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1)  weld penetration
焊缝熔深
1.
Laser welding volume energy and its influence on weld penetration in laser deep penetration welding;
激光焊接体能量及其对激光深熔焊缝熔深的影响
2.
Activating TIG welding (A - TIG) can greatly improve the weld penetration and thus enhance the process efficiency in comparison with the conventional TIG welding.
活性化TIG焊(A-TIG),同常规TIG焊相比可大幅度地提高焊缝熔深,从而提高焊接效率。
2)  deep peneration butt weld
深熔对接焊缝
3)  arc-seam weld
熔焊焊缝
4)  weld pool width
焊缝熔宽
1.
Based on the research of real-time measuring the weld pool width with a dual wavelength optical filter,a fuzzy control system of welding pool width has been developed.
在双波长滤光片正面实时检测焊缝熔宽技术的基础上建立了焊缝熔宽模糊控制系统。
5)  deep penetration welding
深熔焊
1.
Research status on keyhole of electron beam deep penetration welding;
电子束深熔焊匙孔的研究现状
2.
The influences of laser power,welding velocity,defocusing distance and flow rate of side-blow shielding gas on shape of weld,and weld penetration of laser deep penetration welding of dissimilar metal K418 and 42CrMo were experimentally investigated using continuous wave(CW) Nd:YAG laser.
研究了连续波Nd:YAG激光焊接功率、速度、离焦量和侧吹保护气流量对激光深熔焊接K418与42CrMo异种金属焊缝形貌、焊缝熔深的影响,讨论了焊缝区热裂纹产生机制。
6)  penetration [英][,penɪ'treɪʃn]  [美]['pɛnə'treʃən]
焊接熔深
1.
The effect of active flux and arc shrinking in A-TIG welding is studie d through detecting arc voltage with variant welding current in this paper and t he effect of coated amount of active flux on penetration and arc phenomenon in A -TIG welding is also studied with properly experimental method.
研究了SiO2 和TiO2 两种单一成分活性剂对SUS30 4不锈钢材料TIG焊熔深的影响以及活性剂涂敷量对焊接熔深的作用效果。
补充资料:熔盐电解法生产铌粉(见熔盐电解法生产钽粉)


熔盐电解法生产铌粉(见熔盐电解法生产钽粉)
production of niobium powder by molten salt electrolysis

rongyand+onjlefa ShengChan n.fen熔盐电解法生产妮粉(produetion。fn;obi-um powder by molten salt eleetrolysls)见熔盐电解法生产担粉。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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