graphite shape的意思|示意

美 / ˈgræfˌaɪt ʃeip / 英 / ˈɡræfˌaɪt ʃep /

石墨形状


graphite shape的用法详解

英文:

Graphite is a mineral composed of carbon atoms arranged in a hexagonal pattern. Graphite shape, also known as crystalline form, is the arrangement of atoms within a crystal lattice. It is relevant to graphite's physical and chemical properties. There are two main crystalline forms of graphite: flake and amorphous.

Flake graphite, the most common form of graphite, is characterized by the distinct shape and size of its particles. Flake particles range from a few microns to several millimeters in size. This form of graphite is used in a variety of industries, including pencils, lubricants, and batteries.

Amorphous graphite can be fibrous or granular, and it is formed by the meta-morphism of carbon. It usually has higher purity than flake graphite and is used for a range of applications, such as refractory bricks, insulation, and certain types of electrodes.

Graphite shape plays an essential role in material science. For example, the mechanical and electrical properties of graphite are dependent on its crystalline structure. Graphite is also important when it comes to the industrial production of graphene, a single layer of carbon atoms arranged in a hexagonal structure. Graphite is an ideal material for the production of graphene because it can be exfoliated into ultrathin layers.

Overall, graphite shape is an important tool for understanding the behavior and properties of graphite. The two main crystalline forms of graphite, flake and amorphous, have different properties and applications, which makes them essential in many industries.

graphite shape相关短语

1、 dot shape graphite 点状石墨

2、 shape of graphite 石墨形态

graphite shape相关例句

In addition, the solid liquid interface shape was controlled by changing geometric parameters, such as quartz crucible, graphite support thickness and cooling radius.

同时通过改变石英坩埚、石墨托厚度,冷源半径等几何参数来达到控制固液界面形状的目的。

Most nuclei with spherical or near spherical shape can grow up into spherical graphite, while nuclei with no regular shape can hardly grow.

研究了低碳球铁中球状石墨的内部结构及核心形状,探讨了核心形状对石墨球化的影响规律。

The quantity, shape, size and distribution of graphite in gray iron influences the properties of material.

铸铁中石墨相的数量、形状、大小和分布对其力学性能有很大影响。