Mechanical parking device

The mechanical parking device addresses complex charging mechanisms and electric shock risks by using a cover-operated power supply unit, ensuring safe and uninterrupted charging with reduced manufacturing costs.

JP2025154965APending Publication Date: 2025-10-10NISSEI CO LTD
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Patent Information

Application Number
JP2024058282
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-03-29
Publication Date
2025-10-10

AI Technical Summary

Technical Problem

Existing mechanical parking devices require complex mechanisms for charging vehicles, leading to increased manufacturing costs and risks of electric shock during maintenance, as well as interruptions in charging due to pallet movement.

Method used

A mechanical parking device with a power supply unit that includes a cover mechanism operatively connected to a vertical/horizontal feed device, allowing charging while the tray is stopped, and a swinging body that covers and uncovers the power supply unit to prevent electric shock.

Benefits of technology

Prevents electric shock accidents during maintenance and allows continuous charging without additional drive sources, enabling seamless tray movement after charging is complete.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a mechanical parking device allowing charging as a tray is positioned at a park position upon mechanical parking device operation and preventing electric shock on a worker upon maintenance and the like.SOLUTION: A mechanical parking device is configured to include a covering body 21 capable of taking a covering position covering at least a power supply element 42 of a power supply part 20 and an opening position, comprising: an oscillation body 34 interlocking with switching motion of a vertical / lateral sending device 8 between vertical and lateral directions and connected to a link mechanism operatably connected to the vertical / lateral sending device 8 to oscillate along a moving direction of the covering body 21; a first parallel link mechanism connected to an oscillation end side of the oscillation body 34; a second parallel link mechanism connected to the first parallel link mechanism to make it move between a position covering the covering body 21 and an open position; and a support member 34A fixed on the oscillation end part of the oscillation body 34 and moving a power supply body 40 between a supply position and a non-supply position through oscillation with the link mechanism where the oscillation body 34 is connected with the vertical / lateral device 8.SELECTED DRAWING: Figure 5
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Description

[Technical Field]

[0001] The present invention relates to a mechanical parking device, and is particularly characterized by a power supply unit that supplies power to a charging tray. [Background technology]

[0002] In recent years, electric vehicles have begun to become popular. There are various types of electric vehicles, including battery electric vehicles (BEVs) that run purely on a battery and motor, and plug-in hybrid vehicles (PHEVs) that use a combination of an internal combustion engine, a battery, and a motor, and whose batteries can be charged from an external charging station, requiring external charging of the batteries.

[0003] Some vehicle models allow for quick charging in addition to standard charging, but in either case, it takes a long time to charge the battery, so there is a growing demand for mechanical parking systems that are equipped with facilities that allow charging while the vehicle is parked.

[0004] There are several types of mechanical parking devices, including those in which vehicles are placed on trays and transported to a storage room, where the transported trays circulate within the storage room; those that are stored on storage shelves and do not move; and vertical circulation types in which charging rails are installed vertically.However, some of these charging means use complex mechanisms for the means for supplying power to the trays, or have different charging and circulation positions so that the trays cannot be moved unless they are returned to the circulation position, which increases manufacturing costs and causes inconvenience in operating the mechanical parking device.

[0005] For example, Patent Document 1 describes a mechanical parking lot that includes a plurality of parking spaces and a pallet that can carry a vehicle and is movable between the parking spaces in a first direction and a second direction that intersects with the first direction, wherein at least one of the plurality of parking spaces is provided with a power supply terminal and the pallet is provided with a power receiving terminal, the power supply terminal and the power receiving terminal are connectable in the first direction, the power supply terminal is positioned so as not to come into contact with the power receiving terminal when the pallet moves in the second direction to the parking space where the power supply terminal is provided, and after the pallet moves to a stopping position within the parking space where the power supply terminal is provided, the pallet is further moved to a charging position on the power supply terminal side, and the power receiving terminal is brought into contact with the power supply terminal.

[0006] Furthermore, Patent Document 2 discloses a mechanical parking device that includes at least one charging pallet capable of carrying an electric vehicle, and that, when storing the charging pallet in a predetermined parking shelf, moves the charging pallet in a first direction to a predetermined parking position in the parking shelf, the mechanical parking device including: a plurality of first contacts that are provided in the parking shelf and connected to a power supply device; a plurality of second contacts that are provided at the end of the charging pallet in the first direction and in positions that can face the plurality of first contacts when the charging pallet is in the parking position, and that correspond to the plurality of first contacts; and a plurality of second contacts that are provided at the end of the charging pallet in the first direction and in positions that can face the plurality of first contacts when the charging pallet is in the parking position, the plurality of first contacts being connected to a power supply device; A mechanical parking device is described, comprising: a first moving mechanism that can displace the positions of multiple second contacts in the first direction relative to the charging pallet; a second moving mechanism that is separated from the first moving mechanism and can displace the positions of the multiple first contacts in a second direction that is approximately perpendicular to the first direction relative to the parking shelf or the positions of the multiple second contacts in the second direction relative to the charging pallet; and a guide mechanism that guides the relative movement of the multiple first contacts and the multiple second contacts in the second direction so that the multiple first contacts and the multiple second contacts face each other as the charging pallet moves in the first direction. [Prior art documents] [Patent documents]

[0007] [Patent Document 1] Patent No. 6618261 [Patent Document 2] Patent No. 6212607 Summary of the Invention [Problem to be solved by the invention]

[0008] However, in the mechanical parking lot described in Patent Document 1, the pallet must be moved from its circulating stop position to its charging position in the power supply parking space in order to connect the power receiving terminal on the pallet to the power supply terminal on the power supply unit in the power supply parking space. In other words, when a call operation is performed to enter or exit the parking space and the pallet is circulated, the pallet must be returned from its charging position in the power supply parking space to a stopping position where it can be circulated, which interrupts charging each time. Furthermore, the exposed current collectors and other components pose a risk of electric shock to workers during maintenance.

[0009] Furthermore, the mechanical parking device described in Patent Document 2 requires that the charging pallet be moved toward a shelf-side contact assembly, which includes a first moving mechanism, a second moving mechanism, etc., and that the pallet-side contact assembly be pressed against and brought into contact with the shelf-side contact assembly in order to charge. Furthermore, the shelf-side contact assembly has a complex structure that includes multiple moving mechanisms, and installing it on each of the multiple shelves increases manufacturing costs. Furthermore, the current collectors and other components are exposed, which poses a risk of electric shock to workers during maintenance.

[0010] The present invention aims to provide a mechanical parking device that allows charging while the tray is positioned in the stopped position when the mechanical parking device is in operation, thereby preventing electric shock accidents to workers during maintenance. [Means for solving the problem]

[0011] The mechanical parking device according to the first aspect is a mechanical parking device having a plurality of storage compartments for storing trays, wherein the storage compartments are configured to include a vertical / horizontal feed device that moves the trays vertically and horizontally, a power supply unit that is operatively connected to the vertical / horizontal feed device and has a power supply body that can take a supply position that supplies power to a power receiving unit of the tray and a non-supply position that does not supply power, and a cover that can take a position that covers at least the power supply of the power supply unit and a position that opens it, and a swinging body that is connected to a link mechanism operatively connected to the vertical / horizontal feed device and swings along the movement direction of the cover in conjunction with the vertical / horizontal switching operation of the vertical / horizontal feed device, and a swinging mechanism that swings the swinging body. a first parallel link mechanism connected to the end of the swinging body, a second parallel link mechanism connected to the first parallel link mechanism and moving the cover between the covering position and the open position, and a support member fixed to the swinging end of the swinging body, which moves the power supply body between the supply position and the non-supply position as the swinging body swings due to the link mechanism connected to the vertical and horizontal feed device, and when the link mechanism is actuated to operate the first parallel link mechanism and the second parallel link mechanism and move the cover to the open position, the support member of the swinging body can take a position to bring the power supply body into contact with the power receiving portion of the tray.

[0012] The second aspect of the mechanical parking device is a mechanical parking device according to the first aspect, wherein the oscillating body is a triangular member that is narrow at the top and wide at the bottom when viewed from the side, the top is supported by an oscillating shaft, the first parallel link mechanism is connected to the side of the bottom closer to the vertical and horizontal feed mechanism, and the support member is provided on the side of the bottom closer to the power supply body, as described in claim 1.

[0013] The mechanical parking device of the third aspect is a mechanical parking device of the first or second aspect, in which the cover, the oscillating body, and the power supply oscillating member attached to the oscillating shaft together with the oscillating body are insulated from the power supply.

[0014] The mechanical parking device of the fourth aspect is a mechanical parking device of the first aspect, in which the vertical and horizontal feed device has horizontally rotating drive wheels that contact and drive the vertical feed rails or horizontal feed rails installed on the underside of the tray from below. [Effects of the Invention]

[0015] According to the mechanical parking device of the first aspect, the cover that covers the power supply body of the power supply unit can prevent electric shock accidents for workers performing maintenance, etc., and no dedicated drive source is required to drive the cover.

[0016] According to the mechanical parking device of the second aspect, simply by swinging the swinging body, the support member can bring the power supply into contact with the power receiving portion of the tray in conjunction with the opening movement of the cover.

[0017] According to the mechanical parking device of the third aspect, even if a worker performing maintenance or the like accidentally comes into contact with the cover, he or she will not receive an electric shock.

[0018] According to the mechanical parking device of the fourth aspect, the tray can be moved to the adjacent storage compartment immediately after the cover has been moved to close. [Brief explanation of the drawings]

[0019] [Figure 1] FIG. 2 is a plan view of a storage room of a mechanical parking device according to one embodiment of the present invention. [Figure 2] This is a front cross-sectional view of a mechanical parking device in one embodiment of the present invention. [Figure 3] FIG. 1 is an overall plan view of a storage compartment in one embodiment of the present invention, showing the power supply body covered by the cover. [Figure 4] FIG. 1 is an overall plan view of a storage compartment in accordance with an embodiment of the present invention, showing the power supply body released from the cover. [Figure 5] 1 is an enlarged plan view of a portion of a storage compartment in accordance with an embodiment of the present invention, showing the cover positioned to cover the power supply unit; FIG. [Figure 6]1 is an enlarged partial plan view of a storage compartment in accordance with an embodiment of the present invention, showing the cover moving toward an open position of the power supply unit. FIG. [Figure 7] 1 is an enlarged plan view of a portion of a storage compartment in accordance with an embodiment of the present invention, showing the state in which the cover opens the power supply section and the power supply section contacts the power receiving section of the tray. [Figure 8] 8 is a partially enlarged plan view showing the power supply unit in the state shown in FIG. 7, with the cover exposing the power supply. FIG. [Figure 9] 9 is an enlarged front view showing the power supply unit in the state shown in FIG. 8, showing a state in which a power supplying portion of the power supply unit is in contact with a power receiving portion of the tray. [Figure 10] 10 is an enlarged side view showing a state in which a cover covers a power supply in a power supply section according to an embodiment of the present invention. FIG. [Figure 11] FIG. 11 is an enlarged perspective view showing the state of FIG. 10. [Figure 12] 10 is an enlarged side view showing a state in which the cover moves in a direction to open the power supply, and the power supply begins to rise, in the power supply unit according to the embodiment of the present invention. FIG. [Figure 13] FIG. 13 is an enlarged perspective view showing the state of FIG. 12. [Figure 14] 10 is an enlarged side view showing a state in which the cover has moved to a position that opens the power supply, and the power supply has come into contact with the power receiving portion of the tray, in the power supply unit according to the embodiment of the present invention. FIG. [Figure 15] FIG. 15 is an enlarged perspective view showing the state of FIG. DETAILED DESCRIPTION OF THE INVENTION

[0020] An example of a vehicle guidance device for a mechanical parking system according to this embodiment will be described with reference to the drawings. In the storage section, the long side direction of the tray in a plan view is referred to as the "longitudinal direction," the single side direction of the tray as the "short side direction," the position where the power supply unit is located as the "right side," and the opposite direction as the "left side." Vehicle 40 includes electric vehicles, but in this invention, electric vehicles include not only pure electric vehicles (BEVs) that run on only a battery and a motor, but also plug-in hybrid vehicles (PHEVs) that run on a combination of an internal combustion engine, a battery, and a motor.

[0021] <Embodiment> [Mechanical parking system] The overall configuration of a mechanical parking device 1 in this embodiment is shown in Figures 1 and 2. The mechanical parking device 1 has an entry / exit room 2 where vehicles M, including electric vehicles, enter and exit, and a storage room 3 where vehicles M are stored. In this embodiment, the storage room 3 is located below the entry / exit room 2 and is connected to it by a lifting device 4 that raises and lowers a tray.

[0022] [Storage Room] As shown in Figure 1, the storage room 3 has multiple storage compartments 5 arranged vertically and horizontally. The storage compartments 5 have multiple empty compartments where trays are not stored, allowing for horizontal circulation of the trays. A lifting device 4 that connects to the loading / unloading room 2 is located adjacent to one of the storage compartments 5. A control panel 60 that controls the operation of the mechanical parking device 1 is installed next to the lifting device 4.

[0023] (storage compartment) 3 and 4, the storage compartment 5 is a compartment that stores one tray 50 at a time, and the trays 50 are connected adjacent to each other so that they can move vertically and horizontally (see also FIG. 1). The storage compartment 5 is formed by assembling a pair of vertical feed rails 6 and a pair of horizontal feed rails 7 in a rectangular shape in a plan view.

[0024] A vertical / horizontal feed device 8 is installed in the storage compartment 5 in the center of the shorter side, along the longitudinal direction of the storage compartment 5. The vertical / horizontal feed device 8 has a pair of drive wheels 9 that are rotatable vertically and horizontally, spaced apart in the longitudinal direction of the storage compartment 5. As shown in FIG. 5 , the drive wheels 9 are mounted on a vertical / horizontal switchable member 11 that is rotatable horizontally around an axle 10. The area between the pair of drive wheels 9 includes a vertical / horizontal switching motor 13 that switches the rotation direction of the pair of drive wheels 9 between vertical and horizontal by rotating horizontally around an axle 15, a vertical / horizontal switching member 14 that is rotatable horizontally on the vertical / horizontal switching motor 13, and a connecting member 16 that connects each free end of the rotation of the vertical / horizontal switching member 14 to the free end of the rotation of the vertical / horizontal switching member 11. The pair of drive wheels 9 are configured so that the rotation direction can be switched between the vertical feed direction and the horizontal feed direction by rotating the vertical / horizontal switching member 14 through the drive of the vertical / horizontal switching motor 13, and by pushing and pulling the connecting member 16 to rotate the vertical / horizontal switching member 11.

[0025] The drive wheels 9 rotate while pressing against vertical and horizontal rails (not shown) provided on the underside of the tray 50, thereby moving the tray 50 in the vertical direction, which is the length direction of the tray 50, or in the horizontal direction, which is the short side direction of the tray 50.

[0026] <Main components> [Overall configuration of main parts] Here, the configuration of the main parts will be described with reference to FIGS.

[0027] [Relationship between the power supply unit and the moving structure of the vertical and horizontal feed device] As shown in Figures 5 to 7, power supply unit 20 is installed inside a corner at one end of storage compartment 5. Cover 21 covers power supply body 40, which will be described later, and prevents workers performing maintenance work from accidentally receiving an electric shock. Cover 21 includes a connecting base 24, to which first connecting member 25, second connecting member 26, and third connecting member 28 are connected, and third connecting member 28 is connected to vertical / horizontal switching member 11.

[0028] Specifically, in the cover 21, one end of a first connecting member 25 is connected to a connecting base 24 via a rotation shaft, the other end of the first connecting member 25 is connected via a rotation shaft to one end of a second connecting member 26 that is horizontally rotatable around a shaft 27 as the center of rotation, the other end of the second connecting member is connected via a rotation shaft to one end of a third connecting member 28, and the other end of the third connecting member 28 is connected to the vertical / horizontal switching member 11 via a shaft 12. The second connecting member 26 is bifurcated from the shaft 27, with one end of the bifurcated member connected to the first connecting member 25 and the other end of the bifurcated member connected to the third connecting member 28, both via rotation shafts.

[0029] 5 to 7, in response to the vertical / horizontal switching operation of the vertical / horizontal feed device 8, the cover 21 can take two positions: a position covering the power supply unit 40 having the electron feeder 42 described below, which can take a non-supply position where power is not supplied to the tray 50, and a position opening the power supply unit 40 having the electron feeder 42 at a supply position where power is supplied to the tray 50. Specifically, the cover 21 is moved between the position covering and the position opening the power supply unit 20 in response to the vertical / horizontal switching operation of the vertical / horizontal feed device 8, and is operatively connected to two sets of parallel link mechanisms including swinging bodies described below that are connected to the cover 21, and the movement of the cover 21 moves the power supply unit 40 of the power supply unit 20 between the power supply position and the non-power supply position. Fig. 5 shows a state in which cover 21 covers power supply body 40, Fig. 6 shows a state in which cover 21 begins to open in the direction of arrow A' in conjunction with the switching operation of vertical and horizontal feed device 8 in the direction of arrow A, and Fig. 7 shows a state in which cover 21 is fully opened in the direction of arrow A' when the switching operation of vertical and horizontal feed device 8 in the direction of arrow A is completed. In Figs. 7 and 8, power supply body 40 having electron feeder 42 is open and exposed. The specific configuration will be described later.

[0030] [Power supply unit] FIG. 8 shows a top view of the power supply unit 20, and FIG. 9 shows a front view. The power supply unit 20 is mounted on a mounting member 30 fixed to the longitudinal feed rail 6 and the beam 17. A pair of first support members 31, a pair of second support members 32, and a pair of third support members 33 are fixed to the mounting member 30, spaced apart along the longitudinal feed rail 6 and spaced apart from the longitudinal feed rail 6. The first support member 31 and the third support member 33 support a swing member 34, a first link member 35, and a second link member 36 that constitute a first parallel link mechanism. The second support member 32 and the third support member 33 support a third link member 37 and a fourth link member 38 that constitute a second parallel link mechanism. The fourth link member 38 is positioned so as to overlap the third link member 37. Here, the term "swing member" is an example of a swinging body.

[0031] Further, a power supply rocking member 41 is rockably supported on the base shaft 31A together with the rocking member 34, and a power supply 40 having a plurality of power supply elements 42 is provided on the free end side of the power supply rocking member 41. The power supply elements 42 come into contact with a plurality of power receiving elements 52 provided on the power receiving section 51 of the tray 50, as shown in FIG.

[0032] (First parallel link mechanism and second parallel link mechanism) Here, the first parallel link mechanism and the second parallel link mechanism will be described with reference to FIGS.

[0033] As shown in Figures 10 and 11, the first parallel link mechanism is composed of a swinging member 34, a first link member 35, and a second link member 36. The swinging member 34 is fan-shaped and widens downward, and its upper portion is swingably supported on a base shaft 31A at the upper portion of the first support member 31. One end of the first link member 35 is rotatably connected to a first shaft 24B that protrudes from both ends of the shaft 24A and is concentric with the shaft 24A that rotatably supports the articulating base 24. The other end is rotatably connected to the lower end of the second link member 36 via a second shaft 35A. The upper end of the second link member 36 is rotatably connected to a third shaft 33B that is fixed to the upper end of the third support member 33. The base axis 31A and the third axis are set at the same height from the mounting member 30, and the first axis 24B and the second axis 35A are set at the same height from the mounting member 30. The axes of the base axis 31A, the first axis 24B, the second axis 35A, and the third axis 33B are each formed into a parallelogram, so that the oscillating member 34, the first link member 35, and the second link member 36 form a first parallel link mechanism.

[0034] 10 and 11, the second parallel link mechanism is composed of a third link member 37 and a fourth link member 38. The third link member 37 has a longitudinal intermediate portion rotatably supported by a fifth shaft 32A fixed to the upper end portion of the second support member 32, and an upper end portion rotatably connected to a sixth shaft 22 fixed to the cover 21. Meanwhile, the lower end portion extends below the fifth shaft 32A and is connected via a slide groove 37A to a fourth shaft 36A protruding from the lower end side of the second link member 36. The fourth link member 38 has a lower end rotatably supported by a seventh shaft 32B fixed at the upper end portion of the second support member 32 at a distance from the fifth shaft 32A, and an upper end portion rotatably connected to an eighth shaft 23 fixed to the cover 21. The fifth shaft 32A and the seventh shaft 32B are set at the same height from the mounting member 30, and the distance between the fifth shaft 32A and the sixth shaft 22 is the same as the distance between the seventh shaft 32B and the eighth shaft 23. As a result, the axes of the fifth shaft 32A, the sixth shaft 22, the seventh shaft 32B, and the eighth shaft 23 are formed into a parallelogram, and the third link member 37 and the fourth link member 38 form a second parallel link mechanism.

[0035] The first parallel link mechanism and the second link mechanism are operatively connected by the second link member 36 on the first parallel link mechanism side and the third link member 37 on the second parallel link mechanism side, and the second parallel link mechanism is operated by the operation of the first parallel link mechanism.

[0036] The power supply unit 20 opens and closes the cover 21 via the first parallel link mechanism and the second parallel link mechanism in conjunction with the vertical / horizontal switching operation of the vertical / horizontal feed device 8. In conjunction with the opening and closing of the cover 21, the power supply 42 provided on the power supply unit 40 moves between itself and the power receiving unit 52 provided on the power receiving unit 51 of the tray 50.

[0037] (covered) 10, cover 21 includes an upper plate 21A that covers power supply unit 40, two side plates 21B that extend downward from longitudinal ends of upper plate 21A and cover both side surfaces of power supply unit 40, and notched portions 21C of side plates 21B that face the first parallel link mechanism side. Cover 21 moves from a position that covers power supply unit 40 to a position that releases power supply unit 40 and allows it to rise.

[0038] (power feeder) The power supply body 40 is configured to include a power supply body oscillating member 41 that is freely oscillated via a base shaft 31A that supports the oscillating member 34 of the first parallel link mechanism, and is attached to the first support member 31 that rises upward on the upper surface of the installation member 30, and a power supply body 40 that is attached to the power supply body oscillating member 41 and has a plurality of electrons 42.

[0039] [Power receiving section] The power receiving unit 51 is provided on the underside of the tray 50 and has a power receiving unit 52 that is in contact with the power supply unit 42 to receive power. Although not shown, the power receiving unit 52 is connected by wiring to an outlet for charging the vehicle M that is provided on the tray 50.

[0040] <Function of main parts (operation of power supply part)> Here, the operation of power supply unit 20 will be specifically described with reference to FIGS.

[0041] First, when the tray 50 carrying the vehicle M, which is an electric vehicle, stops in the storage compartment 5, the longitudinal and lateral feed device 8 shown in Fig. 5 rotates in the direction of arrow A shown in Fig. 6. The positions of the cover 21 and the power feeder 40 shown in Fig. 5 correspond to Figs. 10 and 11, the positions of the cover 21 and the power feeder 40 shown in Fig. 6 correspond to Figs. 12 and 13, and the positions of the cover 21 and the power feeder 40 shown in Fig. 7 correspond to Figs. 14 and 15.

[0042] 8, 10, and 11 show an initial state in which the cover 21 covers the power supply 40 having the electron supply 42. In the initial state, the power supply rocking member 41 is placed on the mounting member 33A provided on the third support member 33.

[0043] Next, when the vertical and horizontal feed device 8 begins to rotate in the direction of arrow A as shown in FIG. 6, the first connecting member 25 is pushed in the direction of arrow A, causing the swinging member 34 to swing in the direction of arrow A via the connecting base 24, as shown in FIGS. 12 and 13. Then, through the operation of the first parallel link mechanism and the second parallel link mechanism, the cover 21 moves in the direction of arrow A' through the action of the third link member 37 and the fourth link member 38, and begins to open the power supply 40. Although arrow A' in FIGS. 12 to 15 is shown as a straight line, this indicates the direction of movement of the cover 21. The actual movement of the cover 21 is to rise in an arc in the direction of arrow A', and then, after passing the top dead center, to move in an arc in the direction of arrow A'. In response to this movement, the push-up member 34A attached to the swinging member 34 begins to push up the underside of the power supply swinging member 41. When the vertical and horizontal feed member 8 further pivots in the direction of arrow A as shown in FIG. 7, the swinging member 34 further pivots in the direction of arrow A. As shown in FIGS. 14 and 15, the first and second parallel link mechanisms pivot to opposite positions from their initial positions, causing the cover 21 to open the power supply body 40 having the power supply 42. The push-up member 34A of the swinging member 34 pushes up the power supply body swinging member 41, causing the power supply 42 of the power supply body 40 to contact the power receiving member 52 of the tray 50. The power supply 42 is biased upward by a biasing member (not shown), such as a spring, built into the power supply body 40, so that the power supply 42 is pressed into contact with the power receiving member 52. A position sensor (not shown) detects this state and issues a power supply command to the control panel 60. This charges the battery of the vehicle M, an electric vehicle, placed on the tray 50. Here, the "boost member" is an example of a support member.

[0044] In the mechanical parking device 1, when an entry / exit operation is performed and the tray 50 is moved over the storage compartment 5, the power supply command from the control panel 60 is temporarily interrupted and the power supply is stopped in the states shown in Figures 14 and 15. Then, the tray 50 is moved to the adjacent storage compartment 5. At this time, the electron supplying circuit 42 and the electron receiving circuit 52 are three-phase and therefore each is divided into three, but as shown in Figure 7, when the drive wheels 9 of the longitudinal and lateral feed device 8 are facing the lateral feed direction, the tray 50 is moved in the longitudinal direction of the electron supplying circuit 42 and the electron receiving circuit 52, so the electron supplying circuit 42 does not need to swing down. 5, when the tray 50 moves in the vertical feed direction, the drive wheels 9 of the vertical / horizontal feed device 8 face the vertical feed direction, so that the electron supply 42 swings downward and the covers 21 move in the opposite direction of arrow A' so as to cover the electron supply 42, and the electron supply 42 and the electron receiver 52 are positioned apart, thereby preventing interference with the vertical feed operation of the tray 50. Also, during maintenance, etc., by positioning all covers 21 so as to cover the electron supply 42, workers performing maintenance, etc., can be prevented from accidentally receiving an electric shock.

[0045] As described above, the mechanical parking device according to the present invention is a mechanical parking device 1 having a plurality of storage compartments 5 for storing trays 50, and each storage compartment 5 is configured to include a vertical / horizontal feed device 8 for moving the trays 50 vertically and horizontally, a power supply unit 20 operatively connected to the vertical / horizontal feed device 8 and having a power supply body 40 that can take a supply position where power is supplied to the power receiving unit 51 of the tray 50 and a non-supply position where power is not supplied, and a cover 21 that can take a position where it covers at least the power supply 42 of the power supply unit 20 and a position where it is open, and the cover 21 is connected to a link mechanism operatively connected to the vertical / horizontal feed device 8 and swings along the movement direction of the cover 21 in conjunction with the vertical / horizontal switching operation of the vertical / horizontal feed device 8. a first parallel link mechanism connected to the swinging end of the swinging body 34; a second parallel link mechanism connected to the first parallel link mechanism and moving the cover 21 between a position where it covers the cover 21 and an open position; and a support member 34A fixed to the swinging end of the swinging body 34 and swinging the swinging body 34 by a link mechanism connected to the vertical and horizontal feed device 8, thereby moving the power supply body 40 between a supply position and a non-supply position. When the link mechanism is actuated to operate the first and second parallel link mechanisms and move the cover 21 to an open position, the support member 34A of the swinging body 34 can take a position where the power supply 42 contacts the power receiving portion 51 of the tray 50.

[0046] As a result, the cover 21 covering the power feeder 40 of the power feeder unit 20 can prevent electric shock accidents for maintenance workers, and no dedicated drive source for driving the cover 21 is required.

[0047] In addition, the oscillating body 34 is a triangular member that is narrow at the top and wide at the bottom when viewed from the side, and the top is supported by the oscillating shaft 31A, a first parallel link mechanism is connected to the side closer to the lower vertical and horizontal feed mechanism 8, and a support member 34A is provided on the side closer to the lower power supply body.

[0048] As a result, simply by swinging the swing member 34, the support member 34A can bring the power supply 42 into contact with the power receiving portion 51 of the tray 50 in conjunction with the opening movement of the cover 21.

[0049] Further, the cover 21, the swinging body 34, and the power supply body swinging member 41 attached to the swinging shaft 31A together with the swinging body 34 are insulated from the power supply body 40.

[0050] This prevents a worker performing maintenance or the like from receiving an electric shock even if he or she accidentally touches the cover.

[0051] The vertical and horizontal feed device 8 also has horizontally rotating drive wheels 9 that contact and drive the vertical feed rails or horizontal feed rails installed on the underside of the tray 50 from below.

[0052] This allows the tray 50 to be moved to the adjacent storage compartment 5 immediately after the cover 21 has been closed.

[0053] The above describes embodiments and modifications of the present invention, but the present invention is not limited to the description in the specification or drawings, and it goes without saying that other aspects, modifications, or improvements of the present invention are included in the technical scope of the claims of the present invention.

[0054] For example, although the power supply unit 20 has been described as being provided at one corner of the storage compartment 5, this is not limiting, and a power supply unit 20 may be added to the other diagonal side of the storage compartment 5.

[0055] In addition, the number of storage compartments 5 having power supply units 20 may be set to an appropriate number depending on the number of cars that can be accommodated by the mechanical parking device 1, and may be half or one-third of the total number of cars that can be accommodated. [Explanation of symbols]

[0056] 1 Mechanical parking equipment 2. Storage room 3. Storage Room 4 Lifting device 5 Storage compartment 6 Vertical feed rail 7. Traverse rail 8. Vertical and horizontal feed device 9 Drive wheels 10 axes 11 Vertical / horizontal switching member 12 axes 13 Vertical / horizontal switching motor 14 Vertical / horizontal switching member 15 axes 16 Connecting parts 17 Beam material 20 Power supply unit 21 Cover 21A Upper Plate 21B Side plate 21C Notch 22 6th axis 23 8th axis 24 Articulating base 24A axis 24B 1st axis 25 1st connecting member 26 Second connecting member 27 axes 28 Third connecting member 30 Installation materials 31 first support member 31A Base axis (an example of a "swing axis") 32 second support member 32A 5th axis 32B 7th axis 33 Third support member 33A Mounting member 33B 3rd axis 34 Oscillating member (an example of an "oscillating body") 34A Push-up member (an example of a "support member") 35 First link member 35A 2nd axis 36 Second link member 36A 4th axis (protruding part) 37 Third link member 37A Guide groove 38 Fourth link member 40 Power feeder 41 Power supply swing member 42 Feed 50 trays 51 Power receiving unit 52 Receiving electrons 60 Control Panel M Vehicle (electric or non-electric)

Claims

1. A mechanical parking device having a plurality of storage compartments for storing trays, the storage compartment includes a vertical and horizontal feed device that moves the tray vertically and horizontally; a power supply unit that is operatively connected to the vertical and horizontal feed device and has a power supply body that can take a supply position that supplies power to the power receiving unit of the tray and a non-supply position that does not supply power; and a cover that can take a position that covers at least the power supply of the power supply unit and a position that opens it; a swinging body connected to a link mechanism operatively connected to the vertical and horizontal feed device and swinging along the moving direction of the cover in response to a switching operation between the vertical and horizontal directions of the vertical and horizontal feed device; a first parallel link mechanism connected to a swing end side of the swinging body; and a second parallel link mechanism connected to the first parallel link mechanism and configured to move the cover between the covering position and the open position. a support member fixed to a swing end of the swinging body, the support member swinging the swinging body by the link mechanism connected to the longitudinal and lateral feed device, thereby moving the power feeder between the supply position and the non-supply position; A mechanical parking device in which, when the link mechanism is activated, the first parallel link mechanism and the second parallel link mechanism are activated and the cover is moved to the open position, so that the support member of the oscillating body can take a position that brings the power supply into contact with the power receiving portion of the tray.

2. The mechanical parking device described in claim 1, wherein the oscillating body is a triangular member that is narrow at the top and wide at the bottom when viewed from the side, the top is supported by an oscillating shaft, the first parallel link mechanism is connected to the side of the bottom closer to the vertical and horizontal feed mechanism, and the support member is provided on the side of the bottom closer to the power supply body.

3. 3. A mechanical parking device according to claim 1, wherein the cover, the swinging body, and the power supply swinging member attached to the swinging shaft together with the swinging body are insulated from the power supply.

4. 2. The mechanical parking device according to claim 1, wherein the vertical and horizontal feed device has horizontally rotating drive wheels that contact and drive the vertical feed rails or horizontal feed rails installed on the underside of the tray from below.

Citation Information

Patent Citations

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