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高能束流
相关语句
  high energy beam
     The high energy beam technique represents the development direction of manufacturing technology including various processes of material or component treatment with the laser beam,electron beam and ion beam.
     高能束流加工技术包含了以激光束、电子束和离子束为热源对材料或构件进行特种加工的各类工艺方法。
短句来源
     In the end, the concept and application status of spcial machining trchnology in high energy beam machining, electric spark machining, electrolyte machining, material corrode machining and combined machining.
     从高能束流加工、电火花加工、电解加工、物料切蚀加工和复合加工技术层面说明特种加工技术概念、特征与应用状况。
短句来源
     High energy beam is one of the most important developing direction as an advanced manufacture technology in the modern material processing. Comparing with the other regular material processing methods,it has the uncompetitive characteristics.
     在材料表面工程技术中应用高能束流是先进制造技术的一个重要发展方向,它具有常规加工方法无可比拟的特点。
短句来源
  high energy density beam
     The Current Situation and Future of High Energy Density Beam Welding Technology in Japan
     日本高能束流焊接技术的现状及发展
短句来源
     High Energy Density Beam Processing Technology──An Important Trend in Advanced Manufacturing Technology Development
     高能束流加工技术──先进制造技术发展的重要方向
短句来源
     State-of-the-Art and the Development of High Energy Density Beam Processing Technology
     高能束流加工技术的现状及发展
短句来源
     National Key Laboratory for High Energy Density Beam Processing Technology Plays Its Role
     加强预先研究 促进转化应用——高能束流加工技术重点实验室在型号研制及经济建设中充分发挥作用
短句来源
     his paper simply presents the national key laboratory for high energy density beam processing technologies and the experiences in how the laboratory enforces advanced researches and promotes the application and transfer of research achievements. 
     本文简要介绍高能束流加工技术国防科技重点实验室及实验室如何加强预先研究,促进成果应用与转化方面的经验。
短句来源
  high-energy beams
     High-energy Beams Technology and Its Application in Corrosion and Prevention
     高能束流技术及其在腐蚀与防护中的应用
短句来源
     HIGH-ENERGY BEAMS TECHNOLOGY AND ITS APPLICATION IN CORROSION AND PREVENTION
     高能束流技术及其在腐蚀与防护中的应用
短句来源
  “高能束流”译为未确定词的双语例句
     It is helpful to use the experience of other countries for reference to promote the development of HEDB Welding technology in China.
     文中介绍了欧共体在高能束流焊接技术方面的科研计划,分析了高能束流焊接技术的发展方向,这将对借鉴国外经验,促进我国高能束流焊接技术的发展起一定作用。
短句来源
     Surface Modification Investigation of Ti Alloys by High Energy Beams
     用高能束流进行钛合金表面改性
短句来源
     It is superior to the routine technology and has been used in manufacturing field of new materials.
     作为先进制造技术的一个重要发展方向,高能束流加工技术具有常规加工方法无可比拟的特点,并已扩展应用于新型材料的制备领域。
短句来源
     At the aspect of high energy density,laser surface heat treatment,surface alloying with high energy density and surface modification with ion implantation,and their recent progresses were introduced.
     高能束流表面处理主要介绍了激光表面处理、高能束表面合金化及离子注入表面改性处理等技术及其最新进展
短句来源
     Surface modification of materials by means of high-energy laser beam,electron beam and ion beam technology are realized through changing composition and structure of the material surface.
     激光束、电子束、离子束三种高能束流技术对材料表面改性是通过改变材料表面的成分或结构实现的 .
短句来源
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  high energy beam
Chemical and high energy beam conversion coatings, as well as PVD thin films, are characterised to correlate microstructures and mechanical properties.
      
An accelerator provides a high energy beam of particles that can be used to unlock short-lived subatomic particles.
      
Positrons are in the high energy beam to reduce the effects of the electron cloud instability.
      
The configuration of two of the high energy beam lines was frozen and the location and requirements for TUDA were specified.
      
The machine installation is arranged so that the high energy beam accelerated by the TU may be injected into a nearby MP Van de Graaff accelerator.
      
  high-energy beams
Generation of Pulsed High-Energy Beams of Trifluoroiodomethane Molecules and Trifluoromethyl Radicals
      
When high-energy beams of 800, 400 and 300 GeV proton and 200 GeV pion interact in nuclear emulsion, a number of grey particles is produced which are correlated to the number of hadron-nucleon collisions inside the target nucleus.
      
The thermal blooming of high-energy beams from a solid-state heat-capacity laser in the atmosphere
      
The improvements which can be obtained in the surface properties of iron alloys by means of processes involving high-energy beams (ion, electron, laser beams) are illustrated and discussed.
      
Current gas stopper systems for high-energy beams are based on linear gas cells filled with 0.1-1 bar of helium.
      
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The current R & D programs of EEC on High Energy Density Beam Technology is viewed. It is helpful to use the experience of other countries for reference to promote the development of HEDB Welding technology in China.

本文是笔者参加国际焊接会议的部分总结。文中介绍了欧共体在高能束流焊接技术方面的科研计划,分析了高能束流焊接技术的发展方向,这将对借鉴国外经验,促进我国高能束流焊接技术的发展起一定作用。

The surface modification technologies of materials by high energy beams and their applications to the Ti alloys are reviewed in the present paper. The methods of the surface modification include laser phase transition hardening under solid state, laser surface melting-solidifying treatment, laser surface alloying, ion implantation, ion beam mixing and ion assisted physical vapor deposition. The surface hardness, wear resistent and corrosion resistant properties can be increased by mentioned above techologies....

The surface modification technologies of materials by high energy beams and their applications to the Ti alloys are reviewed in the present paper. The methods of the surface modification include laser phase transition hardening under solid state, laser surface melting-solidifying treatment, laser surface alloying, ion implantation, ion beam mixing and ion assisted physical vapor deposition. The surface hardness, wear resistent and corrosion resistant properties can be increased by mentioned above techologies.

概述了利用高能束流进行材料表面改性的技术及其对钛合金表面改性的应用。这些技术包括激光固态相变强化处理,激光表面熔凝处理、激光表面合金化、离子注入、离子束混合和离子束辅助气相沉积。钛合金经高能束流表面改性处理可以提高其表面硬度、耐磨性和耐腐蚀性能。

In this paper, a brief situation on the research and development of HEDB welding techniques at the universities and institutes in Japan is presented.

本文介绍了日本高校和科研机构在电子束、激光束等高能束流焊接及加工技术方面的研究现状及发展趋势。

 
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