cutter track 中文意思是什麼

cutter track 解釋
刀路
  • cutter : n 1 切者;裁衣人;【電影】剪輯員。2 切刀,切斷機;刻紋[錄音]頭,利齒,門牙,前牙。3 〈美國〉(單...
  • track : vt 用纖拉船。vi 拉纖行駛。n age 拉纖。n er 拉纖的人。n 1 軌跡,輪跡,航跡,痕跡;〈pl 〉足跡。2 ...
  1. With the experiment part, the errors of sk - 21 nc machine tool have been measured, and a serial of data is gotten which lead to the error discrimination. ( 3 ) based on the kinematical theory of mbs, the calculation methods for the ideal center envelop curve of grinding wheel on cam grinding, the practical cutter track, inverse contour of cam, ideal nc instructions, precision nc instructions, the inner / outer normal and the fitting criterion of curve have been all discussed in detail in this paper

    ( 3 )通過精密加工的約束條件方程,探討理想刀具路線、逆變數控指令與實際刀具軌跡之間的映射關系,解決誤差補償技術提高加工精度的核心問題? ?當要求數控磨床的砂輪中心準確到達給定的理想點時,精密數控指令值究竟該是多少,如何能夠通過計算,獲得這樣的數控指令值,給出經修正的數控指令計算方法。
  2. On the basis of the known actual contour equation of cam in the disk typed cam mechanism with swinging oblique bottomed follower, this paper expounded another method for determining inversely the track equation of cutter center and the motion law of follower, and three key techniques in numerical inverse seeking were solved successfully by adopting the method of curve matching

    摘要根據已知擺動斜底從動件盤狀凸輪機構的凸輪實際廓線方程,闡述了反求確定刀具中心軌跡方程和從動件運動規律的另一種方法,並採用曲線擬合等方法成功地解決了數值反求中的3個關鍵技術。
  3. Cutter line movement in linear slide track

    刀線移動采線性?軌移動
  4. We can make error compensation with the general movement model and the error parameters, after knowing the relationship among the cutter line, the cutter track and nc command, the software of error compensation is developed and the error compensation is realized by correcting nc program, which constitutes the new idea of error compensation

    有了機床運動模型和辨識后的誤差參數,可以對數控機床進行誤差補償,得出刀具路線、數控指令和刀具軌跡之間的關系,對原始數控指令進行誤差補償處理,得到修正後的數控指令,即可實現對工件的精密加工。
  5. This paper emphatically researched the problem how to calculate the intersection point between workpiece that rotated with variational angle velocity and milling cutter that moved with complicated track and rotated with high speed. furthermore it adopted the discrete curve surface method for every milling cutter, and treated image frame as the control parameter of position of milling cutter during the intersection calculation process, so the algorithm of intersection between workpiece and milling cutter was obtained. the paper also discussed further three - dimension graphic problem of manufacture process

    文中對做變角速度運動的工件和運動軌跡復雜的高速自轉中的銑刀求交問題進行了重點研究,採用將銑刀上的每個刀尖劃出的曲面離散化的方法,以圖像顯示的幀數作為求交計算過程的銑刀位置的控制參量,得出了銑刀與工件的求交演算法。
  6. Then the center ' s track equation of the circular cutter which was used to manufacture the cam was presented. for the problem of designing on combined cam mechanism which follows the given track, typical nodes in the track were selected at first. then the spline interpolation method was employed to plot the smooth track

    針對實現特定軌跡的凸輪一連桿組合機構設計問題,文中首先選取軌跡上有代表性的節點,採用樣條插值法繪出光滑的軌跡曲線,進而具體分析從動件的位移、類速度、類加速度,最後對凸輪-連桿組合機構進行設計。
  7. One pencil is the simulative milling cutter. parameters setting, milling cutter radius compensation, graphics drawing of the work - piece machined, realizing local control, etc. are the tasks of pc, while line & arc interpolation, motion segment acceleration & deceleration control, position protection at a high precision rate and so on are the duty of dsp motion controller. in the end, the system can draw the cutter center track of the work piece ' s program track accurately

    上位pc機主要完成相關參數設定、刀具半徑補償相關運算及繪制被加工工件的輪廓(程編軌跡) 、實現本地控制等內容;下位機dsp控制器則充分利用美國ti公司的tms320c31浮點dsp的高速度、高精度完成運動控制中的實時直線和圓弧數值插補、運動段加減速控制、運動軸行程限位保護等內容。
  8. Graphics software can take out the spare parts sketch from graphics database that is used an evidence for writing nc program. because the data information stream from designing part to writing nc program is continuous, it is in favor of cad / cam integration. it can simulate the relation between the cutter track and the part, easily discover mistake and correct it

    圖形編程軟體從圖形數據庫中調取零件圖后即可作為編制加工程序的依據,從零件設計到數控加工編程,數據信息流是連續的,所以有利於計算機輔助設計和製造的集成,並可形象地模擬刀具軌跡與被加工零件之間的關系,容易發現和修改錯誤,提高了可靠性。
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