英語 での This alloy の使用例とその 日本語 への翻訳
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How to produce this alloy?
This alloy has the following features.
Weld bead are exceptionally smooth with this alloy.
On this alloy to perform well engravings.
Stretch forming, however, is limited in application for this alloy.
This alloy has the following characteristics:.
No thermal treatment is available for increasing the strength of this alloy after fabrication.
This alloy has moderate resistance to oxidation.
Preheat and post heat weld proceduresshould be followed when welding this alloy by established methods.
This alloy has excellent corrosion resistance in hydrofluoric acid and.
Light bulbs are perhaps themost common example of the use of Kovar, but this alloy is used in many different products.
This alloy is compromised of copper, manganese, aluminum and iron.
A is a high carbon martensitic stainless steel, this alloy can be heat treated to extremely high hardnesses.
This alloy has excellent resistance to pitting and stress corrosion.
Because considerable heat is generated in machining this alloy, high-speed steel, cast nonferrous or cemented carbide tools should be used.
This alloy has excellent mechanical qualities and good corrosion resistance.
Its high strength, ability to be heat treated, weldability, excellent fatigue strength,and hardness make this alloy excellent for many applications.
This alloy is produced in many countries and is the most used in hard aluminum.
This alloy is little magnetic and can not be held by magnetic tables of grinding machines.
In this alloy, Tin is an alpha stabiliser, whilst Molybdenum is an important beta stabiliser.
This alloy is available in solder spheres as well as powder(T3, T4, and T4.5) and solder paste.
This alloy is completely ferritic in the annealed condition. 410S/ 1.4000 is a 13% chromium.
This alloy has a moderate strength, a certain degree of corrosion resistance, high processability;
This alloy exhibits high levels of resistance to stress and salt water, exhaust gases, and most organic acids and compounds.
This alloy has a lower thermal expansion coefficient and a higher temperature range than materials used for more common cartridge types.
This alloy is most useful in applications when low temperature strength is important as well as high corrosion resistance and good formability.
This alloy does not provide the resistance to pitting by dilute reducing acids that is provided by the chromium-nickel stainless steels.
This alloy offers superior service life compared to other Nichrome wire types due to the excellent adhesion properties of its surface oxide.
This alloy has roughly twice the tensile strength of pure Tantalum, yet retains Tantalum's corrosion resistance and most of pure Tantalum's ductility.
This alloy also displays good heat resistance and freedom from aging or stress corrosion throughout the annealed to heavily cold worked condition range.