electroforming 中文意思是什麼

electroforming 解釋
電成型
  1. 4 ) doing prophase test for numerical control jet electroforming

    4 )對數控噴射電鑄進行了前期試驗研究。
  2. Standard guide for electroforming with nickel and copper

    含鎳和銅的電鑄標準指南
  3. Investigation on cu - graphite composites prepared by electroforming

    石墨復合材料的研究
  4. Increasing part electrodepositing speed using electroforming

    提高電鑄局部電沉積速率試驗研究
  5. Stencil manufacturing techniques include chemical etching, laser cutting and electroforming

    鋼網製作技術包括化學腐蝕,激光切割和電鑄。
  6. For applications with pitches below 0. 5 mm, choices are limited to laser cutting or electroforming

    製造過程電拋光和電鍍處理的激光刻錄的孔壁,改善了錫膏轉移的效果。
  7. Electroforming, which possesses the merit of high manufacturing precision, is a manufacture technology that is based on the principle of the metal deposit

    電鑄是一種利用金屬離子陰極電沉積原理制取產品的工藝技術,具有極高的製造精度。
  8. Z. j. wei, y. y. wang, c. c. wan and c. h. huang, “ study of wetters in nickel electroforming of 3d microstructures, ” material chemistry and physics, 63, ( 2000 ) 235 - 239

    彭美芳、周淑金、曹碧珍、顏佳瑩、工業技術研究院, 「脈波供電對鎳鈷合金鍍層的影響」中國材料科學學會( 2002 ) 。
  9. Mending technic which using electroforming to make mould 7 ) first combining numerical control jet electroforming and rapid prototyping, providing a new method to make metal accessory and nano metal block

    7 )首次將數控噴射電鑄和快速成型技術結合在一起,為納米金屬零件暨納米金屬塊體的制備提供了一個嶄新的方法。
  10. 8 ) first analyse growth process of branch crystal in electroforming using sem, and using fractal to explain growth process of branch crystal. providing theory to eliminate branch crystal

    8 )首次用掃描電鏡對電鑄的每一層的枝狀晶的生長過程進行了直觀分析,並用分形理論解釋了枝狀晶地生長,為消除枝狀晶提供了依據。
  11. Mems technology is a hot topic of science and industry in the 21st century, and micro - fabrication technologies are the key to the mems development. in the mems field, microstructure with high height and high aspect ratio is often used. liga ( x - ray lithography 、 electroforming 、 micro - replication ) technology are the very way to fabricate this microstructures

    在mems領域中,常需要用到具有一定厚度和深寬比的微結構, liga ( x射線深層光刻、電鑄成型和微復制)技術是製作這種微結構的重要手段,因此成為mems微細加工中十分重要的技術。
  12. As a precision manufacture technology, electroforming using electrodeposition of metal on a cathode mandrel to make products has successfully been applied in many advanced technology fields

    電鑄是一門精密製造技術,它利用金屬離子陰極電沉積的原理制取產品,具有極高的製造精度和獨特的優點,在許多高新技術領域取得了成功的應用。
  13. Finally, on the foundation of the prephase experimentation, we explored some application of numerical control jet electroforming, including two main directions ? making parts with deep grooves and directly forming metal parts

    進行了數控噴射電鑄的前期工藝試驗。最後,在前期工藝試驗的基礎上,對數控噴射電鑄的應用進行了初步探索。
  14. To avoid these problems, the paper proposes a new technology ? umerical control jet electroforming. firstly, we established the theoretical model of this technology, including electric field model and hydrofield model of the electroforming area

    首先,我們建立了數控噴射電鑄的理論模型,包括電鑄區域的電場分佈模型和電鑄液的流場分佈模型。
  15. A new electroforming technique, numerical control jet electroforming, was proposed, it not only can solve some problem of tradition electroforming but also can make nano metal block and metal accessory, and the elemental research on the new technique was carried out

    本文提出了一種新的電鑄工藝方案? ?數控噴射電鑄,不但能解決傳統電鑄的一些缺陷,而且可以制備納米金屬塊體和金屬零件,並通過理論分析和試驗對該工藝進行了基礎性研究。
  16. But it is impossible for the traditional electroforming to be widely used due to the long process time, the poor metal distribution which is often seen. nano metal has special performance of mechanics and physics, but the making of nano metal block is difficult, and it ' s making method is not perfect, so the study of nano metal block is very difficult. man pay more attention to rapid prototyping which is a new machining method, but to make metal accessory using rapid prototyping is very difficult, it restricts development of rapid prototyping

    目前電鑄技術存在著加工時間長,鑄層均勻性差等缺點,嚴重製約著電鑄技術的應用與發展;納米金屬具有特殊的力學和物理性能,但是納米金屬塊體的制備有一定的難度,而且制備方法也不成熟,因此對納米金屬塊體性能的研究有一定的難度;快速成型作為一種新型的加工方法,越來越受到重視,但現在的快速成型技術對製造金屬零件有很大的難度,這也是制約快速成型技術快速發展的一個瓶頸。
  17. In this thesis, to increase the aspect ratio of liga process, several important influence factors were discussed, which includes the structure and performance of liga mask, x - ray intensity and x - ray spectrum of beam lines, the characteristic of pmma resin and the micro electroforming parameters. the au - pi mask and the au - si mask were designed by xop and origin software, after the difference between the spectrum of 3w1 and 3b1 beam line had been contrastively analyzed

    本文著眼于liga技術高深寬比方面的研究,以提高本實驗室用liga技術製作微細結構的深寬比為目的,從分析各因素影響深寬比的機理出發,再加以理論設計和實驗工藝的優化和改善,分別研究討論了影響深寬比的幾大重要因素:掩模結構和性能、光源光譜和光強、 pmma光刻膠性能、電鑄工藝參數等。
  18. For example, it is challenging for the chemical etching process to drop below a 1. 5 aspect ratio while, with laser cutting and electroforming, apertures can be produced that have a 1 : 1 aspect ratio to the stencil thickness

    比如,表觀比率低於1 . 5對于化學腐蝕試一大挑戰,而激光切割和電鑄可製成表觀比率為1 . 1的鋼網。
  19. Then some methods including optimizing the spectrum and intensity of 3w1 beam line and improving the performance of pmma were put in force, and pmma structure with aspect ratio 100 was obtained under these optimum conditions. moreover, such steps as controlling ph, electrodepositing, using activator and a second cathode, and mending the power supply were taken to solve a series of problems coming into being during electroforming process correspondingly, for example, air holes, inner stress, and ununiformity of deposition

    並針對3w1光源中硬x光成分較多、光強和功率密度太高的特點,提出了用ni吸收膜改善光譜和用x光暫波器法優化光強的方法,同時嚴格控制和改善pmma光刻膠的性能,經過反復的計算分析和實驗改進后,獲得了深寬比高達100的膠結構圖形。
  20. After studying the precision of fdm process, a rapid edm electrode fabrication technology based on fdm is developed, the technology, which combined pulse - reverse electroforming with strengthening of copper wire - arc spraying, can obtained compact crystal electrode ' s working part, and strengthened filling part which has big adhesion strength, better electricity and heat conductivity, the edm performance of the obtained electrode reaches that of electrolysis copper electrode

    繼fdm工藝精度研究后,開展了快速模具製造技術的研究,建立了基於fdm原型快速製造電加工電極的工藝。該工藝將脈沖電鑄和電弧噴塗紫銅背襯相結合,獲得了結晶緻密的電極工作層和結合強度高、導電與導熱性良好的電極背襯層,得到的電極達到了常規機加工紫銅電極的電加工性能。
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