IP Library Granted Patent US 11,005,130
Granted Patent B2
US 11,005,130 · App. 14/991,994 · Granted May 11, 2021

Onboard battery for vehicle

Inventor: Toshiyuki Hara (Tokyo, JP)
Assignee: SUBARU CORPORATION
H01M10/6563H01M10/46H01M10/613H01M10/625H01M10/6557H01M10/6566H01M50/20H01M10/647H01M2220/20
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Quick Facts
Patent No.
US 11,005,130
App. No.
14/991,994
Granted
May 11, 2021
Kind
B2
Abstract

An onboard battery for a vehicle includes battery modules each including battery cells disposed therein, a housing case that houses the battery modules, and intake ducts that introduce cooling air into the battery modules. The cooling air is taken from rearward into the battery modules via the intake ducts. The battery modules include at least three battery modules, at least two of the battery modules being disposed in upper and lower stages. At least two of the battery modules are arranged along a longitudinal direction. One of the battery modules is disposed at the forefront.

Claims (57)

1. An onboard battery for a vehicle, the onboard battery comprising:

a plurality of battery modules that includes a first battery module, a second battery module, and a third battery module,

wherein each of the plurality of battery modules includes a case body and battery cells housed in the case body, and

wherein the case body of each of the plurality of battery modules includes:

a front surface part facing a front side of a longitudinal direction; and

an ejection hole provided on the front surface part;

a housing case that houses the plurality of battery modules,

wherein the first battery module is arranged in an upper stage of the housing case,

wherein the second battery module is arranged below the first battery module in a lower stage of the housing case, the lower stage being vertically below the upper stage with respect to a bottom wall of the housing case, and

wherein the third battery module is arranged, in a front-rear direction, in front more than the first battery module and the second battery module, the third battery module being arranged in a middle stage with respect to the first battery module and the second battery module;

a plurality of joint ducts that includes a first joint duct, a second joint duct, and a third joint duct,

wherein each of the plurality of joint ducts includes a main body part,

wherein the main body part includes discharging projections,

wherein the first joint duct is connected to the first battery module so that the main body part and the discharging projections of the first joint duct faces the front surface part of the case body of the first battery module,

wherein the second joint duct is connected to the second battery module so that the main body part and the discharging projections of the second joint duct faces the front surface part of the case body of the second battery module, and

wherein the third joint duct is connected to the third battery module so that the main body part and the discharging projections of the third joint duct faces the front surface part of the case body of the third battery module; and

a first intake duct and a second intake duct located outside the housing case,

wherein the first intake duct is connected to the second battery module via the second joint duct and the first intake duct is connected to the third battery module via the third joint duct,

wherein the first intake duct is configured to:

introduce cooling air into the second battery module, the cooling air introduced in the second battery module being discharged from the discharging projections of the main body part of the second joint duct; and

introduce the cooling air into the third battery module, the cooling air introduced in the third battery module being discharged from the discharging projections of the main body part of the third joint duct,

wherein the second intake duct is connected to the first battery module via the first joint duct,

wherein the second intake duct is configured to introduce the cooling air into the first battery module, the cooling air introduced in the first battery module being discharged from the discharging projections of the main body part of the first joint duct,

wherein the cooling air introduced from the first intake duct into the second battery module is ejected from the ejection hole of the second battery module to an internal space of the housing case,

wherein the cooling air introduced from the first intake duct into the third battery module is ejected from the ejection hole of the third battery module to the internal space of the housing case, and

wherein the cooling air introduced from the second intake duct into the first battery module is ejected from the ejection hole of the first battery module to the internal space of the housing case.

2. The onboard battery for the vehicle according to claim 1 , further comprising a fan linked to at least one of the first intake duct or the second intake duct,

wherein the fan is on at least one of a left side or a right side, in a rear end part, of the housing case.

3. The onboard battery for the vehicle according to claim 1 ,

wherein the first intake duct includes a first inflow part and a second inflow part disposed at intervals,

wherein the second intake duct includes a third inflow part,

wherein the first inflow part of the first intake duct introduces the cooling air into the third battery module via the third joint duct,

wherein the second inflow part of the first intake duct introduces the cooling air into the second battery module via the second joint duct, and

wherein the third inflow part of the second intake duct introduces the cooling air into the first battery module via the first joint duct.

4. The onboard battery for the vehicle according to claim 2 ,

wherein the first intake duct includes a first inflow part and a second inflow part disposed at intervals,

wherein the second intake duct includes a third inflow part,

wherein the first inflow part of the first intake duct introduces the cooling air into the third battery module via the third joint duct,

wherein the second inflow part of the first intake duct introduces the cooling air into the second battery module via the second joint duct, and

wherein the third inflow part of the second intake duct introduces the cooling air into the first battery module via the first joint duct.

5. The onboard battery for the vehicle according to claim 1 ,

wherein the battery cells in each of the plurality of battery modules are aligned, and

wherein the plurality of battery modules are inside the housing case such that the battery cells in each of the plurality of battery modules are arranged along a transversal direction.

6. The onboard battery for the vehicle according to claim 2 ,

wherein the battery cells in each of the plurality of battery modules are aligned, and

wherein the plurality of battery modules are inside the housing case such that the battery cells in each of the plurality of battery modules are arranged along a transversal direction.

7. The onboard battery for the vehicle according to claim 3 ,

wherein the battery cells in each of the plurality of battery modules are aligned, and

wherein the plurality of battery modules are inside the housing case such that the battery cells in each of the plurality of battery modules are arranged along a transversal direction.

8. The onboard battery for the vehicle according to claim 4 ,

wherein the battery cells in each of the plurality of battery modules are aligned, and

wherein the plurality of battery modules are inside the housing case such that the battery cells in each of the plurality of battery modules are arranged along a transversal direction.

9. The onboard battery for the vehicle according to claim 1 ,

wherein the second battery module is arranged below the first battery module, and

wherein the third battery module is a sole battery module that is arranged foremost of the plurality of battery modules.

10. The onboard battery for the vehicle according to claim 1 ,

wherein the battery cells in each of the plurality of battery modules are arranged at intervals in a manner that a thickness direction of each of the battery cells corresponds to a transversal direction and the cooling air passes through spaces between the battery cells in each of the plurality of battery modules.

Assignments (2)
CHANGE OF NAME Recorded May 12, 2017
From: FUJI JUKOGYO KABUSHIKI KAISHA
To: SUBARU CORPORATION
Reel/Frame 042624/0886 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2016
From: HARA, TOSHIYUKI
To: FUJI JUKOGYO KABUSHIKI KAISHA
Reel/Frame 037482/0227 →