Examples of 'mn content' in a sentence

Meaning of "mn content"

mn content: This phrase likely refers to the mineral content of something, with 'mn' potentially standing for 'mineral'

How to use "mn content" in a sentence

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mn content
Mn content was highly related to soil pH.
These effects become apparent as increase of Mn content.
An excessively low Mn content can not attain this effect.
A ferritic stainless steel sheet is also harder as increase of Mn content.
An appropriate range of the Mn content depends on the tensile strength.
The Mn content of the catalyst was consistent with the volume of solution absorbed.
Registered a negative correlation between Mn content in the soil and germination of soybean seeds.
Such relatively high Fe contents may be tolerated by limiting the Mn content.
In addition, an increase in the Mn content results in deterioration of spot weldability.
O is controlled by Si and Mn content.
In this sense, Mn content shall be adjusted to a possible lowest level.
As a result, the general corrosion resistance is deteriorated with the increase in the Mn content.
C, wt % or less The Mn content of the steel composition may be restricted as follows.
The preferable lower limit of the Mn content is 4 %.
However, an excessive Mn content is more likely to cause segregation in the steel.

See also

Alloy 4 has a worse resistance than alloy 10 because of a higher Mn content.
On the other hand, the excessive Mn content causes deterioration of ductility.
If the Mn content is too low, these effects can not be obtained.
Accordingly, the lower limit of the Mn content is not particularly restricted.
A very high Mn content might lead to the detrimental formation of large Fe-Mn intermetallics.
Fig . 1 shows the effect of Mn content on bendability.
Further, if the Mn content is made low, securing of a strength becomes difficult.
Therefore, in the present invention, the upper limit of the Mn content is less than 7 %.
But, control of Mn content at an extremely lower level uneconomically raises a steel-making cost.
To effectively exhibit this advantage, the Mn content should be 0.1 percent by mass or more.
If the Mn content is too high, the corrosion resistance in high-temperature environments is deteriorated.
Thus the maximum Mn content can be raised to 3 %.
Mn content is therefore defined as not greater than 1.0 mass percent.
However, an excessive Mn content promotes inverse V segregation.
Specimens V1 and V2 were produced from a steel which had a too low Mn content.
However, when the Mn content is too high, the corrosion resistance will be deteriorated.
Therefore, an upper limit is imposed, and the Mn content is 2 % or less.
The Mn content of each sample was analyzed by ICP-MS.
The lower limit on the Mn content is preferably at least 1.5 %.
A Mn content exceeding 3 % saturates this effect.
The zinc ( Zn ) and manganese Mn content of each sample were analyzed by ICP-MS.
Mn content of 0.1 % or more is needed in order to obtain these effects sufficiently.
The upper limit of Mn content is more preferably 15 %.
Mn content of 0.05 % or more is required to ensure the hot workability of the alloy.
Therefore, the Mn content is not more than 2 %.
These effects are not sufficiently present if the Mn content is lower than 0.01 %.
In addition, as the Mn content is reduced, better formability is exhibited.
To sufficiently exhibit these advantageous effects, the Mn content needs to be 0.10 % or more.
Accordingly, the Mn content is set to be at less than or equal to 2 wt %.
These defects are eliminated by controlling Mn content not more than 5.0 mass %.
However, a too high Mn content will lead to segregation, which impairs stretch-flange formability.
The surface comprise can comprise a steel having a Mn content of higher than 0.9 wt %.
Particularly, if the Mn content exceeds 3 %, the workability and / or weldability of the steel decrease significantly.
To sufficiently produce these effects, a Mn content of greater than 2.0 % is required.
The Ti and Mn content is controlled so as to satisfy Equation ( 2 ).

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