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室温下有色金属合金对钕:钇锂氟化物激光和钕:钇铝石榴石激光的吸收率。

Absorptance of nonferrous alloys to Nd:YLF and Nd:YAG laser light at room temperature.

作者信息

Bergström D, Powell J, Kaplan A F H

机构信息

Department of Engineering, Physics and Mathematics, Mid Sweden University, Ostersund, Sweden.

出版信息

Appl Opt. 2007 Mar 10;46(8):1290-301. doi: 10.1364/ao.46.001290.

Abstract

The measurement of absorptance is important for the analysis and modeling of laser-material interactions. Unfortunately, most of the absorptance data currently available consider only polished pure metals rather than the commercially available (unpolished, oxidized) alloys that are actually being processed in manufacturing. We present the results of absorptance measurements carried out at room temperature on as-received engineering grade nonferrous metals (Al, Cu, and Zn alloys). The measurements were made using an integrating sphere with a Nd:YLF laser at two wavelengths (1053 and 527 nm, which means that the results are also valid for Nd:YAG radiation at 1064 and 532 nm). The absorptance results obtained differ considerably from the existing data for polished, pure metals and should help improve the accuracy of laser-material interaction models. Some clear trends were identified. For all 22 cases studied the absorptance was higher than for ideal pure, polished metals. For all Al and Cu samples the absorptance was higher for the green than it was for the infrared wavelength, while for all Zn coatings this trend was reversed. No clear correlation between absorptance and surface roughness was found at low roughness values (Sa 0.15-0.60), but one rougher set of samples (Sa 2.34) indicated a roughness-absorptance correlation at higher roughness levels.

摘要

吸收率的测量对于激光与材料相互作用的分析和建模至关重要。不幸的是,目前可用的大多数吸收率数据仅考虑抛光的纯金属,而非制造过程中实际加工的市售(未抛光、氧化)合金。我们展示了在室温下对收到的工程级有色金属(铝、铜和锌合金)进行吸收率测量的结果。测量使用积分球和Nd:YLF激光在两个波长(1053和527nm,这意味着结果对于1064和532nm的Nd:YAG辐射也有效)下进行。获得的吸收率结果与抛光纯金属的现有数据有很大差异,应有助于提高激光与材料相互作用模型的准确性。确定了一些明显的趋势。在所研究的所有22个案例中,吸收率均高于理想的纯抛光金属。对于所有铝和铜样品,绿色波长下的吸收率高于红外波长,而对于所有锌涂层,这种趋势则相反。在低粗糙度值(Sa 0.15 - 0.60)下,未发现吸收率与表面粗糙度之间有明显的相关性,但一组粗糙度更高的样品(Sa 2.34)表明在较高粗糙度水平下存在粗糙度 - 吸收率相关性。

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