IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0153579
(2008-05-21)
|
등록번호 |
US-8177007
(2012-05-15)
|
우선권정보 |
JP-2007-137172 (2007-05-23) |
발명자
/ 주소 |
- Abe, Noriyuki
- Kitami, Yasuo
- Akutsu, Shigemitsu
|
출원인 / 주소 |
|
대리인 / 주소 |
|
인용정보 |
피인용 횟수 :
7 인용 특허 :
16 |
초록
▼
A power unit which makes it possible to attain the reduction of the size and manufacturing costs thereof, and improve turnability. A power unit drives left and right rear wheels. A first rotating machine and a second rotating machine are configured to be capable of inputting and outputting energy. A
A power unit which makes it possible to attain the reduction of the size and manufacturing costs thereof, and improve turnability. A power unit drives left and right rear wheels. A first rotating machine and a second rotating machine are configured to be capable of inputting and outputting energy. A first and a second planetary gear units are disposed between the first and second rotating machines and the left and right rear wheels, respectively, for transmitting energy between the first rotating machine and the left and right rear wheels and between the second rotating machine and the same. The first rotating machine, the left rear wheel, the right rear wheel, and the second rotating machine are in a collinear relationship in rotational speed, and are in a line in this order in a collinear chart representing the collinear relationship.
대표청구항
▼
1. A power unit that drives left and right driven parts for propelling a transport machine to travel in a line and turn, comprising: a first energy input and output device configured to input and output energy;a second energy input and output device configured to input and output energy; andan energ
1. A power unit that drives left and right driven parts for propelling a transport machine to travel in a line and turn, comprising: a first energy input and output device configured to input and output energy;a second energy input and output device configured to input and output energy; andan energy transmission device provided between said first energy input and output device and said second energy input and output device, and the left and right driven parts, configured to transmit energy between said first energy input and output device and the left and right driven parts, and between said second energy input and output device and the left and right driven parts,wherein said first energy input and output device, the left driven part, the right driven part, and said second energy input and output device are in a collinear relationship in respect of rotational speed, and are in a line in this order in a collinear chart representing the collinear relationship. 2. A power unit as claimed in claim 1, further comprising: an energy storing and releasing device configured to store and release energy, and connected to said first energy input and output device and said second energy input and output device. 3. A power unit as claimed in claim 1, wherein said first and second energy input and output devices are connected to each other in a manner capable of mutually giving and receiving energy therebetween. 4. A power unit as claimed in claim 3, wherein said energy is electrical energy. 5. A power unit as claimed in claim 1, wherein said first and second energy input and output devices are rotating machines. 6. A power unit as claimed in claim 1, wherein said energy transmission device comprises: a first energy transmission device having a first element, a second element, and a third element, said first to third elements having respective rotational speeds satisfying a collinear relationship, and configured such that said first to third elements are in a line in order in a collinear chart representing the collinear relationship; anda second energy transmission device having a fourth element, a fifth element, and a sixth element, said fourth to sixth elements having respective rotational speeds satisfying a collinear relationship, and configured such that said fourth to sixth elements are in a line in order in a collinear chart representing the collinear relationship,wherein said first and fifth elements are connected to the right driven part,wherein said second and fourth elements are connected to the left driven part,wherein said third element is connected to said first energy input and output device, andwherein said sixth element is connected to said second energy input and output device. 7. A power unit as claimed in claim 6, wherein said first energy transmission device is a first planetary gear unit having a first sun gear, a first ring gear, and a first carrier rotatably supporting a first planetary gear in mesh with said first sun gear and said first ring gear, and wherein one and the other of said first element and said third element are said first sun gear and said first ring gear, and said second element is said first carrier, andwherein said second energy transmission device is a second planetary gear unit having a second sun gear, a second ring gear, and a second carrier rotatably supporting a second planetary gear in mesh with said second sun gear and said second ring gear, andwherein one and the other of said fourth element and said sixth element are said second sun gear and said second ring gear, and said fifth element is said second carrier. 8. A power unit as claimed in claim 7, wherein said first element is said sun gear, said third element is said first ring gear, said fourth element is said second sun gear, and said sixth element is said second ring gear. 9. A power unit as claimed in claim 1, wherein said first energy input and output device is a first stator for generating a first rotating magnetic field, said first stator being immovable, and wherein said energy input and output device is a second stator for generating a second rotating magnetic field, said second stator being immovable,wherein said energy transmission device comprises a first rotor comprising magnets and disposed in a manner opposed to said first stator, a second rotor comprising soft magnetic material members and disposed between said first stator and said first rotor, a third rotor comprising magnets and disposed in a manner opposed to said second stator, and a fourth rotor comprising soft magnetic material members and disposed between said second stator and said third rotor, andwherein said first stator, said first rotor, and said second rotor are configured to input and output energy via magnetic circuits formed between said first stator, said first rotor, and said second rotor according to generation of the first rotating magnetic field, and in accordance with input and output of the energy, the first rotating magnetic field, said first rotor and said second rotor rotate while maintaining a collinear relationship in respective rotational speed therebetween, andwherein said second stator, said third rotor, and said fourth rotor are configured to input and output energy via magnetic circuits formed between said second stator, said third rotor, and said fourth rotor according to generation of the second rotating magnetic field, and in accordance with input and output of the energy, the second rotating magnetic field, said third rotor and said fourth rotor rotate while maintaining a collinear relationship in respective rotational speed therebetween,wherein said first and second rotors are connected to the right driven part, andwherein said second and third rotors are connected to the left driven part.
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