VEHICLE, AND PARKING FACILITY FOR SAME
20220228391 · 2022-07-21
Inventors
Cpc classification
B62D63/04
PERFORMING OPERATIONS; TRANSPORTING
E04H6/42
FIXED CONSTRUCTIONS
Y02T90/14
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B60L50/60
PERFORMING OPERATIONS; TRANSPORTING
E04H6/12
FIXED CONSTRUCTIONS
B60L15/20
PERFORMING OPERATIONS; TRANSPORTING
H02J7/00
ELECTRICITY
B60L2260/34
PERFORMING OPERATIONS; TRANSPORTING
Y02T90/12
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
E04H6/38
FIXED CONSTRUCTIONS
International classification
E04H6/38
FIXED CONSTRUCTIONS
B60L50/60
PERFORMING OPERATIONS; TRANSPORTING
B62D63/04
PERFORMING OPERATIONS; TRANSPORTING
E04H6/32
FIXED CONSTRUCTIONS
Abstract
An object of the instant application is to provide a vehicle that can minimize parking space and a parking facility that can efficiently park a large number of vehicles in a predetermined parking space. The vehicle 1 includes a bottom flap 7 arranged on a bottom surface of a vehicle body and vertically rotatable around a lower rear end of the vehicle body, a rear flap 8, and geared motors 9, 11 for respectively rotating the bottom flap 7 and the rear flap 8. The parking facility 20 for a vehicle 1′ is configured to include an erecting mechanism (a rotating member 22, an electric motor 23, and a link mechanism 24) for erecting the vehicle 1′ upright with a rear surface facing down, and a transfer mechanism (belt conveyor) 25 for transferring the vehicle 1′ erected by the erecting mechanism to a predetermined position.
Claims
1. A vehicle that can stand upright with a rear surface of a vehicle body facing down, the vehicle comprising: a bottom flap arranged on a bottom surface of the vehicle body and vertically rotatable around a lower rear end of the vehicle body; and a drive source for rotating the bottom flap.
2. The vehicle according to claim 1, further comprising: a rear flap arranged on a rear surface of the vehicle body and vertically rotatable around the lower rear end of the vehicle body; and a drive source for rotating the rear flap.
3. The vehicle according to claim 2, wherein a contact sensor is provided on a bottom surface of the bottom flap and an outer surface of the rear flap.
4. A vehicle that can self-travel while kept standing upright with a rear surface of a vehicle body facing down, the vehicle comprising: a caster; a drive wheel; and a drive source for rotationally driving the drive wheel, the caster, the drive wheel, and the drive source provided on the rear surface of the vehicle body.
5. The vehicle according to claim 1, wherein the drive source is a geared motor.
6. The vehicle according to claim 1, further comprising: a rechargeable battery; an electric motor for traveling, the electric motor rotationally driven with electric power supplied from the battery; and a power receiving unit for receiving electric power from outside for charging the battery.
7. A parking facility for parking a vehicle while kept standing upright with a rear surface of the vehicle facing down, the parking facility comprising: an erecting mechanism for erecting the vehicle with the rear surface of the vehicle facing down; and a transfer mechanism for transferring the vehicle erected by the erecting mechanism to a predetermined position.
8. The parking facility according to claim 7, wherein the transfer mechanism is a belt conveyor.
9. The parking facility according to claim 8, wherein a plurality of power transmission units for transmitting electric power to the parked vehicle from outside are built in the belt conveyor.
10. A parking facility for parking the vehicle while kept standing upright with the rear surface of the vehicle facing down according to claim 4, the vehicle parking facility comprising an erecting mechanism for erecting the vehicle with the rear surface of the vehicle facing down.
11. The vehicle parking facility according to claim 7, wherein the erecting mechanism comprises: a horizontal base plate; a rotating member vertically rotatably supported at one end in the longitudinal direction of the base plate for mounting a vehicle before and after erection; an electric motor provided at the other end in the longitudinal direction of the base plate; and a link mechanism for connecting an output shaft of the electric motor to the rotating member.
12. The vehicle parking facility according to claim 11, wherein a contact sensor is provided on the rotating member.
13. The vehicle parking facility according to claim 11, wherein a plurality of power transmission units for transmitting electric power to the parked vehicle from outside are arranged on the base plate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0033]
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
[0040]
[0041]
[0042]
MODE FOR CARRYING OUT THE INVENTION
[0043] Hereinafter, embodiments of the present invention (namely, first to third inventions) will be described with reference to the accompanying drawings.
[0044] [First invention] First, an embodiment of the first invention will be described below with reference to
[0045] In this vehicle 1, a rear surface 4a of a vehicle body frame 4 made of metal formed into a substantially rectangular box shape forms a flat surface standing vertically, and an upper opening of the vehicle body frame 4 is covered with a flip-up roof 5 that can be opened upward. Here, the roof 5 is made of, for example, lightweight resin, and at least a front surface and left- and right-side surfaces thereof are configured respectively as a transparent front window and transparent side windows. As described above, the vehicle 1 according to the present embodiment provided with the flip-up roof 5 can achieve minimization of a space required for occupants to get on and off the vehicle 1, or in other words, of a space between the vehicle 1 and other vehicles parked around the vehicle 1, as compared with a normal vehicle with doors that open and close to the left and right.
[0046] In addition, two seats 6 for seating occupants are arranged in the front and rear of a vehicle interior surrounded by the vehicle body frame 4 and the roof 5 of the vehicle 1.
[0047] As will be described later (see
[0048] Meanwhile, in the vehicle 1 according to the present embodiment, a bottom flap 7 and a rear flap 8 in a rectangular flat plate shape are provided so as to rotate vertically (namely, open and close) around a lower rear end of the vehicle body frame 4. Here, the bottom flap 7 is an elongated member arranged along the front-rear direction between a pair of left and right front wheels 2 arranged in the width direction of the lower surface of the vehicle body frame 4 and between a pair of left and right rear wheels 3 arranged in the width direction of the lower surface of the vehicle body frame 4. A front end 7a of the bottom flap 7 bends diagonally forward upward, and a rear end thereof is pivotally supported on the vehicle body frame 4 so as to rotate vertically. In addition, as shown in
[0049] Moreover, the rear flap 8 is configured as a rectangular plate along the outer diameter shape of the rear surface 4a of the vehicle 1. And, as shown in
[0050] As will be described later, the vehicle 1 stands vertically with the rear surface 4a facing down at the time of parking. In this regard, a lithium battery in which no liquid leakage occurs at any position is used in order to prevent liquid leakage in the battery even when the vehicle 1 stands upright. Further, the geared motors 9, 11 are motors as drive sources in which a reduction gear for amplifying drive torque is built.
[0051] Next, a parking method of the vehicle 1 configured as described above will be described below with reference to
[0052]
[0053] As shown in
[0054] Moreover, when the geared motor 11 shown in
[0055] After that, when the geared motor 9 continues to be driven, the vehicle 1 stands vertically on the rear flap 8 with the rear surface 4a facing down as shown in
[0056] When the series of parking operations as described above are performed on a plurality of the vehicles 1, first, as shown in
[0057] When the above-described operation is sequentially performed on the second and third vehicles 1, the second and third vehicles 1 are parked while kept standing vertically as shown in
[0058] Meanwhile, since the total height H of the vehicle 1 is smaller than the total length L (H<L as shown in
[0059] [Second invention] Next, an embodiment of the second invention will be described below with reference to
[0060]
[0061] Meanwhile, on the center in the width direction of the upper and lower ends of the rear plate 15, support bases 16 in a rectangular block shape are fixed along the width direction. And, above the lower support base 16 on the rear plate 15, a power receiving unit 13 is provided for receiving electric power from the outside for charging a battery (not shown in the figure) mounted on the vehicle 1′.
[0062] Next, the parking facility 20 for parking the vehicle 1′ configured as described above while kept standing vertically will be described below with reference to
[0063]
[0064] The rotating member 22 constitutes an erecting mechanism for vertically erecting the vehicle 1′ at the time of parking, and includes a plate 22A on which the vehicle 1′ before erection is placed, a plate 22B, forming a right angle with the plate 22A, on which the vehicle 1′ after erection is placed, and left and right-side plates 22C respectively connecting the left and right-side ends of these plates 22A, 22B to each other. The rotating member 22 is supported on the base plate 21 by a shaft 26 inserted into the base ends (namely, corners) of the left and right-side plates 22C in the width direction so as to rotate vertically. More specifically, a pair of brackets 21A are erected on the left and right sides of the one end in the longitudinal direction of the base plate 21, and these brackets 21A rotatably supports both left and right ends of the shaft 26. In this manner, the rotating member 22 is pivotally supported on the base plate 21 so as to rotate vertically.
[0065] Here, a notch 22a in a rectangular shape is formed on the plate 22B of the rotating member 22 for preventing interference with the belt conveyor 25. And, a contact sensor 27 is provided on the outer surface of the left and right sides of the plate 22B so as to sandwich the notch 22a on the plate 22B. Further, a contact sensor 28 is also provided on the center in the width direction of the outer surface of the other plate 22A.
[0066] The electric motor 23 is arranged at the other end in the longitudinal direction of the base plate 21 (shown at the right end in
[0067] Here, each of the left and right link mechanisms 24 is configured by rotatably connecting two link members 24A, 24B to each other by a shaft 29. And, the one end of the link member 24A is bonded to the output shaft 23a of the motor 23b as described above, and one end of the other link member 24B is rotatably connected to an end of the side plate 22C of the rotating member 22 by a shaft 30.
[0068] Since the belt conveyor 25 is conventionally known, detailed descriptions of its configuration will be omitted. But, in general, it is configured so that an endless strip belt is wound between a drive roller and a driven roller (not shown in the figure) arranged in parallel with each other, and the strip belt moves by rotationally driving the drive roller with an electric motor serving as a drive source (not shown in the figure). Additionally, a plurality of power transmission units 31 (three in the illustrated example) are built in the belt conveyor 25 at appropriate intervals in the longitudinal direction.
[0069] Next, a method of parking the vehicle 1′ shown in
[0070]
[0071] Namely, before the vehicle 1′ is erected vertically, the rotating member 22 of the parking facility 20 is maintained in such a posture that the plate 22A is horizontal as shown in
[0072] In the above-described state, when the electric motor 23 of the parking facility 20 is driven to rotate the output shaft 23a of the electric motor 23 and then rotate the link member 24A of each of the left and right link mechanisms 24 around the output shaft 23a of the electric motor 23 in the direction of the arrow shown in the figure (namely, clockwise) as shown in
[0073] As described above, when the vehicle 1′ stands vertically on the plate 22B of the rotating member 22, the belt conveyor 25 is driven to transfer the vehicle 1′ standing vertically to the innermost part of the base plate 21 (namely, to the right end of
[0074] When the above-described operation is sequentially performed on the second and third vehicles 1′, the second and third vehicles 1′ are parked while kept standing vertically as orderly as shown in
[0075] Meanwhile, since the total height of the vehicle 1′ is smaller than the total length, when the vehicle 1′ is parked while kept standing vertically with the rear surface facing down as in the present embodiment, a large number of the vehicles 1′ can be parked more efficiently in a predetermined parking space. This can solve problems such as securing parking space for this type of vehicle 1′ in the city.
[0076] [Third invention] Next, an embodiment of the third invention will be described below with reference to
[0077]
[0078] Meanwhile, a caster 17 is rotatably arranged on both left and right sides of the upper end of the rear plate 15, and a drive wheel 18 is rotatably arranged on both left and right sides of the lower end of the rear plate 15. Here, the left and right drive wheels 18 are rotationally driven by a geared motor (not shown in the figure) built in a motor case 19 fixed between both drive wheels 18 at the lower end of the rear plate 15. Further, a rectangular opening window 15a is formed on the center in the width direction of the upper half of the rear plate 15, and a power receiving unit 13 for receiving electric power for charging a battery (not shown in the figure) mounted on the vehicle 1″ is provided below the opening window 15a of the rear plate 15.
[0079] Next, a parking facility 20′ for parking the vehicle 1″ configured as described above while kept standing vertically will be described below with reference to
[0080]
[0081] Similarly to the parking facility 20 according to the second invention shown in
[0082] Next, a method of parking the vehicle 1″ shown in
[0083]
[0084] Namely, through the same process shown in
[0085] Next, when a geared motor (not shown in the figure) provided on the rear plate 15 is activated in the above-described state, the pair of the left and right drive wheels 18 are rotationally driven by the geared motors, so that as shown in
[0086] When the above-described operation is sequentially performed to the second and third vehicles 1″, the second and third vehicles 1″ are parked while kept standing vertically as orderly as shown in
[0087] Therefore, since similarly to the parking facility 20 according to the second invention (see
[0088] It should be noted that the first to third inventions described above are not limited to the embodiments described above, and may vary within the scope of the claims and the technical ideas described in the specification and the drawings.