oxidation temperature的意思|示意

美 / ˌɔksɪˈdeɪʃən ˈtempəritʃə / 英 / ˌɑksɪˈdeʃən ˈtɛmpərəˌtʃʊr /

氧化温度


oxidation temperature的用法详解

英语单词\"oxidation temperature\" refers to the temperature at which a material begins to undergo oxidation, which is a chemical reaction that results in the loss of electrons. This process can cause degradation of the material, leading to potential problems such as corrosion, embrittlement, or other forms of damage.

In certain engineering applications, it is critical to understand the oxidation temperature of a given material, as it can help determine the optimal operating temperature range. For example, if a particular material has a low oxidation temperature, it may not be suitable for use in high-temperature environments where oxidation is likely to occur.

Additionally, the oxidation temperature can also be used as a tool for materials testing and analysis. By exposing a material to various temperatures and observing its reaction, researchers can better understand the material's properties and behavior.

In summary, \"oxidation temperature\" is an important term in materials science and engineering, and understanding its meaning and implications is essential for anyone working with materials that are exposed to high temperatures.

oxidation temperature相关短语

1、 low temperature oxidation 低温氧化,意为低温氧化

2、 de-oxidation temperature 脱氧温度

3、 re oxidation temperature 再氧化温度

4、 initial oxidation temperature 起始氧化温度

5、 Thermal oxidation temperature 热氧化温度

6、 starting oxidation temperature 起始氧化温度

7、 incipient oxidation temperature 起始氧化温度

8、 oxidation temperature increasing 氧化升温

9、 critical anti-oxidation temperature 临界抗氧化温度

oxidation temperature相关例句

And with the oxidation temperature increased, the growing process gets faster.

并随着氧化温度的增高,这个长大过程进行的更快。

The results showed that the degree of oxidation increased gradually with the increasing of oxidation temperature and oxidation time.

结果表明,随着氧化温度的升高和氧化时间的延长,样品的氧化程度逐渐增加。

Oxidation temperature has a more obvious effect on the thickening of oxygen diffusion layer than time dose.

温度对于渗氧层厚度的影响大于时间的影响。