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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Manufacturing with novel high-power diode lasers
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Manufacturing with novel high-power diode lasers

机译:使用新型大功率二极管激光器进行制造

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Direct applications of high-power diode lasers (HPDLs) like hardening, heat conduction welding of metals, and joining of polymers have already been demonstrated also in the industrial environment. Relatively low intensities in the range of 10/sup 3/ W cm/sup -2/ are sufficient for these applications. While the commercial HPDL systems are built on the basis of diode laser bars with 40 W output power, in the meantime a record continuous-wave-output power of 267 W per bar has been demonstrated. The achievable higher output power per bar will lead to enhanced applicability of HPDLs and thus to a further steep increase of their industrial use. Improved packaging technology, multiplexing the emission of single bars and coherent coupling as well as promising new diode laser structures like Z-shaped broad area emitters, is discussed. In this paper, emphasis is laid on the potential applicability of commercial HPDLs for metal working with elevated intensities up to 10/sup 5/ W cm/sup -2/, like oxygen cutting and the worldwide first deep-penetration HPDL-weld up to a sheet thickness of 6 mm in stainless steel. These results have been predicted by proper theoretical modeling. Strong reduction of phase space dimension takes place in convective-diffusive-type free boundary problems typical for thermal processing. This property makes it possible to construct approximate finite-dimensional dynamical systems being solvable with controlled error. Numerical solutions of the full problem are used to investigate the quality of the approximate model. Observable quantities of the technical processes like signals from monitoring devices are part of the solution and solutions to the inverse problem are given.
机译:高功率二极管激光器(HPDL)的直接应用,例如硬化,金属的热传导焊接以及聚合物的连接,已经在工业环境中得到了证明。在这些应用中,在10 / sup 3 / W cm / sup -2 /范围内的相对较低的强度就足够了。虽然商用HPDL系统是基于输出功率为40 W的二极管激光棒构建的,但与此同时,已证明了创纪录的每棒267 W的连续波输出功率。每巴可实现的更高输出功率将导致HPDL的适用性增强,从而使其工业用途进一步急剧增加。讨论了改进的封装技术,多路复用单条发射和相干耦合以及有前途的新型二极管激光器结构,例如Z形广域发射器。在本文中,重点放在商业HPDL在金属加工中的潜在适用性,这些金属的强度可提高到10 / sup 5 / W cm / sup -2 /,例如氧气切割和全球首创的深穿透HPDL焊接不锈钢板的厚度为6毫米。这些结果已通过适当的理论模型进行了预测。在热处理过程中典型的对流扩散型自由边界问题中,相空间尺寸大大减小。该特性使得可以构造可解决且具有受控误差的近似有限维动力学系统。完整问题的数值解用于研究近似模型的质量。解决方案中包括可监视数量的技术过程(例如来自监控设备的信号),并给出了反问题的解决方案。

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