CN102627205A - Elevator car and counterweight automatic balancing energy-saving device with auxiliary counterweight, and control system - Google Patents
Elevator car and counterweight automatic balancing energy-saving device with auxiliary counterweight, and control system Download PDFInfo
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- CN102627205A CN102627205A CN2012101086250A CN201210108625A CN102627205A CN 102627205 A CN102627205 A CN 102627205A CN 2012101086250 A CN2012101086250 A CN 2012101086250A CN 201210108625 A CN201210108625 A CN 201210108625A CN 102627205 A CN102627205 A CN 102627205A
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Abstract
The invention belongs to the technical field of energy saving of an elevator and particularly relates to an elevator car and counterweight automatic balancing energy-saving device with auxiliary counterweights. The energy-saving device comprises a counterweight side weight sensor, an elevator car side weight sensor, a traction braking and fixed pulley combiner, a traction steel wire rope fixed pulley, a fixed auxiliary counterweight steel wire rope, a traction steel wire rope, auxiliary counterweights, a traction manipulator, a guide rail, a control system and the like. When an elevator answers a calling signal to ascend or descend and the load in the elevator car is dynamically changed, the energy-saving device enables the elevator car to automatically hook or unload the auxiliary counterweight according to information of the difference between the weights measured by an elevator weight sensor at the elevator car side and the counterweight side, so that the balance of forces at two sides of a traction wheel is achieved; and the loading capacity at a balance point is generally set as 50 percent of the rated loading capacity. With adoption of the energy-saving device, only when the load of the elevator car exceeds the balance point, does the elevator need to be driven with energy consumption; and when the load is below the balance point, the elevator only needs to overcome friction of the steel wire rope and consumes extremely low energy, and the energy-saving effect is remarkable.
Description
Technical field
The invention belongs to the elevator energy-saving technical field, be specifically related to a kind of vertical lift energy saving in running device and control system.
Background technology
The energy consumption of vertical lift (hereinafter to be referred as " elevator ") mainly is made up of four aspects: traction system, electric control system, cage illumination and ventilation system, door mechanism system, wherein the energy consumption of traction driving has accounted for the overwhelming majority wherein (being generally 70% to 80%).
The type of drive of vertical lift has multiple, existing most popular be that traction drives.
The load-carrying capacity of elevator is by fully loaded Demand Design.But in service up and down, full-load run is not the normality of elevator operation, underloading even unloaded real normality for the elevator operation.Therefore the rated load function of elevator design is often by emptying.The design of this big amount of redundancy has caused elevator traction to drive the waste of energy.
Summary of the invention
The object of the present invention is to provide a kind of energy saver and control system that can reduce the elevator operation energy consumption.
The perfect condition that elevator traction drives is heavy side to be kept in balance with the weight of cage side equate, is not considering that towing machine only need overcome the traction friction drag and just can easily move under the prerequisite that the traction steel-cable deadweight changes, and it is minimum that traction this moment drives energy consumption.
Based on this thinking; The present invention increases by a covering device in the overall structure of elevator; Make elevator its weight when different loads moves up and down remain dynamic balance state to heavy side and cage side; Let traction motor only need all the time overcoming the utmost point low energy consumption work of steel rope friction force, thereby realize the purpose of elevator energy-saving.
Principle of work of apparatus of the present invention and elevator structure scheme drawing are seen shown in Fig. 5-Fig. 9.
Design-calculated elevator energy saving in running device of the present invention comprises: counterweight check weighing quantity sensor 5, car check weighing quantity sensor 6; Traction braking and fixed pulley combiner (normally closed) 7, haulage cable fixed pulley 8, fixed joint counterweight steel rope 9; Haulage cable 10, secondary counterweight 11, pair of traction hand 12; Secondary counterweight long guideway 13, secondary counterweight short lead rail 14; Wherein, counterweight check weighing quantity sensor 5 is arranged on the counterweight of elevator, is used to measure the weight of counterweight; Car check weighing quantity sensor 6 is arranged on the car of elevator, is used to measure the weight of car;
Said traction braking and fixed pulley combiner (7) comprise two parts of drg of fixed pulley and this fixed pulley; Traction braking and fixed pulley combiner 7 are installed in the well enclosure top of car 4 both sides, and haulage cable fixed pulley 8 is installed in the well enclosure bottom of car 4 both sides; Corresponding to a secondary counterweight, left and right 2 same traction brakings and fixed pulley combiner 7 and 2 same haulage cable fixed pulleys 8 are arranged, be divided into the both sides of a secondary counterweight; Wherein, each traction braking and fixed pulley combiner 7 are provided with inboard and 2 fixed pulleys in the outside, and each haulage cable fixed pulley 8 also is provided with inboard and 2 fixed pulleys in the outside; Fixed joint counterweight steel rope 9 also has 2; Respectively around the fixed pulley in the outside of left and right two traction brakings and fixed pulley combiner 7; And the fixed pulley in the outside of left and right two haulage cable fixed pulleys 8; Two ends are connected with the bottom with the top of secondary counterweight 11 and arranged on left and right sides respectively, form the closed loop moving mechanism of one group of secondary counterweight, are used to locate the locus with fixed joint counterweight 11; Haulage cable 10 also has 2; Respectively around the fixed pulley of the inboard of left and right two traction brakings and fixed pulley combiner 7; And the fixed pulley of the inboard of left and right two haulage cable fixed pulleys 8; Surround 2 closed circuit, cooperate pair of traction hand 12 to connect or action of releasing, draw secondary counterweight 11 and move up and down.Specifically see Fig. 6, Fig. 7, shown in Figure 8.
Secondary counterweight is participated in counterweight and car load gravitational equilibrium, and it moves up and down and self need not power.It is affiliated on car through traction hand 12, perhaps unloads from car, specifically; Traction hand 12 is arranged on the car, and traction hand 12 connects haulage cable 10, realizes being affiliated to of secondary counterweight and car; Traction hand 12 unclamps haulage cable 10, realizes the unloading of secondary counterweight and car; The connection of traction hand 12 and action of releasing submit to car and the instruction of counterweight dynamical equilibrium that device is accepted; Wherein, two traction hand 12-1 are responsible for controlling a side-lining steel rope, guarantee the equidirectional motion of secondary counterweight and car, and promptly positive dirction is used; Two other traction hand 12-2 is responsible for control opposite side haulage cable, guarantees the motion of secondary counterweight and car reversing sense, and promptly negative direction is used.When actual loading weight in the bottom car surpass rated weight 50% the time, secondary counterweight 11 is the negative direction use.
Among the present invention, energy saver also is provided with control system, is used to control the action of each parts of energy saver.
The present invention installs car and the dynamic auto balance energy-saving apparatus of counterweight (being called for short " energy saver ") that a cover is a characteristic with four groups of additional counterweights (secondary counterweight) on the well enclosure of lift car both sides, each organizes the installation region of secondary counterweight respectively for independent.When elevator is being replied calling signal upstream or downstream and car internal burden when being dynamic change; Sedan-chair case side that energy saver records according to the elevator weight sensor and information to heavy side both sides weight difference; Make the sedan-chair case be affiliated to or unload secondary counterweight automatically, to reach traction sheave both sides equilibrium of forces; The equilibrium point load carrying ability generally is made as 50% of nominal payload.The pairing elevator drive energy consumption of the variation of car load and potential energy thereof has nothing in common with each other; Fig. 1, Fig. 2 have described elevator respectively intuitively at the driving efficiency change curve that this energy saver front and back are installed; Visible from the curve, equilibrium point is positioned on the point of crossing of car uplink and downlink, is only installing behind this energy saver when car load during above equilibrium point; Elevator just need drive power consumption; And below equilibrium point, the utmost point low energy consumption that the elevator operation only need overcome the steel rope friction force gets final product, and energy-saving effect is fairly obvious.
Elevator energy efficiency diagram of curves ordinate representes that I (A), abscissa represent weight W (Kg), and Fig. 1 has described alternating current dynamo stator current, the curve of loads that energy saver is not installed, and Fig. 2 has described alternating current dynamo stator current, the curve of loads that energy saver is installed.
An important feature of this energy saver is: participate in counterweight and car load gravitational equilibrium " secondary counterweight "
It moves up and down and self need not power.It is affiliated on car through the traction hand or unloads, and the motive force or the gravity of self that rely on traction to give make progress and the downward counterbalance effect that produces.This energy saver is a master, inferior relation with the overall structure of existing elevator, is additional and can separate an at any time relation.
Description of drawings
Fig. 1 elevator energy efficiency diagram of curves (alternating current dynamo stator current, the curve of loads of energy saver are not installed).
Fig. 2 elevator energy efficiency diagram of curves (alternating current dynamo stator current, the curve of loads of energy saver are installed).
The elevator device of Fig. 3 self-equalizing energy saver of the present invention is formed scheme drawing.
Fig. 4 self-equalizing energy saver of the present invention workflow diagram.
Fig. 5 vertical lift common mechanical schematic diagram.
Fig. 6 energy saver mechanical schematic diagram of the present invention.
Fig. 7 energy saver mechanical schematic diagram A to.
The secondary counterweight configuration of Fig. 8 elevator mechanical schematic diagram B to.
The secondary counterweight of Fig. 9 elevator move up and down mechanical schematic diagram C to.
Label among the figure: 1 traction sheave, 2 traction steel-cables, 3 counterweights, 4 cars; 5 counterweights stress quantity sensor, 6 cage side weight sensors, 7 traction brakings and fixed pulley combiner (normally closed), 8 haulage cable fixed pulleys; 9 fixed joint counterweight steel ropes, 10 haulage cables, 11 secondary counterweights; 12 traction hands, 13 long guideways, 14 short lead rail.
The specific embodiment
1, apparatus of the present invention major part function introduction
Being affiliated to or unloading of elevator secondary counterweight in service connected or the action of unclamping 10 haulage cables realizes by 12 traction hands in the energy saver, and the action of traction hand submits to the car that energy saver accepts and instructs with the counterweight dynamical equilibrium.Two tractions of 12-1 hand is responsible for controlling inboard steel rope, guarantees the equidirectional motion of secondary counterweight and car, and promptly positive dirction is used; 12-2 two traction hands are responsible for control outside steel rope, guarantee the motion of secondary counterweight and car reversing sense, and promptly negative direction is used.When actual loading weight in the bottom car surpass rated weight 50% the time, secondary counterweight 11 is the negative direction use.
Unloaded car needs down at top layer, and this moment, the weight difference of traction sheave both sides was maximum, and power consumption is maximum, and secondary counterweight uses along positive dirction.
Fully loaded car needs up at bottom, and this moment, the weight difference of traction sheave both sides was also maximum, and power consumption is also maximum, and secondary counterweight uses along negative direction.
Parts traction braking and fixed pulley combiner 7 and haulage cable fixed pulley 8 and secondary counterweight 11, fixed joint counterweight steel rope 9 are formed the closed loop moving mechanism of one group of secondary counterweight.
Do not have slide relative between steel rope and the pulley, the steel rope that draws secondary counterweight is receiving action of gravity down the time, the locus that keeps secondary counterweight by the braking of the traction braking device in traction braking and the fixed pulley combiner 7.
Traction braking and fixed pulley combiner 7 play two effects with haulage cable fixed pulley 8.Fixed joint counterweight steel rope 9 is used for fixing and locating pair counterweight 11, and haulage cable 10 is drawn by traction hand 12, and the friction force that produces during traction drives secondary to the upper and lower motion of recast.
The upper and lower motion of secondary counterweight is realized that by rope traction the secondary counterweight planar slip location of X, Y direction is realized by long guideway 13, short lead rail 14.
Shown in Figure 4 is lift car and the counterweight self-equalizing energy saver workflow diagram that adopts secondary counterweight.
2, the configuration of secondary counterweight
Counterweight on the counterweight frame has satisfied the design demand of nominal load, and its weight is not changed.Energy saver just is affiliated to the action of secondary counterweight and the secondary counterweight of unloading during the elevator operation to cage side, to reach the energy-conservation purpose of traction sheave both sides weight balancing.
3, the energy saver operation logic specifies
Common vertical lift mechanical schematic diagram is as shown in Figure 5, in the both sides of traction sheave 1, is hanging counterweight 3 and car 4 respectively by traction steel-cable 2, and under the rotation of traction sheave, elevator is made upper and lower perpendicular movement.
Energy saver of the present invention is installed on the well enclosure of lift car both sides.After energy saver is installed, carry out operating analysis according to zero load, semi-load and fully loaded three kinds of extremities.Energy saver also is provided with control system, the action of each parts of control energy saver.The block diagram of control system is as shown in Figure 4.
The control system of energy saver, and the tracing analysis of motor stator electric current and load is following:
Uplink:
A, elevator zero load and car are in the base station, and to focusing on top layer, cage side weight is lighter than the counterweight side.Elevator is as accepting upwards instruction; Two groups pair is to focusing on bottom; Then 2 tractions of control system control hand 12-1 connects with paired secondary counterweight, and the traction braking of open auxiliary counterweight and fixed pulley combiner 7 are affiliated to car and are made upward movement then; Secondary counterweight gravity is superimposed to cage side, makes traction sheave two stress force balance.Ascending for elevator, actual measurement load current equilibrium point electric current basically identical just and on the efficiency diagram of curves.
B, elevator semi-load and car are in the base station, and to focusing on top layer, cage side weight just equals heavy side.Do not need pair recast to be affiliated to action, traction sheave both sides gravitational equilibrium.Ascending for elevator, actual measurement load current just with the efficiency diagram of curves on the equilibrium point electric current consistent.
Fully loaded and the car of C, elevator is in the base station, and to focusing on top layer, cage side weight is greater than to heavy side.Two groups pair is to focusing on top layer, then control system control in addition 2 traction hand 12-2 and paired secondary counterweight by connecting, the traction braking of open auxiliary counterweight and fixed pulley combiner 7 then, pair is moved to the recast negative direction, makes traction sheave both sides gravitational equilibrium.Ascending for elevator, actual measurement load current just with the efficiency diagram of curves on the equilibrium point electric current consistent.
Downlink:
A, the unloaded car of elevator are at top layer, and to focusing on the base station, cage side weight is lighter than the counterweight side.Two groups pair is to focusing on top layer, and then 2 12-1 tractions of control system control hands and paired secondary counterweight be by connecting, the traction braking of open auxiliary counterweight and fixed pulley combiner 7 then, and secondary counterweight gravity is superimposed to cage side, makes traction sheave two stress force balance.Elevator down, the actual measurement load current just with the efficiency diagram of curves on the equilibrium point electric current consistent.
B, elevator car semi-load are at top layer, and to focusing on bottom, cage side weight just equals heavy side.Traction sheave both sides gravity is balance just in time, and energy saver is failure to actuate.Elevator down, the actual measurement load current just with the efficiency diagram of curves on the equilibrium point electric current consistent.
C, the fully loaded car of elevator are at top layer, and to focusing on bottom, cage side weight is greater than the favourable reduction elevator drive of heavy side is consumed energy.Elevator down, energy saver is failure to actuate.Elevator down, do load current measure with the efficiency diagram of curves on to be reflected as current value consistent, be lower than equilibrium point.
In the said process, the size of car weight, counterweight weight is recorded by each self-corresponding weight sensor, and the position of secondary counterweight is recorded by secondary counterweight position transduser; And by its weight difference of control system calculating; Simultaneously, control system is judged car position, sends secondary counterweight and is affiliated to or unloading command; And control the switch that draws hand and implement concrete operations, control the brake switch of traction braking and fixed pulley combiner simultaneously.
When elevator is stopped stop in the way up or down; Weight sensor finds that load changes in the car, and the control system of this energy saver determines secondary to the recast forward or negative sense is affiliated to or discharged action (path from the base station to the top layer or top layer to the base station) immediately.
Claims (2)
1. a lift car and a counterweight self-equalizing energy saver that adopts secondary counterweight is characterized in that comprising: counterweight check weighing quantity sensor (5), car check weighing quantity sensor (6); Traction braking and fixed pulley combiner (7), haulage cable fixed pulley (8), fixed joint counterweight steel rope (9); Haulage cable (10), secondary counterweight (11), pair of traction hand (12); Long guideway (13), short lead rail (14), and control system; Wherein, counterweight check weighing quantity sensor (5) is arranged on the counterweight of elevator, is used to measure the weight of counterweight; Car check weighing quantity sensor (6) is arranged on the car of elevator, is used to measure the weight of car;
Said secondary counterweight (11) is used for the car (4) of balance traction sheave (1) both sides and the weight difference of counterweight (3); One cover energy saver is provided with four groups of secondary counterweights (11), through long guideway (13) and short lead rail (14), is installed on the well enclosure of car (4) both sides two groups of every sides respectively; Wherein, long guideway (13) is fixed on the well enclosure, and short lead rail (14) is fixed on the secondary counterweight (11), and long guideway (13) length is corresponding to well enclosure length, and short lead rail (14) length is corresponding to secondary counterweight (11) length; Through the channel suspending rail sliding block joint, make secondary counterweight (11) between long guideway (13) and the short lead rail (14) along the channel suspending rail up-and-down movement; So zone before and after the mounting guide rail of car has been divided into the elevator hoistways wall is each one group of counterweight (11) of zone before and after every side; Secondary counterweight (11) is provided with secondary counterweight position transduser, is used to measure the location status of secondary counterweight;
Said traction braking and fixed pulley combiner (7) comprise two parts of drg of fixed pulley and this fixed pulley; Traction braking and fixed pulley combiner (7) are installed in the well enclosure top of car (4) both sides, and haulage cable fixed pulley (8) is installed in the well enclosure bottom of car (4) both sides; Corresponding to a secondary counterweight, left and right 2 same traction brakings and fixed pulley combiner (7) and 2 same haulage cable fixed pulleys (8) are arranged, be divided into the both sides of a secondary counterweight; Wherein, each traction braking and fixed pulley combiner (7) are provided with inboard and 2 fixed pulleys in the outside, and each haulage cable fixed pulley (8) also is provided with inboard and 2 fixed pulleys in the outside; Fixed joint counterweight steel rope (9) also has 2; Respectively around the fixed pulley in the outside of left and right two traction brakings and fixed pulley combiner (7); And the fixed pulley in the outside of left and right two haulage cable fixed pulleys (8); Two ends are connected with the bottom with the top of secondary counterweight (11) and arranged on left and right sides respectively, form the closed loop moving mechanism of one group of secondary counterweight, are used for the locus of location and fixed joint counterweight (11); Haulage cable (10) also has 2; Respectively around the fixed pulley of the inboard of left and right two traction brakings and fixed pulley combiner (7); And the fixed pulley of the inboard of left and right two haulage cable fixed pulleys (8); Surround 2 closed circuit, cooperate pair of traction hand (12) to connect or action of releasing, draw secondary counterweight (11) and move up and down;
Secondary counterweight (11) also is provided with secondary counterweight position transduser, is used to measure the locus of secondary counterweight (11);
Secondary counterweight is participated in counterweight and car load gravitational equilibrium, is affiliated on car through traction hand (12), perhaps unloads from car, the concrete realization;
Wherein, traction hand (12) is arranged on the car, and traction hand (12) connects haulage cable (10), realizes being affiliated to of secondary counterweight and car, and traction hand (12) unclamps haulage cable (10), realizes the unloading of secondary counterweight and car; The connection of traction hand (12) and action of releasing submit to car and the instruction of counterweight dynamical equilibrium that device is accepted; Wherein, two traction hands are responsible for controlling a side-lining steel rope, guarantee the equidirectional motion of secondary counterweight and car, and promptly positive dirction is used; Two other traction hand is responsible for controlling other side-lining steel rope, guarantees the motion of secondary counterweight and car reversing sense, and promptly negative direction is used; When actual loading weight in the bottom car surpass rated weight 50% the time, secondary counterweight (11) is the negative direction use;
Said control system is used to control the action of energy saver.
2. energy saver according to claim 1 is characterized in that said control system, and is specific as follows:
Uplink:
A, elevator zero load and car are in the base station, and to focusing on top layer, cage side weight is lighter than the counterweight side; Elevator is as accepting upwards instruction; Two groups pair is to focusing on bottom; Then 2 tractions of energy saver control system control hand connects with paired secondary counterweight, and the traction braking of open auxiliary counterweight and fixed pulley combiner are affiliated to car and are made upward movement then; Secondary counterweight gravity is superimposed to cage side, makes traction sheave two stress force balance;
B, elevator semi-load and car are in the base station, and to focusing on top layer, cage side weight just equals heavy side; Do not need pair recast to be affiliated to action, traction sheave both sides gravitational equilibrium;
Fully loaded and the car of C, elevator is in the base station, and to focusing on top layer, cage side weight is greater than to heavy side; Two groups pair is to focusing on top layer, and then control system is controlled other 2 traction hands and connected with paired secondary counterweight, the traction braking of open auxiliary counterweight and fixed pulley combiner then, and pair is moved to the recast negative direction, makes traction sheave both sides gravitational equilibrium;
Downlink:
A, the unloaded car of elevator are at top layer, and to focusing on the base station, cage side weight is lighter than the counterweight side; Two groups pair is to focusing on top layer, and then 2 tractions of control system control hands and paired secondary counterweight be by connecting, the traction braking of open auxiliary counterweight and fixed pulley combiner then, and secondary counterweight gravity is superimposed to cage side, makes traction sheave two stress force balance;
B, elevator car semi-load are at top layer, and to focusing on bottom, cage side weight just equals heavy side; Traction sheave both sides gravity is balance just in time, and energy saver is failure to actuate;
C, the fully loaded car of elevator are at top layer, and to focusing on bottom, cage side weight is greater than the favourable reduction elevator drive of heavy side is consumed energy; Elevator down, energy saver is failure to actuate;
In the said process, the size of car weight, counterweight weight is recorded by each self-corresponding weight sensor, and the position of secondary counterweight is recorded by secondary counterweight position transduser; And by its weight difference of control system calculating; Simultaneously, control system is judged car position, sends secondary counterweight and is affiliated to or unloading command; And control the switch that draws hand and implement concrete operations, control the brake switch of traction braking and fixed pulley combiner simultaneously.
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CN201210108625.0A CN102627205B (en) | 2012-04-15 | 2012-04-15 | Elevator car and counterweight automatic balancing energy-saving device with auxiliary counterweight, and control system |
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CN201210108625.0A CN102627205B (en) | 2012-04-15 | 2012-04-15 | Elevator car and counterweight automatic balancing energy-saving device with auxiliary counterweight, and control system |
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Cited By (9)
Publication number | Priority date | Publication date | Assignee | Title |
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CN103332567A (en) * | 2013-07-09 | 2013-10-02 | 国核电力规划设计研究院 | Auxiliary weight balancing device for elevator energy saving and potential energy recovery |
CN104044980A (en) * | 2014-06-13 | 2014-09-17 | 吴家集 | Automatic balancing mechanism of traction machine |
CN104071673A (en) * | 2014-07-04 | 2014-10-01 | 江南大学 | Energy conservation design method for elevator balance weight |
CN105084138A (en) * | 2015-06-12 | 2015-11-25 | 郭今戈 | Method, system and device for improving operation efficiency and energy saving performance of elevator |
CN105883521A (en) * | 2016-04-28 | 2016-08-24 | 广州日滨科技发展有限公司 | Elevator capable of supporting self-rescuing in car and working method thereof, and elevator mounting structure |
CN103332566B (en) * | 2013-07-04 | 2017-02-01 | 南华大学 | Energy-saving elevator lifting system |
CN107150941A (en) * | 2017-07-13 | 2017-09-12 | 苏州莱茵电梯股份有限公司 | The elevator of counterweight coefficient of balance can be changed |
CN108861965A (en) * | 2017-05-12 | 2018-11-23 | 奥的斯电梯公司 | Elevator car safety device and the counterweight safety actuating carried out simultaneously |
US10479650B2 (en) | 2013-07-04 | 2019-11-19 | Kone Corporation | Arrangement for reducing displacement of an elevator car caused by a change in loading |
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CN201217594Y (en) * | 2008-04-11 | 2009-04-08 | 刘立伟 | Draw transmission mechanism with primary and secondary counterweight |
CN202529666U (en) * | 2012-04-15 | 2012-11-14 | 丁国务 | Energy-saving device for realizing autobalance between elevator car and counter weight by adopting subsidiary counter weight |
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JP2000086103A (en) * | 1998-09-09 | 2000-03-28 | Hitachi Building Systems Co Ltd | Balance point adjusting method for elevator car |
CN1444538A (en) * | 2001-10-12 | 2003-09-24 | 三菱电机株式会社 | Elevator device |
CN201217594Y (en) * | 2008-04-11 | 2009-04-08 | 刘立伟 | Draw transmission mechanism with primary and secondary counterweight |
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Cited By (10)
Publication number | Priority date | Publication date | Assignee | Title |
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CN103332566B (en) * | 2013-07-04 | 2017-02-01 | 南华大学 | Energy-saving elevator lifting system |
US10479650B2 (en) | 2013-07-04 | 2019-11-19 | Kone Corporation | Arrangement for reducing displacement of an elevator car caused by a change in loading |
CN103332567A (en) * | 2013-07-09 | 2013-10-02 | 国核电力规划设计研究院 | Auxiliary weight balancing device for elevator energy saving and potential energy recovery |
CN104044980A (en) * | 2014-06-13 | 2014-09-17 | 吴家集 | Automatic balancing mechanism of traction machine |
CN104071673A (en) * | 2014-07-04 | 2014-10-01 | 江南大学 | Energy conservation design method for elevator balance weight |
CN105084138A (en) * | 2015-06-12 | 2015-11-25 | 郭今戈 | Method, system and device for improving operation efficiency and energy saving performance of elevator |
CN105883521A (en) * | 2016-04-28 | 2016-08-24 | 广州日滨科技发展有限公司 | Elevator capable of supporting self-rescuing in car and working method thereof, and elevator mounting structure |
CN105883521B (en) * | 2016-04-28 | 2018-02-13 | 日立楼宇技术(广州)有限公司 | Support the elevator and its method of work, the mounting structure of elevator saved oneself in sedan-chair |
CN108861965A (en) * | 2017-05-12 | 2018-11-23 | 奥的斯电梯公司 | Elevator car safety device and the counterweight safety actuating carried out simultaneously |
CN107150941A (en) * | 2017-07-13 | 2017-09-12 | 苏州莱茵电梯股份有限公司 | The elevator of counterweight coefficient of balance can be changed |
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