Abstract:
The present invention relates to a drainage apparatus of a battery mounting part for a vehicle. In a drainage apparatus of the present invention, a drain (22) is formed in a mounting plate (15) forming a bottom of a battery mounting space (14') in a battery mounting part (12). The bottom of the battery mounting space is made to be slant toward the drain. The drain is formed at the edge side of the battery mounting space. A handle bar (50) having a drain flow path (52) in the inside to be connected to the exit of the drain is formed to penetrate the inside of a vehicle room (31) up and down. The handle bar has an upper part connected to a reinforcing member (32) supporting the battery mounting part, and has a lower part connected to a chassis frame, in order to support the weight of the battery mounting part. And, a blocking rib (160) is further formed at the front end of a mounting part fens (15') of a mounting case (14) constituting the outer appearance of the battery mounting part so that water is blocked to flow into the battery mounting part. Because the handle bar is connected to the chassis frame through the vehicle room, the path for discharging water from the battery mounting space to the outside can be minimized. And the handle bar supports the weight of the battery mounting part so that the battery mounting part can be installed stably.
Abstract:
The present invention relates to a connector driving apparatus for a battery of a vehicle. The present invention combines connectors (18,40) by using the load of the battery (16) without using an additional driving source. For this, a hydraulic pressure plate (22) which receives the load of the battery (16) is located in a connector installing unit (14) which is formed in the center of a bottom plate (13). A connection link (32) whose one end supports the hydraulic pressure plate (22) is supported by a link elastic member (32). The hydraulic pressure plate (22) protrudes than the bottom plate (13) by the link elastic member (32) in a normal state. The connector plate (37) is located in an opening part (24) which is formed in the center of the hydraulic pressure plate to be pushed by the other end of the connection link (32). The connector (40) is installed on the connector plate (37) and is supported in a driving apparatus housing (20) by a plate elastic member (38’). The connector plate (37) is supported by the plastic elastic member (38’). When the connector plate (37) is pushed by the other end of the connection link, the connector plate protrudes than the bottom plate to combine the connector (40) with the connector (18).
Abstract:
본 발명은 전기 자동차용 배터리의 탈착장치에 관한 것으로서, 전기 자동차에 형성되어 배터리를 탈착가능하게 탑재하며, 승강수단에 의해 승강 가능하게 커넥터 핀 모듈이 설치된 배터리 장착부와; 상기 배터리 장착부에 탑재된 배터리와 교환하기 위한 완충 배터리를 각각 탈착가능하게 탑재하는 복수의 배터리 받침대들이 형성된 적재대와; 상기 배터리 장착부와 배터리 받침대 사이를 이동장치에 의해 X축, Y축 및 Z축으로 이동하면서, 상기 배터리 장착부 또는 배터리 받침대에 장착된 배터리를 탈거한 후, 상기 배터리 받침대 또는 배터리 장착부에 교환,장착하는 배터리 탈착부를 포함하는 것을 특징으로 하며, 이에 따라 배터리 장착부에 배터리가 정확한 위치에 안착되어 세팅이 이루어진 경우에만 배터리 장착부에서 승강가능하게 설치된 커넥터 핀이 상승하여 배터리의 커넥터 핀홀에 삽입되어 전기적으로 연결이 이루어짐으로써, 배터리 장착부에 대한 배터리의 전기적 연결이 안정적으로 이루어지게 됨은 물론, 전기 자동차의 주행 중 발생되는 요동에도 상기 커넥터 핀이 커넥터 핀 홀에 대하여 빠지지 않도록 구성됨으로써, 전기적으로 안정화가 이루어지는 효과도 제공된다.
Abstract:
본 발명은 전기자동차, 배터리 충전스테이션 및 이를 포함하는 전기자동차의 배터리 교환 예약시스템에 관한 것으로 본 발명에 따른 전기자동차는 전기자동차에 장착된 배터리의 잔량을 검출하는 잔량검출부; 배터리 충전스테이션과의 통신을 위한 통신부; 및 상기 배터리의 잔량 및 상기 전기자동차의 주행 경로에 기초하여 상기 전기자동차의 배터리를 교환할 배터리 충전스테이션을 결정하고, 상기 결정된 배터리 충전스테이션에 배터리 교환 예약명령을 전송하는 제어부를 포함한다. 이를 통해, 전기자동차의 배터리 잔량에 기초하여 주행 경로에 따른 배터리 충전스테이션에 배터리 정보를 요청하고 배터리 교환을 사전 예약함으로써, 보다 효율적이고 편리하게 배터리를 교환할 수 있다.
Abstract:
PURPOSE: A NEV(Neighborhood Electric Vehicle) charging method is provided to improve safety by preventing a charging stand from being directly contacted to a charging plug. CONSTITUTION: A first connector image is stored in a memory by photographing a charging connector(S10). A first correction value is calculated by comparing the first connector image with a second connector image(S20). A charging plug of the charging stand is aligned by using the first correction value(S30). The alignment of the charging plug of the charging stand is checked in a charging connector of the NEV(S40). The NEV is charged by moving the charging plug of the charging stand forward(S50). [Reference numerals] (AA) Start; (BB) End; (S10) Storing a first connector image; (S20) Calculating a first correction value; (S30) Alignment; (S40) Alignment?; (S41) Storing a third connector image; (S42) Coincidence?; (S43) Calculating a second correction value; (S50) Charging
Abstract:
PURPOSE: An electric car, a battery charge station, a battery change booking system of the electric car and a booking method including the same are provided to request battery information to the battery charge station according to a driving path based on residual quantity of a battery of the electric car and previously book a battery exchange. CONSTITUTION: A residual quantity detecting unit(110) detects residual quantity of a battery installed in an electric car(100). A communicating unit(120) communicates with a battery charge station(200). A controlling unit(130) determines the battery charge station for a battery exchange of the electric car based on a driving path of the electric car and the residual quantity of the battery. The controlling unit transmits a battery exchange booking command to the determined battery charge station. [Reference numerals] (110) Residual quantity detecting unit; (120,220) Communicating unit; (130) Controlling unit; (140) User inputting unit; (210) Battery loading unit; (230) Database unit; (240) Reservation managing unit
Abstract:
PURPOSE: A sunroof coupling apparatus is provided to secure widen opening surface through minimizing the blinded surface due to a guide rail. CONSTITUTION: A sunroof coupling apparatus comprises guiders(21, 22) and a guide rail. The guiders are coupled with a sunroof through a moving connection part inserted into the sunroof. The guider comprises a vertically formed opening groove. The guider is formed into vertical direction for a drainage connection surface. The guide rail is composed of a drainage connection surface(23) and coupling expansion surface(24). The drainage surface is expanded for offer a drain performance in the opposite side of the guider. The coupling expansion surface is expanded from the for being coupled with a side filler section forming a vehicle roof.
Abstract:
PURPOSE: A roof device for a convertible vehicle is provided to simplify the mechanism of a roof device through composing a link unit capable of folding a front roof and a rear roof in the same shape using a driving power source. CONSTITUTION: A roof device for a convertible vehicle comprises a link unit(10). The link unit is installed in a front roof and a rear roof. The link unit drives the rear roof by pulling or pushing the front roof to the rear roof. The link unit comprises a front roof fixing link(11), a rear roof fixing link(13), first and second connection links(12, 14), a rear roof front link(15), and a rear roof rear link(16). The first and second connection links are installed in the front and rear sides of the front and rear roof fixing links, respectively through hinges. The rear roof front and rear links are installed in the rear side of the rear roof fixing link, respectively through hinges.
Abstract:
본 발명은 컨버터블 차량의 슬라이딩 가이드 레일에 관한 것으로, 프론트 레일과, 이 프론트 레일이 슬라이딩되어 진입되는 미들 레일과, 이 미들 레일이 슬라이딩되어 진입되는 리어 레일 등 세 개의 파트를 구성하고, 프론트 레일에 슬라이딩 동력을 공급하게 되는 와이어 스크류와, 원활한 슬라이딩을 위한 구름부재 및 상기 프론트 레일을 미들 레일에 잠금되게 하고, 미들 레일을 리어 레일에 잠금되게 할 수 있는 잠금수단을 설치하여, 단일 구동장치에 의해 슬라이딩 메커니즘을 수행할 수 있는 컨버터블 차량의 슬라이딩 가이드 레일을 제공한다. 컨버터블 차량, 가이드 레일, 슬라이딩, 잠금수단, 구름부재
Abstract:
PURPOSE: A sliding roof for a convertible vehicle is provided to secure a rear seat space in a vehicle by fixing the side pillars of a front roof to a sunroof using latches. CONSTITUTION: A sliding roof for a convertible vehicle comprises a front roof(110), a rear roof(130), a middle roof(120), a rear rail(135), a middle rail(125), a front rail(115), a sub-front lifting link(117), and a sub-rear lifting link(137). The middle roof is arranged between the front and rear roofs. The rear rail is arranged in the bottom end of the rear roof. The middle rail is installed in the bottom end of the middle roof and is slid along the rear roof. The front rail is arranged in the bottom end of the front roof and is slid along the middle rail. The sub-front lifting link connects the front roof and the front rail and lifts the front roof. The sub-rear lifting link connects the rear roof and the rear rail and lifts the rear roof.