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Thixoforming of Steel: Parameters and Means for Industrialization

机译:钢的触变性:工业化的参数和手段

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The deformation process of steel in the semi-solid state, or thixoforming is an alternative solution to the classical industrial processes that are the casting or the hot forging. Thixoformed steel parts are of better quality and may substitute advantageously parts realized in cast iron leading to an improvement of the rigidity, for example, but also parts in aluminium alloys obtained by the main deformation processes: for lower volume, thixoformed steel parts, keeping the same functionality, present superior mechanical properties than the parts realized in aluminium alloys. The industrial development of the steel thixoforming must be accompanied by the knowledge and the various parameters control of the process: steel grades definition and elaboration, the homogeneous high-temperature heating of the slug before deformation, conception or re-conception of the part to adapt it to the process and the practice properties, the equipment definitions which are used for the deformation operation at the semi-solid state. The handling system is also important in the thixoforming process; it is going to allow the slug transfer, at the semi-solid state, between the heating zone and the tooling or to evacuate the thixoformed part towards the mean assuring the quality heat treatment of the part. The means choice which are industrially going to ensure the process have a big importance to obtain successful production line and so, a cost reduction by "finished" part competitive with regard to processes used classically today. After the description of the applicable key points to the main parameters and the solutions used to obtain a successful product: high mechanical characteristics, near net shape or net shape geometry, no flash and limited machining operation, ... are described , The investigations finished with an approach comparing the part cost realised by thixoforming process with regard to classical processes.
机译:半固态钢的变形过程或触变成型是铸造或热锻等传统工业过程的替代解决方案。触变钢零件的质量更好,并且可以有利地替代铸铁中实现的零件,从而提高了刚度,但也可以替代通过主要变形工艺获得的铝合金零件:对于较小的体积,触变钢零件,保持具有相同的功能,比铝合金零件具有更好的机械性能。钢触变成形的工业发展必须伴随着工艺知识和各种参数的控制:钢种的定义和详细说明,变形前对坯料进行均匀的高温加热,零件的构想或重新构想以使其适应取决于工艺和实践特性,以及用于半固态变形操作的设备定义。处理系统在触变性成型过程中也很重要。这将允许在半固态状态下,团状料在加热区和工具之间转移,或者将触变成型的零件抽成真空,以确保零件的优质热处理。在工业上将要确保该过程的方法选择对于获得成功的生产线非常重要,因此,相对于当今传统使用的过程,“成品”部分的成本降低具有竞争力。在描述了适用于主要参数的关键点以及用于获得成功产品的解决方案之后:描述了高机械特性,接近净形状或净形状几何形状,无飞边和有限的加工操作,...,研究完成通过比较触变成型工艺和传统工艺实现的零件成本的方法。

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