contour cutting 中文意思是什麼

contour cutting 解釋
外形切削
  • contour : n 1 外形,輪廓;周線,輪廓線。2 等高線,恆值線;【電視】等場強線(=contour line)。3 概略,大要...
  • cutting : n 1 切斷,切下;切片;【園藝】扦插,插條;〈英國〉剪裁,(報紙等的)剪輯;(寶石等的)加工,琢磨...
  1. ( 3 ) based on a close research of the cad model representation in mdt, this paper picks up the model information expressed in the boundary representation ( b - rep ) using the development kits of objectarx and mdt api offered by autodesk inc. ( 4 ) the direct slicing data are processed so as to realize the sorting and fitting of short lines, the cutting tool compensation, the layer contour filling and the optimization of the scanning paths, etc. ( 5 ) designs the architecture of rp data processing software according to the functional requirement of rp, and integrates all the functional modules

    ( 3 )在深入研究mdt ( mechanicaldesktop )中三維模型表示方法的基礎上,運用autodesk公司提供的mdt二次開發工具objectarx和mdtapi ,成功地實現了對mdt模型信息的提取,進而使直接自適應分層演算法得以實現。 ( 4 )對直接分層得到的數據進行了工藝規劃。實現了對層片輪廓線段的排序、擬合、刀具補償以及輪廓內部填充和掃描路徑優化等。
  2. Three frequently used nc engraving strategies, i. e. planar profile machining, nest cutting and contour parallel machining are studied. and the corresponding tool path generation functions are implemented

    在此基礎上,研究實現了平面輪廓切割、嵌套切割、環切加工刀具軌跡的規劃與生成演算法。
  3. This paper introduces a method for calculating accurate coordinates in a cam contour. using a computer program, puts forward a technological process for machining the cam contour with a nc linear cutting machine. both of them are suitable for development of new products and localization of inport products

    介紹運用計算機精確計算凸輪輪廓尺寸的方法及數控線切割機加工凸輪輪廓工藝.其計算過程是:先根據凸輪輪廓尺寸原始數據運用c + +語言編程,然後用計算機精確計算凸輪輪廓尺寸.其加工步驟是:先按數控線切割機的指令格式編程,然後線切割機按程序指令控制鉬絲的運行軌跡
  4. Meanwhile, in 3d - scene, some functions of spatial analysis and interactive operations have been realized. and, a testing application system of 3dcm is developed, which includes tin model construction, the creation of contour, spatial coordinate query, section - cutting, measuring distance and area, 3d visualization and operation about topography and building etc. the purpose of developing testing system is to demonstrate the correctness of 3dcm based on the visualization. finally, the result of the testing and 3dgis research direction is put forward to investigate generally

    另外,在三維模型的可視化場景中,實現了一些3dgis的交互操作和空間分析功能,結合論文的目標,開發了一個實驗系統,對三維城市的建模方法進行了論證,實現了dem模型的快速構建及等高線的追蹤和地圖分幅,實現了三維城市模型的可視化,在可視化的基礎上實現了部分空間交互操作和空間分析,如:空間坐標查詢、斷面切割、距離和面積量算、建築物屬性查詢、三維動態漫遊等。
  5. At the same time computation time was controlled by the maximum iteration. the ideal cutting contour would be obtained. the cutting contours of three typical cover panels were calculated by using the error - adjustment method

    優化方法基於材料的實際變形路徑並進行迭代計算,同時採用最大迭代次數以控制計算時間,最終得到比較精確的修邊輪廓線。
  6. So how to determine the trimming shape and dimension for exact flanging is very important for reducing the period of producing trimming mould and saving the cost. simultaneously it is a difficult problem in whole mould manufacture. several common methods of calculating the cutting contour were discussed in this thesis

    拉延後如何確定修邊線的尺寸和形狀,使翻邊后突緣輪廓正好達到零件所需翻邊高度,對于縮短模具製造周期,減少生產成本都具有重要意義,同時也是整個模具行業亟待解決的一大難題。
  7. Firstly using the calculated cutting contour to cut the drawing part, then flange on the flanging mould, and then check the error for flanging part. try - out the part until it is correct. it is shown that the error of calculated cutting contour is in the range of 1mm through compared it with the correct contour

    本文將實際調試出的合格零件的修邊線與採用誤差修正法計算所得的修邊線進行對比,其誤差均在1mm范圍內,對于型面極其復雜的翻邊零件,如后地板前板,其修邊誤差也可控制在3mm范圍內,這就有效地減少了汽車覆蓋件的修邊、翻邊調試次數和周期。
  8. The key to the settlement of question lies in rapid determining the position relations, which satisfies the restraints on layout between these contours. in order to do so, a series of characteristic points on a contour should be obtained by cutting the contour through horizontal equidistant lines, then the position relations mentioned above can be determined, and some layout parameters are solved. finally, a optimum result of layout is obtained

    其原理是先用等距水平線分割零件輪廓,得到一系列輪廓的特徵點,然後利用其特性可快速確定零件輪廓在滿足排樣約束時的相互位置關系,通過與之匹配的高效演算法可求得排樣參數,獲得最優排樣方案。
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