machining field 中文意思是什麼

machining field 解釋
加工碼域
  • machining : 電化學加工
  • field : n 菲爾德〈姓氏〉。n 1 原野,曠野;(海、空、冰雪等的)茫茫一片。2 田地,牧場;割草場;〈pl 〉〈集...
  1. With many years experience in this field, we can help customer empolder or supply nontoxic, non - yellowing, hydrolysis resistance and high temperature resistance top grade colorant or especially machining product etc

    基於行業內多年的經驗和技術實力,公司可以根據客戶的要求協助其開發或提供環保型、不黃變、耐水解、耐高溫等各類高檔色漿和特殊加工產品。
  2. To reduce the marking distortion, using the vertical 2 - dimension galvanometer distributing and f field lens focalize, the distance of the second galvanometer to the machining plane is the focus f. to avoid too hign temperature to distroy the resonance cavity because of too long marking time, cooling system and self - protector is used in the design

    為減少打標畸變,採用垂直二維振鏡分佈, f物鏡聚焦,將激光束經第二個振鏡反射後到加工平面的距離為焦距f ,為了避免打標時間過長,溫度過高破壞諧振腔,在設計中加上冷卻系統和自我保護裝置。
  3. In the thesis, the general situation of the domestic and abroad developments in the field of the numerical control interpolation algorithm for aspheric surface machining is reviewed firstly, for the poorness of recent numerical control interpolation algorithm, an numerical control interpolation algorithm that based on the genetic algorithm ( ga ) and neural network ( nn ) is introduced

    在數控系統中,它是生成加工軌跡的一個最基本的子程序,在很大程度上決定了數控機床的加工精度和最大進給速度。本文首先綜述了國內外非球曲面超精密加工中所運用的插補演算法的發展概況。
  4. The system could be also used in online machining of some other parts in machine manufacturing, to realize the real time detection of non - uniform temperature field and guide the thermal compensation of workpiece

    該系統還可用於機械製造業其他零件的在線加工中,實現工件非均勻溫度場的實時檢測,指導工件尺寸的熱補償。
  5. This paper first researched the general situation of domestic and abroad developments in the field of ultra - precision aspheric surface machining technology and its numerical control system, analyzed the aspheric surface machining principle of ultra - precision machine, and in these bases, founded the kinematics model of ultra - precision machine in ideal condition using the homogeneous coordinate conversion method in robotics

    分析了本實驗室超精密機床非球面加工原理,在此基礎上應用機器人學中齊次坐標變換的方法建立了理想情況下超精密機床運動學模型,通過綜合分析超精密機床的運動誤差,給出了超精密機床的誤差補償模型。
  6. Our factory has accumulated abundant practical experience through the untiring efforts for many years, always with " loyal to cooperate in, mutual benefit and reciprocity, high - quality practical, the price is rational " as the aim, insist that the brand was developed, market - oriented, have gained the good style of work in the field of business with the sincere cooperative attitude, favor by the masses of customers and approval, according to " quality seek survival ", in order to " prestige wins the customer ", welcome with open arms chinese and foreign travelling trader, come kind come electric machining customize the products of various kinds, " quality is the life ", our factory offer most high quality products and service to you, welcome all kinds of product the above come kind have made to order

    本廠經過多年的不懈努力,積累了豐富的實踐經驗,一貫以「忠誠合作、互利互惠、優質實用、價格合理」為宗旨,堅持品牌發展,以市場為導向,以真誠合作態度在業內贏得了良好的工作作風,得到了廣大客戶的青睞與認可,憑「質量求生存」 ,以「信譽贏客戶」 ,竭誠歡迎中外客商,來樣來電加工定製各類產品, 「質量就是生命」 ,本廠將為您提供最優質量的產品和服務,並歡迎以上各類產品來樣訂做。
  7. Many researches have showed that the mechanical properties of al2o3 - matrix ceramics in which ti ( c, n ), tic or tin was dispersed could be improved a lot, which might be widely used in the field of machining. al2o3 - matrixed ceramics were fabricated by gas pressure sintering ( gps ) and gps with post - hip based on current techniques in this experiment. for al2o3 - ticn composite ceramics, the densitification process was controlled by the mechanism of solid phase sintering.

    大量研究表明:採用ti ( c , n ) 、 tic或tin作為第二相彌散顆粒所制備的氧化鋁基復相陶瓷相對al _ 2o _ 3單相陶瓷而言,性能有了顯著的提高這類復相陶瓷性能優良,在機械加工領域有著廣泛的應用前景本實驗採用氣壓燒結( gps )以及gps結合熱等靜壓( hip )后處理兩種工藝制備氧化鋁基復相陶瓷。
  8. Application of ultra - high speed grinding technologies in the field of the mechanical machining

    超高速磨削技術在機械製造領域中的應用
  9. Compared with convention al speed machining, the affect and impact of thermal - dynamical coupling field play an important role in the cutting tool wear in high speed milling of aluminum alloy

    與常速銑削磨損機理的不同之處在於高速旋轉形成的熱、力耦合的應力場對硬質合金刀具的作用與沖擊影響佔主導地位。
  10. Have been several key techniques of making dif - pressure sensors such as plane technics, minuteness engine machining, static sealing etc. in the paper in the intellectualized researching field there are two ways which are examine - form, curve simulanting, to carry out dif - pressure sensors non - linear self - emendating ; adopt the several curves approaching and curve simulating to achieve the aims of dif - pressure sensor error self compensation

    論文首先討論了差壓傳感器的設計原理,並對差壓傳感器中復合敏感晶元(差壓、靜壓、溫度)和整體結構進行了設計,還解決了差壓傳感器製作中的平面工藝、微機械加工、靜電封接及真空充油等關鍵技術。
  11. Atomic force microscope ( afm ) has been applied in the field of nano - machining since its invention even its main function falls in the inspection of surface topography and other features

    自原子力顯微鏡( afm )問世以來,其應用領域已由原來的微觀表面形貌檢測或表面特徵的表徵擴展到納米加工。
  12. As a highly efficient and succinct scheme, the subdivision surface has been widely used in the field of computer graphics and 3d surface modeling. to extend its application in industry, the tool path generation algorithm and simulation for 3 - axis nc machining of the subdivision surface model is studied. two interference - free tool - path generation algorithm using ball - end mills in 3 - axis machining are developed

    遞歸分割曲面建模方法因為其簡潔、高效等特點廣泛應用於計算機圖形學和曲面造型等領域,為了推廣它在工業中的應用,本文研究遞歸分割曲面模型的數控加工刀位計算及模擬,實現三坐標球頭刀數控加工的刀具軌跡生成和加工過程模擬,並對加工結果進行誤差分析。
  13. The simulation and experiment result indicate that the dual pole tool weakens the electric field at the side wall of the machined hole and hence leads to the reduction of hole taper and the improvement of the machining accuracy

    模擬計算和加工試驗表明,輔助陽極可以顯著減弱孔側面間隙區域的電場強度,從而有效地抑制發生在側壁的雜散腐蝕,減小孔錐度,提高加工精度。
  14. With the fast development of information industry, microelectronics manufacture technology has entered into 3d machining field at nanometer levels, so a severe challenge is put forward to the measurement of ultra - precision 3d microstructures

    隨著信息產業的高速發展,微電子製造技術進入納米級三維加工技術領域,這就對超精密三維微細結構的測量提出了嚴峻挑戰。
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