IP Library Granted Patent US 7,299,677
Granted Patent B2
US 7,299,677 · App. 11/296,166 · Granted Nov 27, 2007

Vehicle occupant analysis model for vehicle impacts

Assignee: Chrysler LLC
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Quick Facts
Patent No.
US 7,299,677
App. No.
11/296,166
Granted
Nov 27, 2007
Kind
B2
Abstract

A method of simulating a vehicle impact that involves generating a first finite element model of the vehicle, a multi-body model, and a partial vehicle finite element model. The method also involves generating a coupled model that includes at least a portion of the multi-body model and at least a portion of the partial vehicle finite element model. Additionally, the method includes running at least one impact simulation with the coupled model to thereby identify the effects of the impact on the vehicle and/or the occupant.

Claims (43)

1. A method of simulating a vehicle impact comprising the steps of:

generating a first finite element model of the vehicle, wherein the first finite element model includes a plurality of boundary points on the vehicle chosen from a group consisting of a left hinge pillar, a right hinge pillar, a steering gear, a middle point on a steering column, a left mid sill, an inboard side of a toe pan, an outboard side of the toe pan, a base of a gas pedal, a forward inboard attachment bracket of a seat, a rearward inboard attachment bracket of the seat, a forward outboard attachment bracket of the seat, a rearward outboard attachment bracket of the seat, and a combination thereof;

running at least one vehicle impact simulation on the first finite element model to generate impact data at each of the boundary points of the first finite element model;

generating a multi-body model that includes a vehicle occupant and at least one vehicle component, wherein the multi-body model includes a plurality of boundary points that coincide with the boundary points included in the first finite element model;

running at least one vehicle impact simulation on the multi-body model by inputting impact data generated at each of the boundary points of the first finite element model into the boundary points of the multi-body model;

generating a partial vehicle finite element model that includes a plurality of master nodes and a plurality of slave nodes, wherein boundary conditions input at the master nodes generates output data at the slave nodes;

generating a coupled model that includes at least a portion of the multi-body model and at least a portion of the partial vehicle finite element model; and

running at least one impact simulation with the coupled model to thereby identify the effects of the impact on at least one of the vehicle and the occupant of the vehicle.

2. The method of claim 1 , wherein the first finite element model comprises a vehicle body, a plurality of tires, at least one seat and a steering column.

3. The model of claim 1 , further comprising the steps of uncoupling the coupled model by analyzing only components of one of the multi-body model and the partial vehicle finite element model.

4. The method of claim 1 , wherein the at least one vehicle component of the multi-body model comprises an overhead pillar, a steering column, a knee blocker, a toepan, at least one seat, an airbag, and a seatbelt assembly.

5. The method of claim 1 , wherein multi-body model includes a plurality of systems that are each located relative to a master joint, and wherein global vehicle displacements are inputted at the master joint.

6. The method of claim 5 , wherein the master joint is a free joint.

7. The method of claim 1 , wherein the step of running at least one vehicle impact simulation on the multi-body model comprises inputting an initial acceleration to the multi-body model.

8. The method of claim 1 , wherein the partial vehicle finite element model includes a hinge pillar, a windshield, an Instrument panel, a steering column, and at least one seat.

9. The method of claim 1 , wherein the master joints included in the partial vehicle finite element model are included at a hinge pillar and an attachment bracket of a seat.

10. The method of claim 1 , wherein the coupled model includes redundant components.

11. The method of claim 10 , wherein the coupled model includes a steering wheel from the multi-body model and redundantly includes a steering wheel from the partial vehicle model.

12. The method of claim 10 , wherein the coupled model includes a seat from the multi-body model and redundanuy includes a seat from the partial vehicle model.

13. A method of simulating a vehicle impact comprising the steps of:

generating a first finite element model of the vehicle, wherein the first finite element model includes a plurality of boundary paints on the vehicle;

running at least one vehicle impact simulation on the first finite element model to generate impact data at each of the boundary points of the first finite element model;

generating a multi-body model that includes a vehicle occupant, an overhead pillar, a steering column, a knee blocker, a toe pan, at least one seat, an airbag, and a seatbelt assembly, wherein the multi-body model includes a plurality of boundary points that coincide with the boundary points included in the first finite element model;

running at least one vehicle impact simulation on the multi-body model by inputting impact data generated at each of the boundary points of the first finite element model into the boundary points of the multi-body model;

generating a partial vehicle finite element model that includes a plurality of master nodes and a plurality of slave nodes, wherein boundary conditions input at the master nodes generates output data at the slave nodes;

generating a coupled model that includes at least a portion of the multi-body model and at least a portion of the partial vehicle finite element model; and

running at least one impact simulation with the coupled model to thereby identity the effects of the impact on at least one of the vehicle and the occupant of the vehicle.

14. A method of simulating a vehicle impact comprising the steps of:

generating a first finite element model of the vehicle, wherein the first finite element model includes a plurality of boundary points on the vehicle;

running at least one vehicle impact simulation on the first finite element model to generate impact data at each of the boundary points of the first finite element model;

generating a niufti-body model that includes a vehicle occupant and at least one vehicle component, wherein the multi-body model includes a plurality of boundary points that coincide with the boundary points included in the first finite element model;

running at least one vehicle impact simulation on the multi-body model by inputting impact data generated at each of the boundary points of the first finite element model into the boundary points of the multi-body model;

generating a partial vehicle finite element model including a hinge pillar, a windshield, an instrument panel, a steering column, and at least one seat and that includes a plurality of master nodes and a plurality of slave nodes, wherein boundary conditions input at the master nodes generates output data at the slave nodes;

generating a coupled model that includes at least a portion of the multi-body model and at least a portion of the partial vehicle finite element model; and

running at least one impact simulation with the coupled model to thereby identify the effects of the impact on at least one of the vehicle and the occupant of the vehicle.

15. A method of simulating a vehicle impact comprising the steps of:

generating a first finite element model of the vehicle, wherein the first finite element model includes a plurality of boundary points on the vehicle;

running at least one vehicle impact simulation on the first finite element model to generate impact data at each of the boundary points of the first finite element model;

generating a multi-body model that includes a vehicle occupant and at least one vehicle component, wherein the multi-body model includes a plurality of boundary points that coincide with the boundary points included in the first finite element model;

running at least one vehicle impact simulation on the multi-body model by inputting impact data generated at each of the boundary points of the first finite element model into the boundary points of the multi-body model;

generating a partial vehicle finite element model that includes a plurality of master nodes and a plurality of slave nodes, wherein baundary conditions input at the master nodes generates output data at the slave nodes;

generating a coupled model that includes at least a portion of the multi-body model and at least a portion of the partial vehicle finite element model such that the coupled model includes a steering wheel from the multi-body model and redundantly includes a steering wheel from the partial vehicle model; and

running at least one impact simulation with the coupled model to thereby identify the effects of the impact on at least one of the vehicle and the occupant of the vehicle.

Assignments (19)
RELEASE OF SECURITY INTEREST Recorded Jan 24, 2019
From: JPMORGAN CHASE BANK, N.A.
To: FCA US LLC (FORMERLY KNOWN AS CHRYSLER GROUP LLC)
Reel/Frame 048177/0356 →
RELEASE OF SECURITY INTEREST Recorded May 30, 2017
From: CITIBANK, N.A.
To: FCA US LLC (FORMERLY KNOWN AS CHRYSLER GROUP LLC)
Reel/Frame 042885/0255 →
RELEASE OF SECURITY INTEREST RELEASING SECOND-LIEN SECURITY INTEREST PREVIOUSLY RECORDED AT REEL 026426 AND FRAME 0644, REEL 026435 AND FRAME 0652, AND REEL 032384 AND FRAME 0591 Recorded Feb 11, 2016
From: CITIBANK, N.A.
To: FCA US LLC, FORMERLY KNOWN AS CHRYSLER GROUP LLC
Reel/Frame 037784/0001 →
CHANGE OF NAME Recorded Apr 30, 2015
From: CHRYSLER GROUP LLC
To: FCA US LLC
Reel/Frame 035553/0356 →
SECURITY AGREEMENT Recorded Mar 4, 2014
From: CHRYSLER GROUP LLC
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 032384/0640 →
SECURITY AGREEMENT Recorded Jun 13, 2011
From: CHRYSLER GROUP LLC
To: CITIBANK, N.A.
Reel/Frame 026435/0652 →
SECURITY AGREEMENT Recorded Jun 7, 2011
From: CHRYSLER GROUP LLC
To: CITIBANK, N.A.
Reel/Frame 026404/0123 →
RELEASE OF SECURITY INTEREST Recorded May 26, 2011
From: THE UNITED STATES DEPARTMENT OF THE TREASURY
To: CHRYSLER GROUP LLC; CHRYSLER GROUP GLOBAL ELECTRIC MOTORCARS LLC
Reel/Frame 026343/0298 →
CHANGE OF NAME Recorded Jul 7, 2009
From: NEW CARCO ACQUISITION LLC
To: CHRYSLER GROUP LLC
Reel/Frame 022919/0126 →
RELEASE OF SECURITY INTEREST IN PATENT RIGHTS - FIRST PRIORITY Recorded Jul 6, 2009
From: WILMINGTON TRUST COMPANY
To: CHRYSLER LLC
Reel/Frame 022910/0498 →
SECURITY AGREEMENT Recorded Jul 6, 2009
From: NEW CARCO ACQUISITION LLC
To: THE UNITED STATES DEPARTMENT OF THE TREASURY
Reel/Frame 022915/0489 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 6, 2009
From: CHRYSLER LLC
To: NEW CARCO ACQUISITION LLC
Reel/Frame 022915/0001 →
RELEASE OF SECURITY INTEREST IN PATENT RIGHTS - SECOND PRIORITY Recorded Jul 6, 2009
From: WILMINGTON TRUST COMPANY
To: CHRYSLER LLC
Reel/Frame 022910/0740 →
RELEASE OF SECURITY INTEREST Recorded Jul 1, 2009
From: US DEPARTMENT OF THE TREASURY
To: CHRYSLER LLC
Reel/Frame 022902/0310 →
GRANT OF SECURITY INTEREST IN PATENT RIGHTS - THIR Recorded Jan 14, 2009
From: CHRYSLER LLC
To: US DEPARTMENT OF THE TREASURY
Reel/Frame 022259/0188 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2007
From: DAIMIER CHRYSLER COMPANY LLC (CONVERTED TO LIMITED LIABILITY COMPANY DAIMLERCHRYSLER COMPANY LLC); DAIMLERCHRYSLER COMPANY LLC
To: CHRYSLER LLC
Reel/Frame 019879/0702 →
GRANT OF SECURITY INTEREST IN PATENT RIGHTS - SECOND PRIORITY Recorded Aug 30, 2007
From: CHRYSLER LLC
To: WILMINGTON TRUST COMPANY
Reel/Frame 019767/0810 →
GRANT OF SECURITY INTEREST IN PATENT RIGHTS - FIRST PRIORITY Recorded Aug 29, 2007
From: CHRYSLER LLC
To: WILMINGTON TRUST COMPANY
Reel/Frame 019773/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 20, 2006
From: MUSALE, GOPAL; KESHTKAR, REZA
To: DAIMLERCHRYSLER CORPORATION
Reel/Frame 017204/0961 →
Continuity (1)
Related Publication 20070143087A1 · Jun 21, 2007