窄沟开挖模拟

D. Anghelache, A. Goanță
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引用次数: 1

摘要

本文利用小型挖掘机上的专用设备,实现了窄沟开挖过程的仿真。这些类型的机器挖掘执行纵向向移动方向,挖沟宽度为0.4米,深度为3.5 -7.0米。这对于地下电缆或农业排水的位置是必要的。对于集成中包含的部件的参数化建模,我们使用西门子NX 7.5软件生成每个部件的草图,使用以下命令:草图,轮廓(线),弧,圆,快速修剪,快速扩展,约束。根据每一块的布局,还可以使用其他命令,如:倒角,旋转,镜像曲线,偏移曲线等。完成草图和尺寸命令是:挤压,旋转,在这个阶段,游戏可以进行各种修改,如钻孔,去除某些体积的工件,显示各种形式或改变表面的外观(螺纹切割,斜面)。本文采用该参数化建模软件实现,其主要优点是:控制设计,提高设计速度,提高生产效率;提高产品质量,减少设计风险恢复和时间工作,减少整个过程中的人力和财务资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diging simulation of a narrow trench
In this paper, we realized digging process simulation for a narrow trench using special equipment located at a mini excavator. These types of machines digging perform the longitudinal direction to the direction of travel, making trenches with widths of 0.4 m and depths of 3.5 -7.0 m. These are necessary for the location of underground cables or draining water in agriculture. For Parametric modelling of parts included in ensemble has used software from Siemens NX 7.5, we produce sketches of each piece, using following commands: Sketch, Profile (Line), Arc, Circle, Quick Trim Quick Extend, Constraints. Depending on the layout of each piece can also use other commands such as: Chamfer, Rotate, Mirror Curve, Offset Curve, etc. After completion of sketch and dimensioning commands was: Extrude, Revolve, and at this stage the play may various modifications such as drilling, removal of certain volumes of piece showing various forms or change the appearance of surfaces (thread cutting, bevelling). This paper was realized with this parametric modelling software because presents major advantages including: control over the design, making design speed and increasing productivity; increasing product quality, reducing design risk recovery and time work, less human effort and reduced financial resources throughout the process.
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