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激光切割機準直鏡和聚焦鏡的區(qū)別!

來源:http://editscore.net 時間:2019-05-27 

  激光切割機從能量光纖出來的光,它是一個點光源,是有發(fā)散角(θ)的,如果我們把這個點光源放置于光纖準直鏡的焦點上,我們知道:從一個聚焦鏡(準直鏡其實際上把聚焦鏡反過來用)的焦點上發(fā)出的光,經(jīng)過聚焦鏡之后就變成了平行光。那么經(jīng)過這個準直鏡之后出來的光束直徑是多大,計算公式就是2F*tag(1/2*θ),如發(fā)散角是10°,F(xiàn)=150mm,那么從準直鏡出來的光束直徑就=2*150*tag(5°)=26.2466mm。經(jīng)過光纖準直鏡之后,激光進入光纖切割機的聚焦鏡,一般來說,準直鏡焦距÷聚焦鏡焦距=聚焦后能量密度相對于之前的密度比,比如:準直鏡焦距是75mm,聚焦鏡焦距是150mm,75÷150=1/2,這個意思就是經(jīng)過聚焦鏡之后聚焦光斑的面積相比于從剛從能量光纖出來的點光源的面積大一倍,能量密度是原來的1/2。
  Laser cutting machine light from energy optical fibers is a point light source with divergence angle (theta). If we place this point light source in the focus of the optical fiber collimator, we know that the light emitted from the focus of a focusing mirror (which actually uses the focusing mirror in reverse) becomes parallel light after passing through the focusing mirror. The calculation formula is 2F*tag(1/2*theta). If the divergence angle is 10 degrees and F=150 mm, the beam diameter from the collimator is 2*150*tag(5 degrees)=26.2466 mm. After passing through the optical collimator, the laser enters the focusing mirror of the optical fiber cutting machine. Generally speaking, the focal length of the collimator is equal to the energy density ratio after focusing. For example, the focal length of the collimator is 75 mm, the focal length of the focusing mirror is 150 mm, and the focal length of the focusing mirror is 75 150=1/2. This means that the area of the focusing spot after passing through the focusing mirror is compared with the point just coming out of the energy fiber. The area of the light source is doubled, and the energy density is one-second of the original one.
  一、大家會疑問:能量密度集中不是更好嗎?為什么要降低光能量密度呢?主要有幾個原因:
  First, you will ask: is it better to concentrate energy density? Why reduce the energy density of light? There are several main reasons:
  1、如果聚焦鏡的焦距越短,聚焦鏡的焦深就越淺,焦深淺就容易導(dǎo)致切不深;
  1. If the focal length of the focusing lens is shorter, the focal depth of the focusing lens will be shallower, and the shallow focal depth will easily lead to the lack of depth of cut.
  2、焦距越短,聚焦點越小,切縫就越小,縫小不利于切割出來熔渣的掉落,導(dǎo)致切不透。所以我們一般盡量使用120-150mm之間的焦距去做光纖切割機的聚焦鏡。
  2. The shorter the focal length is, the smaller the focus is, the smaller the slit is. The slit is not conducive to the falling of molten slag, which leads to the impermeability of cutting. So we usually try to use the focal length between 120 and 150 mm to make the focus mirror of the optical fiber cutting machine.
  二、問題又來了,我們?yōu)槭裁床挥瞄L焦距的準直鏡?這里涉及到兩個方面的原因:
  Second, the question has come again. Why don't we use a collimator with a long focal length? There are two reasons for this:
  1、用長焦距的光纖準直鏡,需要更大的鏡片直徑,會導(dǎo)致機械設(shè)計比較麻煩;
  1. The use of long focal length optical fiber collimator requires larger lens diameter, which will lead to more trouble in mechanical design.
  2、用長焦距的光纖準直鏡會導(dǎo)致在聚焦的時候,對光纖切割機的聚焦點很敏感,一旦偏離聚焦鏡焦點一點點就會出現(xiàn)切不透的現(xiàn)象出現(xiàn),這也就是我們一般光纖切割機的聚焦一般在:60-100mm之間的原因。
  2. The use of long-focal-length collimator will make the focus of the optical fiber cutting machine very sensitive when focusing. Once the focus of the optical fiber cutting machine deviates from the focus of the focus point, there will be a phenomenon of impenetrability, which is the reason why the focus of our general optical fiber cutting machine is generally between: 60-100mm.