DEVELOPMENT OF HOT FORMING TECHNOLOGY FOR ULTRA HIGH STRENGTH STEEL AND ITS MECHANICAL PROBLEM
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摘要:高强度钢板热成形技术是将传统的热处理技术(淬火)与冷冲压技术相结合的最新制造工艺,可以成形强度超过1 600 MPa的超高强度钢板.本文首先介绍了热成形技术的原理、一次及多次成形工艺和热成形过程中的核心制造技术;随后分析了热成形过程中材料的微观组织及力学性能变化,包括成形前、成形中及成形后材料性能的演变,介绍了与温度、马氏体转变速率相关的高温奥氏体材料模型,指出了其在热成形过程中的应用方法;研究了高强度钢板热成形材料的成形性能:分析了硬化指数n值对材料高温成形性的影响,并给出了最佳n$值温度区间;介绍了材料初始轧制各向异性对材料性能的影响,实验结果说明在热成形温度下晶格的各向异性将消失.对热成形过程中材料的本构关系进行了介绍:重点介绍了热、力及相变耦合本构模型;对热成形过程中的多相材料热力学参数和力学性能进行等效分析的混合定律进行了说明;介绍了相变体积应力及相变塑性应力等新概念;随后对热成形数值模拟技术进行了介绍:重点介绍了自主开发的KMAS(King-Meshanalysis sytem)热成形软件的动力显示、静力显示算法及温度场模拟技术;说明了将材料的高温性能引入接触与摩擦模型的接触控制参数的概念;随后基于车身碰撞力学的分析,介绍了热成形钢板在车身中应用的设计方法.最后对热成形技术今后的研究作出了展望.
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关键词:
- 设计方法
Abstract:Hot forming is theadvanced technology that integrates traditional heat treatment andcold stamping. The ultra high strength component with the tensilestrength 1 600 MPa can be manufactured by hot forming. Theprinciple of hot forming, one-step method and multi-step methodtechnology, the key manufacturing technology in hot formingprocess are introduced. The evolutions of microstructure andmechanical property of the material are analyzed before hotforming, in hot forming and after hot forming. The material modelof austenitic phase at high temperature with dependence ontemperature and strain rate and its application method in hotforming are presented. The formability of the material in hotforming is studied. The influence of hardness ability value onformability is investigated and the optimized temperature range ispresented. The anisotropy of the rolling direction is analyzed andthe experimental results indicate the anisotropy of crystallattice disappear in hot forming. The constitutive relations ofthe material are descripted in hot forming, especially thethermal-mechanical-transformation coupled relationship. Themulti-phase mixed relationship is introduced to analyze theeffective thermo-mechanical parameters and mechanical propertiesof multi phases during the hot forming. By defining the concepts,the phase-transformation volume stress and phase-transformationplastic stress are expressed to explain the mechanism ofthermal-mechanical-transformation coupled relations. Then thenumerical simulation of hot forming is introduced, especially thedynamic explicit algorithm, the static explicit algorithm and thenumerical simulation of the temperature field based on theindependently developed commercial CAE software for sheet metalforming, named KMAS (King-Mesh Analysis System). The phasetransformation latent heat is introduced into the analysis oftemperature field during the hot forming process. Based on theanalysis of the crash problem for car body, the functional designmethods of hot-forming parts used in the vehicle body design arepresented. Finally prospective developments of hot forming aresuggested.-
Key words:
- design method
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