A DYNAMIC TEST METHOD FOR A CAR'S INTERIOR SIDE IMPACT PERFORMANCE
A Oehlund, Saslecov
Abstract
A Oehlund, Saslecov
Abstract
This paper gives a general description of a dynamic test method for the development of a car's interior towards improved side impact performance. It also describes an application and some advantages of the test method. The background and needs for this methods are to: (1) enable the development of the car's interior before the body is available in a new car concept; (2) reduce the number of full-scale tests; (3) reduce development time; and (4) reduce the needs of expensive test equipment. The method is based on a small moving barrier which carries the trim panels mounted on a door and side structure bullet-substitute. Any available side impact can be used in the method. In order to run the test, the moving barrier is accelerated up to a chosen dummy impact velocity before it impacts on the and seat. The findings show that the test method has a good conformity with a full-scale test in terms of both the response and the behaviour of the interior components. The method can be used to determine the effects of different bullets and structural performance. For the covering abstract of the conference see IRRD 864606.
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This paper gives a general description of a dynamic test method for the development of a car's interior towards improved side impact performance. It also describes an application and some advantages of the test method. The background and needs for this methods are to: (1) enable the development of the car's interior before the body is available in a new car concept; (2) reduce the number of full-scale tests; (3) reduce development time; and (4) reduce the needs of expensive test equipment. The method is based on a small moving barrier which carries the trim panels mounted on a door and side structure bullet-substitute. Any available side impact can be used in the method. In order to run the test, the moving barrier is accelerated up to a chosen dummy impact velocity before it impacts on the and seat. The findings show that the test method has a good conformity with a full-scale test in terms of both the response and the behaviour of the interior components. The method can be used to determine the effects of different bullets and structural performance. For the covering abstract of the conference see IRRD 864606.
Key concepts: Side impact, Full scale, Test method, Trim, Test (biology), Engineering, Dynamic testing, Simulation