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Recent Developments within Semi-Solid Forming at the Institute forMetal Forming Technology, Stuttgart University

机译:斯图加特大学研究所艺术成型技术的半固体形成内的最新发展

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This paper illustrates several research activities being carried out within the Center of Competence for Casting and Thixoforging Stuttgart (CCT 'NOVUS'). A new method for manufacturing Metal Matrix Composites out of the semi-solid state has been developed at the Institute for Metal Forming Technology, Universitaet Stuttgart, and applied for patent pending. Within this new manufacturing method for the production of fibre and particle reinforced composites now disadvantages of liquid-phase-techniques can be reduced in combination with decreased manufacturing costs compared to conventional MMC-production technologies due to short cycle times and the ability of near-net-shape forming. It is obvious that manufacturing process in the fabrication of metal matrix composite materials will influence in some extent the performance of these materials. A current research project at the Institute for Metal Forming Technology (IFU), contributes implementing specific boundary condition of the manufacturing process to numerical analysis. Such boundary conditions exert direct influence on product quality. For manufacturing of metal matrix composites limiting factors are e.g. temperature, pressure, deformation, etc. Detecting input-parameter for numerical analysis basic Theological parameters, such as static and dynamic yield points, hysteresis and shear rate jump tests, detection of the differential structural parameter, evolution of apparent viscosity of different cast-alloys are topics of current research project at the Institue for Metal Forming Technology. For reheating-process of semi-solid alloys new technologies have been developed and applied for patent pending by the Institute for Control Engineering of Machine Tools and Manufacturing Units (ISW). The two main advantages of this technique as compared with other induction heating techniques are the direct online determination of liquid-, solid fraction and heating-homogeneity as well as robustness against variations of prematerial (chemical composition, billet-diameter, etc.).
机译:本文说明了铸造和吝啬斯图加特的能力中心内进行了几项研究活动(CCT'Novus')。已经在金属成型技术,大学斯图加特大学斯图加特研究所开发了一种新的半固态制造半固态的金属基质复合材料的新方法。在这种新的制造方法中,用于生产纤维和颗粒增强复合材料,现在与传统的MMC-生产技术相比,可以结合循环时间和近网的能力相比,与常规MMC制造技术相比,液相技术的缺点可以结合减少。 - 形状。显而易见的是,制造金属基质复合材料的制造过程将在某种程度上影响这些材料的性能。金属成型技术研究所(IFU)研究所,有助于实施制造过程的特定边界条件与数值分析。这种边界条件对产品质量产生了直接影响。对于金属基质复合材料的制造限制因子是例如。检测输入参数的温度,压力,变形等。检测数值分析的基本神学参数,如静态和动态屈服点,滞后和剪切速率跳跃试验,差动结构参数检测,不同铸造合金的表观粘度的演变是金属成型技术研究所当前研究项目的主题。为了再加热 - 半固体合金的过程,已经开发了新技术,并申请了机床和制造单元(ISW)的控制工程研究所申请。与其他感应加热技术相比,该技术的两个主要优点是直接在线测定液体,固体分数和加热 - 均匀性以及抗近端(化学成分,坯料直径等)的变化的鲁棒性。

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