CN108584643B - Installation method of elevator door pocket capable of being adjusted at will - Google Patents

Installation method of elevator door pocket capable of being adjusted at will Download PDF

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Publication number
CN108584643B
CN108584643B CN201810487201.7A CN201810487201A CN108584643B CN 108584643 B CN108584643 B CN 108584643B CN 201810487201 A CN201810487201 A CN 201810487201A CN 108584643 B CN108584643 B CN 108584643B
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China
Prior art keywords
frame
block
driving
supporting block
connecting rod
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CN201810487201.7A
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CN108584643A (en
Inventor
何志彦
章华
丁凡
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Gansu jinlangchao Intelligent Engineering Co.,Ltd.
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Jiaxing Shangkun Technology Co Ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B13/00Doors, gates, or other apparatus controlling access to, or exit from, cages or lift well landings
    • B66B13/30Constructional features of doors or gates

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  • Elevator Door Apparatuses (AREA)

Abstract

The invention relates to the field of elevator installation, in particular to an installation method of an elevator door pocket capable of being adjusted at will, wherein the elevator door pocket capable of being adjusted at will comprises a frame, an installation support, a frame driving device and a frame adjusting device, the frame is located beside the installation support and fixedly connected with the frame adjusting device through a bolt, the frame adjusting device is located beside the frame driving device and is in sliding fit with the frame driving device, the frame driving device comprises a first driving assembly and a second driving assembly, and the first driving assembly and the second driving assembly are matched to drive the frame to move along the width horizontal direction of the frame. The elevator door pocket mounting device has the advantages that the distance between the frame and the mounting bracket can be changed through the matching between the gear and the first sliding block, the position between the frame and the mounting bracket can also be changed through pushing the positioning plate to enable the poking piece fixed on the positioning plate to slide in the first sliding block, so that the mounting precision is ensured, the mounting speed of the elevator door pocket is increased, and the mounting period is saved.

Description

Installation method of elevator door pocket capable of being adjusted at will
Technical Field
The invention relates to the field of elevator installation, in particular to an installation method of an elevator door pocket capable of being adjusted at will.
Background
Conventional elevator door pockets are typically constructed of marble or stainless steel and assembled on site. Specifically, in the conventional assembly scheme of the elevator door pocket, a wood base layer is manufactured on the wall body at both sides of the elevator door at a construction site, then, a marble or stainless steel material is processed into a required profile (plate shape, etc.), then, the processed marble or stainless steel profile is adhered to the wood base layer through an industrial adhesive (glass cement, etc.), and finally, necessary finishing treatment is performed.
The traditional assembly scheme of the elevator door pocket has the defects of complex operation, inconvenient construction, high installation cost and labor cost and long installation period (possibly reaching 80-100 working days) because field assembly is required and measurement and correction are required in each bonding industry.
In addition, the person skilled in the art discloses an elevator door pocket in the chinese patent with the publication number CN 2426869Y and the name of "a large door pocket of an embedded elevator landing door", which includes a left and a right upright post sleeves and a lintel sleeve fixedly connected with the upright post sleeves, wherein the left and the right upright post sleeves are respectively connected in a form of two grooves by a section bar with a T-shaped section and two section bars with L-shaped sections. Although the technical scheme of this utility model patent has adopted the locating pin in the connection between each component, still can't realize firm relation of connection between each component, and can't guarantee the installation accuracy.
Disclosure of Invention
The invention aims to provide an installation method of an elevator door pocket capable of being adjusted at will so as to solve the problems in the background technology.
The technical scheme of the invention is as follows:
the installation method of the elevator door pocket capable of being adjusted at will comprises the following installation steps:
(1) embedding the mounting bracket in a wall body, mounting the first driving assembly on a first mounting hole formed in the first supporting block, and mounting the second driving assembly on a second mounting hole formed in the second supporting block;
(2) the frame is directly installed on a frame fixing plate on the first baffle plate through bolts, a first connecting rod and a second connecting rod which are fixedly connected with the first baffle plate can horizontally move in the accommodating groove by shifting the first baffle plate, and rollers which are fixedly connected with the first connecting rod and the second connecting rod can move in a passageway formed between the limiting block and the material clamping block to change the distance between the frame and the installing support;
(3) through a driving motor drive gear rotation, thereby the gear meshes with the tooth groove on the first slider mutually and drives first slider and carry out horizontal migration in first locating piece thereby adjust first slider position in order to change the distance between frame and the installing support on first locating piece, stirs first baffle when the size has the deviation and can change the deviation between frame and the installing support.
The elevator door pocket includes frame, installing support, installs the frame drive arrangement on the installing support and is used for fixed frame's frame adjusting device, the frame is located the installing support side and passes through bolt fixed connection with frame adjusting device, frame adjusting device is located frame drive arrangement side and rather than sliding fit, frame drive arrangement is including installing at the left first drive assembly of installing support and installing the second drive assembly on the installing support right side, first drive assembly can drive the frame along its width horizontal direction removal with the second drive assembly with the cooperation.
In a preferred embodiment of the present invention, the mounting bracket includes a first supporting block, a second supporting block and a third supporting block, the first supporting block and the second supporting block are vertically and symmetrically arranged, the third supporting block is horizontally arranged and is located at the top of the first supporting block and the second supporting block, the third supporting block is hinged and matched with the first supporting block and the second supporting block through a hinge, and the cross sections of the first supporting block and the second supporting block and the vertical section of the third supporting block are both U-shaped.
In a preferred embodiment of the present invention, the first supporting block is provided with a first mounting hole for mounting the first driving assembly, the second supporting block is provided with a second mounting hole for mounting the second driving assembly, and axes of the first mounting hole and the second mounting hole are parallel.
In a preferred embodiment of the present invention, each of the first driving component and the second driving component includes a first driving member and a second driving member having the same structure, the first driving member is located above the second driving member, and both of the first driving member and the second driving member include a first positioning block, a first sliding block, a first driving motor and an L-shaped fixing plate, the first positioning block is provided with an installation notch matching with the first supporting block, the first positioning block is provided with an optical hole matching with the first installation hole, the L-shaped fixing plate is fixedly connected with the first positioning block, the first driving motor is fixedly connected with the L-shaped fixing plate through a bolt, the first positioning block is provided with a sliding slot for the first sliding block to slide, and the first sliding block is disposed in the sliding slot of the first positioning block.
In a preferred embodiment of the present invention, the first driving motor is vertically disposed upward, the output end of the first driving motor penetrates through the L-shaped fixing plate, and the end portion of the first driving motor is sleeved with a gear, the gear is horizontally disposed, the gear penetrates through the side wall of the first positioning block and is matched with the first sliding block, and a tooth socket engaged with the gear is disposed on one side of the sliding block close to the gear.
In a preferred embodiment of the present invention, the frame adjusting device includes a position-limiting component located in the first slider and a positioning plate for fixing the frame, the positioning plate is provided with a toggle component matching with the position-limiting component, the first slider is provided with a receiving groove for receiving the position-limiting component, the receiving groove is covered with a blocking plate, and the blocking plate is provided with a through groove for the toggle component to move.
In a preferred embodiment of the invention, the limiting assembly comprises a wave-shaped limiting block and a material clamping block matched with the limiting block, a spring is arranged on one side of the material clamping block, which is far away from the limiting block, one end of the spring is fixedly connected with the material clamping block, the other end of the spring is fixedly connected with the first sliding block, and a passageway through which the shifting part passes is arranged between the material clamping block and the limiting block.
In a preferred embodiment of the present invention, the blocking piece and the limiting block are made of rubber.
In a preferred embodiment of the invention, the positioning plate comprises a vertically arranged first baffle and a horizontally arranged second baffle, the second baffle is positioned at the top of the first baffle and is fixedly connected with the first baffle, the bottom of the second baffle is provided with a convex block which is in sliding fit with the top of the first slider, the toggle member is fixedly connected with the first baffle, the toggle member comprises a first connecting rod and a second connecting rod, the first connecting rod and the second connecting rod are arranged at intervals, one end of the first connecting rod and one end of the second connecting rod are fixedly connected with the first baffle, the other end of the first connecting rod and the other end of the second connecting rod both extend into the accommodating groove and are provided with rollers, and the rollers are connected with the limiting blocks and the material clamping blocks in a butting manner.
In a preferred embodiment of the present invention, a frame fixing plate is disposed at an end of the first baffle plate away from the first sliding block, the frame is connected to the frame fixing plate through a bolt, and the frame is an N-shaped plate vertically disposed.
The invention provides an installation method of an elevator door pocket capable of being adjusted at will by improvement, compared with the prior art, the invention has the following improvements and advantages: the elevator door protective device comprises an installation support, a frame, a first baffle plate, a poking piece, a gear, a first driving motor, a first baffle plate, a second driving motor, a second baffle plate, a first sliding block, a second sliding block, a first positioning block and a second positioning block.
Drawings
The invention is further explained below with reference to the figures and examples:
FIG. 1 is a first perspective view of the present invention;
FIG. 2 is a schematic perspective view of the present invention;
FIG. 3 is a partial perspective view of the present invention;
FIG. 4 is a schematic perspective view of a mounting bracket according to the present invention;
FIG. 5 is a schematic perspective view of the frame driving device according to the present invention;
FIG. 6 is a cross-sectional view of the frame drive of the present invention;
FIG. 7 is a schematic perspective view of the frame adjustment apparatus of the present invention;
FIG. 8 is a schematic perspective view of a positioning plate according to the present invention;
FIG. 9 is a schematic perspective view of a first slider according to the present invention;
FIG. 10 is an enlarged view of the present invention;
description of reference numerals:
the frame comprises a frame 1, a mounting bracket 2, a first supporting block 2a, a first mounting hole 2a1, a second supporting block 2b, a second mounting hole 2b1, a third supporting block 2c, a frame driving device 3, a first driving assembly 3a, a first driving member 3a1, a second driving member 3a2, a first positioning block 3a3, a first sliding block 3a4, a first driving motor 3a5, an L-shaped fixing plate 3a6, a mounting notch 3a7, a gear 3a8, a receiving groove 3a9, a second driving assembly 3b, a frame adjusting device 634, a limiting assembly 4a, a blocking plate 4a1, a limiting block 4a2, a clamping block 4a3, a spring 4a4, a frame fixing plate 4a5, a positioning plate 4b, a toggle piece 4b1, a first baffle 4b2, a second baffle 4b3, a lug 4b4, a first connecting rod 4b4, a connecting rod 7, a roller 599 b.
Detailed Description
The present invention will be described in detail with reference to fig. 1 to 10, and the technical solutions in the embodiments of the present invention will be clearly and completely described, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all 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.
The invention provides an installation method of an elevator door pocket capable of being adjusted at will by improvement, as shown in figures 1-10, the elevator door pocket comprises a frame 1, a mounting bracket 2, a frame driving device 3 mounted on the mounting bracket 2 and a frame adjusting device 4 for fixing the frame 1, the frame 1 is arranged beside the mounting bracket 2 and fixedly connected with the frame adjusting device 4 through bolts, the frame adjusting device 4 is arranged beside the frame driving device 3 and is in sliding fit with the frame driving device, the frame driving device 3 comprises a first driving component 3a mounted at the left side of the mounting bracket 2 and a second driving component 3b mounted at the right side of the mounting bracket 2, the first driving component 3a and the second driving component 3b are matched to drive the frame 1 to move along the width horizontal direction, the mounting bracket 2 is used for supporting and protecting an elevator door, the frame 1 is fixed on the frame adjusting device 4, the frame driving device 3 is arranged on the mounting support 2, the frame driving device 3 can drive the frame adjusting device 4 to horizontally move towards the mounting support 2, the frame adjusting device 4 horizontally moves to drive the frame 1 fixed on the frame adjusting device 4 to horizontally move, and the frame 1 is pushed to enable the frame adjusting device 4 to horizontally move on the frame driving device 3 along the length direction of the frame adjusting device so as to adjust the distance between the frame 1 and the mounting support 2.
The mounting bracket 2 comprises a first supporting block 2a, a second supporting block 2b and a third supporting block 2c, the first supporting block 2a and the second supporting block 2b are vertically and symmetrically arranged, the third supporting block 2c is horizontally arranged and the third supporting block 2c is located at the tops of the first supporting block 2a and the second supporting block 2b, the third supporting block 2c is hinged and matched with the first supporting block 2a and the second supporting block 2b through hinges, the cross sections of the first supporting block 2a and the second supporting block 2b and the vertical section of the third supporting block 2c are both U-shaped, the first supporting block 2a and the second supporting block 2b are used for supporting the third supporting block 2c, and the first supporting block 2a, the second supporting block 2b and the third supporting block 2c which are matched with each other are embedded in the wall body and used for supporting and fixing the frame driving device 3.
The first supporting block 2a is provided with a first mounting hole 2a1 for mounting the first driving assembly 3a, the second supporting block 2b is provided with a second mounting hole 2b1 for mounting the second driving assembly 3b, the axes of the first mounting hole 2a1 and the second mounting hole 2b1 are parallel, and the axes of the first mounting hole 2a1 and the second mounting hole 2b1 are parallel so as to ensure that the upper end surfaces of the first driving assembly 3a and the second driving assembly 3b are coplanar, and the frame 1 cannot be inclined when being mounted on the first driving assembly 3a and the second driving assembly 3 b.
The first driving assembly 3a and the second driving assembly 3b both include a first driving member 3a1 and a second driving member 3a2 with the same structure, the first driving member 3a1 is located above the second driving member 3a2 and both include a first positioning block 3a3, a first sliding block 3a4, a first driving motor 3a5 and an L-shaped fixing plate 3a6, the first positioning block 3a3 is provided with an installation notch 3a7 matched with the first supporting block 2a, the first positioning block 3a3 is provided with an optical aperture matched with the first installation hole 2a1, the L-shaped fixing plate 3a6 is fixedly connected with the first positioning block 3a3, the first driving motor 3a5 is fixedly connected with the L-shaped fixing plate 3a6 through a bolt, the first positioning block 3a3 is provided with a sliding slot for the first sliding block 3a4 to slide, the first sliding block 3a4 is arranged in the first positioning block 3a 3a 53926 of the first positioning block 3a4 and can slide in the sliding slot 4, the first positioning block 3a3 is fixed on the first supporting block 2a by passing the bolt through the unthreaded hole and the first mounting hole 2a1 in sequence, so that the first positioning block 3a3 is fixed on the first supporting block 2a, and the first driving piece 3a1 and the second driving piece 3a2 are used for fixing the frame 1.
The first driving motor 3a5 is vertically arranged upwards, the output end of the first driving motor 3a5 penetrates through the L-shaped fixing plate 3a6 and is sleeved with a gear 3a8 at the end, the gear 3a8 is horizontally arranged, the gear 3a8 penetrates through the side wall of the first positioning block 3a3 and is matched with the first sliding block 3a4, one side of the sliding block, which is close to the gear 3a8, is provided with a tooth groove engaged with the gear 3a8, the first driving motor 3a5 is connected with the L-shaped fixing plate 3a6 through a bolt, when the first sliding block 3a4 needs to be moved, the first driving motor 3a5 drives the gear 3a8 to rotate, and the gear 3a8 is engaged with the tooth groove on the first sliding block 3a4 to drive the first sliding block 4 to horizontally move in the first positioning block 3a3, so as to adjust the position of the first sliding block 3a4 on the first positioning block 3a3 to change the distance between the frame 1 and the mounting bracket 2.
The frame adjusting device 4 comprises a limiting component 4a located in the first sliding block 3a4 and a positioning plate 4b used for fixing the frame 1, a toggle component 4b1 matched with the limiting component 4a is arranged on the positioning plate 4b, an accommodating groove 3a9 used for accommodating the limiting component 4a is arranged in the first sliding block 3a4, a blocking plate 4a1 is covered above the accommodating groove 3a9, a through groove used for the toggle component 4b1 to move is formed in the blocking plate 4a1, the blocking plate 4a1 can be installed in the accommodating groove 3a9 in an embedded mode and seals the accommodating groove 3a9, and the through groove formed in the blocking plate 4a1 is used for the toggle component 4b1 to insert and plays a guiding role for the toggle component 4b 1.
The limiting assembly 4a comprises a wave-shaped limiting block 4a2 and a material clamping block 4a3 matched with the limiting block 4a2, a spring 4a4 is arranged on one side, away from the limiting block 4a2, of the material clamping block 4a3, one end of the spring 4a4 is fixedly connected with the material clamping block 4a3, the other end of the spring 4a4 is fixedly connected with the first sliding block 3a4, a passageway for the stirring piece 4b1 to pass through is arranged between the material clamping block 4a3 and the limiting block 4a2, the material clamping block 4a3 and the limiting block 4a2 are matched to limit and clamp the stirring piece 4b1, the wave-shaped limiting block 4a2 can prevent the stirring piece 4b1 from moving smoothly between the material clamping block 4a3 and the limiting block 4a2, and the stirring piece 4b1 can move between the material clamping block 4a3 and the limiting block 4a2 by manually adjusting the stirring piece 4b 1.
The clamping block 4a3 and the limiting block 4a2 are made of rubber, and the clamping block 4a3 and the limiting block 4a2 made of rubber are rich in elasticity, so that the roller 4b7 can move in a passageway formed by the clamping block 4a3 and the limiting block 4a2 under the action of large external force while the roller 4b7 is limited.
The positioning plate 4b comprises a first baffle plate 4b2 vertically arranged and a second baffle plate 4b3 horizontally arranged, the second baffle plate 4b3 is positioned at the top of the first baffle plate 4b2 and fixedly connected with the first baffle plate 4b2, the bottom of the second baffle plate 4b3 is provided with a projection 4b4 in sliding fit with the top of the first sliding block 3a4, the toggle piece 4b1 is fixedly connected with the first baffle plate 4b2, the toggle piece 4b1 comprises a first connecting rod 4b5 and a second connecting rod 4b6, the first connecting rod 4b5 and the second connecting rod 4b6 are arranged at intervals, one end of the first connecting rod 4b5 and one end of the second connecting rod 4b6 are fixedly connected with the first baffle plate 4b2, the other ends of the first connecting rod 4b5 and the second connecting rod 5 extend to the accommodating groove 3a5 and are provided with a retaining groove 4b5, the rollers 4b5 and the first baffle plate 5 are integrally formed by connecting with a stopper 4b5 and a retaining block 5, and a retaining block 5L 364 b5, the bump 4b4 at the bottom of the second baffle 4b3 is in sliding fit with the top of the first sliding block 3a4 to play a guiding role, the first baffle 4b2 is used for fixing the toggle piece 4b1, the first baffle 4b2 is pushed to enable the first connecting rod 4b5 and the second connecting rod 4b6 fixedly connected with the first baffle 4b2 to move horizontally in the accommodating groove 3a9, the roller 4b7 fixed on the first connecting rod 4b5 and the second connecting rod 4b6 passes through a passage formed between the limiting block 4a2 and the clamping block 4a3, and the limiting block 4a2 and the clamping block 4a3 limit and fix the roller 4b7 so that the roller 4b7 is limited in the passage formed by the limiting block 4a2 and the clamping block 4a 3.
One end, far away from first slider 3a4, of first baffle 4b2 is equipped with frame fixed plate 4a5, frame 1 and frame fixed plate 4a5 pass through bolted connection, and frame 1 is the N type board of vertical setting, and frame fixed plate 4a5 passes through bolt and first baffle 4b2 fixed connection, and frame 1 is fixed on frame fixed plate 4a 5.
The mounting step includes:
(1) embedding the mounting bracket 2 in a wall body, wherein a first driving component 3a is mounted on a first mounting hole 2a1 arranged on a first supporting block 2a, and a second driving component 3b is mounted on a second mounting hole 2b1 arranged on a second supporting block 2 b;
(2) the frame 1 is directly installed on a frame fixing plate 4a5 on a first baffle plate 4b2 through bolts, a first connecting rod 4b5 and a second connecting rod 4b6 which are fixedly connected with the first baffle plate 4b2 can horizontally move in an accommodating groove 3a9 by shifting the first baffle plate 4b2, and the distance between the frame and the installation bracket 2 can be changed by the movement of a roller 4b7 which is fixedly connected with the first connecting rod 4b5 and the second connecting rod 4b6 in a passageway formed between a limiting block 4a2 and a clamping block 4a 3;
(3) the gear 3a8 is driven to rotate by the first driving motor 3a5, the gear 3a8 is meshed with a tooth groove on the first sliding block 3a4 to drive the first sliding block 3a4 to horizontally move in the first positioning block 3a3, so that the position of the first sliding block 3a4 on the first positioning block 3a3 is adjusted to change the distance between the frame 1 and the mounting bracket 2, and when the size of the frame deviates, the deviation between the frame 1 and the mounting bracket 2 can be changed by shifting the first baffle 4b 2.
The invention can be directly installed after measuring the distance, and when the size has deviation, the deviation between the frame 1 and the installation bracket 2 can be changed by stirring the first baffle 4b2, thereby being convenient for installation and saving the working period.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (1)

1. The installation method of the elevator door pocket capable of being adjusted at will is characterized by comprising the following installation steps:
(1) embedding the mounting bracket (2) in a wall body, wherein a first driving component (3 a) is mounted on a first mounting hole (2 a 1) formed in a first supporting block (2 a), and a second driving component (3 b) is mounted on a second mounting hole (2 b 1) formed in a second supporting block (2 b);
(2) the frame (1) is directly installed on a frame fixing plate (4 a 5) on a first baffle plate (4 b 2) through bolts, a first connecting rod (4 b 5) and a second connecting rod (4 b 6) which are fixedly connected with the first baffle plate (4 b 2) can horizontally move in an accommodating groove (3 a 9) by poking the first baffle plate (4 b 2), and the distance between the frame and a mounting bracket (2) can be changed by the movement of a roller (4 b 7) which is fixedly connected with the first connecting rod (4 b 5) and the second connecting rod (4 b 6) in a passageway formed between a limiting block (4 a 2) and a clamping block (4 a 3);
(3) the gear (3 a 8) is driven to rotate by a first driving motor (3 a 5), the gear (3 a 8) is meshed with a tooth groove on the first sliding block (3 a 4) to drive the first sliding block (3 a 4) to horizontally move in the first positioning block (3 a 3), so that the position of the first sliding block (3 a 4) on the first positioning block (3 a 3) is adjusted to change the distance between the frame (1) and the mounting bracket (2), and when the size of the frame deviates, the first baffle (4 b 2) is shifted to change the deviation between the frame (1) and the mounting bracket (2);
the elevator door pocket comprises a frame (1), a mounting bracket (2), a frame driving device (3) arranged on the mounting bracket (2) and a frame adjusting device (4) used for fixing the frame (1), wherein the frame (1) is located beside the mounting bracket (2) and fixedly connected with the frame adjusting device (4) through a bolt, the frame adjusting device (4) is located beside the frame driving device (3) and in sliding fit with the frame driving device, the frame driving device (3) comprises a first driving component (3 a) arranged on the left side of the mounting bracket (2) and a second driving component (3 b) arranged on the right side of the mounting bracket (2), and the first driving component (3 a) and the second driving component (3 b) are matched with each other and can drive the frame (1) to move along the width horizontal direction;
the mounting bracket (2) comprises a first supporting block (2 a), a second supporting block (2 b) and a third supporting block (2 c), the first supporting block (2 a) and the second supporting block (2 b) are vertically and symmetrically arranged, the third supporting block (2 c) is horizontally arranged, the third supporting block (2 c) is located at the tops of the first supporting block (2 a) and the second supporting block (2 b), the third supporting block (2 c) is hinged and matched with the first supporting block (2 a) and the second supporting block (2 b) through hinges, and the cross sections of the first supporting block (2 a) and the second supporting block (2 b) and the vertical cross section of the third supporting block (2 c) are U-shaped;
a first mounting hole (2 a 1) for mounting a first driving component (3 a) is formed in the first supporting block (2 a), a second mounting hole (2 b 1) for mounting a second driving component (3 b) is formed in the second supporting block (2 b), and the axes of the first mounting hole (2 a 1) and the second mounting hole (2 b 1) are parallel;
the first driving assembly (3 a) and the second driving assembly (3 b) both comprise a first driving piece (3 a 1) and a second driving piece (3 a 2) which are identical in structure, the first driving piece (3 a 1) is positioned above the second driving piece (3 a 2) and both comprise a first positioning block (3 a 3), a first sliding block (3 a 4), a first driving motor (3 a 5) and an L-shaped fixing plate (3 a 6), the first positioning block (3 a 3) is provided with an installation notch (3 a 7) matched with the first supporting block (2 a), the first positioning block (3 a 3) is provided with a light hole matched with the first installation hole (2 a 1), the L-shaped fixing plate (3 a 6) is fixedly connected with the first positioning block (3 a 3), the first driving motor (3 a 5) is fixedly connected with the L-shaped fixing plate (3 a 6) through a bolt, and the first positioning block (3 a 4) is provided with a sliding chute (3), the first sliding block (3 a 4) is arranged in the sliding groove of the first positioning block (3 a 3);
the first driving motor (3 a 5) is vertically arranged upwards, the output end of the first driving motor (3 a 5) penetrates through the L-shaped fixing plate (3 a 6) and is sleeved with a gear (3 a 8) at the end part of the L-shaped fixing plate, the gear (3 a 8) is horizontally arranged, the gear (3 a 8) penetrates through the side wall of the first positioning block (3 a 3) and is matched with the first sliding block (3 a 4), and a tooth groove meshed with the gear (3 a 8) is formed in one side of the sliding block, close to the gear (3 a 8);
the frame adjusting device (4) comprises a limiting component (4 a) positioned in a first sliding block (3 a 4) and a positioning plate (4 b) used for fixing the frame (1), wherein a stirring component (4 b 1) matched with the limiting component (4 a) is arranged on the positioning plate (4 b), an accommodating groove (3 a 9) used for accommodating the limiting component (4 a) is formed in the first sliding block (3 a 4), a blocking plate (4 a 1) is covered above the accommodating groove (3 a 9), and a through groove for the stirring component (4 b 1) to move is formed in the blocking plate (4 a 1);
the limiting assembly (4 a) comprises a wave-shaped limiting block (4 a 2) and a clamping block (4 a 3) matched with the limiting block (4 a 2), a spring (4 a 4) is arranged on one side, away from the limiting block (4 a 2), of the clamping block (4 a 3), one end of the spring (4 a 4) is fixedly connected with the clamping block (4 a 3), the other end of the spring (4 a 4) is fixedly connected with a first sliding block (3 a 4), and a passageway for a toggle piece (4 b 1) to pass through is formed between the clamping block (4 a 3) and the limiting block (4 a 2);
the positioning plate (4 b) comprises a first baffle plate (4 b 2) and a second baffle plate (4 b 3) which is arranged vertically, the second baffle plate (4 b 3) is positioned at the top of the first baffle plate (4 b 2) and fixedly connected with the first baffle plate (4 b 2), a lug (4 b 4) which is in sliding fit with the top of a first sliding block (3 a 4) is arranged at the bottom of the second baffle plate (4 b 3), a stirring piece (4 b 1) is fixedly connected with the first baffle plate (4 b 2), the stirring piece (4 b 1) comprises a first connecting rod (4 b 5) and a second connecting rod (4 b 6), the first connecting rod (4 b 5) and the second connecting rod (4 b 6) are arranged at intervals, one end of each of the first connecting rod (4 b 5) and the second connecting rod (4 b 6) is fixedly connected with the first baffle plate (4 b 2), and the other end of each of the first connecting rod (4 b 5) and each of each second connecting rod (4 b 465) extends to the corresponding roller (5734 b 9 a holding groove (5734 b 583 a), the roller (4 b 7) is connected with the limiting block (4 a 2) and the clamping block (4 a 3) in an abutting mode, a frame fixing plate (4 a 5) is arranged at one end, away from the first sliding block (3 a 4), of the first baffle (4 b 2), the frame (1) is connected with the frame fixing plate (4 a 5) through bolts, and the frame (1) is an N-shaped plate which is vertically arranged.
CN201810487201.7A 2018-05-21 2018-05-21 Installation method of elevator door pocket capable of being adjusted at will Active CN108584643B (en)

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19653232C2 (en) * 1996-12-20 2001-08-16 Bernhard Dorsch Device for adjusting door frames
CN2654761Y (en) * 2003-07-26 2004-11-10 东营德达家具装饰有限公司 Door pocket installing former
CN107902591A (en) * 2017-12-27 2018-04-13 中国核工业二四建设有限公司 A kind of nuclear power plant shields door frame mounting tool

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0826641A (en) * 1994-07-18 1996-01-30 Hitachi Building Syst Eng & Service Co Ltd Installation device for elevator doorway parts

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19653232C2 (en) * 1996-12-20 2001-08-16 Bernhard Dorsch Device for adjusting door frames
CN2654761Y (en) * 2003-07-26 2004-11-10 东营德达家具装饰有限公司 Door pocket installing former
CN107902591A (en) * 2017-12-27 2018-04-13 中国核工业二四建设有限公司 A kind of nuclear power plant shields door frame mounting tool

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