考虑到有限技术经验的现有生产系统中工艺技术的集成与替代框架

A. Kampker, H. Heimes, Benjamin Dorn, F. Brans
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引用次数: 0

摘要

由于不断增长的需求和汽车工业的转型,近年来已经建立了巨大的电力驱动生产能力。在建立这些能力时,制造公司面临着巨大的时间压力,而规划人员对所使用的技术往往只有很少的经验,这一事实加剧了这种压力。因此,整个生产线或生产线的较大部分以所谓的封闭招标方式分配给机器供应商。这些投标更多的是以产品为导向,而不是以工艺为导向,因此机器供应商负有工艺责任。从制造公司的角度来看,采用这种方法的原因主要在于减少风险和接口。生产系统在规划和安装后移交给制造公司准备使用。这导致制造公司作为系统操作员,在某些情况下在技术上依赖于机器供应商的风险。此外,市场动态意味着个别技术不断得到进一步发展。这就提出了一个问题,即如何确保对现有生产系统的改变能够以最省时和最具成本效益的方式实施,同时考虑到行业的条件,例如操作员方面缺乏经验,新技术的可用性动态以及由机器供应商和操作员组成的多边项目构成。为此,本文提出了一个框架,可用于系统地识别和评估与破坏性环境中单个技术替代相关的风险。此外,考虑到缺乏经验知识,推导了降低技术替代风险的措施。以发夹定子生产为例,给出了该框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Framework for Integration and Substitution of Process Technologies in Existing Production Systems Under Consideration of Limited Technology Experiences
Due to the increasing demand and the transformation of the automotive industry, immense capacities for the production of electric drives have been built up in recent years. When building up these capacities, manufacturing companies are facing enormous time pressure, which is intensified by the fact that planners often only have little experiences with the used technologies. As a result, entire production lines or larger sections of production lines are assigned to machine suppliers in so-called closed tenders. Those tenders are more product-oriented than process-oriented, so that the machine supplier has the process responsibility. From the point of view of manufacturing companies, the reason for this approach lies primarily in the reduction of risk and interfaces. Production systems are handed over to the manufacturing companies ready for use after planning and installation. This results in the risk of the manufacturing company, as system operator, becoming technologically dependent on the machine supplier in some cases. In addition, market dynamics mean that individual technologies are continuously being developed further. This raises the question of how to ensure that changes to existing production systems can be implemented in the most time- and cost-efficient way possible, taking into account the conditions in the industry, such as a lack of experience on the operator side, the dynamics in the availability of new technologies and the multilateral project constitution consisting of machine suppliers and operators. For that purpose, this paper presents a framework that can be used to systematically identify and assess the risks related with the substitution of individual technologies in a disruptive environment. In addition, measures for risk reduction for technology substitutions are derived, considering the lack of experiential knowledge. The framework is presented at the example of hairpin stator production.
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