基于知识和数据的机械连接设计与尺寸标注

C. Zirngibl, C. Sauer, B. Schleich, S. Wartzack
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引用次数: 0

摘要

开发资源节约型轻量化设计的挑战,如生产中的排放和成本目标,导致对环保和快速连接工艺的需求不断增加。因此,与现有工艺(如点焊)相比,冷成型机械连接技术提供了一种节能的替代方法。然而,为了保证产品设计的足够可靠性,不仅选择合适的制造和连接方法,而且对整个连接过程进行合适的尺寸标注和验证是至关重要的一步。在这种情况下,热工艺提供了大量的设计原则,而机械连接方法主要需要广泛的实验测试和专家知识的包含。尽管对基于数据的机械连接分析的研究很少,但结合连接特性估计的连接部件(如不同型材和毛坯)的需求和制造导向尺寸的系统尚未出现。由于这种缺乏,本贡献引入了一个工程工作台,以支持设计工程师在早期开发阶段的知识和基于数据的机械连接连接设计,以夹具为例。在这方面,该方法被证明涉及类似的材料和薄板厚度与静态载荷的组合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Knowledge and Data-Based Design and Dimensioning of Mechanical Joining Connections
Challenges in the development of resource-efficient lightweight designs, such as emission and cost targets in production, lead to an increasing demand for environmentally friendly and fast joining processes. Therefore, cold-forming mechanical joining techniques provide an energy-efficient alternative in comparison to established processes, such as spot welding. However, to ensure a sufficient reliability of the product design, not only the selection of an appropriate manufacturing and joining method, but also the suitable dimensioning and validation of the entire joining process is a crucial step. In this context, thermal processes offer a large number of design principles while mechanical joining methods mainly require extensive experimental tests and the inclusion of expert knowledge. Although few contributions already investigated the data-based analysis of mechanical joints, a system for the requirement- and manufacturing-oriented dimensioning of joining components, such as different profiles and blanks, in combination with the estimation of joint properties is not available yet. Motivated by this lack, this contribution introduces an engineering workbench for the support of design engineers in the early development phases of the knowledge and data-based design of mechanical joining connections using clinching as an example. In this regard, the approach is demonstrated involving a similar material and sheet thickness combination with static loads.
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