菜单
  

    Referring to Fig. 1, the planning solution is partitioned into four different object levels: stamping part, stamping features, stamping operations, and stamping process plan, each representing initial input or different partial solutions posted on the blackboard by the specialist KSs. They are described as follows.
     
    Fig.1. Blackboard framework for stamping process planning
    3.1.1 Input data to the blackboard
    Input data to the blackboard mainly includes the part and press objects. The generic declaration of a part object includes the basic attributes such as part type, part dimensions, weight, surface treatments, blank thickness, blank material, annual production, blank dimensions, etc., and points to its constituent stamping feature objects that will be elaborated later on. The press object contains the attributes such as press type, press tonnage, bolster dimensions, bed open dimensions, shut height, number of strokes, etc.
    3.1.2 Object-oriented feature modeling to stamped metal parts
    Since traditional geometric modeling techniques do not capture design intent (e.g., design for manufacturing), they are in general unable to support sophisticated and intelligent reasoning capabilities, e.g., knowledge-based process planning. Recently, the concept of machining features has been introduced to create a direct link between design and manufacturing [23]. Feature modeling is a relatively new way of storing design and manufacturing information in CAD/CAM/CAPP systems. Similarly, stamping features of a stamped metal part can enable stamping process planning tasks to be performed directly from the geometric model. Stamping features are information carriers that are used to model a stamped part with a set of design and manufacturing information including geometric and non-geometric attributes. Each of these stamping features can be manufactured with a specific stamping operation or a combination of stamping operations.
    Using the hierarchical classification structure of general design features by Chen et al. [24], a stamped metal part can be modeled with four categories of stamping features:
       Primary features: flat, drawing, etc.;
       Positive secondary features: tab, curl, emboss, hem, bead, flange, etc.;
       Negative secondary features: hole, extrusion hole, profile, deform, slot, step, etc.; and
       Connective secondary features: bend, blend, etc.
       In this work, the object-oriented feature representation is employed to encapsulate design and manufacturing information in a stamping feature object. For example, a hole feature object contains the basic attributes such as feature type, feature ID, primary feature ID, position, orientation, depth, diameter, precision, roughness, etc., and methods to calculate perimeter.
    Besides representation of inpidual stamping features, a comprehensive representation of feature relations guarantees that all the stamping features associated with stamping process planning are considered. In addition, the data on feature relations are useful for determining the sequence of stamping operations and sometimes the stamping operations themselves. Four critical types of relations among stamping features – “is-in”, “is-on”, “adjacent-to” and “precision-associated” are identified, which have been elaborated in our previous work [25] and won’t be repeated in this paper for conciseness.
    3.1.3 Stamping operation objects mapped from stamping feature objects
    On the blackboard, the stamping operation objects are in a lower level than the stamping feature objects, and are used to define the manufacturing process from metal strip to the formed metal part. Stamping features constitute a stamped part, while stamping operations are selected as elements of a stamping process plan. Essentially, the stamping process planning task is to transform a set of stamping features into a set of stamping operations, and to describe the relations between these. The generic declaration of a stamping operation object includes stamping operation type, geometric shapes, geometric constraints, precision, roughness, relationships with stamping features, control parameters, etc. Typical stamping operation objects include piercing, notching, cut-off, blanking, lancing, shaving, drawing, embossing, coining, trimming, and other miscellaneous forming operations. A stamping feature may be manufactured with a specific stamping operation (one-to-one mapping) or a combination of stamping operations (one-to-many mapping). Several stamping features may also be manufactured with a single stamping operation (many-to-one mapping).
  1. 上一篇:采暖通风与空调装置英文文献和中文翻译
  2. 下一篇:提高级进模性能英文文献中文翻译
  1. 立体光照成型的注塑模具...

  2. CAD/CAM模具技术课程教学改...

  3. 金属板料冲压模具计算机...

  4. PHP动态建模英文文献和中文翻译

  5. Java技术的Web应用设计模型...

  6. 网站设计英文文献和中文翻译

  7. 模具以及模具的现代加工英文文献和中文翻译

  8. java+mysql车辆管理系统的设计+源代码

  9. 中考体育项目与体育教学合理结合的研究

  10. 酸性水汽提装置总汽提塔设计+CAD图纸

  11. 当代大学生慈善意识研究+文献综述

  12. 河岸冲刷和泥沙淤积的监测国内外研究现状

  13. 杂拟谷盗体内共生菌沃尔...

  14. 乳业同业并购式全产业链...

  15. 电站锅炉暖风器设计任务书

  16. 十二层带中心支撑钢结构...

  17. 大众媒体对公共政策制定的影响

  

About

751论文网手机版...

主页:http://www.751com.cn

关闭返回