首页> 外文会议>European Conference on Laser Treatment of Materials September 22-23, 1998, Hanover, Germany >Recent developments of solid state and diode lasers for materials processing
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Recent developments of solid state and diode lasers for materials processing

机译:用于材料加工的固态激光器和二极管激光器的最新发展

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With the laser beam as a thermal tool, the characteristics of a particular process, e.g. heating, melting or vaporizing of materials, are essentially determined by the balance of energy fluxes in the interaction zone. With respect to the laser parameters, therefore, the process type depends on the intensity to be realised. Apart from the instantaneous delivered power, its maximum value is inherently determined by the beam's focussability, i.e. the beam quality. The volume resp. mass of material that can be treated per unit time - meaning accessible dimensions and/or values of processing speed - is governed by the mean value of power. Hence, the feasibility of a particular laser to be used for just one or for variou processes stems from those properties. That is why it has become practise to discuss suitable or competitive devices along their inherent properties beam quality - measured by the beam parameter product - and mean power. Typical values of some systems that are commercially availble or are under development are summarized in Fig. 1.
机译:利用激光束作为热工具,特定过程的特性例如材料的加热,熔化或汽化基本上由相互作用区内的能量通量平衡决定。因此,关于激光参数,处理类型取决于要实现的强度。除了瞬时传递的功率外,其最大值还固有地由光束的聚焦能力即光束质量确定。音量分别。每单位时间可以处理的材料的质量-意味着可访问的尺寸和/或处理速度的值-由功率的平均值决定。因此,由于这些特性,仅将一种激光器用于一种或多种工艺的可行性。这就是为什么沿着其固有特性讨论合适或具有竞争力的设备的习惯,因为光束的质量(通过光束参数乘积测量)和平均功率。图1总结了一些商用或正在开发的系统的典型值。

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