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On the development of object functions and restrictions for shapes made with a turret punch press

机译:关于对象功能的发展以及转塔冲床对形状的限制

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摘要

This study presents the information required to describe the machine and device resources in the turret punch press environment which are needed for the development of the analysing method for automated production. The description of product and device resources and their interconnectedness is the starting point for method comparison the development of expenses, production planning and the performance of optimisation. The manufacturing method cannot be optimized unless the variables and their interdependence are known. Sheet metal parts in particular may then become remarkably complex, and their automatic manufacture may be difficult or, with some automatic equipment, even impossible if not know manufacturing properties. This thesis consists of three main elements, which constitute the triangulation. In the first phase of triangulation, the manufacture occuring on a turret punch press is examined in order to find the factors that affect the efficiency of production. In the second phase of triangulation, the manufacturability of products on turret punch presses is examined through a set of laboratory tests. The third phase oftriangulation involves an examination of five industry parts. The main key findings of this study are: all possible efficiency in high automation level machining cannot be achieved unless the raw materials used in production and the dependencies of the machine and tools are well known. Machine-specific manufacturability factors for turret punch presses were not taken into account in the industrial case samples. On the grounds of the performed tests and industrial case samples, the designer of a sheet metal product can directly influence the machining time, material loss, energy consumption and the number of tools required on a turret punch press by making decisions in the way presented in the hypothesis of thisstudy. The sheet metal parts to be produced can be optimised to bemanufactured on a turret punch press when the material to be used and the kinds of machine and tool options available are known. This provides in-depth knowledge of the machine and tool properties machine and tool-specifically. None of the optimisation starting points described here is a separate entity; instead, they are all connected to each other.
机译:这项研究提供了描述转塔冲床环境中机器和设备资源所需的信息,这些信息是开发自动化生产分析方法所必需的。产品和设备资源及其相互联系的描述是进行费用开发,生产计划和优化性能的方法比较的起点。除非知道变量及其相互依赖性,否则无法优化制造方法。尤其是钣金零件然后可能变得非常复杂,并且它们的自动制造可能很困难,或者使用某些自动设备,即使不知道制造属性,甚至不可能。本文由构成三角剖分的三个主要元素组成。在三角剖分的第一阶段,检查在转塔冲床上进行的制造,以发现影响生产效率的因素。在三角测量的第二阶段,通过一系列实验室测试来检查转塔冲床上产品的可制造性。三角剖分的第三阶段涉及五个行业部分的检查。这项研究的主要关键发现是:除非众所周知生产中使用的原材料以及机器和工具的依赖性,否则无法实现高自动化水平加工的所有可能效率。在工业案例中未考虑转塔冲床的特定于机器的可制造性因素。根据执行的测试和工业案例,钣金产品的设计人员可以通过以下方式做出决策,直接影响转塔冲床的加工时间,材料损失,能耗和所需工具数量。本研究的假设。当要使用的材料以及可用的机器和工具选项已知时,可以优化要生产的钣金零件以在转塔冲床上制造。这提供了有关机床和特定工具的机床和刀具属性的深入知识。这里描述的优化起点都不是一个单独的实体。相反,它们都相互连接。

著录项

  • 作者

    Lohtander Mika;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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