Glass mounting component for outer enclosure of elevator derrick
By designing the combination of elevator shaft frame and installation components, using the bolt and nut structure of sliding clamps and limiting members, the problem of unstable installation of elevator shaft glass is solved, and safe and reliable glass installation is achieved.
Patent Information
- Application Number
- CN202421784374.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-07-26
AI Technical Summary
The existing elevator shaft glass installation components are not easy to connect to the elevator beam frame, cannot be fixed and clamped, there is a risk of falling off, and the installation distance cannot be adjusted, resulting in the glass being deviated during installation, posing a safety hazard.
A glass mounting member including an elevator shaft frame, mounting beam and mounting member is designed. Through the combination of sliding clamps, bottom clamping blocks and limiting members, the combination of bolts and nuts is used to achieve stable clamping and spacing adjustment of the glass to prevent glass from being offset.
The glass is stable in the frame of the elevator shaft, avoiding the risk of falling off, and adjusting the installation distance as needed to ensure safe and hidden dangers.
Smart Images

Figure CN223061943U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of elevator shafts, in particular to a glass installation component for the outer enclosure of an elevator shaft frame. Background Technique
[0002] An elevator shaft is a shaft for installing an elevator. The size of the shaft is determined according to the elevator type selection. Elevator tracks and counterweight tracks are installed on the shaft wall, elevator doors are installed in the reserved door openings, and there is an elevator machine room at the top of the shaft. The shaft wall can be selected to install glass, steel plates, etc. according to the functionality of the elevator.
[0003] Observation elevators are often used in shopping malls and villas, and glass is installed on the elevator shafts of the observation elevators. However, due to the narrow position of the glass on the elevator shaft, manual installation is required. When installing the elevator shaft glass, the glass needs to be fixed in the elevator shaft to prevent the glass from falling and avoid injury to the installation personnel, thereby preventing greater economic losses.
[0004] However, the existing elevator shaft glass installation components are not easy to connect to the elevator beam frame, cannot be fixed and clamped on the elevator beam, there is a risk of falling off, and the installation spacing cannot be adjusted, which may cause the glass to shift during installation and there will be major safety hazards in the future.
[0005] Therefore, in view of the existing structure and deficiencies, research and improvement are carried out, and a glass installation component for the outer enclosure of an elevator shaft frame is proposed, in order to achieve a more practical value purpose. Content of the Utility Model
[0006] The purpose of the utility model is to provide a glass installation component for the outer enclosure of an elevator shaft frame, so as to solve the problems in the above background that the existing elevator shaft glass installation components are not easy to connect to the elevator beam frame, cannot be fixed and clamped on the elevator beam, there is a risk of falling off, and the installation spacing cannot be adjusted, which may cause the glass to shift during installation and there will be major safety hazards in the future.
[0007] To achieve the above purpose, the utility model provides the following technical solution: A glass installation component for the outer enclosure of an elevator shaft frame, including an elevator shaft frame, installation cross beams and installation components. A glass installation frame is arranged inside the elevator shaft frame, and multiple groups of installation cross beams are arranged inside the installation frame. Multiple groups of elevator glasses are installed inside the installation frame, and the elevator glasses are arranged between two adjacent installation cross beams. The installation components are connected to the installation cross beams, and the installation components include a component main body, sliding clamping blocks and bottom clamping blocks. The component main body includes a support cross plate, a support vertical plate and a connecting clamping plate. The sliding clamping blocks are connected to the support cross plate. The bottom clamping blocks are connected to the bottom of the connecting clamping plate, and an installation connecting clamping block is connected to the bottom of the bottom clamping blocks.
[0008] Preferably, a limiting member is connected to both the connecting clamping plate and the mounting connecting clamping block, and the bottom clamping block, the mounting connecting clamping block, the limiting member, and the sliding clamping block are all L-shaped plates, and the clamping directions of the bottom clamping block and the connecting clamping plate are opposite.
[0009] Preferably, a fixed connecting plate is connected below the sliding clamping block, and the supporting cross plate is connected between the sliding clamping block and the fixed connecting plate. Fixed sliding grooves and connecting sliding grooves are respectively arranged on both sides of the supporting cross plate.
[0010] Preferably, a fixing bolt is arranged at the connection between the fixed connecting plate and the fixed sliding groove. A fixing nut is connected to the fixing bolt, and a fixing slider is arranged at the connection between the fixing nut and the fixed sliding groove. A connecting slider is arranged at the connection between the fixed connecting plate and the connecting sliding groove.
[0011] Preferably, screw connection grooves are arranged at the connections between the connecting clamping plate, the mounting connecting clamping block and the limiting member, and multiple groups of screw card slots are arranged in the screw connection grooves. A screw connection groove is arranged on one side of the limiting member. Anti-collision rubber pads are arranged on both the mounting member and the limiting member.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows: it is convenient to adjust and connect to the elevator crossbeam frame, can be fixedly clamped on the elevator crossbeam without the risk of falling off, can adjust the installation spacing, prevent the glass from shifting during installation, and avoid potential major safety hazards in the future. The specific content is as follows:
[0013] The distance between the sliding clamping block and the supporting vertical plate can be adjusted according to the width of the installation crossbeam. The sliding clamping block is buckled on the supporting cross plate through the fixed connecting plate, and can be moved by sliding the connecting slider in the connecting sliding groove. At the same time, the fixing slider at the bottom of the fixing bolt slides in the fixed sliding groove, and when it slides to the appropriate position, by rotating the fixing nut, the fixing nut moves on the fixing bolt, and the sliding clamping block is pressed against the supporting cross plate by the fixing nut. The elevator glass is installed and fixed between two adjacent installation crossbeams on the elevator shaft frame. The upper elevator glass is clamped by the limiting member and the connecting clamping plate, and the lower elevator glass is clamped by the limiting member and the mounting connecting clamping block. The limiting member is connected to the screw connection groove and the screw connection groove by screws, and the position of the adjusting screw in the screw card slot can be adjusted according to the thickness of the glass to adjust the distance between the limiting member and the connecting clamping plate or the mounting connecting clamping block, so as to facilitate the placement and clamping of the elevator glass. Anti-collision rubber pads are arranged at the connections between the mounting member, the limiting member and the installation crossbeam and the clamping of the elevator glass to protect the elevator glass and the mounting member and prevent the elevator glass from being damaged. Description of the Drawings
[0014] Figure 1 This is a schematic structural diagram of the elevator shaft main body of a glass installation member for the outer enclosure of an elevator shaft tower of the present utility model;
[0015] Figure 2 This is a schematic structural diagram of the side of the installation member of a glass installation member for the outer enclosure of an elevator shaft tower of the present utility model;
[0016] Figure 3 This is a schematic structural diagram of the connection structure of the sliding clamping block of a glass installation member for the outer enclosure of an elevator shaft tower of the present utility model;
[0017] Figure 4 This is a schematic structural diagram of the side cross-section at the connection of the sliding clamping block of a glass installation member for the outer enclosure of an elevator shaft tower of the present utility model;
[0018] Figure 5 This is a schematic structural diagram of the connection clamping plate of a glass installation member for the outer enclosure of an elevator shaft tower of the present utility model;
[0019] Figure 6 This is a schematic structural diagram of the limiting member of a glass installation member for the outer enclosure of an elevator shaft tower of the present utility model.
[0020] In the figure: 1, elevator shaft frame; 2, installation cross beam; 3, elevator glass; 4, installation member; 41, member main body; 411, support cross plate; 4111, fixed sliding groove; 4112, connection sliding groove; 412, support vertical plate; 413, connection clamping plate; 4131, screw connection groove; 4132, screw card slot; 42, sliding clamping block; 421, fixed connection plate; 4211, connection slider; 43, bottom clamping block; 44, installation connection clamping block; 45, limiting member; 451, screw connection groove; 46, anti-collision rubber pad; 47, fixing bolt; 471, fixing nut; 472, fixed slider; 5, installation frame. Specific embodiments
[0021] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0022] Please refer to Figures 1 to 6, the utility model provides a technical solution: a glass installation member for the outer enclosure of an elevator shaft frame, including an elevator shaft frame 1, an installation cross beam 2 and an installation member 4. A glass installation frame 5 is arranged inside the elevator shaft frame 1, and multiple groups of installation cross beams 2 are arranged inside the installation frame 5. Multiple groups of elevator glasses 3 are installed inside the installation frame 5, and the elevator glasses 3 are arranged between two adjacent installation cross beams 2. The installation member 4 is connected to the installation cross beam 2, and the installation member 4 includes a member main body 41, a sliding clamp block 42 and a bottom clamping block 43. The member main body 41 includes a support cross plate 411, a support vertical plate 412 and a connecting clamping plate 413. The sliding clamp block 42 is connected to the support cross plate 411, the bottom clamping block 43 is connected to the bottom of the connecting clamping plate 413, and an installation connecting clamp block 44 is connected to the bottom of the bottom clamping block 43.
[0023] The elevator shaft frame 1 is the main installation frame of the elevator shaft. The elevator glass 3 is installed and fixed between two adjacent installation cross beams 2. The installation member 4 is connected and fixed to the installation cross beam 2, and the installation member 4 is used to fix the elevator glass on the installation cross beam 2. The member main body 41 and the sliding clamp block 42 clamp the installation cross beam 2. The sliding clamp block 42 slides on the support cross plate 411, so as to adjust the distance between the sliding clamp block 42 and the support vertical plate 412, and clamp the installation cross beam 2 through one side of the support cross plate 411, the support vertical plate 412 and the sliding clamp block 42. The bottom clamping block 43 is welded to the bottom of the connecting clamping plate 413, and the installation connecting clamp block 44 is welded to the bottom clamping block 43.
[0024] Limit members 45 are connected to both the connecting clamping plate 413 and the installation connecting clamp block 44. The bottom clamping block 43, the installation connecting clamp block 44, the limit members 45 and the sliding clamp block 42 are all L-shaped plates. The clamping directions of the bottom clamping block 43 and the connecting clamping plate 413 are opposite. Screw connection grooves 4131 are arranged at the connection parts of the connecting clamping plate 413 and the installation connecting clamp block 44 with the limit members 45, and multiple groups of screw clamping grooves 4132 are arranged inside the screw connection grooves 4131. A screw connection groove 451 is arranged on one side of the limit member 45. Anti-collision rubber pads 46 are arranged on both the installation member 4 and the limit member 45. The upper elevator glass 3 is clamped by the limit member 45 and the connecting clamping plate 413, and the lower elevator glass 3 is clamped by the limit member 45 and the installation connecting clamp block 44. The limit member 45 is connected by screws in the screw connection groove 451 and the screw connection groove 4131, and the distance between the limit member 45 and the connecting clamping plate 413 or the installation connecting clamp block 44 is adjusted by adjusting the position of the screw in the screw clamping groove 4132, so as to facilitate the placement and clamping of the elevator glass 3. Anti-collision rubber pads 46 are arranged at the connection parts of the installation member 4 and the limit member 45 with the installation cross beam 2 and the clamped elevator glass 3, which are used to protect the elevator glass 3 and the installation member 4 and prevent the elevator glass 3 from being damaged.
[0025] A fixed connecting plate 421 is connected below the sliding clamping block 42, and the supporting horizontal plate 411 is connected between the sliding clamping block 42 and the fixed connecting plate 421. Fixed sliding grooves 4111 and connecting sliding grooves 4112 are respectively arranged on both sides of the supporting horizontal plate 411. A fixed bolt 47 is arranged at the connection between the fixed connecting plate 421 and the fixed sliding groove 4111. A fixed nut 471 is connected to the fixed bolt 47, and a fixed sliding block 472 is arranged at the connection between the fixed nut 471 and the fixed sliding groove 4111. A connecting sliding block 4211 is arranged at the connection between the fixed connecting plate 421 and the connecting sliding groove 4112. The sliding clamping block 42 is buckled on the supporting horizontal plate 411 through the fixed connecting plate 421 and can move by sliding the connecting sliding block 4211 in the connecting sliding groove 4112. At the same time, the fixed sliding block 472 at the bottom of the fixed bolt 47 slides in the fixed sliding groove 4111. When it slides to a suitable position, by rotating the fixed nut 471, the fixed nut 471 moves on the fixed bolt 47, and the sliding clamping block 42 is pressed tightly on the supporting horizontal plate 411 by the fixed nut 471.
[0026] Working principle: When using a glass installation member for the outer enclosure of an elevator shaft frame, first connect and fix the installation member 4 to the installation cross beam 2. Clamp the member main body 41 and the sliding clamping block 42 on the installation cross beam 2. The distance between the sliding clamping block 42 and the supporting vertical plate 412 can be adjusted according to the width of the installation cross beam 2. The sliding clamping block 42 is buckled on the supporting horizontal plate 411 through the fixed connecting plate 421 and can move by sliding the connecting sliding block 4211 in the connecting sliding groove 4112. At the same time, the fixed sliding block 472 at the bottom of the fixed bolt 47 slides in the fixed sliding groove 4111. When it slides to a suitable position, by rotating the fixed nut 471, the fixed nut 471 moves on the fixed bolt 47, and the sliding clamping block 42 is pressed tightly on the supporting horizontal plate 411 by the fixed nut 471.
[0027] Then install and fix the elevator glass 3 between two adjacent installation cross beams 2 on the elevator shaft frame 1. The upper elevator glass 3 is clamped by the limiting member 45 and the connecting clamping plate 413, and the lower elevator glass 3 is clamped by the limiting member 45 and the installation connecting clamping block 44. The limiting member 45 is connected in the screw connection grooves 451 and 4131 by screws, and the position of the adjusting screw in the screw clamping groove 4132 can be adjusted according to the thickness of the glass to adjust the distance between the limiting member 45 and the connecting clamping plate 413 or the installation connecting clamping block 44, so as to facilitate the placement and clamping of the elevator glass 3. Anti-collision rubber pads 46 are arranged at the connections between the installation member 4 and the limiting member 45 and the installation cross beam 2 and the clamping of the elevator glass 3 to protect the elevator glass 3 and the installation member 4 and prevent the elevator glass 3 from being damaged.
Claims
1. A glass installation member for the outer enclosure of an elevator hoistway, comprising an elevator hoistway frame (1), an installation cross beam (2) and an installation member (4), characterized in that: A glass installation frame (5) is provided inside the elevator shaft frame (1), and multiple groups of installation cross beams (2) are provided inside the installation frame (5). Multiple groups of elevator glasses (3) are installed inside the installation frame (5), and the elevator glasses (3) are arranged between two adjacent installation cross beams (2). The installation member (4) is connected to the installation cross beam (2), and the installation member (4) includes a member main body (41), a sliding clamping block (42), and a bottom clamping block (43). The member main body (41) includes a support cross plate (411), a support vertical plate (412), and a connecting clamping plate (413). The sliding clamping block (42) is connected to the support cross plate (411), the bottom clamping block (43) is connected to the bottom of the connecting clamping plate (413), and an installation connecting clamping block (44) is connected to the bottom of the bottom clamping block (43).
2. The glass installation member for the outer enclosure of an elevator shaft according to claim 1, characterized in that: Limit members (45) are connected to both the connecting clamping plate (413) and the installation connecting clamping block (44). The bottom clamping block (43), the installation connecting clamping block (44), the limit member (45), and the sliding clamping block (42) are all L-shaped plates, and the clamping directions of the bottom clamping block (43) and the connecting clamping plate (413) are opposite.
3. A glass installation member for the outer enclosure of an elevator hoistway according to claim 2, characterized in that: A fixed connecting plate (421) is connected below the sliding clamping block (42), and the support cross plate (411) is connected between the sliding clamping block (42) and the fixed connecting plate (421). Fixed sliding grooves (4111) and connecting sliding grooves (4112) are respectively arranged on both sides of the support cross plate (411).
4. A glass installation member for the outer enclosure of an elevator hoistway, as claimed in claim 3, wherein: A fixed bolt (47) is arranged at the connection between the fixed connecting plate (421) and the fixed sliding groove (4111). A fixed nut (471) is connected to the fixed bolt (47), and a fixed sliding block (472) is arranged at the connection between the fixed nut (471) and the fixed sliding groove (4111). A connecting sliding block (4211) is arranged at the connection between the fixed connecting plate (421) and the connecting sliding groove (4112).
5. A glass installation member for the outer enclosure of an elevator hoistway, as claimed in claim 4, wherein: Screw connection grooves (4131) are respectively arranged at the connections between the connecting clamping plate (413), the installation connecting clamping block (44), and the limit member (45). Multiple groups of screw clamping grooves (4132) are arranged inside the screw connection grooves (4131). A screw connection groove (451) is arranged on one side of the limit member (45). Anti-collision rubber pads (46) are arranged on both the installation member (4) and the limit member (45).