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Non-consumable electrode are welding
As a non-consumable electrodes tungsten or carbon electrodes can be used. In gas-tungsten arc welding a tungsten electrode is used in place of the metal electrode used in shielded metal-arc welding. A chemically inert gas, such as argon, helium, or carbon dioxide is used to shield the metal from oxidation. The heat from the arc formed between the electrode and the metal melts the edges of the metal. Metal for the weld may be added by placing a bare wire in the arc or the point of the weld. This process can be used with nearly all metals and produced a high-quality weld. However, the rate of welding is considerably slower than in other processes.
Shielded metal are welding In shielded metal-arc welding, a metallic electrode, which conducts electricity, is coated with flux and connected to the other and of the same source of current. An electric arc is formed by touching the tip of the electrode to the metal and then drawing it away. The intense heat of the arc melts both parts to be welded and the point of the metal electrode, which supplies filler metal for the weld. This process is used mainly for welding steels.
Gas-metal are welding In gas-metal welding, a bare electrode is shielded from the air by surrounding it with argon or carbon dioxide gas and sometimes by coating the electrode with flux. The electrode is fed into the electric arc, and melts off in droplets that enter the liquid metal of the weld seam. Most metals can be joined by this process. Submerged are welding Submerged-arc welding is similar to gas-metal arc welding, but in this process no gas is used to shield the weld. Instead of that, the arc and tip of the wire are submerged beneath a layer of granular, fusible material that covers the weld seam. This process is also called electro slag welding. It is very efficient but can be used only with steels.
Additional vocabulary: gas - tungsten welding – сварка оплавлением вольфрамовым электродом в среде инертного газа inert – инертный bare – голый rate – скорость gas-metal arc – аргонодуговая сварка surrounding – окружающий liquid – жидкость, жидкий droplet – капелька carbon dioxide – углекислый газ beneath – под, ноже, внизу layer – слой weld seam – сварной шов semi - automatic – полуавтоматическая to submerge – погружать
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THEME 4 Machine Tools Vocabulary:
workpiece – обрабатываемая деталь, изделие facility – приспособление to allow – позволять, разрешать relative – относительно to lubricate – смазывать fasten – прикреплять, привязывать, застегивать ( to ) screw – винт, привинчивать, навинчивать thread – нить, резьба, нарезка discharge – электр. разряд ( to ) feed ( fed , fed ) – подавать, подача lathe – токарный станок range – ассортимент, диапазон flexible – гибкий, гнущийся, эластичный sharp – острый friction – трение outside – наружный, внешний, снаружи inside – внутри, внутренний to remove – удалять, перемещать to mount – крепить, закреплять to require – нуждаться, требовать to enable – дать возможность, позволять tolerance – допуск close tolerance – жесткий допуск wheel – колесо, круг Text 1. MACHINE-TOOLS
Machine-tools are used to shape metals and other materials. The material to be shaped is called the workpiece. Most machine-tools are now electrically driven. Machine-tools with electrical drive are faster and more accurate than tools: they are an important element in the development of mass-production processes, as they allowed individual parts to be made in large numbers so as to be interchangeable. All machine-tools have facilities for holding both the workpiece and the tool, and for accurately controlling the movement of the cutting tool relatively to the workpiece. Most machining operations generate large amounts of heat, and cooling fluids (usually a mixture of water and oils) must be used for cooling and lubrication. Machine-tools usually work materials mechanically but other machining methods have been developed lately. They include chemical machining, spark erosion to machine very hard materials to any shape by means of a continuous high-voltage spark (discharge) between an electrode and a workpiece. Other machining methods include drilling using ultrasound, and cutting by means of a laser beam. Numerical control of machine-tools and flexible manufacturing systems have made it possible for complete system of machine-tools to be used flexibly for the manufacture of a range of products.
Additional vocabulary: machine-tools – станки electrically driven – с электроприводом fluid – жидкость spark erosion – электроискровая обработка by means of – посредством beam – луч drilling – сверление
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