grating groove的意思|示意

美 / ˈgreɪtɪŋ ɡru:v / 英 / ˈɡretɪŋ ɡruv /

光栅刻线槽


grating groove的用法详解

It is an honor to be here to explain the usage of the English word \"grating groove\". We all know that grating grooves are unidirectional grooves machined on various parts or surfaces of a machine, including the surface of the shaft, the side of the rail, the inner wall of the hole, and the bearing pad.

Grating grooves can be divided into two types from the structure: key type and flat type. The key type is a set of grooves and ridges machined on the surface of the shaft and the rail side, which is usually used for dynamic locking and positioning. The flat type is a pattern of grooves machined on the surface of the shaft in which the ridges and grooves are all in the same direction and evenly arranged. It is usually used for static locking.

The application of grating grooves can be divided into three types in terms of different locking methods and principle: key type, dynamic locking type and static locking type. The key type is suitable for dynamic locking and positioning, and the dynamic locking type is suitable for dynamic locking and disconnection. The static locking type is suitable for static locking of parts and components. The grating groove can also be used to measure the position of the shaft and the rail, to adjust the relative position of the parts, or to measure the displacement accuracy.

In summary, grating grooves are widely used in various parts machining or surface processing of machine tools, for different purposes and locking methods. I believe that after understanding the usage of grating grooves, everyone will be more proficient in the application of them.

grating groove相关短语

1、 sinusoidal groove grating 正正弦光栅

2、 groove form diffraction grating 槽形衍射光栅

3、 groove grating 槽光栅

4、 rectangular-groove grating 矩形槽光栅

grating groove相关例句

The method is qualified for measurement of groove depth and duty cycle simultaneously for the rectangle-shaped or similar profile of holographic grating mask.

对于要求同时检测矩形或接近矩形槽形的全息光刻胶光栅掩模的槽深和占宽比,该方法完全适用。

The transmission angle is controlled by grating frequency and the diffraction efficiency is controlled by groove depth of sub-micro gratings to get uniformity of transmission filed.

亚微米光栅型导光板通过光栅空频控制出射光方向、控制槽深调节衍射效率,达到导光板出射光强的均匀性。

The fabrication process is carefully controlled so that the grating groove and multilayer-coating parameters well meet the design targets.

由于对离子束刻蚀工艺和镀膜工艺的精细控制,光栅的槽形参数及多层膜参数良好地满足了设计要求。