CN206521176U - Point terraced separated type corridor elevator of common power driving - Google Patents

Point terraced separated type corridor elevator of common power driving Download PDF

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Publication number
CN206521176U
CN206521176U CN201720147807.7U CN201720147807U CN206521176U CN 206521176 U CN206521176 U CN 206521176U CN 201720147807 U CN201720147807 U CN 201720147807U CN 206521176 U CN206521176 U CN 206521176U
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gear
transmission
pulled
lowering
point
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CN201720147807.7U
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Chinese (zh)
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万忠勇
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Abstract

The utility model discloses a kind of point terraced separated type corridor elevator of common power driving, including dynamical system, main transmission, divide transmission system, lowering or hoisting gear and control system, multiple lowering or hoisting gears are separately mounted on each section stair of building, main transmission is vertically arranged in the gap of the remote wall side of stair, multiple points of transmission systems are fixedly connected with multiple lowering or hoisting gears respectively, and with main transmission power connector, the power intake of main transmission and the clutch end of dynamical system are connected, control system and dynamical system, main transmission, divide transmission system and lowering or hoisting gear electrical connection.The utility model drives the lowering or hoisting gear of each section stair of drive link driving using motor, drive link is near every section stair with travelling gear by power transmission to wirerope, wirerope traction lowering or hoisting gear moves up and down, and increases lifting drive, transports more personnel, heavier goods.

Description

Point terraced separated type corridor elevator of common power driving
Technical field
The utility model is related to a kind of elevator, more particularly to a point terraced separated type corridor for a kind of common power driving lifts electricity Ladder.
Background technology
It is fitted without above and below the building of elevator, personnel, the carrying of goods very consumes the physical difficult matter of people always, seeks Using mechanical force help desk personnel's stair activity, it is always the target that people seek that goods is transported in help.Existing a variety of solution party All there are many defects in method, subject matter is that installation maintenance cost is very high, and carrying number (being typically a people) and weight are limited, behaviour Make in-convenience in use, it is difficult to promote.For example, some design electric bicycles help the elderly, disabled person's stair activity, but operation In-convenience in use, speed is slow, also dangerous.What is had leans on wall side design and installation Motorized lift device in each section stair, but often One lowering or hoisting gear is all a separate component, comprising the various parts including motor, and cost is very high (with 7 floors layer, to be saved per interlayer two Exemplified by stair, 12 independent lowering or hoisting gears need to be installed), motor volume is limited, power is small, be short of power, it is impossible to carry weight, Personnel are in every section stair conversion lifting, and need to detour a very long segment distance, very inconvenient.Have big from samll cities and towns to big city now The multi-storey building of amount, it is very prominent by mechanical force stair activity problem, the great attention of resident and local government is caused, respectively Level government advocates the building for not having elevator in multilayer and installs elevator, and because cost is too high, the economy for having exceeded most of residents is born Ability, and elevator to occupy unit enter out position influence trip, attractive in appearance and daylighting, although government gives certain subsidy, but Want resident family to put into very big capital, also do not promote and come.
Utility model content
The purpose of this utility model, which is that, provides a kind of point ladder point of common power driving in order to solve the above problems Put formula corridor elevator.
The utility model is achieved through the following technical solutions above-mentioned purpose:
A kind of point terraced separated type corridor elevator of common power driving, including dynamical system, main transmission, point biography Dynamic system, lowering or hoisting gear and control system, multiple lowering or hoisting gears are separately mounted on each section stair of building, the main biography Dynamic system is vertically arranged in the gap of the remote wall side of the stair, and multiple described point of transmission systems are filled with multiple liftings respectively Put and be fixedly connected, and with the main transmission power connector, the power intake of the main transmission and the power The clutch end connection of system, the control system and the dynamical system, the main transmission, described point of transmission system With lowering or hoisting gear electrical connection.
Specifically, the dynamical system includes motor, reductor, bevel gear transmission, the main transmission bag Drive link, travelling gear and fixing bearing are included, the motor passes through the reductor and the bevel gear transmission and institute Drive link connection is stated, the drive link is fixed between the stair vertically by multiple fixing bearings, the driving cog Wheel is fixed on the drive link and is correspondingly arranged with described point of transmission system.
Specifically, described point of transmission system include being pulled up transmission device, downward towing gear, carrying cable, Trip and by powershift gear, the lowering or hoisting gear includes fixed column, lower guiding bar, pedal and stress sleeve, two fixed columns It is fixed on the upper and lower ends of the stair vertically respectively, the lower end of the two ends of the lower guiding bar respectively with two fixed columns It is fixedly connected, the stress sleeve set is on the lower guiding bar, and the pedal is fixedly connected with the stress sleeve, described Transmission device is pulled up to set parallel with the downward towing gear, it is described to be engaged by powershift gear with the travelling gear And be pulled up transmission device power connector with described, the carrying cable winding installed in the fixed column, described lead upwards Draw on transmission device and the downward towing gear, neck, the neck and the card are provided with the stress sleeve Tenon is correspondingly arranged, and the trip is fixedly connected with the carrying cable.
Specifically, the transmission device that is pulled up is included by wheels, clutch and wirerope wheel, the torque by wheels Output shaft is connected by the clutch with the torque input shaft of the wirerope wheel, the structure for being pulled up transmission device with The structure of the downward towing gear is identical, it is described be pulled up transmission device by wheels and the downward Traction Drive Device is engaged by wheels, the torque input shaft by wheels for being pulled up transmission device and the torque by powershift gear Output shaft is connected, and the carrying cable is wrapped on the carrying cable.
Further, the lowering or hoisting gear also includes upper guiding bar, connecting rod, straight-bar, guide sleeve and handrail, it is described on draw Guide rod is arranged on the top of the lower guiding bar, and the upper guiding bar is fixed by the connecting rod with the lower guiding bar and connected Connect, the guide sleeve is sleeved on the upper guiding bar and the guide sleeve and the stress sleeve are solid by the straight-bar Fixed connection, the handrail is fixedly connected with the guide sleeve.
Specifically, the control system includes motor switch, determines switch without loading idle running, is pulled up clutch control System switch, downwards traction clutch control switch and inductive switch in place, it is described be pulled up clutch control switch with it is described Transmission device electrical connection is pulled up, the downward traction clutch control switch is electrically connected with the downward towing gear Connect, the motor switch and it is described without loading idle running determine switch with the electronic mechatronics, it is described in place sensing open Close the two ends for being arranged on the lower guiding bar.
Preferably, speed limiter and safety tongs are installed, the control button of the control system is set on the stress guide On the handrail.
The beneficial effects of the utility model are:
A point terraced separated type corridor elevator for common power driving described in the utility model utilizes a high-power electric Machine drives the lowering or hoisting gear of each section stair of drive link driving, and drive link is near every section stair with travelling gear by power transmission To wirerope, wirerope traction lowering or hoisting gear moves up and down, and the device is due to need to be only greatly lowered and be installed and used with a motor Cost, due to that can install high power motor as driving power, can greatly increase lifting drive, transport more personnel, Heavier goods, can also place wheelchair, personnel's stair activity such as convenient not walking old age enters, disabled person.
Brief description of the drawings
Fig. 1 is the structural representation of point terraced separated type corridor elevator of common power driving described in the utility model;
Fig. 2 is the structural representation of described in the utility model point of transmission system;
Fig. 3 is the structural representation of this practical new lowering or hoisting gear.
Embodiment
The utility model is described in further detail below in conjunction with the accompanying drawings:
As shown in Figure 1, Figure 2 and Figure 3, point terraced separated type corridor lifting electricity of a kind of common power driving of the utility model Ladder, including dynamical system, main transmission, point transmission system 2, lowering or hoisting gear 3 and control system, multiple lowering or hoisting gears 3 are distinguished On each section stair 1 of building, main transmission is vertically arranged in the gap of the remote wall side of stair 1, multiple points of power trains System 2 is fixedly connected with multiple lowering or hoisting gears 3 respectively, and with main transmission power connector, the power of main transmission inputs End is connected with the clutch end of dynamical system, control system and dynamical system, main transmission, point transmission system 2 and lifting Device 3 is electrically connected.
Dynamical system includes motor 6, reductor 7, bevel gear transmission 8;
Main transmission includes drive link 5, travelling gear 9 and fixing bearing;
Motor 6 is connected by reductor 7 and bevel gear transmission 8 with drive link 5, and drive link 5 passes through multiple fixations Bearing is fixed between stair 1 vertically, and travelling gear 9 is fixed on drive link 5 and is correspondingly arranged with point transmission system 2.
Point transmission system 2 include being pulled up transmission device, downward towing gear, carrying cable 4, trip 34 and by Powershift gear 21;
Lowering or hoisting gear 3 include fixed column 12, it is lower guiding bar 11, pedal 32, stress sleeve 31, neck 33, it is upper guiding bar 10, Connecting rod 38, guide sleeve 37 and handrail 39;
Two fixed columns 12 are fixed on the upper and lower ends of stair 1 vertically respectively, the two ends of lower guiding bar 11 respectively with two The lower end of fixed column 12 is fixedly connected, and stress sleeve 31 is sleeved on lower guiding bar 11, and pedal 32 is fixed with stress sleeve 31 to be connected Connect, be pulled up transmission device and set parallel with downward towing gear, by powershift gear 21 engaged with travelling gear 9 and with to Upper towing gear power connector, the winding of carrying cable 4 is arranged on fixed column 12, is pulled up transmission device and traction downwards On transmission device, neck 33 is provided with stress sleeve 31, neck 33 and trip 34 are correspondingly arranged, trip 34 and carrying cable 4 It is fixedly connected, upper guiding bar 10 is arranged on the top of lower guiding bar 11, and upper guiding bar 10 passes through connecting rod with lower guiding bar 11 38 are fixedly connected, and guide sleeve 37 is sleeved on guiding bar 10 and guide sleeve 37 and stress sleeve 31 are solid by connecting rod 38 Fixed connection, handrail 39 is fixedly connected with guide sleeve 37.
Being pulled up transmission device is included by wheels 22, clutch 24 and wirerope wheel 23;
It is connected by the torque output shaft of wheels 22 by clutch 24 with the torque input shaft of wirerope wheel 23, is pulled up passing The structure of dynamic device is identical with the structure of downward towing gear, is pulled up being drawn by wheels 22 with downward for transmission device Being engaged by wheels 22 for transmission device, is pulled up the torque input shaft by wheels 22 of transmission device with being turned by powershift gear 21 Square output shaft is connected, and carrying cable 4 is wrapped on carrying cable 4.
Control system includes motor switch, switch is determined without loading idle running, is pulled up clutch control switch, downwards Draw clutch control switch and in place inductive switch;
It is pulled up clutch control switch and is electrically connected with being pulled up transmission device, clutch control switch is drawn downwards Electrically connected with downward towing gear, motor switch and without loading idle running determine switch electrically connected with motor 6, in place Inductive switch is arranged on the two ends of lower guiding bar 11.
When being pulled up clutch control switch and the downwards startup of traction clutch control switch, while interlink electric machine is opened Close, motor 6 is rotated.Inductive switch is separately mounted near fixed column 12 in place, when stress guide is run to fixed column up and down When near 12, disconnection is pulled up clutch control switch or downward towing gear clutch for clutch control motor switch, makes clutch Device 24 is separated, the stop motion of pedal 32.Switch is determined without loading idle running to be arranged near motor, when motor 6 dallies without loading Determine device to determine motor 6 to close electric power switch after idling conditions, and the certain time that is delayed, stall motor 6.To Upper traction clutch control switch, downwards traction clutch control switch operating key are corresponded to respectively to be consolidated installed in each section stair 1 The upper end of fixed column 12 and handrail 39 are easy to the position of operation, in order to operate.
When personnel to go upstairs 1 when, upper load-bearing pedal 32 of standing is pressed and is pulled up clutch control switch button, starts Motor 6, starts the controlled motor of clutch 24, clutch-plate is connected, motor 6 is rotated, and drives drive link 5 to rotate, driving cog Wheel 9 drives and rotated by powershift gear 21, is driven wirerope wheel 23 and dynamic wirerope to move by powershift gear 21, and the trip 34 of wirerope promotes stress Guide is moved upwards, drives pedal 32 to move, when pedal 32 moves to 1 upper end of stair, and inductive switch starts and led upwards in place Draw clutch control switch, clutch 24 disconnects, personnel are transported to the stopping of the upper end of stair 1.When personnel to go downstairs 1 when, stand Upper load-bearing pedal 32, presses traction clutch control switch button downwards, starts motor 6, start the controlled motor of clutch 24, Clutch-plate is connected, motor 6 is rotated, drive drive link 5 to rotate, travelling gear 9 is driven by powershift gear 21, clutch 24 and steel Cable wheel 23 is rotated, and wirerope wheel 23 drives wirerope motion, and the trip 34 of wirerope promotes stress guide to move downward, drives pedal 32 to transport Dynamic, because the at the uniform velocity idling of motor 6 is acted on, pedal 32 makees uniform motion (suitable with speed uplink) downwards, when pedal 32 is moved During to 1 lower end of stair, inductive switch, which starts, in place is pulled up the controlled motor of transmission cluthes 24, and clutch 24 disconnects, Personnel are transported to the stopping of the lower end of stair 1.
A specific embodiment is provided below:
By taking seven floor building as an example, two to seven floor building resident need to use passageway lift, and every layer of halfpace stair 1 needs to install 12 section lifts, may have 24 person to go upstairs 1, everyone and belongings are maximum based on 60 kilograms simultaneously per ladder 2 people of carrying are maximum The personnel or goods that may have 1440 kilograms of weight simultaneously go upstairs 1.Consider there are some of the staff to go downstairs 1 in reality, counteracting Fall part to go upstairs the weight of 1 personnel, be also not in all personnel and meanwhile go upstairs 1 situation, total go upstairs 1 carrying Ability is more adapted at 500 kilograms or so.Voluntarily speed is suitable upstairs with personnel for the lift speed of service.Motor is determined according to this Watt level.Needed in view of lift as furniture, large electric appliances and other items are transported, maximum weight should at 200 kilograms or so, Determine that the maximum carrying capacity of each section lift should be at 200 kilograms or so according to this.
Motor 6 is arranged on the underfloor ground of Stall stair 1, is installed together with reductor 7, the speed ratio personnel of lift Voluntarily the speed of stair activity 1 is slightly fast.Speed of being gone downstairs using on the rotating speed of motor 6 and lift is integrated as foundation and determines each gear The deceleration ratio of size and reductor 7.Drive link 5 is divided into some sections, connected during installation for ease of being transported into stair 1.Drive link 5 are vertically installed in the gap between halfpace stair 1, and upper and lower ends are fixed on ground and roof with bearing respectively, can be rotated, To prevent the stress flexural deformation of drive link 5, in part, the floor neighbouring position bearing of stair 1 and its fixed seat consolidate drive link 5 It is scheduled on floor.In every section stair 1 suitably when installing travelling gear 9 on the drive link 5 of position, with point transmission system 2 by Powershift gear 21 connects.
It is pulled up bearing for transmission and fixed seat is fixed on the floor side of stair 1, direction is hung down with the plate direction of stair 1 Directly, it is connected by wheels 22 with by powershift gear 21, carrying cable 4 is wound on wirerope wheel 23, carrying cable 4 is moved during rotation, to Lower towing gear is mounted in parallel with being pulled up transmission device, and it is meshed by gear connects, and winding is led on wirerope wheel 23 Draw wirerope 4, carrying cable 4 is moved during rotation.Carrying cable 4, which will have, pulls more than 200 kilograms weights, and moment startup can be born The performance of 500 to 1000 kilograms of pulling force.Often fixed column 12 is installed in the post position of 1 upper and lower ends handrail of section stair 39, and fixed column 12 is leaned on Stair 1 nearby install wirerope guide wheel, and winding is arranged on the often lower end guide wheel of 1 upper and lower ends fixed column of section stair 12, and side is same When be wrapped in and be pulled up on the wirerope wheel 23 of transmission device, downward towing gear, lower guiding bar 11 is arranged on wirerope It is parallel with wirerope near side, it is fixed in every section upper and lower ends fixed column 12 of stair 1.Upper guiding bar 10 is fixed on every section stair 1 Upper and lower ends post upper end position (equivalent to the height of 1 handrail of stair 39), it is parallel with lower guiding bar 11 and together be used to fixed pedestal 32, and guide pedal to be run about 32.
Pedal 32 is folding compoboard, is connected on stress guide, 1 to 2 people, compoboard and connection can be carried simultaneously There is rope clip on bar 38, to fixed goods or wheelchair, weight can be placed after opening completely, or place wheelchair, in stress Moved up and down under the drive of guide, stress guide is sleeved on lower guiding bar 11, has neck 33 being fastened on trip 34, stress Speed limiter 35 and safety tongs 36 are installed on guide, guiding bar is fixed in pedal 32 lifting pedal 32 to do in stall On, it is ensured that safety.
A/C is sleeved on guiding bar 10, is connected at two ends with connecting rod 38 with stress guide two ends, by even Extension bar 38 is synchronized with the movement with stress guide.Connecting rod 38 is stretched out and connected in guide sleeve 37, is formed on handrail 39, handrail 39 There is controlling switch.
The technical solution of the utility model is not limited to the limitation of above-mentioned specific embodiment, every according to skill of the present utility model The technology deformation that art scheme is made, each falls within protection domain of the present utility model.

Claims (7)

1. a kind of point terraced separated type corridor elevator of common power driving, it is characterised in that:Including dynamical system, main transmission System, point transmission system, lowering or hoisting gear and control system, multiple lowering or hoisting gears are separately mounted to each section stair of building On, the main transmission is vertically arranged in the gap of the remote wall side of the stair, multiple described point of transmission systems respectively with it is many The individual lowering or hoisting gear is fixedly connected, and with the main transmission power connector, the power of the main transmission inputs End is connected with the clutch end of the dynamical system, the control system and the dynamical system, the main transmission, institute State point transmission system and lowering or hoisting gear electrical connection.
2. point terraced separated type corridor elevator of common power driving according to claim 1, it is characterised in that:It is described Dynamical system include motor, reductor, bevel gear transmission, the main transmission include drive link, travelling gear and Fixing bearing, the motor is connected by the reductor and the bevel gear transmission with the drive link, described to pass Lever is fixed between the stair vertically by multiple fixing bearings, and the travelling gear is fixed on the drive link And be correspondingly arranged with described point of transmission system.
3. point terraced separated type corridor elevator of common power driving according to claim 2, it is characterised in that:It is described Point transmission system includes being pulled up transmission device, downward towing gear, carrying cable, trip and by powershift gear, described Lowering or hoisting gear includes fixed column, lower guiding bar, pedal and stress sleeve, and two fixed columns are fixed on the building vertically respectively The upper and lower ends of ladder, the lower lower end for guiding the two ends of bar respectively with two fixed columns is fixedly connected, the stress set Jacket casing mounted in it is described it is lower guiding bar on, the pedal is fixedly connected with the stress sleeve, it is described be pulled up transmission device and The downward towing gear is set parallel, described to be engaged by powershift gear with the travelling gear and be pulled up passing with described Dynamic device power connector, the carrying cable winding installed in the fixed column, it is described be pulled up transmission device and it is described to On lower towing gear, neck is provided with the stress sleeve, the neck and the trip are correspondingly arranged, the trip It is fixedly connected with the carrying cable.
4. point terraced separated type corridor elevator of common power driving according to claim 3, it is characterised in that:It is described Being pulled up transmission device is included by wheels, clutch and wirerope wheel, and the torque output shaft by wheels passes through the clutch Device is connected with the torque input shaft of the wirerope wheel, and the structure for being pulled up transmission device is filled with the downward Traction Drive The structure put is identical, described to be pulled up being engaged by wheels and the downward towing gear by wheels for transmission device, The torque input shaft by wheels for being pulled up transmission device is connected with the torque output shaft by powershift gear, described to lead Draw wirerope to be wrapped on the carrying cable.
5. point terraced separated type corridor elevator of common power driving according to claim 3, it is characterised in that:It is described Lowering or hoisting gear also includes upper guiding bar, connecting rod, straight-bar, guide sleeve and handrail, the upper guiding bar be arranged on it is described under draw The top of guide rod, and it is described it is upper guiding bar with it is described it is lower guide bar be fixedly connected by the connecting rod, the guide sleeves jacket casing Mounted in it is described it is upper guiding bar on and the guide sleeve be fixedly connected with the stress sleeve by the straight-bar, the handrail with The guide sleeve is fixedly connected.
6. point terraced separated type corridor elevator of common power driving according to claim 5, it is characterised in that:It is described Control system includes motor switch, switch is determined without loading idle running, clutch control switch is pulled up, draws clutch downwards Device controlling switch and in place inductive switch, the clutch control switch that is pulled up are electrically connected with the transmission device that is pulled up Connect, the downward traction clutch control switch is electrically connected with the downward towing gear, the motor switch and institute State no loading idle running determine switch with the electronic mechatronics, the inductive switch in place is arranged on the lower guiding bar Two ends.
7. point terraced separated type corridor elevator of common power driving according to claim 6, it is characterised in that:It is described Speed limiter and safety tongs are installed, the control button of the control system is arranged on the handrail on stress guide.
CN201720147807.7U 2017-02-17 2017-02-17 Point terraced separated type corridor elevator of common power driving Withdrawn - After Issue CN206521176U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720147807.7U CN206521176U (en) 2017-02-17 2017-02-17 Point terraced separated type corridor elevator of common power driving

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720147807.7U CN206521176U (en) 2017-02-17 2017-02-17 Point terraced separated type corridor elevator of common power driving

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CN206521176U true CN206521176U (en) 2017-09-26

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CN201720147807.7U Withdrawn - After Issue CN206521176U (en) 2017-02-17 2017-02-17 Point terraced separated type corridor elevator of common power driving

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106586779A (en) * 2017-02-17 2017-04-26 万忠勇 Shared power-driven branch ladder split floor elevator
CN107738971A (en) * 2017-11-21 2018-02-27 林向阳 It is a kind of to be used for upper servicing unit and its control method downstairs

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106586779A (en) * 2017-02-17 2017-04-26 万忠勇 Shared power-driven branch ladder split floor elevator
CN106586779B (en) * 2017-02-17 2018-11-20 万忠勇 Point terraced separated type corridor elevator of common power driving
CN107738971A (en) * 2017-11-21 2018-02-27 林向阳 It is a kind of to be used for upper servicing unit and its control method downstairs

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Granted publication date: 20170926

Effective date of abandoning: 20181120