Wiring protective cover structure for electric drive vehicle
09861018 ยท 2018-01-02
Assignee
Inventors
Cpc classification
Y02T10/72
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
B60R16/033
PERFORMING OPERATIONS; TRANSPORTING
B60L7/14
PERFORMING OPERATIONS; TRANSPORTING
B60L1/003
PERFORMING OPERATIONS; TRANSPORTING
B60R16/0215
PERFORMING OPERATIONS; TRANSPORTING
B60Y2400/61
PERFORMING OPERATIONS; TRANSPORTING
Y02T10/70
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
Y02E60/10
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
B62D21/17
PERFORMING OPERATIONS; TRANSPORTING
H01M2220/20
ELECTRICITY
B60K2001/0416
PERFORMING OPERATIONS; TRANSPORTING
B60K1/04
PERFORMING OPERATIONS; TRANSPORTING
B60L50/64
PERFORMING OPERATIONS; TRANSPORTING
B60L50/16
PERFORMING OPERATIONS; TRANSPORTING
Y02T10/7072
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
International classification
H05K9/00
ELECTRICITY
B60L1/00
PERFORMING OPERATIONS; TRANSPORTING
B60R16/02
PERFORMING OPERATIONS; TRANSPORTING
B60K1/04
PERFORMING OPERATIONS; TRANSPORTING
B60R16/033
PERFORMING OPERATIONS; TRANSPORTING
B62D21/17
PERFORMING OPERATIONS; TRANSPORTING
B60L7/14
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A wiring protective cover structure for an electric drive vehicle is provided that can be used to cool a battery while effectively blocking noise that is generated from wiring for connecting an electric power converter and the battery disposed on a floor panel. A DC line cable 23 and a control line cable 25 that connect a battery 21 and an electric power converter 22 are disposed on a top surface of a center tunnel 37 of a vehicle 1, and a metallic wiring protective cover 35 has a cooling passage 30 disposed therein and is disposed on a floor panel 36 so as to cover the DC line cable 23 and the control line cable 25.
Claims
1. A wiring protective cover structure for an electric drive vehicle including: a battery; an electric power converter that converts electric power from the battery; a cooling passage through which air used for cooling the battery flows; wiring that connects the battery and the electric power converter; and a wiring protective cover that protects the wiring, wherein the battery and the electric power convertor are disposed via a rear seat in a front-rear direction of the electric drive vehicle, wherein the cooling passage is disposed under the rear seat, wherein the electric power convertor and the wiring protective cover are disposed on a center tunnel that is formed by a floor panel, wherein the wiring is disposed on a top surface of the floor panel of the electric drive vehicle, and wherein the wiring protective cover is formed as a metallic cover and that is disposed on the floor panel to define the cooling passage and to cover the wiring.
2. The structure of claim 1, wherein the wiring includes a DC line cable that supplies electric power to the electric power converter and a control line cable that controls the battery, and wherein the DC line cable and the control line cable are separately disposed at both sides of the wiring protective cover in a width direction of the electric drive vehicle.
3. The structure of claim 1, wherein the cooling passage is directly formed by a portion of the floor panel forming the center tunnel and a portion of the metallic wiring protective cover covering the wiring.
4. The structure of claim 1, wherein the cooling passage has a duct member disposed in a space formed by a portion of the floor panel forming the center tunnel and a portion of the metallic wiring protective cover covering the wiring.
5. The structure of claim 4, wherein the duct member has plural wiring holding sections, each of which extends laterally from a side surface thereof in the vehicle width direction so as to hold the wiring.
6. The structure of claim 1, wherein the wiring protective cover covers the floor panel across a front surface of the floor panel below a center seat cushion of the rear seat, and wherein the front surface of the floor panel below the center seat cushion of the rear seat has an opening as an intake side of the cooling passage.
7. The structure of claim 1, wherein the wiring protective cover is disposed to define a space having a cross-sectional shape elongated in a width direction of the electric drive vehicle.
Description
BRIEF DESCRIPTION OF DRAWINGS
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MODE FOR CARRYING OUT THE INVENTION
(10) A description will hereinafter be made on a wiring protective cover structure for an electric drive vehicle according to one embodiment of the invention with reference to the accompanied drawings. It is assumed that each of the drawings is seen in a direction that reference numerals are indicated.
(11) As shown in
(12) An electric power converter (PDU) 22 is connected to the traveling motor 2 by a three-phase line 24. The electric power converter 22 is disposed in an intermediate part in a vehicle width direction between front seats 5, namely between a driver seat and a passenger seat, having configuration to include an inverter, a DC-DC converter, and the like. The electric power converter 22 is connected to a battery box 20 that has a battery 21 mounted therein at a rear of a rear seat 4 by a DC line cable 23 and a control line cable 25 that controls the battery 21.
(13) Then, the electric power converter 22 obtains DC power from the battery 21 and converts the DC power to three-phase AC power for driving the traveling motor 2 while converting regenerative power of the traveling motor 2 to the DC power to charge the battery 21. Because a DC voltage that is converted by the inverter is a high voltage, it is partially lowered by the DC-DC converter.
(14) The DC line cable 23 and the control line cable 25 that are connected between the battery 21 and the electric power converter 22 extend in a longitudinal direction on a top surface of a center tunnel 37 of a floor panel 36, and are covered by a metallic wiring protective cover 35 fixed to the floor panel 36 that has the center tunnel 37. The metallic wiring protective cover 35 that is formed to have an inverted U-shaped cross section is disposed under a center seat cushion 8 and is fixed to the floor panel 36, thereby forming a space with a flat cross section that is long in the vehicle width direction. As shown in
(15) The DC line cable 23 that extends forward of the vehicle from the wiring protective cover 35 is partially covered by a metallic DC line cover 41. The control line cable 25 that extends forward of the vehicle from the wiring protective cover 35 is partially bent in a direction to separate from the DC line cable 23, arranged to bypass an opening 40, and connected to the electric power converter 22.
(16) As described above, the DC line cable 23 is covered by the metallic wiring protective cover 35 and the metallic DC line cover 41; therefore, even when a large current flows through the DC line cable 23 and electromagnetic noise is thereby generated from the DC line cable 23, the electromagnetic noise is blocked by these covers 35, 41 and thus has no influence on various equipment in a vehicle cabin 6. Because the control line cable 25 is separately disposed from the DC line cable 23, the influence of the electromagnetic noise from the DC line cable 23 on the control line cable 25 can also be reduced.
(17) Because the DC line cable 23 and the control line cable 25 are covered by the metallic wiring protective cover 35 with high strength, the wiring protective cover 35 acts as a strengthening member and protects the DC line cable 23 and the control line cable 25.
(18) The battery box 20 is connected to a cooling passage 30 that takes in air in the vehicle cabin 6 to cool the battery 21. The cooling passage 30 includes an intake duct 31 that is connected to the battery box 20 on an upstream side thereof, an exhaust duct 32 that is connected to the battery box 20 on a downstream side thereof, and a cooling fan 33 that is disposed in a middle of the exhaust duct 32.
(19) Also referring to
(20) The wiring protective cover 35 covers the floor panel 36 from a bottom of the battery box 20 to a front surface under the center seat cushion 8 of the rear seat 4. Meanwhile, the intake duct 31 is opened to face the opening 40 that is provided in a floor carpet 39 in the front surface under the center seat cushion 8 of the rear seat 4. In this embodiment, an intake grill, which is provided with a number of holes, is mounted to the opening 40. In addition, an exit side of the intake duct 31 is connected to an opening of the battery box 20 through which the DC line cable 23 is inserted into the battery box 20.
(21) The exhaust duct 32 is, for example, a hollow member which is bent and formed of a synthetic resin with a substantially rectangular cross section. The exhaust duct 32 extends outward in the vehicle width direction from a side surface of the battery box 20, then bending rearward, and extends between a vehicle body and a sidewall that forms a luggage space 7.
(22) Accordingly, when the cooling fan 33 is rotated, cold air in the vehicle cabin 6 is taken in from the opening 40 that is provided in the front surface under the center seat cushion 8. Thereafter the cold air is sent to the battery box 20 through the intake duct 31 to cool the battery 21 to be discharged from the exhaust duct 32 to a space between the vehicle body and the sidewall. Because the intake duct 31 takes in the air in the vehicle cabin 6 from the opening 40 that is disposed in the front surface under the rear seat 4, it is possible to take in the air in the vehicle cabin 6 at a relatively low temperature and is thus possible to effectively cool the battery 21.
(23) As described above, according to the wiring protective cover structure for the electric drive vehicle according to this embodiment, the DC line cable 23 and the control line cable 25 that connect the battery 21 and the electric power converter 22 are disposed on the top surface of the floor panel 36, and the wiring protective cover 35 is formed as the metallic cover 35 that has the cooling passage 30 disposed therein and that is disposed on the floor panel 36 to cover the DC line cable 23 and the control line cable 25. Accordingly, the electromagnetic noise that is generated from the DC line cable 23 is blocked by the metallic wiring protective cover 35 and the floor panel 36, and the inside of the wiring protective cover 35 can be used as the cooling passage; therefore, there is no need for adding the new dedicated member with strength for protecting the duct.
(24) The battery 21 and the electric power converter 22 are disposed via the rear seat 4 in the vehicle longitudinal direction, and the cooling passage 30 is disposed under the center seat cushion 8; therefore, it is possible to increase freedom in design of installation positions of the battery 21 and the electric power converter 22 and is also possible to dispose the cooling passage 30 without reducing a space in the vehicle cabin 6.
(25) Since the DC line cable 23, which supplies the electric power to the electric power converter 22, and the control line cable 25, which controls the battery 21, are separately disposed at the both sides of the wiring protective cover 35 in the vehicle width direction, it is possible to reduce the influence of the electromagnetic noise that is generated from the DC line cable 23 on the control line cable 25.
(26) Due to the configurations such that the electric power converter 22 and the wiring protective cover 35 are disposed on the center tunnel 37, which is formed by the floor panel 36, the DC line cable 23 can be formed as short as possible, and the influence of the noise can be reduced.
(27) Since the cooling passage 30 is directly formed by the floor panel 36, which forms the center tunnel 37, and the metallic wiring protective cover 35, which is disposed to cover the DC line cable 23 and the control line cable 25, it is possible to form the cooling passage without providing the new dedicated member for protecting the duct.
(28) The invention is not limited to the above-described embodiment but can appropriately be modified, improved, or the like. The hybrid electric vehicle has been described as a vehicle to which the invention is applied; however, the invention is not limited thereto, and the vehicle to which the invention is applied may be an electric vehicle that only includes a motor as a drive source, for example.
(29) A vertical wall that extends toward the floor panel 36 and also extends in the vehicle longitudinal direction may be provided in the metallic wiring protective cover 35 so as to locate the DC line cable 23 or the control line cable 25 in the cooling passage 30, and the electromagnetic noise, which is generated from the DC line cable 23, may be prevented from influencing the control line cable 25.
(30) In the above-described embodiment, the electric power converter 22 and the wiring protective cover 35 are disposed on the center tunnel 37 that is formed by the floor panel 36; however, the electric power converter 22 may be disposed under the passenger seat, and the wiring protective cover 35 may be disposed under the rear seat 4 at the rear of the passenger seat, for example. Also in this case, the DC line cable 23 can be formed as short as possible, and the influence of the noise can be reduced.
(31) In the above-described embodiment, the cooling passage 30 is directly formed by the metallic wiring protective cover 35 and the floor panel 36 that has the center tunnel 37. However, as shown in a modified example of
(32) As shown in another modified example of
(33) The aforementioned duct member 50a eliminates the need of the harness fixing bracket conventionally used, such as fixing the cables 23, 25 to the floor panel 36, and further the number of positions to hold the cables 23, 25 can be reduced in comparison with a case where the harness fixing bracket is used. Therefore, it is possible to reduce assembling man-hours and cost for holding the cables 23, 25.
(34) This patent application is based on Japanese Patent Application (No. 2011-233012) filed on Oct. 24, 2011, the contents of which are incorporated herein by reference.
DESCRIPTION OF REFERENCE NUMERALS AND SIGNS
(35) 4: rear seat (seat) 6: vehicle cabin 8: center seat cushion (seat) 21: battery 22: electric power converter 23: dc line cable (wiring) 25: control line cable (wiring) 30: cooling passage 31: intake duct 32: exhaust duct 35: metallic wiring protective cover 36: floor panel 37: center tunnel 39: floor carpet 40: opening 50, 50a: duct member