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Technology pushed process and product innovation - Joining by Linear Flow Splitting

机译:技术推动过程和产品创新 - 线性流动分裂加入

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In order to take full advantage of manufacturing technologies, designers have to use technology specific manufacturing-induced properties. An adequate selection and optimisation of the manufacturing technology and a consequent combination of product and process development can lead to product innovations. Linear flow splitting yields ultra fine grained (UFG) microstructures which are characterised by high hardness, ductility and fatigue strength. These manufacturing-induced properties are particularly suited for rolling contact areas of linear guiding systems. Multi-functional linear systems require an integration of additional functional elements. For the hereby necessary joining, using the mechanisms acting in the linear flow splitting process seems attractive. The paper introduces a mechanical joining process following this technology push approach. Thereby, manufacturing-induced properties and mechanisms induced during the linear flow splitting process are utilised to integrate additional functional elements. Necessary joining operations can be integrated into the continuous flow production, maintaining the technological potential to manufacture large quantities at low costs. Extensive experiments show the applicability of various joined elements and materials for process integrated mechanical joining. The potential for product innovations is illustrated by an innovative linear system. Its core component is an integrated rack as part of a rack and pinion drive of a facade cleaner.
机译:为了充分利用制造技术,设计人员必须使用技术特异性制造诱导的特性。制造技术的充分选择和优化和随后的产品和过程开发结合可以导致产品创新。线性流动分裂产生超细颗粒(UFG)微结构,其特征在于高硬度,延展性和疲劳强度。这些制造诱导的性质特别适用于线性引导系统的滚动接触区域。多功能线性系统需要集成附加功能元素。对于特此必要的连接,使用在线性流动分裂过程中作用的机制似乎具有吸引力。本文推出了这种技术推动方法后的机械连接过程。由此,利用在线性流动分离过程期间引起的制造诱导的性质和机构来集成附加功能元件。必要的连接操作可以集成到连续的流量生产中,维持以低成本制造大量的技术潜力。广泛的实验表明各种连接的元件和用于工艺集成机械连接的材料的适用性。创新的线性系统说明了产品创新的潜力。其芯部件是集成架,作为门面清洁器的机架和小齿轮驱动器的一部分。

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