside corresponding adjusting unit (20), and are respectively located in the side of corresponding partition plate unit (30), and are respectively connected with corresponding adjusting unit (20), corresponding partition plate unit (30), for moving along the length direction of the main unit (10) under the action of adjusting unit (20); Several limiting units (50), several limiting units (50) are distributed and arranged at the bottom end inside the main unit (10), and are respectively in contact with the main unit (10), corresponding adjusting unit (20), for limiting the position of adjusting unit (20).
2. The prefabricated clinic room structure according to claim 1, characterized in that, The main unit (10) includes: Main element (11), the inside of main element (11) is provided with several adjusting units (20); Two first sliding elements (12), two first sliding elements (12) are symmetrically arranged inside main element (11), and the inside of one first sliding element (12) is provided with several limiting units (50), and is respectively connected with several adjusting units (20) slidingly.
3. The prefabricated clinic room structure according to claim 2, characterized in that, The main unit (10) further includes: First cavity element (13), first cavity element (13) is arranged inside main element (11); First magnetic attraction element (14), first magnetic attraction element (14) is arranged inside first cavity element (13), and is connected with corresponding door plate unit (40) magnetically.
4. The prefabricated clinic room structure according to claim 1, characterized in that, The adjusting unit (20) includes: Two transverse support elements (21), two transverse support elements (21) are symmetrically arranged inside the main unit (10), and corresponding partition plate unit (30), corresponding door plate unit (40) are arranged between two transverse support elements (21), for driving partition plate unit (30), door plate unit (40) move along the length direction of the main unit (10); Two second sliding elements (22), two second sliding elements (22) are respectively arranged in corresponding transverse support element (21), one second sliding element (22) is in contact with corresponding limiting unit (50), and is respectively connected with the main unit (10) slidingly. A longitudinal supporting element (23) is arranged between two lateral supporting elements (21) and connected with the two lateral supporting elements (21) and the corresponding partition unit (30) respectively.
5. The prefabricated clinic room structure according to claim 1, characterized in that, The partition unit (30) comprises: A partition element (31) is arranged inside the corresponding adjusting unit (20), and one side of the partition element (31) is provided with the corresponding door plate unit (40) and connected with the corresponding adjusting unit (20) and the corresponding door plate unit (40) respectively, so as to move along the length direction of the main body unit (10) under the action of the adjusting unit (20). 6.The prefabricated clinic room structure according to claim 5, characterized in that, The partition unit (30) further comprises: A second cavity element (32) is arranged on the other side of the partition element (31); A second magnetic attraction element (33) is arranged inside the second cavity element (32) and magnetically connected with the corresponding door plate unit (40). 7.The prefabricated clinic room structure according to claim 1, characterized in that, The door plate unit (40) comprises: A first door plate element (41) is arranged inside the corresponding adjusting unit (20) and located at the side of the corresponding partition unit (30), and connected with the corresponding adjusting unit (20) and the corresponding partition unit (30) respectively, so as to move along the length direction of the main body unit (10) under the action of the adjusting unit (20); A third sliding element (42) is arranged at the side of the first door plate element (41); A second door plate element (43) is slidingly arranged inside the third sliding element (42) and reciprocally moves along the length direction of the third sliding element (42) and moves along the length direction of the main body unit (10) under the action of the first door plate element (41). 8.The prefabricated clinic room structure according to claim 7, characterized in that, The door plate unit (40) further comprises: A third cavity element (44) is arranged at the side of the second door plate element (43); A third magnetic attraction element (45) is arranged inside the third cavity element (44) and magnetically connected with the main body unit (10) or the corresponding partition unit (30). 9.The prefabricated clinic room structure according to claim 7, characterized in that, The door plate unit (40) further comprises: Two handle elements (46) are symmetrically arranged on the second door plate element (43) and connected with the second door plate element (43) respectively, so as to drive the second door plate element (43) to reciprocally move along the length direction of the third sliding element (42). 10.The prefabricated clinic room structure according to claim 1, characterized in that, The limiting unit (50) comprises: A first limiting element (51) is arranged at the bottom end inside the main body unit (10) and abuts against the main body unit (10) or the corresponding adjusting unit (20); a rotating element (52) arranged at the side of the first limiting element (51); an adjusting element (53) rotatably arranged inside the rotating element (52); a second limiting element (54) rotatably arranged at the end of the adjusting element (53) and abutting against the corresponding adjusting unit (20), for reciprocating along the axial direction of the adjusting element (53) under the action of the adjusting element (53) to cooperate with the first limiting element (51) to limit the position of the adjusting unit (20).