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Combined deep drawing and fusion bonding of structural FRP-metal hybrid parts

机译:结构FRP - 金属杂交零件的综合深层绘图和熔合

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This research describes the development of a combined process of forming and thermal joining without adhesives of high strength steels and organosheets. In order to achieve cycle times below 20s the temperature of the forming tool remains constant at 110°C throughout the process. Thus, the removal of the component can take place immediately after the forming process without cooling of the forming tool. The thermal energy required to assure the thermal joining process at 280°C at the beginning of the intermediate forming step is applied by means of heating the steel in a furnace before the transfer to the forming tool. By choosing certain coating depended heat treatment parameters during the heating step, galvannealed rough surfaces of the steel blanks can be generated in order to increase the joint strength. The paper includes a surface analysis and lap-shear testing results to quantify the respective joint strength to be achieved with the proposed surface treatment. In addition tensile test results of the heated DP800 steel to characterize the thermal influence on the mechanical properties of the heated high-strength steels will be shown. Furthermore the paper presents a tool concept with a graded blank holder to perform stretching of the metal on the one hand and draping of the organosheet on the other hand as well as preliminary forming results.
机译:该研究描述了在没有高强度钢和有机晶片的粘合剂的情况下开发成型和热连接的组合过程。为了实现20s以下的循环时间,在整个过程中,成形工具的温度在110℃下保持恒定。因此,可以在形成过程之后立即进行部件的去除而不冷却成形工具。在转移到成形工具之前,通过在炉子中加热钢,施加在中间形成步骤开始时在280℃下确保热连接过程所需的热能。通过在加热步骤期间选择某些涂层依赖于热处理参数,可以产生钢坯的凸起粗糙表面以增加关节强度。本文包括表面分析和搭接剪切测试结果,以通过提出的表面处理量化待实现的各个接合强度。另外,将显示加热的DP800钢的拉伸试验结果,以表征热量对加热的高强度钢的机械性能的热影响。此外,本文呈现了一种工具概念,具有渐变坯料支架,在一方面,另一方面覆盖有机件以及初步形成结果。

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