dual phase steel is a high strength steel that has a ferrite and martensitic microstructure
pls refer to carbon-phase diagram... mild steel will be liquid and welded with temp. of >1300degC
single phase means that there is only 1 live core in the cable (+) . so dual phase means there are 2 live cores in the cable. this is used to supply different parts of a device where needed. although three phase cable sometimes used to boost power to 400 vFurther answerActually it's not correct to say "boost power to 400 v". Power is measured in watts, not volts, although I agree the voltage of three-phase, at least in the UK, is 400v (I don't know about the US - they have lower domestic volatges than the UK anyway)CommentIf, by 'dual phase', you actually mean 'two phase', then this electrical system is quite rare, and consists of two phase voltages displaced by 90 degrees, as opposed to a three-phase system in which the phase voltages are displaced by 120 degrees.
There are Celeron dual core processors today. However, just because you have Celeron processor, it does not mean your Celeron processor is a dual core processor. The easiest way to tell is to look at the Intel sticker on your computer. If it says "Dual Core," then it is dual core. If it does NOT say "Dual Core," then it is not dual core.
Some motors have dual voltage ratings because it is typically better to use the higher voltage if available because the current will be lower. However, the higher voltage may not be available everywhere so the unit is designed to work on the most available voltages if the higher voltage is not available. Since the motor in your question is more for a commercial use than at home, the range of available voltages may be limited at certain sites.
dual phase steel is a high strength steel that has a ferrite and martensitic microstructure
M. Husin Bin Saleh has written: 'Retained austenite in dual phase steel and its effect on mechanical properties'
Steel needs to go through a fluid phase when being produced to allow for impurities to be removed through processes like slagging. This helps improve the quality and strength of the final steel product. Additionally, the fluid phase allows for better control of the composition and uniformity of the steel.
to insure the steel is fully hardened
to insure the steel is fully hardened
to insure the steel is fully hardened
Steel is heated to a fluid phase to facilitate shaping and forming processes like casting, forging, and rolling. This allows for complex shapes and structures to be easily created from molten steel. Additionally, the fluid phase helps remove impurities and homogenize the alloy composition for improved mechanical properties.
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The pearlite phase in the isothermal transformation diagram is significant because it represents a mixture of ferrite and cementite, which gives steel its strength and hardness. This phase plays a crucial role in determining the mechanical properties of the steel during the cooling process.
pls refer to carbon-phase diagram... mild steel will be liquid and welded with temp. of >1300degC
The phase diagram of carbon steel is important because it shows how the material behaves under different temperature and pressure conditions. It helps in understanding the different phases of carbon steel, such as ferrite, austenite, and cementite, and how they affect the material properties like hardness, strength, and ductility. By studying the phase diagram, engineers can predict the behavior of carbon steel in different environments and optimize its properties for specific applications.
It is important for steel to go through a fluid phase during production because it allows for better mixing of alloying elements, such as carbon and manganese, leading to a more uniform composition and improved mechanical properties. The fluid phase also helps remove impurities and gases trapped in the solid steel, resulting in a cleaner final product. Additionally, the fluidity of the steel enables it to be easily shaped and molded into the desired form through casting or rolling processes.