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DESIGN OF AN AUTOMOBILE SEAT WITH REGULATIONS USING AXIOMATIC DESIGN

机译:采用公理设计的法规设计汽车座椅

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The automobile seat must satisfy various safety regulations for the passenger's safety. In many design practices, each component is independently designed by concentrating on a single regulation. However, since multiple regulations can be involved in a seat component, there may be a design confliction among the various safety regulations. Therefore, a new design methodology is required to effectively design an automobile seat. The axiomatic approach is employed to consider multiple regulations. The Independence Axiom is used to define the overall flow of the seat design. Functional requirements (FRs) are defined by safety regulations and components of the seat are classified into groups which yield design parameters (DPs). The classification is carried out to keep the independence in the FR-DP relationship. Components in the DP group are determined by using the orthogonal arrays of the design of experiments (DOE). Numerical analyses are utilized to evaluate the safety levels by using a commercial software system for nonlinear transient finite element analysis.
机译:汽车座椅必须满足乘客安全的各种安全规定。在许多设计实践中,每个组件都是通过专注于单一调节而独立设计的。然而,由于多种规定可以参与座椅部件,因此各种安全规定可能存在设计冲突。因此,需要一种新的设计方法来有效地设计汽车座椅。使用公理方法来考虑多种规定。独立公理用于定义座椅设计的整体流动。功能要求(FRS)由安全规定定义,座椅的部件分为屈服于屈服设计参数(DPS)的组。进行分类以保持FR-DP关系中的独立性。 DP组中的组件通过使用实验设计的正交阵列(DOE)来确定。使用数值分析来利用用于非线性瞬态有限元分析的商业软件系统来评估安全水平。

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