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전동 유압식 파워 스티어링 펌프 1.5KW

전동 유압식 파워 스티어링 펌프 1.5KW

전자유압식 파워 스티어링 시스템은 기존 유압식 파워 스티어링 시스템을 기반으로 상당한 개선을 이루었지만, 최신 제품조차도 배치, 설치, 밀봉, 취급, 에너지 소비, 마모 및 소음 측면에서 유압식 파워 스티어링 시스템의 고질적인 결함을 완전히 없앨 수는 없습니다. 그러나 비교적 성숙한 기술 덕분에 전체 차량 전자 제어 시스템과의 통합을 달성할 수 있습니다. 기존 유압식 파워 스티어링 시스템(HPS)에서 고급 전동식 파워 스티어링 시스템으로의 과도기적 제품으로서, 현재 단계에서 상당한 장점을 가지고 있으며, 지속적인 개선과 개발이 이루어질 것입니다.

하위 카테고리

  • 설명
  • Product Attributes

    Model No.:FDB629F2
    Place Of Origin:China

    Packaging & Delivery

    Selling Units:Piece/Pieces

    Picture Example

    Product Description
    The electrohydraulic power Steering System has made significant improvements on the basis of traditional hydraulic power steering systems, but even the latest products cannot eliminate the inherent defects of the hydraulic power steering system in terms of layout, installation, sealing, handling, energy consumption, wear, and noise. However, due to its relatively mature technology, it can achieve the integration of the entire vehicle electronic control system. As a transitional product from the traditional hydraulic power steering system HPS to the advanced electric power steering system, it still has considerable advantages at this stage, and will continue to be improved and developed.
    Critical parameters

     Function Power steering
     Vehicle application 6-8m electric bus, light truck
     Pump model Vane pump
     Motor model Permanent magnet synchronous motor
     Max. output flow 10-13L/min
     Max. working pressure 10-13MPa
     Motor working voltage 200-380V AC
     Motor peak power 1.5KW
     Working ambient temp. -40℃~+80℃
     Electric input parameters Enable, speed (optional)
     Protection grade IP6K9K
     Communication mode CAN

    Control strategy
    Due to the fact that the hydraulic pump obtains power by controlling the motor through a controller, different control strategies can be obtained by controlling the different rotational speeds of the motor according to different operating conditions. Compared to traditional fuel vehicles, it can save power and energy, reduce the oil temperature of the steering system, ensure the viscosity and lubrication effect of the oil, and improve the service life of the hydraulic pump. In addition, by controlling the rotational speed of the motor, the driver's hand feel of the vehicle at low/high speeds can also be enhanced.
    5.4.1 Start and stop control
    According to the power-on sequence of the entire vehicle, the driver presses the one button start button, and the entire vehicle detects whether the status of each electrical system is normal through the CAN network. After confirming that there are no abnormalities, a ready command is issued. At this time, the entire vehicle is in the "standby" state, and the gear shift is in the P-gear parking state;
    At this time, when the Steering Pump controller receives the ready signal from the vehicle controller, it controls the steering pump motor to start working.
    5.4.2 Speed dependent steering
    5.4.2.1 When the entire vehicle is in the P-gear parking state, the vehicle has no intention of traveling. At this time, the steering pump controller controls the motor speed to maintain a low rotational speed (the rotational speed that can enable the hydraulic pump to establish pressure), which saves energy and reduces noise.
    5.4.2.2 When the entire vehicle is in D/N/R gear, the rotation speed of the steering pump motor operates according to the curve shown in Figure 1 below. The curve can also be adjusted according to the needs of different customer groups to obtain different driving feel;
    5.4.3 Static shutdown protection
    Considering that the vehicle may be on standby when in use, or the traffic lights may last for a long time, it is specified that when the vehicle is in P gear for more than 5 minutes, the steering pump motor stops and remains on standby. When switched to another gear, the steering pump motor resumes operation. This can not only save energy but also reduce the vehicle noise environment when the driver is waiting.

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