CN108894549B - Bicycle promotes device of putting in storage - Google Patents

Bicycle promotes device of putting in storage Download PDF

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Publication number
CN108894549B
CN108894549B CN201810937257.8A CN201810937257A CN108894549B CN 108894549 B CN108894549 B CN 108894549B CN 201810937257 A CN201810937257 A CN 201810937257A CN 108894549 B CN108894549 B CN 108894549B
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China
Prior art keywords
supporting
lifting
chain
plate
supporting plate
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CN201810937257.8A
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CN108894549A (en
Inventor
范素香
周甲伟
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North China University of Water Resources and Electric Power
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North China University of Water Resources and Electric Power
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Publication of CN108894549A publication Critical patent/CN108894549A/en
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04HBUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
    • E04H6/00Buildings for parking cars, rolling-stock, aircraft, vessels or like vehicles, e.g. garages
    • E04H6/005Garages for vehicles on two wheels

Abstract

The invention relates to a bicycle lifting and warehousing device, which comprises a lifting part, a supporting part, a lifting plate and a transport frame, wherein the supporting part is supported and sent to the position right below a chain wheel at the lower part of a supporting plate by a U-shaped bracket on the lifting plate, a supporting hook of a lifting chain hooks and pulls away the supporting part when passing through the chain wheel at the lower part of the supporting plate along with a lifting chain, the supporting part is positioned in the supporting hook and lifts to a certain height along with the lifting chain, a front handle of a bicycle is transversely hooked on two hooks on the supporting part, the lifting chain hooks the bicycle and then continuously lifts, when the supporting hook on the lifting chain passes through the chain wheel at the upper end of the supporting plate, the supporting part rolls into a chute on a flow guide supporting plate through two small bearings, the supporting part rolls down into a groove opening of the transport frame on an inclined flow guide supporting plate under the action of the self gravity and the gravity of the bicycle, and two ends of a cylindrical supporting rod are clamped by two rotating claws, the running rack is rotated away from the next running rack to wait for the next bicycle to be lifted.

Description

Bicycle promotes device of putting in storage
Technical Field
The invention relates to the technical field of bicycle management, in particular to a bicycle lifting and warehousing device.
Background
With the increasing serious air pollution, people have stronger environmental awareness, and more people select bicycles as transportation travel tools. However, at the same time, the parking problem of the bicycle is more serious, and the random parking of the bicycle will cause a series of problems such as blocking road traffic.
Under the background of the national vigorous development of green traffic and low-carbon travel advocation, the travel of bicycles is more and more accepted by people, but the parking problem of a large number of bicycles brings many challenges to vehicle owners and urban environment, on one hand, the open storage of the bicycles has safety problems, and the bicycles are frequently stolen; on the other hand, the disordered storage of a large number of bicycles affects the appearance of the city and brings inconvenience to pedestrians, so that various stereoscopic bicycle garages appear at present, all the stereoscopic bicycle garages need to be provided with lifting and warehousing devices, and all the conventional lifting and warehousing devices have the problems of poor safety, complex structure, complex use process and the like.
Disclosure of the invention
In order to solve the above problems, the present invention provides a bicycle lifting and warehousing device.
The specific contents are as follows: a bicycle lifting and warehousing device comprises a lifting part, a supporting and rotating part, a lifting plate and a running frame, wherein the lifting part comprises a supporting plate, a chain wheel, a rotating shaft, a mounting shaft, a lifting chain, a supporting hook, a bracket and a flow guide supporting plate; the chain transmission device is characterized in that two support plates are arranged vertically in parallel and symmetrically according to a certain distance, a rotating shaft is arranged between the lower parts of the two support plates and is perpendicular to the inner side surfaces of the two support plates, two ends of the rotating shaft are respectively arranged on the inner side surfaces of the two support plates, two chain wheels are coaxially arranged on the rotating shaft and are respectively close to the inner side surfaces of the two support plates, the inner side surface of the upper part of each support plate is provided with a same mounting shaft which extends inwards, the axes of the two mounting shafts are collinear and are respectively perpendicular to respective mounting surfaces, the end of each mounting shaft is coaxially provided with one chain wheel, the rotating planes of the two chain wheels close to the inner side surface of the same support plate are coplanar, the two chain wheels close to the inner side surface of the same;
three brackets are fixed on the inner side surface of the upper part of each supporting plate in parallel, the flow guide supporting plate is fixed on the brackets and supported by the brackets, the flow guide supporting plate is inclined downwards in the direction far away from the chain wheel, the upper surface of each flow guide supporting plate is provided with a sliding groove along the length direction of the flow guide supporting plate, and each sliding groove is parallel to the inner side surface of the supporting plate closest to the sliding groove and has the same distance with the inner side surface of the supporting plate;
the supporting and rotating part comprises a cylindrical supporting rod, a large bearing, small bearings, stop blocks and hooks, the hooks are U-shaped hook bodies with bilateral symmetry at the lower ends, the large bearings are coaxially fixed in the middle of the cylindrical supporting rod, the small bearings are coaxially fixed on the cylindrical supporting rod respectively in a bilateral symmetry mode, the hooks are fixed between each small bearing and each large bearing respectively, the two hooks are symmetrical relative to the large bearings, and the cylindrical stop blocks are coaxially fixed on the two end faces of the cylindrical supporting rod respectively.
Preferably, the support hook is an inward-folded arc-shaped thin plate strip with two fixing lugs at one end, a baffle extending outwards is fixed on the inner surface of the arc-shaped thin plate strip close to the fixing lugs, the support hook is fixed on a certain chain link on the lifting chain through the two fixing lugs on the surface where the width of the outer side of the lifting chain is located, the two fixing lugs are respectively fixed on two side surfaces of the certain chain link on the lifting chain, a similar U-shaped opening is formed between the baffle on the support hook and the arc-shaped thin plate strip and faces the lifting movement direction of the lifting chain, and the free end of the baffle on the support hook inclines to the position where the lifting chain is located.
Preferably, the diversion support plates are all located in a space between two chain wheels on the upper portion of the support plate, the highest point of the upper surface of one end, close to the chain wheel, of each diversion support plate is lower than the lowest point of the upper surface of the hook supporting baffle when the lifting chain passes through the chain wheel, and one end, close to the chain wheel, of each diversion support plate penetrates through the surface where the axis of the mounting shaft is located in the vertical direction.
Preferably, the distance between the axes of the two small bearings on the supporting and rotating part is equal to the distance between the centers of the two sliding grooves on the flow guide supporting plate, the distance between the inner sides of the two stop blocks on the cylindrical supporting rod is greater than the distance between the outer sides of the two supporting hooks on the lifting chain, and the width of the sliding groove is greater than the width of the small bearing.
Preferably, the upper end of the lifting plate is provided with a U-shaped bracket extending outwards from the side surface of the lifting plate, a U-shaped clamping groove is arranged in the middle of the U-shaped bracket, the width of the U-shaped clamping groove is larger than that of the large bearing, two cutting seams are arranged on the lifting plate in a symmetrical position relative to the U-shaped clamping groove, the two cutting seams penetrate through the U-shaped bracket, and the upper end surface of the lifting plate is parallel to the axis of the rotating shaft and is positioned right below two chain wheels arranged on the rotating shaft.
Preferably, the operation frame be the type of falling U frame in vertical side, two lower extremes of operation frame are provided with the notch that the opening was the level orientation respectively, set up a rectangular shape spacing groove on the bottom surface of every notch, the operation frame is located the one end that the sprocket was kept away from to the water conservancy diversion layer board, when operation frame is just right to the time with the water conservancy diversion layer board, distance between two spacing grooves equals with the distance between two spouts, the direction and the width of two spacing grooves also respectively with two spouts corresponding, the lateral surface of operation frame lower extreme installs the rotating claw through articulated respectively, the one end of rotating claw is provided with grabs the groove.
The invention has the advantages of
The invention relates to a bicycle lifting and warehousing device, which comprises a lifting part, a supporting and rotating part, a lifting plate and a running frame, wherein the supporting and rotating part is supported and sent to the position right below a chain wheel at the lower part of a supporting plate by a U-shaped bracket on the lifting plate, a supporting hook of a lifting chain hooks and drags away the supporting and rotating part when passing through the chain wheel at the lower part of the supporting plate along with a lifting chain, the supporting and rotating part is positioned in the supporting hook and rises to a certain height along with the lifting chain, a front handle of a bicycle to be stored is transversely hooked on the two hooks on the supporting and rotating part, the lifting chain hooks the bicycle and continues to lift, when the supporting hook on the lifting chain passes through the upper end of the chain wheel at the upper part of the supporting plate, a baffle on the supporting hook is in a downward inclined state, the supporting and rotating part rolls into a chute on a flow guide supporting plate through two small bearings, and the supporting and the rotating part rolls down into a notch of the running frame under, two small bearings on the supporting and rotating part roll into limiting grooves in the notches respectively, the two rotating claws rotate to enable the catching grooves to clamp two ends of a cylindrical supporting rod on the supporting and rotating part, the operating frame rotates to leave and change the next operating frame, and the next bicycle is stored when being lifted and put in storage. The bicycle lifting device is simple in structure, can realize the functions of lifting and warehousing of bicycles, is more stable in chain transmission lifting, and saves cost, and the supporting and rotating part can be repeatedly used.
Drawings
FIG. 1 is a schematic view of the overall structure of a bicycle lifting and warehousing device for lifting bicycles;
FIG. 2 is a schematic view of the overall structure of a bicycle lifting and warehousing device for lifting the finished state of a bicycle;
FIG. 3 is an enlarged view of A in FIG. 2;
FIG. 4 is a schematic view of the overall structure of the hook;
FIG. 5 is a schematic view of the mounting of the hook on the lifting chain;
FIG. 6 is a schematic view of the overall structure of the pivoting member;
fig. 7 is a schematic overall structure diagram of the transfer rack;
FIG. 8 is a schematic view of the overall structure of the lifter plate;
in the figure: 101. the lifting plate, 102, a rotating shaft, 103, a supporting plate, 104, a supporting part, 105, a lifting chain, 106, a chain wheel, 107, a running frame, 108, a flow guide supporting plate, 109, a sliding groove, 110, a bracket, 111, a mounting shaft, 112, a supporting hook, 113, a bicycle, 1121, an arc-shaped thin plate, 1122, a baffle, 1123, a fixing lug, 1041, a stop block, 1042, a small bearing, 1043, a large bearing, 1044, 1045, a cylindrical supporting rod, 1071, an inverted U-shaped frame, 1072, a notch, 1073, a limiting groove, 1074, a catching groove, 1075, a rotating claw, 1011, 1012, a U-shaped supporting groove and 1013U-shaped clamping groove.
Detailed Description
Embodiment 1
Referring to fig. 1-8, a bicycle lifting and warehousing device comprises a lifting part, a supporting part, a lifting plate and a running frame, wherein the lifting part comprises support plates, chain wheels, rotating shafts, mounting shafts, lifting chains, supporting hooks, brackets and flow guide supporting plates, the two support plates are symmetrically and vertically arranged in parallel according to a certain interval, the rotating shaft is vertically arranged between the lower parts of the two support plates and is vertical to the inner side surface of the lower part of the two support plates and used for mounting a driving device to provide power for the running of the lifting chains, two ends of the rotating shaft are respectively mounted on the inner side surfaces of the two support plates, the two chain wheels are coaxially mounted on the rotating shaft and are respectively close to the inner side surfaces of the two support plates, the same mounting shaft extending inwards is mounted on the inner side surface of the upper part of each support plate, the axes of the two mounting shafts are collinear and are respectively vertical, the rotating planes of the two chain wheels close to the inner side face of the same supporting plate are coplanar, the two chain wheels close to the inner side face of the same supporting plate are connected through a closed lifting chain to form chain transmission, when a person faces towards the inner side face of one supporting plate and the bracket is positioned at the right hand side, the lifting chain rotates clockwise relative to the inner side face of the supporting plate on which the lifting chain is installed, and a supporting hook is fixed at each of the corresponding positions of the two lifting chains and used for supporting and hanging a supporting and rotating component;
three brackets are fixed on the inner side face of the upper part of each supporting plate in parallel, the flow guide supporting plate is fixed on the brackets and supported by the brackets, the flow guide supporting plate is inclined downwards in the direction away from the chain wheel, a sliding groove is formed in the upper surface of each flow guide supporting plate along the length direction of the flow guide supporting plate and is used for being matched with a small bearing on a supporting and rotating component, so that the supporting and rotating component can slide downwards on the flow guide supporting plate, each sliding groove is parallel to the inner side face of the supporting plate closest to the sliding groove and has the same distance with the inner side face of the supporting plate, and when the supporting and rotating component rolls off from a supporting hook of a lifting chain, the small bearing on the supporting and rotating component can accurately fall into the sliding groove;
the support that changes the part include cylinder die-pin, big bearing, little bearing, dog and couple, the couple have bilateral symmetry's U type coupler body for the lower extreme, the coaxial positive intermediate position of fixing at the cylinder die-pin of big bearing for support the recovery of commentaries on classics part, the bilateral symmetry of big bearing is coaxial fixed little bearing respectively on the cylinder die-pin, all fix a couple on the position between every little bearing and big bearing, be used for hanging the bicycle, two couples are about big bearing symmetry, a cylindric dog of coaxial fixed respectively on the both ends face of cylinder die-pin, prevent to support to change the part and take place relative drunkenness for promoting the support hook on the chain when hanging the bicycle, avoid the little bearing on the support to change the part and the spout on the water conservancy diversion layer board correspond not.
The lifting hook is characterized in that the supporting hook is an inward-folded arc-shaped thin plate strip, one end of the inward-folded arc-shaped thin plate strip is provided with two fixing lugs, a baffle plate which extends outwards is fixed on the inner surface of the arc-shaped thin plate strip close to the fixing lugs, the supporting hook is fixed on a certain chain link on the lifting chain through the two fixing lugs on the surface where the width of the outer side of the lifting chain is located, the two fixing lugs are respectively fixed on two side surfaces of the certain chain link on the lifting chain, a similar U-shaped opening is formed between the baffle plate on the supporting hook and the arc-shaped thin plate strip and faces the lifting movement direction of the lifting chain, the free end of the baffle plate on the supporting hook inclines towards the position where the lifting chain is located, when the supporting hook supports a cylindrical supporting rod of a rotation supporting component to pass through a chain wheel on the upper portion of the supporting plate, the baffle plate ensures that the cylindrical supporting rod.
The diversion supporting plates are located in a space between two chain wheels on the upper portion of the supporting plate, the highest point of the upper surface of one end, close to the chain wheels, of each diversion supporting plate is lower than the lowest point of the upper surface of a supporting hook baffle plate when a lifting chain passes through the chain wheels, one end, close to the chain wheels, of each diversion supporting plate penetrates through the surface of the vertical direction of the axis of the mounting shaft, and therefore the supporting and rotating component is guaranteed to roll off from the supporting hook to the diversion supporting plates, the cylindrical supporting rod cannot be clamped, and can smoothly enter the sliding groove.
The distance between the axes of the two small bearings on the supporting and rotating component is equal to the distance between the centers of the two sliding grooves on the flow guide supporting plate, the distance between the inner sides of the two stop blocks on the cylindrical supporting rod is greater than the distance between the outer sides of the two supporting hooks on the lifting chain, the width of the sliding groove is greater than that of the small bearings, and the two small bearings on the supporting and rotating component can correctly enter the sliding groove.
The lifting plate upper end have the U type that stretches out on its side hold in the palm the groove outward, the positive intermediate position in U type support groove sets up a U type draw-in groove, the width of U type draw-in groove is greater than the width of big bearing, there are two kerfs on the lifting plate about the symmetric position of U type draw-in groove, two kerfs run through the U type and hold in the palm the groove, the up end of lifting plate is parallel with the pivot axis and is located the pivot under two sprockets of installation, the lifting plate is used for providing the support to change the part before promoting the bicycle at every turn.
The operation frame be the type of falling U frame in vertical side, two lower extremes of operation frame are provided with the notch that the opening was the level orientation respectively, set up a rectangular shape spacing groove on the bottom surface of every notch, the operation frame is located the one end that the sprocket was kept away from to the water conservancy diversion layer board, when operation frame is just right to the time with the water conservancy diversion layer board, distance between two spacing grooves equals with the distance between two spouts, the direction and the width of two spacing grooves also respectively with two spouts corresponding, the lateral surface of operation frame lower extreme is installed rotating claw through the articulated respectively, the one end of rotating claw is provided with grabs the groove, the operation frame is used for transporting the bicycle that comes to promote to the relevant position.
The U-shaped bracket on the lifting plate of the invention conveys a supporting and rotating part to the right below a chain wheel at the lower part of a supporting plate, a supporting hook of a lifting chain hooks and pulls the supporting and rotating part when passing through the chain wheel at the lower part of the supporting plate along with the lifting chain, the supporting and rotating part is positioned in the supporting hook and rises to a certain height along with the lifting chain, a front handle of a bicycle to be stored is transversely hooked on two hooks on the supporting and rotating part, the lifting chain hooks the bicycle and then continuously lifts, when the supporting hook on the lifting chain passes through the upper end of the chain wheel at the upper part of the supporting plate, a baffle plate on the supporting hook is in a downward inclined state, the supporting and rotating part rolls down into a chute on a flow guide supporting plate through two small bearings, the supporting and rotating part rolls down into a notch of a running frame on the inclined flow guide supporting plate under the action of the self gravity and the gravity of the bicycle, the two small bearings on the supporting, the two rotating claws rotate to enable the grabbing grooves to clamp two ends of the cylindrical supporting rod on the supporting and rotating part, the operating frame rotates away from the next operating frame, and the next bicycle is stored after being lifted up and put in storage.

Claims (6)

1. A bicycle lifting and warehousing device comprises a lifting part, a supporting and rotating part, a lifting plate and a running frame, wherein the lifting part comprises a supporting plate, a chain wheel, a rotating shaft, a mounting shaft, a lifting chain, a supporting hook, a bracket and a flow guide supporting plate; the chain transmission device is characterized in that two support plates are arranged vertically in parallel and symmetrically according to a certain distance, a rotating shaft is arranged between the lower parts of the two support plates and is perpendicular to the inner side surfaces of the two support plates, two ends of the rotating shaft are respectively arranged on the inner side surfaces of the two support plates, two chain wheels are coaxially arranged on the rotating shaft and are respectively close to the inner side surfaces of the two support plates, the inner side surface of the upper part of each support plate is provided with a same mounting shaft which extends inwards, the axes of the two mounting shafts are collinear and are respectively perpendicular to respective mounting surfaces, the end of each mounting shaft is coaxially provided with one chain wheel, the rotating planes of the two chain wheels close to the inner side surface of the same support plate are coplanar, the two chain wheels close to the inner side surface of the same;
three brackets are fixed on the inner side surface of the upper part of each supporting plate in parallel, the flow guide supporting plate is fixed on the brackets and supported by the brackets, the flow guide supporting plate is inclined downwards in the direction far away from the chain wheel, the upper surface of each flow guide supporting plate is provided with a sliding groove along the length direction of the flow guide supporting plate, and each sliding groove is parallel to the inner side surface of the supporting plate closest to the sliding groove and has the same distance with the inner side surface of the supporting plate;
the supporting and rotating part comprises a cylindrical supporting rod, a large bearing, small bearings, stop blocks and hooks, the hooks are U-shaped hook bodies with bilateral symmetry at the lower ends, the large bearings are coaxially fixed in the middle of the cylindrical supporting rod, the small bearings are coaxially fixed on the cylindrical supporting rod respectively in a bilateral symmetry mode, the hooks are fixed between each small bearing and each large bearing respectively, the two hooks are symmetrical relative to the large bearings, and the cylindrical stop blocks are coaxially fixed on the two end faces of the cylindrical supporting rod respectively.
2. A bicycle garage elevator according to claim 1, wherein said hook is an inwardly folded curved strip having two fixing lugs at one end, a stop plate extending outwardly is fixed to the inner surface of the curved strip near the fixing lugs, the hook is fixed to a link of the lifting chain via the two fixing lugs on the surface of the outer width of the lifting chain, the two fixing lugs are fixed to the two side surfaces of the link of the lifting chain, a similar U-shaped opening is formed between the stop plate of the hook and the curved strip and faces the lifting direction of the lifting chain, and the free end of the stop plate of the hook is inclined toward the position of the lifting chain.
3. The device of claim 1, wherein the guide support plates are located in a space between two chain wheels on the upper portion of the support plate, the highest point of the upper surface of one end of each guide support plate close to the chain wheel is lower than the lowest point of the upper surface of the hook support baffle when the lifting chain passes through the chain wheel, and one end of each guide support plate close to the chain wheel penetrates through the surface of the mounting shaft axis in the vertical direction.
4. The device according to claim 1, wherein the distance between the axes of the two small bearings on the supporting and rotating member is equal to the distance between the centers of the two sliding grooves on the guide supporting plate, the distance between the inner sides of the two stoppers on the cylindrical supporting rod is greater than the distance between the outer sides of the two supporting hooks on the lifting chain, and the width of the sliding groove is greater than the width of the small bearing.
5. The device as claimed in claim 1, wherein the elevating plate has a U-shaped bracket extending outward from a side surface thereof, a U-shaped slot is formed in a central portion of the U-shaped bracket, the U-shaped slot has a width greater than that of the large bearing, two slits are formed in the elevating plate at positions symmetrical to the U-shaped slot, the two slits penetrate through the U-shaped bracket, and an upper end surface of the elevating plate is parallel to an axis of the rotating shaft and is located right below the two sprockets mounted on the rotating shaft.
6. The device according to claim 1, wherein the operation frame is an inverted U-shaped frame in a vertical direction, two lower ends of the operation frame are respectively provided with a notch with a horizontally oriented opening, a long-strip-shaped limiting groove is arranged on the bottom surface of each notch, the operation frame is positioned at one end of the flow guide supporting plate away from the chain wheel, when the operation frame and the flow guide supporting plate are aligned, the distance between the two limiting grooves is equal to the distance between the two sliding grooves, the directions and the widths of the two limiting grooves respectively correspond to the two sliding grooves, the outer side surface of the lower end of the operation frame is respectively provided with a rotating claw through hinge joint, and one end of the rotating claw is provided with a catching groove.
CN201810937257.8A 2018-08-16 2018-08-16 Bicycle promotes device of putting in storage Active CN108894549B (en)

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Application Number Priority Date Filing Date Title
CN201810937257.8A CN108894549B (en) 2018-08-16 2018-08-16 Bicycle promotes device of putting in storage

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Application Number Priority Date Filing Date Title
CN201810937257.8A CN108894549B (en) 2018-08-16 2018-08-16 Bicycle promotes device of putting in storage

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CN108894549B true CN108894549B (en) 2020-03-10

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Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2230699Y (en) * 1995-03-03 1996-07-10 安宗民 Multiple story bicycle holder
JP5773165B2 (en) * 2012-03-05 2015-09-02 株式会社ダイフク Vertical rotation type bicycle parking facilities
JP5885141B2 (en) * 2012-07-09 2016-03-15 株式会社技研製作所 Rotation control device, rotation control method, and article storage device for lifting column
CN206376601U (en) * 2017-01-17 2017-08-04 颜萌 Vehicle storage and lease garage
CN206785018U (en) * 2017-05-16 2017-12-22 烟台拓伟智能科技股份有限公司 Automatic stereo indoor bicycle parking area
CN207177385U (en) * 2017-09-13 2018-04-03 俞金火 Accessible aerocycle storehouse
CN107859380A (en) * 2017-10-31 2018-03-30 西安交通大学 A kind of tower mechanical device for parking bicycle of three-dimensional modularized

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