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Body Light Weight and Cost Control

机译:车身轻量化和成本控制

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Body light weight is optimization design of body performance under body cost control, which is also a system engineering balanced body performance and body cost. Making the best of application of computer aided software for design and analysis, contrast body performance is sensitive to steel thickness, carry through light weight design and cost control, combine application these methods: body structure optimization included body joints optimization, major section improvement and features betterment; using more thin steel with higher strength as advanced high strength steel, ultra high strength steel, even press hardened steel; using new kind of light material as plastic, various alloy; applying new manufacture process as TRB, TWB, hot stamping etc. Controlling body cost through these methods such as, body structure boundary well adjusted in order to improve material utilization ratio, removing those overmuch strength structure, using low price material with equal performance. Applying computer aided software, carried through system design and analysis, balanced advantage and disadvantage of these methods, can we realize the aim of body light weight and cost control. Researching and discovering body light weight has sameness with body cost control, but there are also some differences, because both of their purpose and method are different. At present, costliness of those advanced light material with higher strength is the developing bottle neck for vehicle bodywork light weight and body cost control. Only when more cheap materials with high strength appear, can automobile company farther realize reducing body weight and low cost body.
机译:轻量化是车身成本控制下车身性能的优化设计,也是平衡车身性能和车身成本的系统工程。充分利用计算机辅助软件的设计和分析能力,对比车身性能对钢材厚度敏感,进行轻量化设计和成本控制,将这些方法结合起来应用:车身结构优化包括车身关节优化,主要截面改进和功能改善使用更多具有更高强度的薄钢作为高级高强度钢,超高强度钢,甚至是淬硬钢;使用新型轻质材料作为塑料,各种合金;通过TRB,TWB,热冲压等新的制造工艺。通过调整车身结构边界等方法来控制车身成本,以提高材料利用率,消除那些过大的强度结构,使用价格低廉,性能相同的材料。应用计算机辅助软件,通过系统设计和分析,权衡这些方法的优缺点,可以实现车身轻量化和成本控制的目的。研究和发现人体轻量化与人体成本控制相同,但是也存在一些差异,因为它们的目的和方法不同。当前,具有更高强度的那些先进轻质材料的成本优势是用于车身轻量化和车身成本控制的发展瓶颈。只有当出现更多廉价,高强度的材料时,汽车公司才能进一步实现减轻车身重量和降低车身成本。

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