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METHOD OF ASSESSMENT OF CASTING ACCURACY AND MINIMIZATION OF MACHINING ALLOWANCES

机译:评估铸造精度和最小化加工津贴的方法

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The publication demonstrates an accuracy assessment method for machine tool body casting utilizing an optical scanner and a reference design of the machine tool body. The process allows assessing the casting shape accuracy, as well as determining whether the size of the allowances of all work surfaces is sufficient for appropriate machining, corresponding to the construction design. The described method allows dispensing with the arduous manual operation - marking out. Marking out, depending on the size and complexity, might take several working shifts for prototype casting. In case of large and elaborate casts, as those of machine tool bodies, marking out is often restricted only to the first cast of the desired body produced in a given casting mold. Such course of action is based on an assumption that casting is reproducible; hence, no need to assess each and every individual cast. While this approach saves time, it often results in late detection of casting errors (allowance shifts or insufficiencies) during the actual machining process. That, in turn, results in considerable losses due to the disruption of the work process and often demands cast repair. The aim of the hereby presented study is to introduce a new technological premise dispensing with manual marking out as well as allowing fast verification of the cast shapes.
机译:该出版物利用光学扫描仪和机床主体的参考设计来展示机床体铸件的精度评估方法。该过程允许评估铸造形状精度,以及确定所有工作表面的余量的尺寸是否足以用于适当的加工,对应于构造设计。所描述的方法允许使用艰苦的手动操作进行分配 - 标记。标记为尺寸和复杂性,可能需要几个工作换档的原型铸造。在大型和精细的铸造的情况下,作为机床的那些,标记通常仅被限制为在给定的铸模中产生的所需体的第一铸件。这样的行动是基于铸造可重复的假设;因此,无需评估每个和每个人的演员。虽然这种方法节省了时间,但它通常会导致在实际加工过程中延迟检测铸造误差(允许换档或不足)。反过来,由于工作过程中断,并且经常要求施加维修,导致相当大的损失。特此提出的研究的目的是引入一种新的技术前提,用手动标记分配,以及允许快速验证铸造形状。

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