为了实现设计重用,提出了一种面向复杂结构零件的初始化设计知识模型构建方法。
To achieve the design reuse of complex structural components, a method for the initialized design knowledge model is investigated.
针对零件库中复杂结构零件难以分类和检索问题,提出一种基于概念零件结构定性模型的零件设计可重用方法。
Aiming at difficult sorting and retrieving complicated structure parts in part lib, a method for part design by using conceptual part structure qualitative models is presented.
针对零件信息的复杂性,充分利用关系型数据库技术,建立相关的零件信息数据结构。
To the complication of the parts information, this thesis builds the correlative data structure of the part information through utilizing the technique of relation database.
分析探究也为复杂零件结构件的设计和有限元分析提供了一种方法。
The design that the analysis studies to also be complex part structural member and finite yuan the analysis provided a kind of means.
分析复杂壳体零件结构特点,加工难点,阐述了保证零件精度的数控加工技术。
The characteristics of complex shell parts and the difficulties of machining were analyzed. The machining technology to ensure precision was presented.
论述了有较高精度要求且结构复杂孔的加工工艺,介绍加工该零件钻孔模具的设计及制作过程。
The paper described the processing technology of requiring and complicated hole of the structure in high accuracy, introduced the design to process this jig and its manufacture.
此拔叉零件的结构较为复杂,其加工的地方主要是孔和平面。
This pull out the construction of the fork spare parts than for complicacy, its the place that process is a peaceful in bore primarily.
为满足工业零件尺寸测量的复杂要求,对结构光三维扫描法的基本工作原理进行了全面分析。
The basic principle of the structured light 3 D scanning method was analyzed to improve the dimensional measurements of industrial parts.
铲齿是一种常用的工程机械零件,该零件结构复杂,成形困难。
Shovel tooth is a general part of engineering machine and it is very difficult to be forged because the part shape is complicated.
板料液力成形由于能提高成形极限,适合于制造铝合金等轻合金各种形状薄壳结构。热态液力成形适合于制造铝、镁等轻合金复杂零件。
Sheet hydroforming improves forming limit, therefore, it's fit for manufacturing all Kings shape thinness shell components of light alloys such as aluminum.
板料液力成形由于能提高成形极限,适合于制造铝合金等轻合金各种形状薄壳结构。热态液力成形适合于制造铝、镁等轻合金复杂零件。
Sheet hydroforming improves forming limit, therefore, it's fit for manufacturing all Kings shape thinness shell components of light alloys such as aluminum.
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