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    • 1. 发明申请
    • Primary shaping method for a component comprising a microstructured functional element
    • 用于包含微结构化功能元件的组分的初始成型方法
    • US20060162896A1
    • 2006-07-27
    • US11238184
    • 2005-09-28
    • Georg SchmitzManfred GrohnJurgen Nominikat
    • Georg SchmitzManfred GrohnJurgen Nominikat
    • B22C9/04
    • B22C7/02B22C7/06B22C9/04B22C9/10B33Y80/00
    • The invention relates to a molding method for a component with at least one microstructured functional element, which is configured intentionally with a defined structure, in relief, at a defined point on the surface of the component in order to specifically fulfil a function. The element has a characteristic dimension in the micrometer range in at least one spatial direction. The component is shaped from a substantially metallic material using a mould. The aim of the invention is to simplify and accelerate a primary shaping method of this type, making it more cost-effective and attractive for mass-production and use on a large scale, thus opening new avenues of application. To achieve this, at least one functional element is formed in a negative impression that is configured on the surface of the mould. The invention also relates to a mould, a core, a core box, a model, an original form and a master pattern for carrying out said primary shaping method.
    • 本发明涉及一种用于具有至少一个微结构化功能元件的部件的模制方法,其特征在于,在组件表面上的限定点处有意地以限定的结构构造,以特别地实现功能。 该元件在至少一个空间方向上具有微米范围内的特征尺寸。 该部件使用模具从基本金属材料成型。 本发明的目的是简化和加速这种类型的主要成型方法,使其大规模生产和使用更具成本效益和吸引力,从而开辟新的应用途径。 为了实现这一点,至少一个功能元件形成在构造在模具表面上的负压印中。 本发明还涉及用于实施所述初级成型方法的模具,芯,芯盒,模型,原始形式和主图案。