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    专

    用于通过血管将电极植入脑部的介入装置和医疗设备

    1108606570A1
    发明人
    赵郑拓, 李雪, 王兴昭
    受让人
    CHINESE ACAD SCI EXCELLENCE BRAIN SCI (CHSC-Non-standard)
    申请人
    Kevin Gerschefske, Juliu Horvath, Lee San-Ping, Marjolein Brugman
    申请号
    529564
    申请日
    1994-11-14
    公开(公告)号
    1108606570A1
    公开(公告)日
    2024-02-13
    IPC分类号
    B21B29/00B21B27/10
    CPC分类号
    -
    优先权号
    062294
    优先权日
    1996-03-18
    摘要

    NOVELTY - The blade (2) has a shaped portion that is between a led and a blade tip (9). The shaped portion is consisted a succession of airfoils which locates in a transverse plan appreciably perpendicular to that of axis blade. A maximum distance is between leading edge (6) and trailing edge (7) in transverse plan. A cord average twists first and second directions. The blade presents a combination of variation law of cords and marks with arrows. The cord increases between shaped portion and a first section which is provided with a first distance of axis rotation (A).

    USE - Blade for rotor of aircraft.

    ADVANTAGE - The aircraft rotor blade with adapted geometry improves acoustics during approach flight and the improvements in performance in forward flight. The combination of variation of marks with arrows and of the cords of the profits of the sections of the blade allows to improve the aerodynamic performances in flight of advance while reducing.

    DESCRIPTION OF DRAWING(S) - The drawing shows the schematic view of the blade.

    Blade (2)

    Leading edge (6)

    Trailing edge (7)

    Blade tip (9)

    Axis rotation (A)

    权利要求
    1. A power system, comprising: a high-speed flywheel connected to an engine of a machine; a battery; a motor-generator unit (MGU) connected to the engine and the battery; and a turbocharger connected to the engine, wherein one or more of the high-speed flywheel, the battery and the MGU, or the turbocharger is configured to provide: supplemental power to power provided by the engine to operate the machine, or replacement power when no power is provided by the engine to operate the machine, and wherein one or more of: the power system further comprises a flywheel MGU, or the high-speed flywheel requires at least 20,000 revolutions per minute (RPM).
    2. The power system of claim 1 , wherein the high-speed flywheel is connected to a hybrid front-end accessory drive (FEAD) of the engine; and wherein the MGU is connected to the FEAD of the engine.
    3. The power system of claim 1 , wherein the MGU is a battery MGU; wherein the engine is connected to an engine MGU; and wherein the high-speed flywheel is connected to the flywheel MGU.
    4. The power system of claim 1 , wherein the MGU is a first MGU that is connected to a first inverter; wherein the engine is connected to a second MGU that is connected to a second inverter; wherein the flywheel MGU is connected to a third inverter; and wherein the second inverter is connected to the third inverter.
    5. The power system of claim 1 , wherein the high-speed flywheel is connected to a gear ratio device; and wherein the gear ratio device is connected to the flywheel MGU.
    6. The power system of claim 1 , wherein the turbocharger is connected to a gear train of the engine; or wherein the turbocharger is connected to the engine via another MGU.
    7. The power system of claim 1 , further comprising a controller configured to: receive a request to provide the supplemental power or the replacement power; determine that the one or more of the high-speed flywheel, the battery and the MGU, or the turbocharger are to provide the supplemental power or the replacement power; and cause, based on the request, the one or more of the high-speed flywheel, the battery and the MGU, or the turbocharger to provide the supplemental power or the replacement power.
    8. The power system of claim 1 , further comprising a controller configured to: determine that the engine is shut down; receive a request to provide power to one or more components of the machine when the engine is shut down; and cause, based on the request, one or more of the high-speed flywheel or the battery and the MGU to provide the replacement power to the one or more components of the machine.
    9. A work machine, comprising: an engine; a high-speed flywheel configured to recover or store at least a portion of energy generated during a braking operation of the engine, wherein the high-speed flywheel requires at least 20,000 revolutions per minute (RPM); a battery; a motor-generator unit (MGU) connected to the engine and the battery; a flywheel MGU; and a turbocharger connected to the engine, wherein one or more of the high-speed flywheel, the battery and the MGU, or the turbocharger is configured to provide: supplemental power to power provided by the engine to operate the work machine, or replacement power when no power is provided by the engine to operate the work machine.
    10. The work machine of claim 9 , wherein the turbocharger is configured to recover energy, from the engine, via turbo-compounding; and wherein the supplemental power is provided based on a portion of the energy recovered by the turbocharger.
    11. The work machine of claim 9 , wherein the high-speed flywheel is configured to store the portion of the energy generated during the braking operation of the engine; wherein the battery is configured to store a different portion of the energy generated during the braking operation of the engine; and wherein the replacement power is provided based on at least one of: the portion of the energy stored by the high-speed flywheel, or the different portion of the energy stored by the battery.
    12. The work machine of claim 9 , wherein the high-speed flywheel is connected to a hybrid front-end accessory drive (FEAD) of the engine; and wherein the MGU is connected to the FEAR of the engine.
    13. The work machine of claim 12 , wherein the high-speed flywheel is connected to the FEAD via the flywheel MGU and a first inverter; and wherein the battery is connected to the MGU via a second inverter.
    14. The work machine of claim 9 , further comprising a controller configured to: detect an operation, of the work machine, associated with a transient load of the work machine; receive a request to provide the supplemental power as a response to the transient load; and cause the one or more of the high-speed flywheel, the battery and the MGU, or the turbocharger to provide the supplemental power as the response to the transient load.
    15. The work machine of claim 9 , wherein one or more of the high-speed flywheel or the battery and the MGU is configured to provide the replacement power to operate one or more components of the work machine; wherein the work machine is an off-road machine; and wherein the engine is a diesel engine.
    16. A method, comprising: receiving, by a controller of a power system, a request to provide power to operate a machine, wherein the power system comprises a high-speed flywheel, a battery, a flywheel motor-generator unit (MGU), and a turbocharger, and wherein a first rotational speed range of the flywheel MGU is less than a second rotational speed range of the high-speed flywheel; determining, by the controller and based on the request, that one or more of the high-speed flywheel, the battery and the flywheel MGU, or the turbocharger are to provide the power; and causing, by the controller, the one or more of the high-speed flywheel, the battery and the flywheel MGU, or the turbocharger to provide the power as: supplemental power to power provided by an engine of the machine to operate the machine, or replacement power when no power is provided by the engine to operate the machine.
    17. The method of claim 16 , further comprising: detecting an operation, of the machine, associated with a transient load of the machine, wherein the supplemental power is provided as a response to the transient load.
    18. The method of claim 16 , wherein the flywheel MGU is a first flywheel MGU; wherein the method further comprises: detecting a braking operation of the engine; transmitting a signal to the first flywheel MGU, connected to the battery, to cause the battery to store a first portion of energy generated during the braking operation; and transmitting a signal to a second flywheel MGU, connected to the high-speed flywheel, to cause the high-speed flywheel to store a second portion of the energy generated during the braking operation; and wherein the supplemental power or the replacement power is provided based on at least one of: the first portion of the energy stored by the battery, or the second portion of the energy stored by the high-speed flywheel.
    19. The method of claim 16 , further comprising: determining that the engine is shut down, wherein receiving the request comprises: receiving the request when the engine is shut down; and wherein, when causing the one or more of the high-speed flywheel, the battery and the flywheel MGU, or the turbocharger to provide the power, comprises: causing, based on the request, one or more of the high-speed flywheel or the battery and the flywheel MGU to provide the replacement power.
    20. The method of claim 16 , further comprising: receiving a different request to start the engine of the machine; and causing one or more of the high-speed flywheel or the battery and the flywheel MGU to provide power to start the engine.
    说明书
    [0001]FIG. 1 is a front elevational view of my new design for a furniture component; FIG. 2 is a right side elevational view thereof; FIG. 3 is a rear elevational view thereof; FIG. 4 is a left side elevational view thereof; FIG. 5 is a top plan view thereof; and, FIG. 6 is a bottom plan view thereof. The features of the furniture component shown in broken lines form no part of the claimed design.
    同族专利
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