Mechanical lifting garage for small high-rise buildings
Technical Field
The utility model relates to a mechanical type lift garage for little high-rise belongs to garage technical field.
Background
Urban traffic is a very important aspect of urban construction and management. The development of urban traffic and parking facility construction can relieve urban traffic jam, improve urban living environment, promote urban sustainable development, improve traffic resource utilization rate and reduce traffic pollution. However, with the development of urban construction, the number of automobiles is greatly increased, the occupied area of automobile parking lots is increasingly increased, and the complete open-air plane parking causes serious waste of limited land resources, so the development of automobile garages is an important means for building resource-saving and environment-friendly society, and can generate great economic benefits.
In order to improve the parking condition, various multi-layer garages are designed in the prior art, generally including two types, one type is the multi-layer garage directly built by concrete and the like, personnel directly drive vehicles to parking positions of proper floors, the garage is provided with a long curved ramp for entering and exiting the garage, the occupied space is large, the turnover efficiency of the vehicles is low, the other type is a mechanical garage built by steel frames and the like, the vehicles on the ground are moved to parking spaces of corresponding heights through various structures such as lifting, horizontal movement and the like, the related structures are numerous, and the cost is high.
SUMMERY OF THE UTILITY MODEL
The utility model provides a be not enough to prior art existence, the utility model aims at providing a mechanical type lift garage for little high-rise to the garage of driving to the parking stall of oneself that proposes in solving above-mentioned background has longer business turn over car curve ramp, has enough to meet the need inefficiency, and on another kind of garage removed the vehicle to the parking stall through mechanisms such as going up and down and horizontal migration, required structure is complicated, problem with high costs, the utility model provides the high turnover efficiency of car has simplified the structure, and the reliability is high, excellent in use effect.
In order to achieve the above purpose, the present invention is realized by the following technical solution: the utility model provides a mechanical type lift garage for little high-rise, has entry and/or export and at least one garage steelframe, the setting on parking stall are in other well frame, the garage control system of garage steelframe, be equipped with the synchronous hauler of permanent magnetism that has dual output power shaft on the well steelframe, the synchronous hauler of permanent magnetism is connected with garage control system, the other end of dual output power shaft is equipped with the duplex sprocket, and every duplex sprocket links to each other with two chains, the synchronous hauler of permanent magnetism is apart from two the distance of duplex sprocket equals, and two chains are connected with car tray and pouring weight respectively.
The utility model discloses on the car tray was gone to directly from the parking stall of operating system or second garage steelframe bottom, then drove the car tray through exchanging permanent magnet synchronous motor and reciprocate, realize moving the car to required parking stall on, because of the curve ramp that does not need the car business turn over garage, saved space greatly, improved the turnover efficiency of car. In addition, because the automobile enters the lifting system from the automobile tray or is directly driven by a driver through the horizontal movement of the parking space on the second garage steel frame, a plurality of longitudinal or transverse moving devices with complex structures and an exchange tray or a comb-tooth type access mechanism are not needed, the structure of the garage can be greatly simplified, the failure rate is reduced, the manufacturing cost is reduced, and the reliability and the safety can be improved. The utility model discloses in realize tow formula lift drive through exchanging permanent magnet synchronous motor, borrow for a large amount and used current maturation technique, structure for the advantage of stereo garage low in cost commonly used, the reliability is high, is satisfying the demand of modern city three-dimensional development better.
In a specific embodiment, for the security height that improves, well frame upper end two fixed sprockets and two sprockets are established respectively at two pair sprocket dead backs, two the pair sprocket front end all is equipped with first chain and second chain and two first chains and establishes in two second chains outsides, two the expansion end that first chain and two second chains lie in pair sprocket front below all with counterweight upper end fixed connection, two the second chain has walked around two pair sprocket upper ends respectively and has walked around two pair sprocket upper ends downwards through the pair sprocket direction and with the car tray front end about two positions be connected, two first chain has walked around two pair sprocket upper ends respectively and two sprocket upper ends through the sprocket direction downwards and with the car tray rear end about two positions be connected.
In one embodiment, the dual output power shaft comprises: the dual output shaft and through gear coupling and dual output shaft fixed connection's drive shaft, the one end that the shaft coupling was kept away from to the drive shaft is equipped with the duplex sprocket, the shaft coupling is gear coupling. The gear coupling has the characteristic of certain compensation of relative displacement performance of two shafts, realizes the transmission of torque and rotary motion between the two half couplings by utilizing the meshing of the inner gear and the outer gear, is suitable for a transmission shaft system for connecting two concentric shafts, and has the advantages of compact structure, large bearing capacity, wide application speed range and reliable work. In a specific embodiment, in order to reach the purpose of measuring the drive shaft, two rotary encoder are fixed to well frame upper end, two the pair sprocket all passes through the frame to be fixed in well frame upper end, set up porosely on the end cover of frame, rotary encoder establishes the axle fixed connection of hole and pair sprocket on the cover is passed to pair sprocket outer end and rotary encoder's axle. The rotary encoder converts mechanical quantities such as angular displacement, angular velocity and the like into corresponding pulse signals, and compares the pulse signals with data set by a PLC (programmable logic controller), so that the position of the automobile tray can be calculated, the rotary encoder can also feed detected speed and direction information back to the frequency converter, output data of the frequency converter is adjusted, the accuracy of automatic control operation such as starting, accelerating and decelerating, stopping layers and the like of the automobile tray is realized, and in addition, the rotary encoder is provided with a housing for protection, so that the arrangement is convenient for inspection, debugging and maintenance.
In a specific embodiment, the stake of charging is all supporting to be set up by every parking stall in the garage steelframe, and the car owner that conveniently has the use to fill the stake demand uses.
In a concrete implementation mode, the inside bilateral symmetry of well frame is equipped with two tray guide bars, two the tray guide bar is established respectively at both ends about the car tray, the inside bilateral symmetry of well frame is equipped with two and is to heavy guide bar, two to heavy guide bar establish respectively to both ends about the pouring weight, the tray guide bar is convenient for lead the reciprocating of car tray, to the guide bar be convenient for lead reciprocating of pouring weight.
In a specific embodiment, in order to improve the construction speed and save the floor space, the garage steel frame is a steel structure.
In a specific embodiment, the shielding door is arranged on one side, facing the lifting system, of each parking space in the garage steel frame, and the shielding door is arranged to improve the protection effect.
In a specific embodiment, in order to facilitate the entrance and exit of a driver, the front end of the garage steel frame is fixed with an elevator, and a fire fighting channel is fixed between the two elevators.
In a specific embodiment, the shaft frame is fixed in a pit formed in the ground, at least two tray counterweight buffers are fixed at the bottom of the pit, and the at least two tray counterweight buffers are arranged on a vehicle tray and below a weight, so that unsafe conditions can be prevented and controlled, and the safety and reliability of the garage can be ensured.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
fig. 1 is a front view of the mechanical lifting garage for small high-rise buildings of the present invention;
fig. 2 is a top view of the mechanical lifting garage for small high-rise buildings of the present invention;
fig. 3 is a schematic view of the internal driving structure of the lifting system in the mechanical lifting garage for small high-rise buildings of the present invention;
fig. 4 is a top view of fig. 3 according to the present invention.
In the figure: 1-first garage steel frame, 2-lifting system, 3-second garage steel frame, 4-elevator, 5-fire fighting access, 211-counterweight block, 212-hoistway frame, 213-tray counterweight buffer, 214-car tray, 215-counterweight guide rod, 216-tray guide rod, 221-alternating current permanent magnet synchronous motor, 222-driving shaft, 223-coupling, 224-duplex chain wheel, 225-rotary encoder, 226-first chain, 227-second chain.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be described in detail with reference to the accompanying drawings.
Example 1: referring to fig. 1 to 4, a mechanical lifting garage for small and high buildings includes a first garage steel frame 1 and a second garage steel frame 3, at least two lifting systems 2 are fixed between the first garage steel frame 1 and the second garage steel frame 3, specifically, a vehicle is transported to a proper height through the lifting systems 2, and then is moved to a corresponding parking space inside the first garage steel frame 1 or the second garage steel frame 3.
The lifting system 2 comprises a hoistway frame 212, an automobile tray 214 and a counterweight 211 are arranged in the hoistway frame 212, the automobile tray 214 is arranged in a left-right through manner to facilitate the passing of automobiles, an alternating current permanent magnet synchronous motor 221 is fixed at the upper end of the hoistway frame 212, the outer ends of two output shafts of the alternating current permanent magnet synchronous motor 221 are fixedly connected with a driving shaft 222 through a coupling 223, duplex sprockets 224 are fixed at one ends of the two driving shafts 222 far away from the coupling 223, a first chain 226 and a second chain 227 are hung on the two duplex sprockets 224, the duplex sprockets 224 are respectively connected with the automobile tray 214 and the counterweight 211 through the two first chains 226 and the two second chains 227, specifically, the alternating current permanent magnet synchronous motor 221 drives the driving shaft 222 and the duplex sprockets 224 to rotate to further drive the first chain 226 and the second chain 227 to move to drive the automobile tray 214 to move up and down, and then be convenient for with removing the vehicle that moves to the car tray 214 upper end and send suitable height to, and then be convenient for park the vehicle in the corresponding position on first garage steel frame 1 or second garage steel frame 3.
Two rotary encoders 225 are fixed at the upper end of the hoistway frame 212, two duplex sprockets 224 are fixed at the upper end of the hoistway frame 212 through a base, holes are formed in an end cover of the base, the rotary encoders 225 are arranged at the outer ends of the duplex sprockets 224, shafts of the rotary encoders 225 penetrate through the holes in a cover and are fixedly connected with shafts of the duplex sprockets 224, specifically, the rotary encoders 225 rotate synchronously with the duplex sprockets 224 to achieve the purpose of measuring a driving shaft, mechanical quantities such as angular displacement and angular velocity are converted into corresponding pulse signals, the pulse signals are compared with data set by a PLC (programmable logic controller), the position of the automobile tray 214 can be calculated, the detected speed and direction information can be fed back to the frequency converter by the rotary encoders 225, output data of the frequency converter is adjusted, the accuracy of automatic control operation such as starting, acceleration and deceleration and floor stopping of the automobile tray 214 is realized, and in addition, the rotary encoders 225 are provided with outer covers for protection, the arrangement is convenient for inspection, debugging and maintenance.
First garage steelframe 1 and second garage steelframe 3 structure are the same, first garage steelframe 1 and second garage steelframe 3 all use full steel frame construction to be the main, many parts can be prefabricated in the mill, the site operation is fast like this, area is little, every parking stall all is equipped with the shield door towards one side of operating system 2 in first garage steelframe 1 and the second garage steelframe, shield door electric control, the shield door has improved the protective effect.
The other all supporting electric pile that fills that sets up in every parking stall in first garage steelframe 1 and the second garage steelframe 3, it is the inevitable selection of city car to electromotion, for adapting to this kind of change, sets up and fills electric pile.
The coupling 223 is a gear coupling which has the characteristic of certain compensation of relative displacement performance of two shafts, realizes the transmission of torque and rotary motion between the two half couplings by utilizing the meshing of the inner gear and the outer gear, is suitable for a transmission shaft system for connecting two concentric shafts, and has the advantages of compact structure, large bearing capacity, wide application speed range and reliable work.
Two chain wheels 228 are fixed at the upper end of the hoistway frame 212, the two chain wheels 228 are respectively arranged right behind the two duplex chain wheels 224, the front ends of the two duplex chain wheels 224 are respectively provided with a first chain 226 and a second chain 227, the two first chains 226 are arranged outside the two second chains 227, in order to improve the safety, the first chain 226 and the second chain 227 are adopted to replace a steel wire rope commonly used for traction in the prior art, the slip probability is reduced, the movable ends of the two first chains 226 and the two second chains 227, which are positioned at the front lower part of the duplex chain wheels 224, are respectively fixedly connected with the upper end of the counterweight 211, the two second chains 227 respectively bypass the upper ends of the two duplex chain wheels 224 and are respectively guided downwards by the duplex chain wheels 224 and are connected with the left part and the right part of the front end of the automobile tray 214, the two first chains 226 respectively bypass the upper ends of the two duplex chain wheels 224 and the upper ends of the two chain wheels 228 are respectively, in addition, the design of the dual-driving shaft 222, the dual first chains 226 and the dual second chains 227 can uniformly pull the four sides of the automobile tray 214, thereby avoiding the inclination phenomenon.
Two tray guide rods 216 are symmetrically arranged on the left and right sides inside the hoistway frame 212, the two tray guide rods 216 are respectively arranged at the left end and the right end of the automobile tray 214, two counterweight guide rods 215 are symmetrically arranged on the left and right sides inside the hoistway frame 212, the two counterweight guide rods 215 are respectively arranged at the left end and the right end of the counterweight 211, the tray guide rods 216 are convenient for guiding the up-and-down movement of the automobile tray 214, and the counterweight guide rods 215 are convenient for guiding the up-and-down movement of the counterweight 211.
The shaft frame 212 is fixed in a pit arranged on the ground, at least two tray counterweight buffers 213 are fixed at the bottom of the pit, and the at least two tray counterweight buffers 213 are arranged on the automobile tray 214 and below the weight 211 to prevent and control the possibly unsafe state, thereby ensuring the safety and reliability of the garage.
Example 2: elevator 4 is all fixed to first garage steelframe 1 and 3 front ends of second garage steelframe, fixed fire control passageway 5 between two elevators 4, and fire control passageway 5 establishes at first garage steelframe 1 and 3 front ends of second garage steelframe, and the driver of being convenient for comes in and goes out first garage steelframe 1 and second garage steelframe 3.
The working principle is as follows: the lifting system 2 and the second garage steel frame 3 have the same structure and are all provided with a plurality of layers of parking spaces, one parking space at the bottom of the lifting system 2 and the second garage steel frame 3 is provided with an entrance and the other parking space is provided with an exit, a vehicle enters from the entrance and is driven onto the vehicle tray 214 by a driver, the garage control system starts the alternating current permanent magnet synchronous motor 221, the alternating current permanent magnet synchronous motor 221 works to drive the driving shaft 222 to rotate, thereby driving the dual sprocket 224 to rotate, and thus driving the first chain 226 and the second chain 227 to rotate, thereby drive car tray 214 and reciprocate, move car tray 214 to suitable height according to the regulation, the shield door that corresponds this moment is opened, and the car is controlled by the driver and is moved forward or retreat to get into the parking stall, and the driver moves to the sightseeing elevator gate, gets back to ground from elevator 4, and the garage is also furnished with fire control passageway 5, also can get off by fire control passageway 5.
When the automobile is taken out of the garage, a driver goes up to the layer where the automobile needing to be taken out of the garage from the elevator 4 or the fire fighting passage 5, drives the automobile tray 214 from a parking place by the driver, falls to the ground, and is driven out from an outlet to finish the automobile taking process.
It is to be understood that the above-described embodiments of the present invention are merely illustrative of or explaining the principles of the invention and are not to be construed as limiting the invention. Therefore, any modification, equivalent replacement, improvement and the like made without departing from the spirit and scope of the present invention should be included in the protection scope of the present invention. Further, it is intended that the appended claims cover all such variations and modifications as fall within the scope and boundaries of the appended claims or the equivalents of such scope and boundaries.