• 激光切割加工常见的应用领域
  • 本站编辑:杭州创莘金属制品有限公司发布日期:2022-05-13 14:07 浏览次数:

金属切割:激光切割不仅对大量金属起作用,而且是工业之间的通用工具。

激光切割可以得到比机械加工更干净、光滑、紧密的切割。与机械加工一样,它也可以由计算机编程和引导,这意味着激光切割机可以自动为汽车、计算机等行业制造大量的金属零件。

通常,像汽车框架或液压成形零件这样的奇怪形状需要激光切割,航天工业中的许多零件也是如此,结果通常比等离子切割要好。

反光金属切割:因为反光金属会反射照射在它们身上的背光,这就引起了人们在用高功率激光束照射它们时的担忧。

如果金属反射激光,它会自我毁灭,解决这个问题的办法是用光纤激光切割,利用这种技术,光纤电缆将激光束传输到金属上。反射的光线不会损坏光缆。铝、银、铜和金等金属都是反光的,在汽车和半导体生产中很重要。

医学科学切割:激光切割在医疗行业也扮演着重要的角色,在医疗行业,极高的精度和严格的尺寸公差是必不可少的。

由于医疗行业对高产量的需求,这项技术符合他们的需求,因为它可以复制设计,既准确又快速周转。许多类型的医疗器械都起源于激光切割,从心血管和骨科器械到外科植入物部件。通过激光切割,这些设备可以在不牺牲精度的情况下以较快的速度制造。

Metal cutting: laser cutting not only works on a large number of metals, but also is a general tool between industries.

Laser cutting can get cleaner, smoother and tighter cutting than machining. Like machining, it can also be programmed and guided by computer, which means that laser cutting machine can automatically manufacture a large number of metal parts for automobile, computer and other industries.

In general, strange shapes such as automobile frames or hydroformed parts require laser cutting, as do many parts in the aerospace industry, and the results are usually better than plasma cutting.

Reflective metal cutting: because reflective metal will reflect the backlight illuminated on them, this has aroused people's concern when irradiating them with a high-power laser beam.

If the metal reflects the laser, it will destroy itself. The solution to this problem is to use optical fiber laser cutting. Using this technology, the optical fiber cable transmits the laser beam to the metal. The reflected light will not damage the optical cable. Metals such as aluminum, silver, copper and gold are reflective and important in automobile and semiconductor production.

Medical science cutting: laser cutting also plays an important role in the medical industry. In the medical industry, high precision and strict dimensional tolerance are essential.

Due to the demand for high output in the medical industry, this technology meets their needs because it can replicate the design, which is accurate and fast turnover. Many types of medical devices originate from laser cutting, from cardiovascular and orthopedic instruments to surgical implant components. Through laser cutting, these devices can be manufactured at a faster speed without sacrificing accuracy.

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