WO2013133152A1 - Structure de guidage de harnais pour automobile électrique - Google Patents

Structure de guidage de harnais pour automobile électrique Download PDF

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Publication number
WO2013133152A1
WO2013133152A1 PCT/JP2013/055636 JP2013055636W WO2013133152A1 WO 2013133152 A1 WO2013133152 A1 WO 2013133152A1 JP 2013055636 W JP2013055636 W JP 2013055636W WO 2013133152 A1 WO2013133152 A1 WO 2013133152A1
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WO
WIPO (PCT)
Prior art keywords
harness
clip
charging
harnesses
vehicle
Prior art date
Application number
PCT/JP2013/055636
Other languages
English (en)
Japanese (ja)
Inventor
眞一 又野
賢二 飯野
将浩 大西
Original Assignee
日産自動車株式会社
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Filing date
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Application filed by 日産自動車株式会社 filed Critical 日産自動車株式会社
Publication of WO2013133152A1 publication Critical patent/WO2013133152A1/fr

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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G3/00Installations of electric cables or lines or protective tubing therefor in or on buildings, equivalent structures or vehicles
    • H02G3/30Installations of cables or lines on walls, floors or ceilings
    • H02G3/32Installations of cables or lines on walls, floors or ceilings using mounting clamps
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60RVEHICLES, VEHICLE FITTINGS, OR VEHICLE PARTS, NOT OTHERWISE PROVIDED FOR
    • B60R16/00Electric or fluid circuits specially adapted for vehicles and not otherwise provided for; Arrangement of elements of electric or fluid circuits specially adapted for vehicles and not otherwise provided for
    • B60R16/02Electric or fluid circuits specially adapted for vehicles and not otherwise provided for; Arrangement of elements of electric or fluid circuits specially adapted for vehicles and not otherwise provided for electric constitutive elements
    • B60R16/0207Wire harnesses
    • B60R16/0215Protecting, fastening and routing means therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60KARRANGEMENT OR MOUNTING OF PROPULSION UNITS OR OF TRANSMISSIONS IN VEHICLES; ARRANGEMENT OR MOUNTING OF PLURAL DIVERSE PRIME-MOVERS IN VEHICLES; AUXILIARY DRIVES FOR VEHICLES; INSTRUMENTATION OR DASHBOARDS FOR VEHICLES; ARRANGEMENTS IN CONNECTION WITH COOLING, AIR INTAKE, GAS EXHAUST OR FUEL SUPPLY OF PROPULSION UNITS IN VEHICLES
    • B60K1/00Arrangement or mounting of electrical propulsion units
    • B60K1/04Arrangement or mounting of electrical propulsion units of the electric storage means for propulsion
    • B60K2001/0405Arrangement or mounting of electrical propulsion units of the electric storage means for propulsion characterised by their position
    • B60K2001/0438Arrangement under the floor

Definitions

  • the present invention relates to a harness arrangement structure for an electric vehicle in which a power unit and a charging port are connected by a charging harness.
  • the converter, the charger, and the charging port are both fixed to the vehicle body, and the charging port does not move relative to the converter and the charger.
  • the quick charging harness and the normal charging harness that connect them are not deformed by vibration, and each charging harness is freely arranged according to the vehicle layout.
  • the pair of quick charging harnesses may have different lengths between the converter and the charging port. For this reason, when the converter, the charger, and the charging port move relative to each other by vibration by elastically fixing one of the converter, the charger, and the charging port, each charging is performed in accordance with the relative movement.
  • the harness is deformed, a pair of quick charging harnesses interfere with each other, and an interference sound may occur.
  • the present invention has been made paying attention to the above problem, and has a harness arrangement structure for an electric vehicle that can prevent interference between a plurality of harnesses that connect a power unit and a charging port that move relative to each other to prevent generation of interference sound.
  • the purpose is to provide.
  • the harness arrangement structure for an electric vehicle includes a power unit, a charging port, a charging harness, a first harness clip, and a second harness clip.
  • the power unit includes an electric motor as a travel drive source, and a control device that controls the electric motor and controls charging of a battery that supplies electric power to the electric motor, and is elastically supported by the vehicle body.
  • the charging port is fixedly supported on the vehicle body.
  • the charging harness includes a plurality of harnesses while connecting the power unit and the charging port.
  • the first harness clip fixes the middle of the plurality of harnesses to the vehicle body in a state in which a harness interval is maintained.
  • the second harness clip fixes the middle of the plurality of harnesses between the first harness clip and the power unit to the power unit while maintaining a harness interval. Then, the lengths of the plurality of harnesses are aligned between a vehicle body side restraint point by the first harness clip and a unit side restraint point by the second harness clip.
  • the first harness clip fixes the middle of the plurality of harnesses constituting the charging harness connecting the power unit and the charging port to the vehicle body. Moreover, the middle of the plurality of harnesses between the first harness clip and the power unit is fixed to the power unit elastically supported by the vehicle body by the second harness clip. And the mutual length of a some harness is equalized between the vehicle body side restraint point by a 1st harness clip, and the unit side restraint point by a 2nd harness clip. That is, between the first harness clip and the second harness clip, the lengths of the plurality of harnesses are equal between the restraint points.
  • FIG. 1 It is a whole side view which shows the main structures of the electric vehicle to which the harness routing structure of Example 1 was applied. It is a schematic plan view which shows the front main structure of the electric vehicle to which the harness arrangement structure of Example 1 was applied. It is a schematic side view which shows the front part main structure of the electric vehicle to which the harness routing structure of Example 1 was applied. It is a perspective view which shows the quick charge harness of Example 1, and a normal charge harness. It is a perspective view which shows the 1st quick charge harness clip which fixes the quick charge harness of Example 1. FIG. It is a perspective view which shows the 2nd quick charge harness clip which fixes the quick charge harness of Example 1. FIG. It is a side view which shows the quick charge harness of Example 1. FIG.
  • FIG. 1 It is a top view which shows the quick charge harness of Example 1.
  • FIG. 1 It is a perspective view when the quick charge harness of Example 1 is seen from the vehicle rear. It is a rear view when the quick charge harness of Example 1 is seen from the vehicle rear. It is a side view which shows the quick charge harness of Example 1, and a normal charge harness. It is a top view which shows the quick charge harness of Example 1, and a normal charge harness.
  • the configuration of the harness arrangement structure of the electric vehicle according to the first embodiment will be described by dividing it into “basic configuration of electric vehicle”, “arrangement configuration of rapid charging harness”, and “arrangement configuration of ordinary charging harness”.
  • FIG. 1 is an overall side view showing a main structure of an electric vehicle to which the harness routing structure of the first embodiment is applied.
  • FIG. 2 is a schematic plan view showing the main structure of the front portion of the electric vehicle to which the harness routing structure of the first embodiment is applied.
  • FIG. 3 is a schematic side view showing the main structure of the front portion of the electric vehicle to which the harness routing structure of the first embodiment is applied.
  • the direction indicated by arrow X is the vehicle front-rear direction
  • the direction indicated by arrow Y is the vehicle width direction
  • the direction indicated by arrow Z is the vehicle vertical direction.
  • the electric vehicle 1 of Example 1 is provided with the power unit 10, the battery unit (battery) 20, and the charge port 30, as shown in FIG.
  • the power unit 10 includes a motor drive unit 11 and a high-power unit (control device) 15 that is integrally mounted on the motor drive unit 11 and is disposed in a motor room 2 formed at the front of the vehicle body. ing.
  • the power unit 10 includes a pair of front side members (vehicle bodies) 3 and 3 extending in the vehicle front-rear direction and a first front cross member (a first front cross member for connecting the pair of front side members 3 and 3 behind the power unit 10). It is elastically supported by the vehicle body 4A through the mount member 5. That is, the power unit 10 is elastically supported by the vehicle body (here, the pair of front side members 3 and 3 and the first front cross member 4A) via the mount member 5.
  • the mount member 5 is attached to a motor drive unit 11 disposed on the lower side of the power unit 10.
  • the motor drive unit 11 includes an electric motor 12 as a travel drive source of the electric vehicle 1, a speed reducer 13 that decelerates the rotation of the electric motor 12 and transmits it to the differential gear 13 a, and the electric motor 12 and the speed reducer 13. And a built-in motor housing 14.
  • the electric motor 12 is used not only as a travel drive source (power running) but also as a generator (regeneration).
  • the high-power unit 15 controls the motor driving unit 11 and controls the charging of the battery unit 20, and includes an inverter 16 and a high-power module 17.
  • the inverter 16 is connected to the motor drive unit 11 via a three-phase AC harness (not shown), and converts between a direct current and a three-phase alternating current.
  • the inverter 16 converts the direct current from the high-power module 17 into a three-phase alternating current when the electric motor 12 is powered and supplies it to the electric motor 12.
  • the inverter 16 A three-phase alternating current is converted into a direct current and supplied to the high voltage module 17.
  • the inverter 16 is built in the inverter housing 16 a and is mounted immediately above the motor drive unit 11.
  • the high-power module 17 is a voltage control device that controls the voltage of the power supplied to the motor drive unit 11 and the power charged in the battery unit 20, and includes a DC / DC converter and a charger.
  • the high-power module 17 is built in the high-power module housing 17 a and is mounted immediately above the inverter 16.
  • the high-power module 17 is connected to the battery unit 20 via the charge / discharge harness 41, connected to the charge port 30 via the charge harness 42, and connected to the inverter 16 via a high-voltage harness (not shown).
  • the DC / DC converter converts a quick charge voltage from an external quick charge power source (not shown) into a charge voltage and charges the battery unit 20.
  • the DC / DC converter converts the charging voltage from the battery unit 20 into a driving voltage and supplies it to the inverter 16 when the electric motor 12 is powered, and charges the generated voltage from the inverter 16 when the electric motor 12 is regenerated.
  • the battery unit 20 is charged by converting into voltage.
  • the charger converts a normal charging voltage from an external normal charging power source (not shown) into a charging voltage and charges the battery unit 20.
  • the battery unit 20 stores electric power supplied via the charging port 30 and electric power regenerated by the electric motor 12 and supplies electric power stored for driving the electric motor 12.
  • the battery unit 20 includes a large number of battery modules including secondary batteries, a control circuit that controls charging / discharging of the battery modules, a cooling device, and the like, and a battery housing 21 in which these are built.
  • a charge / discharge terminal 21 a for connecting the charge / discharge harness 41 is formed at the center of the front end of the battery housing 21.
  • As the secondary battery a lithium ion battery, a chargeable / dischargeable nickel cadmium battery, a nickel metal hydride battery, or the like is used.
  • the battery unit 20 is disposed below the vehicle body floor 6 located behind the motor room 2.
  • a dash panel 7 stands between the motor room 2 and the vehicle body floor 6, and the vehicle body floor 6 constitutes a floor surface of the vehicle compartment 8 partitioned from the motor room 2 by the dash panel 7.
  • the charging port 30 is a power receiving unit that inputs external power for charging the battery unit 20 by contact-connecting an external power source (not shown), and includes a quick charging port 31 and a normal charging port 32. Further, the charging port 30 is held via the charging port bracket 33 at a substantially central position in the vehicle width direction of the front portion of the motor room 2 and above the front bumper 9. That is, the charging port 30 is disposed in front of the power unit 10.
  • the charging port bracket 33 includes a leg portion 33a, a port housing 33b, and a clip fixing portion 33c. The lower end of the leg 33a is fixed to a second front cross member (vehicle body) 4B that connects the pair of front side members 3 and 3 in front of the power unit 10, and extends upward.
  • the port housing 33b is fixed to the upper portion of the leg portion 33a and holds the charging port 30.
  • the clip fixing portion 33c fixes and supports the charging harness 42 connected to the charging port 30 in the vicinity of the port housing 33b. That is, the charging port 30 is fixedly supported on the vehicle body (here, the second front cross member 4B) via the charging port bracket 33.
  • the rapid charging port 31 is connected to a rapid charger that is a high-voltage DC power supply, and is connected to the high-power module 17 via a rapid charging harness 43 that is a charging harness 42 through which a high-voltage current flows.
  • the normal charging port 32 is connected to a low-voltage AC power source of about 100 to 200 volts for home use, and is a normal charging harness that is a charging harness 42 in which a current having a voltage lower than that flowing through the quick charging harness 43 flows.
  • the high voltage module 17 is connected to the high voltage module 17 through 44.
  • FIG. 4 is a perspective view illustrating the quick charging harness and the normal charging harness according to the first embodiment.
  • FIG. 5 is a perspective view showing a first quick charge harness clip for fixing the quick charge harness of the first embodiment.
  • FIG. 6 is a perspective view showing a second quick charge harness clip for fixing the quick charge harness of the first embodiment.
  • FIG. 7A is a side view showing the quick charging harness of the first embodiment.
  • FIG. 7B is a plan view illustrating the rapid charging harness according to the first embodiment.
  • FIG. 7C is a perspective view of the quick charging harness according to the first embodiment when viewed from the rear of the vehicle.
  • FIG. 7D is a rear view of the quick charging harness according to the first embodiment when viewed from the rear of the vehicle.
  • the direction indicated by arrow X is the vehicle front-rear direction
  • the direction indicated by arrow Y is the vehicle width direction
  • the direction indicated by arrow Z is the vehicle vertical direction.
  • the rapid charging harness 43 is composed of a pair of harnesses (first harness 43 a and second harness 43 b), one end of which is connected to the rapid charging port 31, and the high voltage connector 18 a provided at the other end of the high voltage module 17. It is connected to the quick charging harness connection terminal 17b.
  • the harness diameter is larger than that of the normal charging harness 44 and has rigidity that hardly deforms by its own weight.
  • the minimum radius of curvature when bending the first and second harnesses 43a and 43b is about R120 to R130.
  • the quick charge harness 43 is fixed to the clip fixing portion 33c of the charge port bracket 33 through the first quick charge harness clip (first harness clip) 51 at a midway position in the vicinity of the quick charge port 31.
  • the intermediate position of the quick charging harness 43 between the first quick charging harness clip 51 and the high power module 17 is fixed to the high power module 17 of the power unit 10 via the second quick charging harness clip (second harness clip) 52. Is done.
  • the second quick charge harness clip 52 is attached to a clip bracket 16c provided on a side surface 16b facing the vehicle side of the inverter housing 16a.
  • the first quick charge harness clip 51 restrains a part of the quick charge harness 43 with a predetermined restraining width in the length direction, as shown in FIG. A portion of the quick charge harness 43 that is restrained by the first quick charge harness clip 51 is in a horizontal direction with respect to the vehicle vertical direction in a state in which the harness interval between the first harness 43a and the second harness 43b is maintained. Be bound.
  • the second quick charge harness clip 52 restrains a part of the quick charge harness 43 with a predetermined restraining width in the length direction.
  • the portion of the quick charge harness 43 that is restrained by the second quick charge harness clip 52 is in a horizontal direction with respect to the vehicle vertical direction while maintaining the harness interval between the first harness 43a and the second harness 43b. Be bound.
  • the second quick charge harness clip 52 is provided at a position lower than the height position of the first quick charge harness clip 51.
  • the first quick charge harness clip 51 is provided at substantially the same height as the quick charge port 31.
  • the second quick charge harness clip 52 is provided at substantially the same height as the boundary between the motor drive unit 11 and the high power unit 15 of the power unit 10, which is lower than the quick charge port 31.
  • the height of the first quick charge harness clip 51 and the height of the second quick charge harness clip 52 are different, and when the height position of the first quick charge harness clip 51 is used as a reference, the second quick charge harness clip 51
  • the clip 52 is offset from the height position of the first quick charge harness clip 51 toward the mount member 5 that elastically supports the lower portion of the power unit 10 (see FIG. 3).
  • the first quick charge harness clip 51 is disposed at a substantially central position in the vehicle width direction immediately after the quick charge port 31.
  • the second quick charge harness clip 52 is provided on the side surface of the power unit 10 (here, the side surface 16b facing the vehicle side of the inverter housing 16a), and the vehicle width is wider than the first quick charge harness clip 51. Offset outward in the direction. That is, the position of the first quick charge harness clip 51 in the vehicle width direction and the position of the second quick charge harness clip 52 in the vehicle width direction are different.
  • the harnesses 43a and 43b between the two R portions are inclined in the vehicle width direction, and the R portion is also bent in the vehicle width direction (see FIG. 7B).
  • the surplus length of the quick charging harness 43 at this time is set to be longer than at least the dimension allowing the mount member 5 to vibrate.
  • the lengths of the first harness 43a and the second harness 43b are aligned between the rapid vehicle body restraint point 51a and the rapid unit restraint point 52a. That is, the length of the first harness 43a from the rapid vehicle body side restraint point 51a to the rapid unit side restraint point 52a is equal to the length of the second harness 43b from the rapid vehicle body side restraint point 51a to the rapid unit side restraint point 52a. Further, in the quick charging harness 43, the first harness 43a and the second harness 43b are arranged in parallel between the rapid vehicle body restraint point 51a and the rapid unit restraint point 52a, and the mutual harness interval is made constant. ing.
  • the “rapid vehicle body side restraint point” is an end portion on the power unit 10 side of a part of the rapid charge harness 43 restrained by the first quick charge harness clip 51. Further, the “rapid unit side restraint point” is an end portion on the charge port 30 side of a part of the quick charge harness 43 restrained by the second quick charge harness clip 52.
  • FIG. 8A is a side view illustrating the quick charging harness and the normal charging harness according to the first embodiment.
  • FIG. 8B is a plan view illustrating the quick charge harness and the normal charge harness according to the first embodiment.
  • the direction indicated by arrow X is the vehicle front-rear direction
  • the direction indicated by arrow Y is the vehicle width direction
  • the direction indicated by arrow Z is the vehicle vertical direction.
  • the normal charging harness 44 is configured by covering a pair of harnesses (not shown) together with a buffer member, one end is connected to the normal charging port 32, and the other end 18 b is a normal charging harness connection terminal of the high voltage module 17. (Not shown).
  • the harness diameter is smaller than that of the quick charging harness 43 and has rigidity that can be deformed by its own weight.
  • the normal charging harness 44 is routed outside the quick charging harness 43 in the vehicle width direction.
  • the middle of the normal charging harness 44 is fixed to the clip fixing portion 33 c of the charging port bracket 33 through the first normal charging harness clip 53. Further, the middle of the normal charging harness 44 between the first normal charging harness clip 53 and the high power module 17 is fixed to the high power module 17 of the power unit 10 via the second normal charging harness clip 54.
  • the second normal charging harness clip 54 is attached to the clip bracket 16c.
  • the first ordinary charging harness clip 53 restrains a part of the ordinary charging harness 44 with a predetermined restraining width in the length direction on the side of the first quick charging harness clip 51.
  • a portion of the normal charging harness 44 that is restrained by the first ordinary charging harness clip 53 is restrained in the horizontal direction with respect to the vehicle vertical direction.
  • the normal vehicle-side restraint point 53a by the first normal charging harness clip 53 is a position in the vehicle front-rear direction, as shown by the rapid vehicle-side restraint point 51a by the first quick charge harness clip 51 and the broken line ⁇ in FIG. 8B.
  • the positions in the vehicle vertical direction match as shown by the broken line ⁇ in FIG. 8A.
  • the “ordinary vehicle side restraint point” is an end portion on the power unit 10 side of a part of the ordinary charging harness 44 restrained by the first ordinary charging harness clip 53.
  • the second ordinary charging harness clip 54 restrains a part of the ordinary charging harness 44 with a predetermined restraining width in the length direction on the side of the second quick charging harness clip 52.
  • the portion of the normal charging harness 44 that is constrained by the second normal charging harness clip 54 is such that the normal unit side restraint point 54a by the second normal charging harness clip 54 faces the front of the vehicle with respect to the vehicle vertical direction. It is restrained in the state which inclined diagonally. That is, the second ordinary charging harness clip 54 restrains the ordinary charging harness 44 to tilt forward. Further, the normal unit side restraint point 54 a by the second normal charging harness clip 54 is positioned in front of the vehicle and above the vehicle with respect to the quick unit side restraint point 52 a by the second quick charging harness clip 52.
  • a distance (gap) indicated by ⁇ W in FIG. 8B is generated in the vehicle front-rear direction between the rapid unit side restraint point 52a and the normal unit side restraint point 54a.
  • a distance (gap) indicated by ⁇ H in FIG. 8A is generated in the vehicle vertical direction between the rapid unit side restraint point 52a and the normal unit side restraint point 54a.
  • the length of the normal charging harness 44 between the normal vehicle body side restraint point 53a and the normal unit side restraint point 54a is the same as the length of the quick charge harness 43 between the rapid vehicle body side restraint point 51a and the rapid unit side restraint point 52a. Shorter than that.
  • the “ordinary unit side restraint point” is an end portion on the charging port 30 side of a part of the ordinary charging harness 44 restrained by the second ordinary charging harness clip 54.
  • the quick charger port 31 of the charging port 30 is connected to a quick charger as appropriate. Therefore, the quick charging port 31 needs to be fixed in position with respect to the vehicle body, and is fixedly supported by the vehicle body via the charging port bracket 33.
  • the electric motor 12 vibrates due to the rotation of the rotor during driving.
  • the electric motor 12 is built in the motor housing 14 of the motor drive unit 11, but the high-power unit 15 is integrally mounted on the upper portion of the motor housing 14. Therefore, when the electric motor 12 vibrates, not only the motor drive unit 11 but also the high-power unit 15 vibrates in the same manner, and the entire power unit 10 vibrates as a whole.
  • the power unit 10 is elastically supported by the vehicle body via the mount member 5.
  • the power unit 10 vibrates, the vibration is absorbed by the mount member 5 and is not transmitted to the vehicle body, and the quick charge port 31 does not vibrate. That is, when the power unit 10 vibrates, the power unit 10 and the quick charge port 31 move relatively, and the interval between the power unit 10 and the quick charge port 31 increases or decreases.
  • the power unit 10 and the quick charge port 31 are connected by a quick charge harness 43 configured by a pair of harnesses (first harness 43a and second harness 43b).
  • the middle portion of the quick charging harness 43 is fixed to the vehicle body with the first quick charging harness clip 51 maintaining the harness interval, and fixed to the power unit 10 with the second quick charging harness clip 52 maintaining the harness interval.
  • the quick charge harness 43 by bending the quick charge harness 43 between the first quick charge harness clip 51 and the second quick charge harness clip 52, it is possible to deform the harness when the power unit 10 and the quick charge port 31 are relatively moved. Relative movement is allowed.
  • the first harness 43a constituting the quick charge harness 43 between the rapid vehicle body side restraint point 51a by the first quick charge harness clip 51 and the rapid unit side restraint point 52a by the second quick charge harness clip 52; If the length of the second harness 43b is different, the harness deformation state corresponding to the vibration of the power unit 10 is different between the harnesses 43a and 43b. Therefore, when the 1st harness 43a and the 2nd harness 43b deform
  • the quick charging harness 43 between the rapid vehicle body side restraint point 51a and the rapid unit side restraint point 52a is bent.
  • the first harness 43a and the second harness 43b of the quick charging harness 43 are adjusted in accordance with the change in the distance between the rapid vehicle body restraint point 51a and the rapid unit restraint point 52a.
  • the lengths of the first harness 43a and the second harness 43b of the rapid charging harness 43 are aligned between the rapid vehicle body restraint point 51a and the rapid unit restraint point 52a. That is, the distance between the restraint points of the first harness 43a and the distance between the restraint points of the second harness 43b are the same length.
  • the first and second harnesses 43 a and 43 b are both fixed to the power unit 10 by a second quick charging harness clip 52.
  • the first and second harnesses 43a and 43b vibrate at the rapid unit side restraint point 52a, respectively, but the input vibration at this time is the same.
  • the vibrations of the harnesses are synchronized, and the vibration states of the first and second harnesses 43a and 43b are the same. .
  • the first and second harnesses 43a and 43b vibrate in the same direction, and mutual interference does not occur.
  • each harness at the time of vibration input
  • the vibrations of 43a and 43b can be synchronized and the deformation state can be made the same to prevent interference with each other. Since interference is prevented, no interference sound is generated.
  • the harness spacing between the first harness 43a and the second harness 43b is maintained in each of the first and second quick charge harness clips 51 and 52.
  • the first and second harnesses 43a and 43b are forcibly maintained at the harness interval at the rapid vehicle body restraint point 51a and the rapid unit restraint point 52a, respectively.
  • the harness interval is maintained at the rapid vehicle body restraint point 51a and the rapid unit restraint point 52a.
  • interference between the first harness 43a and the second harness 43b can be further reduced.
  • the first harness 43a and the second harness 43b of the quick charge harness 43 are arranged in parallel between the rapid vehicle body restraint point 51a and the rapid unit restraint point 52a. That is, the first and second harnesses 43a and 43b are routed while maintaining a constant spacing even in the free portions between the restraint points 51a and 52a. Therefore, even in a portion that is deformed when the power unit 10 vibrates, the harness interval is unlikely to fluctuate, and harness interference can be further prevented.
  • the first quick charge harness clip 51 is provided at a position substantially the same as the quick charge port 31, and the second quick charge harness clip 52 is provided at a position lower than the quick charge port 31. Yes. That is, the heights of the first quick charge harness clip 51 and the second quick charge harness clip 52 are different.
  • the vehicle vertical direction and the front-back direction distance between the first quick charge harness clip 51 and the second quick charge harness clip 52 can be sufficiently secured, and the rapid vehicle body side restraint point 51a and the rapid unit side restraint point 52a.
  • the distance between the vehicle and the vehicle in the vertical direction and the longitudinal direction can be increased.
  • the quick charging harness 43 between the rapid vehicle body side restraint point 51a and the rapid unit side restraint point 52a can be sufficiently bent in the vehicle vertical direction and the front-rear direction.
  • the quick charging harness 43 can be sufficiently deformed in accordance with this, and the vibration in the vehicle up-down direction and the front-rear direction can be absorbed and the harness damage can be prevented. Occurrence can be prevented.
  • the first quick charge harness clip 51 is disposed at a substantially central position in the vehicle width direction immediately after the quick charge port 31, and the second quick charge harness clip 52 is disposed on the side surface of the power unit 10. Provided. Thereby, the position of the first quick charge harness clip 51 in the vehicle width direction and the position of the second quick charge harness clip 52 in the vehicle width direction are different. Therefore, the rapid vehicle body side restraint point 51a and the rapid unit side restraint point 52a can be separated also in the vehicle width direction, and the rapid charging harness 43 between the rapid vehicle body side restraint point 51a and the rapid unit side restraint point 52a is provided. It can be sufficiently bent in the vehicle width direction.
  • the quick charging harness 43 can be sufficiently deformed in accordance with this, and the vibration in the vehicle width direction is absorbed and the occurrence of damage to the harness is prevented. can do.
  • the 1st quick charge harness clip 51 restrains both the 1st harness 43a and the 2nd harness 43b which comprise the quick charge harness 43 in a horizontal direction.
  • the 2nd quick charge harness clip 52 restrains both the 1st harness 43a and the 2nd harness 43b which comprise the quick charge harness 43 in a horizontal direction.
  • the vehicle body vibrates greatly, for example, when the curb ride is over while accelerating, or when sudden braking is performed after the curb ride is over, and the amount of vibration in the vehicle longitudinal direction of the power unit 10 generated at this time is I know it will be the biggest.
  • the harness extending directions can be made to coincide with the vehicle front-rear direction, and the vibration direction and the harness extending direction when the vibration amount becomes the largest Match.
  • Example 1 the harness arrangement structure of the present invention is applied to the quick charging harness 43 through which a relatively high voltage current flows.
  • the first and second harnesses 43a and 43b constituting the quick charging harness 43 have characteristics that the harness diameter is large and hardly deformed compared to the normal charging harness 44 in which a relatively low voltage flows. ing. For this reason, when the first and second harnesses 43a and 43b interfere with each other, a relatively large interference sound is generated. However, by applying the harness arrangement structure of the present invention, a large interference sound is generated. Can be prevented.
  • An electric motor 12 as a travel drive source and a high-power unit 15 (control device) that controls the electric motor 12 and controls charging of the battery unit 20 (battery) that supplies electric power to the electric motor 12 are provided.
  • a quick charging harness 43 (charging harness) composed of a pair of harnesses (first harness 43a, second harness 43b) connecting the power unit 10 and the quick charging port 31;
  • a first quick-charge harness clip 51 first harness clip that fixes the middle of the pair of harnesses (first harness 43a, second harness 43b) to the second front cross member 4B in a state where the harness spacing is maintained.
  • the first quick charge harness clip 51 and the second quick charge harness clip 52 are configured to restrain the pair of harnesses (the first harness 43a and the second harness 43b) in the horizontal direction. For this reason, when the power unit 10 vibrates most greatly, harness damage can be effectively prevented and harness interference can also be prevented.
  • the pair of harnesses (the first harness 43a and the second harness 43b) are arranged in parallel between the rapid vehicle body side restraint point 51a and the rapid unit side restraint point 52a. For this reason, when the power unit 10 vibrates, it can prevent more effectively that a pair of harnesses 43a and 43b interfere.
  • the height position of the first quick charge harness clip 51 is different from the height position of the second quick charge harness clip 52. For this reason, the distance between the restraint points in the vehicle up-down direction and the front-rear direction can be secured, the vibration in the vehicle up-down direction and the front-rear direction can be absorbed, and the occurrence of harness damage can be prevented.
  • the position of the first quick charge harness clip 51 in the vehicle width direction is different from the position of the second quick charge harness clip 52 in the vehicle width direction. For this reason, the distance between the restraint points in the vehicle width direction can be secured, the vibration in the vehicle width direction can be absorbed, and the occurrence of damage to the harness can be prevented.
  • the height position of the first quick charge harness clip 51 is different from the height position of the second quick charge harness clip 52, and the position of the first quick charge harness clip 51 in the vehicle width direction is changed.
  • the second quick charge harness clip 52 is configured to be different from the position in the vehicle width direction. Therefore, the distance between the restraint points can be sufficiently secured, and vibrations in all directions of the vehicle vertical direction, the vehicle front-rear direction, and the vehicle width direction can be sufficiently absorbed, and the occurrence of damage to the harness can be prevented.
  • the charging harness is configured to be a quick charging harness 43 through which a relatively high voltage current flows.
  • the quick charging harness 43 has a characteristic that the harness diameter is large and is not easily deformed compared to the normal charging harness 44 in which a relatively low voltage flows. The effect of preventing the generation of interference sound is enhanced.
  • the quick charging harness 43 in which a relatively high voltage current flows is used as the charging harness.
  • the normal charging harness 44 in which a relatively low voltage voltage flows is constituted by a plurality of harnesses, and the first normal charging is performed.
  • a plurality of harness lengths in the normal charging harness 44 between the normal vehicle body side restraint point 53a by the harness clip 53 and the normal unit side restraint point 54a by the second normal charging harness clip 54 may be the same length.
  • the vibration states of the plurality of harnesses can be synchronized, and harness interference can be prevented to prevent generation of interference sound.
  • the charging port 30 is arranged in front of the power unit 10.
  • the charging port 30 may be arranged in the rear of the power unit 10.
  • the harness arrangement structure of the present invention can be applied to any electric vehicle in which a power unit elastically supported on a vehicle body and a charging port fixedly supported on the vehicle body are connected by a charging harness.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Arrangement Or Mounting Of Propulsion Units For Vehicles (AREA)
  • Installation Of Indoor Wiring (AREA)
  • Electric Propulsion And Braking For Vehicles (AREA)

Abstract

Un objectif de la présente invention consiste à obtenir une structure de guidage de harnais pour automobile électrique grâce à laquelle il est possible d'empêcher des interférences entre une pluralité de harnais raccordant un bloc d'alimentation et un port de charge relativement mobiles et d'empêcher la présence de bruits provoqués par les interférences. Un bloc d'alimentation (10) élastiquement maintenu par un élément latéral avant (3) et par un premier élément transversal avant (4A), et un port de charge rapide (31) (port de charge) qui est solidement maintenu par un second élément transversal avant (4B), sont raccordés par un harnais de charge rapide (43) qui est constitué d'un premier harnais (43a) et d'un second harnais (43b). Les longueurs respectives des premier et second harnais (43a, 43b) sont égalisées entre un point de contrainte (51a) rapide côté châssis par un premier clip (51) de harnais de charge rapide qui accroche les premier et second harnais (43a, 43b) au second élément transversal avant (4B), et un point de contrainte (52a) rapide côté bloc par un second clip (52) de harnais de charge rapide qui accroche les premier et second harnais (43a, 43b) au bloc d'alimentation (10).
PCT/JP2013/055636 2012-03-05 2013-03-01 Structure de guidage de harnais pour automobile électrique WO2013133152A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2012047800A JP2013180728A (ja) 2012-03-05 2012-03-05 電気自動車のハーネス配策構造
JP2012-047800 2012-03-05

Publications (1)

Publication Number Publication Date
WO2013133152A1 true WO2013133152A1 (fr) 2013-09-12

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JP (1) JP2013180728A (fr)
WO (1) WO2013133152A1 (fr)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2567542A (en) * 2017-08-22 2019-04-17 Porsche Ag Electric vehicle
CN110395100A (zh) * 2018-04-20 2019-11-01 本田技研工业株式会社 车辆
FR3142967A1 (fr) * 2022-12-12 2024-06-14 Psa Automobiles Sa Parechoc de véhicule automobile.

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102018221611B4 (de) 2017-12-25 2022-12-22 Yazaki Corporation Kabelbaumeinheit, Stromspeichereinheit und Kabelbaum
JP7199934B2 (ja) * 2017-12-25 2023-01-06 矢崎総業株式会社 ワイヤハーネスユニット、蓄電装置ユニット、及び、ワイヤハーネス

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001239898A (ja) * 2000-02-29 2001-09-04 Suzuki Motor Corp ハーネスの固定構造
JP2010247642A (ja) * 2009-04-15 2010-11-04 Nissan Motor Co Ltd 電気自動車の配線構造
JP2011155763A (ja) * 2010-01-27 2011-08-11 Fujikura Ltd ワイヤーハーネス

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4271179B2 (ja) * 2005-09-16 2009-06-03 日信工業株式会社 マウントラバー
JP4591434B2 (ja) * 2006-10-19 2010-12-01 住友電装株式会社 ワイヤハーネスの配索方向規制材
JP5446537B2 (ja) * 2009-07-17 2014-03-19 日産自動車株式会社 電気自動車の搭載構造

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001239898A (ja) * 2000-02-29 2001-09-04 Suzuki Motor Corp ハーネスの固定構造
JP2010247642A (ja) * 2009-04-15 2010-11-04 Nissan Motor Co Ltd 電気自動車の配線構造
JP2011155763A (ja) * 2010-01-27 2011-08-11 Fujikura Ltd ワイヤーハーネス

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2567542A (en) * 2017-08-22 2019-04-17 Porsche Ag Electric vehicle
GB2567542B (en) * 2017-08-22 2019-10-09 Porsche Ag Electric vehicle
US10787070B2 (en) 2017-08-22 2020-09-29 Dr. Ing. H.C. F. Porsche Aktiengesellschaft Electric vehicle
CN110395100A (zh) * 2018-04-20 2019-11-01 本田技研工业株式会社 车辆
CN110395100B (zh) * 2018-04-20 2022-10-25 本田技研工业株式会社 车辆
FR3142967A1 (fr) * 2022-12-12 2024-06-14 Psa Automobiles Sa Parechoc de véhicule automobile.

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