CN216336019U - Modularization elevator well structure - Google Patents
Modularization elevator well structure Download PDFInfo
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- CN216336019U CN216336019U CN202120846783.0U CN202120846783U CN216336019U CN 216336019 U CN216336019 U CN 216336019U CN 202120846783 U CN202120846783 U CN 202120846783U CN 216336019 U CN216336019 U CN 216336019U
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Abstract
The utility model provides a modular elevator shaft structure which comprises a plurality of modular shaft layers which are stacked up and down, wherein a transverse connecting piece is arranged between every two adjacent modular shaft layers; the modularized well way layer comprises a plurality of modularized glass panels, the modularized well way layer is formed by connecting the left side edge and the right side edge of the modularized glass panels end to end and enclosing the modularized glass panels to form an enclosing/semi-enclosing structure, and an upright post is connected between the left and right adjacent modularized glass panels; and the two ends of the transverse connecting piece are fixedly connected with the upright post. The utility model has simple structure, beautiful appearance, easy installation, high strength, flexible and convenient installation, and convenient replacement and later maintenance.
Description
Technical Field
The utility model relates to the field of elevators, in particular to a modularized elevator shaft structure.
Background
The sightseeing elevator has the advantages of good light transmission, wide visual field and the like, and is more and more widely applied in modern life. When the sightseeing lift is selected, a corresponding matched sightseeing lift well is required.
The existing technical scheme is that a steel structure hoistway scheme for installing toughened glass is mostly measured and ordered according to the size after a steel structure is welded on a frame. Although the steel structure welding mode has high structural strength, there are some significant disadvantages, such as: the welding requirement is high; the control of welding quality is difficult; the measurement and installation efficiency of the glass is low, and the period is long; the overall aesthetic level is not very high; the overall cost is higher and the like. In order to make up for the defects, an aluminum alloy hoistway mode that an aluminum alloy frame is used for cutting and an aluminum alloy clamping groove is used for installing glass is also arranged on the market. However, the aluminum alloy frame fixing mode has high aesthetic degree and compact structure; there are some other significant drawbacks, such as: the aluminum alloy has low strength and can only be used for small well size and low well height; the requirement on the cutting precision of the aluminum alloy is high; the installation of the glass is time-consuming and labor-consuming; the replacement of the damaged glass is difficult, and the later maintenance is inconvenient.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the utility model is to provide a modular elevator shaft structure, which not only ensures the strength requirement of steel structure welding, but also ensures the appearance attractiveness, and is flexible and convenient to install, and convenient to replace and maintain later.
In order to solve the technical problem, the utility model provides a modular elevator shaft structure which comprises a plurality of modular shaft layers which are stacked up and down, wherein a transverse connecting piece is arranged between every two adjacent modular shaft layers; the modularized well way layer comprises a plurality of modularized glass panels, the modularized well way layer is formed by connecting the left side edge and the right side edge of the modularized glass panels end to end and enclosing the modularized glass panels to form an enclosing/semi-enclosing structure, and an upright post is connected between the left and right adjacent modularized glass panels;
the both ends of transverse connection spare with stand fixed connection, the upper and lower both ends of modularization glass panels all with transverse connection spare fixed connection, the left and right sides of modularization glass panels all with stand fixed connection.
Further, the modularization glass panels are square, the modularization glass panels include the fixed frame that glass panels and glass panels week side set up, the glass panels is fixed the inboard of fixed frame, fixed frame and adjacent transverse connection spare or stand fixed connection.
Further, both ends of the transverse connecting piece are inboard to include a clamping groove, a first angle type connecting piece is arranged in the clamping groove, one side of the first angle type connecting piece is fixedly connected with the inner wall of the clamping groove, and the other side of the first angle type connecting piece is fixedly connected with the adjacent stand column.
Furthermore, the transverse connecting piece is a C-shaped steel plate piece, and the clamping groove is a C-shaped groove.
Furthermore, the inner wall of the clamping groove is provided with a mounting hole for connecting the fixing frame.
Furthermore, the stand is the steel sheet of L type cross section, just the both sides limit of stand all has the portion of bending that is used for connecting transverse connection spare, the portion of bending certainly the stand side to the inboard right angle of stand extends the setting.
Furthermore, one side of the first angle-shaped connecting piece is fixed with the inner wall of the clamping groove, and the other side of the first angle-shaped connecting piece is fixed with the outer side of the bending part.
Furthermore, the upper end and the lower end of the stand column are both provided with second angle-shaped connecting pieces fixed on the inner sides of the stand column, connecting holes are formed in the second angle-shaped connecting pieces, and the stand columns between the adjacent two modularized well layers are fixedly connected through the second angle-shaped connecting pieces.
Furthermore, the outer sides of the transverse connecting pieces are respectively coated with a transverse connecting piece stainless steel wrapping layer, and the outer sides of the stand columns are coated with stand column stainless steel wrapping layers.
Furthermore, the fixing frame is formed by a plurality of end-to-end aluminum alloy frames in a surrounding mode, and an embedded groove used for fixing the glass panel is formed in the side face of the aluminum alloy frame.
Compared with the related art, the utility model has the following beneficial effects:
the utility model provides a modularized elevator shaft structure which is simple in structure and easy to manufacture, has the advantages of high structural strength of a steel structure shaft and compact and attractive structure of an aluminum alloy shaft in the prior art, and facilitates replacement of glass after damage in the later use process. Wherein, the outside of transverse connecting piece and stand all wraps up has the stainless steel wrapping layer of transverse connecting piece for the well structure is more pleasing to the eye, and is more corrosion-resistant.
The modularized glass panel matched with the well structure can be installed and assembled before leaving factory, the modularized well layer can be installed only by fixedly connecting the modularized glass panel with the transverse connecting piece and the upright post after arriving at the site, and then the modularized well layer is installed layer by layer, so that the installation quality is easy to control and the installation efficiency is high.
In order to make the aforementioned and other objects, features and advantages of the utility model comprehensible, preferred embodiments accompanied with figures are described in detail below.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
FIG. 1 is a schematic structural diagram of a preferred embodiment of the present invention;
FIG. 2 is a schematic view of the structure of FIG. 1 in partial cross-section;
FIG. 3 is a schematic cross-sectional view of part A of FIG. 2;
FIG. 4 is a schematic cross-sectional view of part B of FIG. 2;
fig. 5 is a schematic cross-sectional view of part C of fig. 2.
Reference numbers in the figures:
1. a modular well layer; 2. a modular glass panel; 21. a glass panel; 22. a fixing frame; 221. an aluminum alloy frame; 23. a modularized glass clamping groove stainless steel wrapping layer; 3. a transverse connector; 31. a card slot; 4. a column; 41. a bending part; 5. a groove is embedded; 6. a first angled connector; 7. a second angle-type connector; 71. connecting holes; 8. a stainless steel wrapping layer of the transverse connecting piece; 9. and the upright post stainless steel wraps the layer.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-5, a modular hoistway structure includes a plurality of modular hoistway layers 1 stacked up and down, and a transverse connecting member 3 is disposed between two adjacent modular hoistway layers 1; the modularized well way layer 1 comprises a plurality of modularized glass panels 2, the modularized well way layer 1 is formed by connecting the left side edge and the right side edge of the modularized glass panels 2 end to end and enclosing the left side edge and the right side edge to form an enclosing/semi-enclosing structure, and an upright post 4 is connected between the two adjacent modularized glass panels 2 on the left side and the right side;
the both ends of transverse connection piece 3 with stand 4 fixed connection, the upper and lower both ends of modularization glass panels 2 all with transverse connection piece 3 fixed connection, the left and right sides of modularization glass panels 2 all with stand 4 fixed connection.
Specifically, this elevator well structure sets up layer by layer from bottom to top in proper order through multilayer modularization well layer 1, and the modularization well layer 1 that is located the lowermost floor of elevator well structure is the enclosed construction, because the car of elevator well structure stops the layer and need make things convenient for the car to open the door, consequently lies in the modularization well layer 1 that the car stops the layer and be half enclosed construction.
Wherein, modularization glass panels 2 are square, modularization glass panels 2 include the fixed frame 22 that glass panels 21 and glass panels 21 week side set up, glass panels 21 fixes the inboard of fixed frame 22, the upper and lower both sides of fixed frame 22 respectively with adjacent 3 fixed connection of transverse connection spare, the left and right sides of fixed frame 22 respectively with adjacent 4 fixed connection of stand, specifically, fixed frame 22 encloses to construct for a plurality of end to end's aluminum alloy frame 221, be equipped with on the side of aluminum alloy frame 221 and be used for fixing the embedded groove 5 of glass panels 21, at least one side of aluminum alloy frame 221 is equipped with embedded groove 5, and embedded groove 5 sets up along aluminum alloy frame 221 length direction, and the embedded groove 5 of aluminum alloy frame 221 all moves towards the middle part of fixed frame 22, glass panels 21 installs in embedded groove 5, the outer side surface of the aluminum alloy frame 221 is provided with a modularized glass clamping groove stainless steel wrapping layer 23 made of a stainless steel panel, the modularized glass clamping groove stainless steel wrapping layer 23 is circumferentially wrapped on the outer side surface of the aluminum alloy frame 221 from the inner wall of the embedded groove 5, and the part of the glass panel 21 located in the embedded groove 5 is attached to the modularized glass clamping groove stainless steel wrapping layer 23. The modularized glass panel 2 can be installed and assembled before leaving the factory, and the modularized well floor 1 can be installed only by fixedly connecting the modularized glass panel 2 with the transverse connecting piece 3 and the upright post 4 after arriving at the site.
When carrying out fixed mounting with modularization glass panels 2 and transverse connection piece 3, as shown in fig. 3, in this embodiment, transverse connection piece 3's both ends inboard all includes draw-in groove 31, be equipped with first angle type connecting piece 6 in the draw-in groove 31, one side of first angle type connecting piece 6 with the inner wall fixed connection of draw-in groove 31, the opposite side and adjacent 4 fixed connection of stand, it is specific, transverse connection piece 3 is C type steel sheet spare, draw-in groove 31 is C type groove, the inner wall of draw-in groove 31 is equipped with and is used for connecting the mounting hole of fixed frame 22, and the mounting hole is provided with a plurality ofly to evenly set up along the extending direction of draw-in groove 31, use the bolt to pass through aluminium alloy frame 221 fixed connection on modularization glass panels 2 of downside on mounting hole and the transverse connection piece 3.
When the modular glass panel 2 and the vertical column 4 are fixedly installed, as shown in fig. 3, in this embodiment, the vertical column 4 is a steel plate with an L-shaped cross section, and both side edges of the vertical column 4 are provided with bending portions 41 for connecting the transverse connecting member 3, the bending portions 41 extend from the side edges of the vertical column 4 to the inner side of the vertical column 4 at right angles, the inner side of the vertical column 4 is also provided with installation holes for connecting the modular glass panel 2, the installation holes on the vertical column 4 are uniformly distributed along the extending direction of the vertical column 4, and are fixedly connected with the aluminum alloy frames 221 on the modular glass panel 2 on the left and right sides of the vertical column 4 through the installation holes by bolts;
when transverse connection member 3 carries out fixed connection with corresponding stand 4, transverse connection member 3's both ends all are equipped with first angle type connecting piece 6, and first angle type connecting piece 6 is located draw-in groove 31, one side of first angle type connecting piece 6 with the inner wall of draw-in groove 31 is fixed, through welded fastening, the opposite side with the portion 41 outsides of bending are fixed, through bolted connection, are fixed stand 4 and first angle type connecting piece 6 to it is fixed with transverse connection member 3 to realize stand 4.
As shown in fig. 5, in this embodiment, the upper and lower ends of the vertical column 4 are both provided with a second angle-shaped connecting member 7 fixed on the inner side of the vertical column 4, the second angle-shaped connecting member 7 is provided with a connecting hole 71, two adjacent ones of the second angle-shaped connecting members 7 are arranged between the modular well layers 1, the vertical column 4 passes through the second angle-shaped connecting members 7 and is fixedly connected to the vertical column 4 on the corresponding modular well layer 1 from top to bottom, after the installation of one modular well layer 1 is completed, the modular well layer 1 needs to be continuously installed on the installed modular well layer 1, and the horizontal connecting member 3 is fixedly connected to the fixing frame 22 on the modular glass panel 2 corresponding to the upper side, so as to realize the layer-by-layer installation of the modular well layer 1 from bottom to top.
In this embodiment, the outside of the transverse connecting member 3 is wrapped with a transverse connecting member stainless steel wrapping layer 8, the outside of the upright post 4 is wrapped with an upright post stainless steel wrapping layer 9, so as to ensure the aesthetic property of the hoistway structure, when in use, the modularized glass panels 2 can be installed and assembled before leaving factory, after arriving at the site, the upright post 4 is installed between the fixing frames 22 of two adjacent modularized glass panels 2, the transverse connecting members 3 are installed on the upper and lower sides of the fixing frames 22 and fixed by bolts, so that a plurality of modularized glass panels 2 are surrounded to form a surrounding type modularized hoistway layer 1, or a semi-surrounding type modularized hoistway layer 1 adapted to a car stop layer is formed, after one layer of modularized hoistway layer 1 is installed, one layer of modularized hoistway layer 1 is continuously installed on the modularized hoistway layer 1, the upright post 4 on the lower layer of modularized hoistway layer 1 is fixedly connected with the upright post 4 on the upper layer of corresponding modularized hoistway layer 1, meanwhile, the transverse connecting piece 3 is fixedly connected with the upper fixing frame 22 of the modular glass panel 2 corresponding to the upper side, so that the modular well way layer 1 is installed layer by layer from bottom to top until the top is sealed, the installation efficiency is high, the structural strength is good, the appearance is attractive, the corrosion resistance is high, the installation is flexible and convenient, and the later-stage replacement and maintenance are convenient.
The above description is only an embodiment of the present invention, and not intended to limit the scope of the present invention, and all modifications of equivalent structures and equivalent processes, which are made by using the contents of the present specification and the accompanying drawings, or directly or indirectly applied to other related technical fields, are included in the scope of the present invention.
Claims (8)
1. A modular elevator shaft structure is characterized by comprising a plurality of modular shaft layers which are stacked up and down, wherein a transverse connecting piece is arranged between every two adjacent modular shaft layers; the modularized well way layer comprises a plurality of modularized glass panels, the modularized well way layer is formed by connecting the left side edge and the right side edge of the modularized glass panels end to end and enclosing the modularized glass panels to form an enclosing/semi-enclosing structure, and an upright post is connected between the left and right adjacent modularized glass panels;
the two ends of the transverse connecting piece are fixedly connected with the upright post, the upper end and the lower end of the modular glass panel are fixedly connected with the transverse connecting piece, and the left side and the right side of the modular glass panel are fixedly connected with the upright post;
the modularized glass panel is square and comprises a glass panel and a fixing frame arranged on the peripheral side of the glass panel, the glass panel is fixed on the inner side of the fixing frame, and the fixing frame is fixedly connected with the adjacent transverse connecting piece or the upright post;
the fixing frame is formed by a plurality of aluminum alloy frames which are connected end to end in a surrounding mode, and an embedded groove used for fixing the glass panel is formed in the side face of each aluminum alloy frame.
2. The modular elevator shaft structure according to claim 1, wherein inner sides of both ends of the transverse connecting member each include a slot, a first angle-shaped connecting member is disposed in the slot, one side of the first angle-shaped connecting member is fixedly connected to an inner wall of the slot, and the other side of the first angle-shaped connecting member is fixedly connected to the adjacent pillar.
3. The modular elevator hoistway structure of claim 2, wherein the transverse connection member is a C-shaped steel plate member and the slot is a C-shaped slot.
4. The modular elevator shaft structure according to claim 3, wherein an inner wall of the catching groove is provided with a mounting hole for connecting the fixing frame.
5. The modular elevator hoistway structure of claim 2, wherein the vertical column is a steel plate with an L-shaped cross section, and each of two side edges of the vertical column has a bent portion for connecting the transverse connecting member, and the bent portions extend from the side edges of the vertical column to the inner side of the vertical column at right angles.
6. The modular elevator hoistway structure of claim 5, wherein one side of the first angled connecting member is fixed to an inner wall of the slot and the other side is fixed to an outer side of the bent portion.
7. The modular elevator shaft structure according to claim 1, wherein the upper and lower ends of the vertical column are provided with second angle-shaped connecting members fixed on the inner sides of the vertical column, the second angle-shaped connecting members are provided with connecting holes, and the vertical column between two adjacent modular shaft layers is fixedly connected through the second angle-shaped connecting members.
8. The modular elevator hoistway structure of claim 1, wherein the outer sides of the cross-links are each clad with a cross-link stainless steel cladding and the outer sides of the columns are clad with column stainless steel cladding.
Priority Applications (1)
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CN202120846783.0U CN216336019U (en) | 2021-04-23 | 2021-04-23 | Modularization elevator well structure |
Applications Claiming Priority (1)
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CN202120846783.0U CN216336019U (en) | 2021-04-23 | 2021-04-23 | Modularization elevator well structure |
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CN216336019U true CN216336019U (en) | 2022-04-19 |
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CN202120846783.0U Active CN216336019U (en) | 2021-04-23 | 2021-04-23 | Modularization elevator well structure |
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