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Elevator skeleton and corridor structure and its installation method

A skeleton and corridor technology, applied to elevators in buildings, building construction, transportation and packaging, etc., can solve the problems of low structural strength, low connection precision, low construction efficiency, etc., and achieve high support reliability and connection Structural stability and the effect of improving bearing capacity

Active Publication Date: 2018-11-02
惠州市惠发电梯工程有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] In order to solve the technical problems of low construction efficiency, low connection precision, and low structural strength in the construction of the elevator frame and corridor structure in the prior art, the present invention aims to provide an elevator frame and connection with reliable connection, high precision, and short installation period. corridor structure

Method used

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  • Elevator skeleton and corridor structure and its installation method
  • Elevator skeleton and corridor structure and its installation method
  • Elevator skeleton and corridor structure and its installation method

Examples

Experimental program
Comparison scheme
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Embodiment 1

[0045] Such as Figure 1-5 As shown, this embodiment provides an elevator frame and corridor structure, including: elevator frame: including longitudinal H-shaped steel and transverse H-shaped steel, the longitudinal H-shaped steel includes a longitudinal web 101 and two longitudinal wings 102 parallel to each other, two A longitudinal web 102 is connected by a longitudinal web 101, and the longitudinal web 101 is vertically arranged between two longitudinal webs 102; the transverse H-shaped steel includes a transverse web 201 and two transverse webs 202 parallel to each other, and the two transverse Flanges 202 are connected by transverse webs 201, and transverse webs 201 are vertically arranged between two transverse webs 202, and transverse webs 201 are provided with web through holes; mounting plate: includes wing plate mounting plate 301 and web installation Plate 302, the wing plate mounting plate 301 is vertically connected to the outer surface of the longitudinal wing ...

Embodiment 2

[0055] This embodiment provides an elevator frame and corridor structure, including: elevator frame: including longitudinal H-shaped steel and transverse H-shaped steel, the longitudinal H-shaped steel includes a longitudinal web 101 and two longitudinal wing plates 102 parallel to each other, and two longitudinal wing plates The plates 102 are connected by a longitudinal web 101, which is vertically arranged between two longitudinal wings 102; the transverse H-shaped steel includes a transverse web 201 and two parallel transverse wings 202, and the two transverse wings 202 Connected by a transverse web 201, the transverse web 201 is vertically arranged between two transverse wing plates 202, and the transverse web 201 is provided with a web through hole; the mounting plate: includes a wing plate mounting plate 301 and a web mounting plate 302, The wing plate mounting plate 301 is vertically connected to the outer side of the longitudinal wing plate 102, and the wing plate moun...

Embodiment 3

[0057]This embodiment provides an elevator frame and corridor structure, including: elevator frame: including longitudinal H-shaped steel and transverse H-shaped steel, the longitudinal H-shaped steel includes a longitudinal web 101 and two longitudinal wing plates 102 parallel to each other, and two longitudinal wing plates The plates 102 are connected by a longitudinal web 101, which is vertically arranged between two longitudinal wings 102; the transverse H-shaped steel includes a transverse web 201 and two parallel transverse wings 202, and the two transverse wings 202 Connected by a transverse web 201, the transverse web 201 is vertically arranged between two transverse wing plates 202, and the transverse web 201 is provided with a web through hole; the mounting plate: includes a wing plate mounting plate 301 and a web mounting plate 302, The wing plate mounting plate 301 is vertically connected to the outer side of the longitudinal wing plate 102, and the wing plate mount...

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Abstract

The invention discloses an elevator frame and corridor structure, comprising: an elevator frame: including longitudinal H-shaped steel and transverse H-shaped steel, a mounting plate: including a wing plate mounting plate and a web plate mounting plate, the wing plate mounting plate and the outer side of the longitudinal wing plate Vertically connected, the flange mounting plate is provided with a first mounting hole corresponding to the through hole of the web, the flange mounting plate is connected with the transverse web by bolts; the web mounting plate is vertically connected with the longitudinal web, and the web mounting plate is connected with the web The second installation hole is correspondingly provided at the through hole, and the web mounting plate is connected with the transverse web bolts; the bottom frame of the corridor: includes a rectangular frame, and the rectangular frame includes a right side plate, a front side plate, and a left side plate connected end to end to form a rectangle in sequence. Board and rear side panel; corridor body: fixedly connected above the rectangular frame; connector: used to connect the bottom frame of the corridor and the elevator skeleton; the connection between the elevator skeleton and the corridor structure of the present invention is reliable, high in precision, and short in installation period.

Description

technical field [0001] The invention relates to a connection structure, in particular to an elevator frame and corridor structure and an installation method thereof. Background technique [0002] Elevator is mainly composed of traction machine (winch), guide rail, counterweight device, safety device (such as speed limiter, safety gear and buffer, etc.), signal control system, car and hall door, etc. These parts are respectively installed in the hoistway and machine room of the building. Steel wire rope friction transmission is usually used. The wire rope goes around the traction sheave, and the two ends are respectively connected to the car and the counterweight. The motor drives the traction sheave to lift the car up and down. With the popularity of automation equipment, elevators are widely used in life and production. [0003] Before the installation of the lift elevator, it is necessary to build the elevator frame, and the function of the lift elevator depends on the f...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B66B11/00E04B1/00E04B1/38
CPCE04B1/0046B66B11/00E04B1/388
Inventor 杨光星杨柳强
Owner 惠州市惠发电梯工程有限公司