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PRODUCT INNOVATION NEEDS IMPROVED DESIGN PROCESS OF SCREW JOINTS

机译:产品创新需要改进的螺杆接头设计过程

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An essential task in today's engineering is to realize a multifunctional design which needs an optimization process to achieve highest performance (load profile), minimized energy consumption (fuel, gas, electricity in production and life time of product) and maximized sustainability (during entire life cycle from idea to end of life) at an affordable prize in combination. Another point is that the performance of products is increased steadily up to now, which shifts the load profile towards higher peak loads. Consequently, a related design methodology is necessary which takes into account modern techniques of CAD (Computer Aided Design) and FEA (Finite Element Analysis) besides analytical engineering calculation and testing. Also the inclusion of nontechnical aspects must be possible (e.g. experience, rating of economy). Besides this the local stressing, time dependency and non-linear behavior must be considered in more detail; examples are proposed below. This methodology can be illustrated very well for the example of screw joints in products with high mechanical loading between components. Established technical literature mainly refers to pure technical aspects of bolted joints, e.g.. Another important aspect for modern products is the increased use of mechatronic functions (mechanical system added by sensors, actuators and controller as well as controlling software). These functions raise the variety of failure modes significantly, which requires improved reliability. The paper describes, how screw joints are affected, because the number of screw joints increases and that engineers have to use reliable design methods to develop robust products. Looking to the packaging of mechatronic products, smaller screws joints are used because of space restrictions coming from the high number of components. In the end this means higher stressing of smaller screws. Countersunk heads offer benefits regarding space requirements, but need to consider positioning tolerances. For optimization process always non-linear relations are challenging; they need special description of the mechanisms and increase the demand for quality of the optimization method (e.g. convergence of numerical methods). Conclusions from this result in fastening perspectives for the design of innovative products for the future (automation of engineering design for fast product development considering complex interactions).
机译:当今工程中的重要任务是实现一种多功能设计,需要优化过程来实现最高的性能(负载型材),最小化能量消耗(燃料,天然气,生产和寿命的产品)和最大化的可持续性(在整​​个生命中从想法到生命结束的周期)在合理的奖项中。另一点是,产品的性能稳定地增加到目前,这将负载曲线朝向更高的峰值载荷移动。因此,除了分析工程计算和测试之外,还考虑了CAD(计算机辅助设计)和FEA(有限元分析)现代技术的相关设计方法。也必须纳入非技术方面(例如,经验,经济评级)。除此之外,必须更详细地考虑局部应力,时间依赖性和非线性行为;下面提出了实施例。对于具有高机械负载之间的组件的产品的螺杆接头的示例,可以非常好地说明该方法。建立的技术文献主要是指螺栓连接的纯技术方面,例如,现代产品的另一个重要方面是使用机电反应功能的使用增加(传感器,执行器和控制器添加的机械系统以及控制软件)。这些功能显着提高了所有故障模式,这需要提高可靠性。本文描述了螺钉关节如何受到影响,因为螺钉关节的数量增加,工程师必须使用可靠的设计方法来开发强大的产品。寻找机电产品的包装,由于来自大量组件的空间限制,使用较小的螺钉接头。最后,这意味着更高的螺钉压力。 Countersunk Head提供有关空间要求的好处,但需要考虑定位公差。对于优化过程,总是非线性关系挑战;它们需要对机制的特殊描述,并提高优化方法质量的需求(例如,数值方法的收敛性)。从这一结果的结论结果是对未来创新产品设计的紧固观点(考虑复杂交互的快速产品开发自动化)。

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