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The absorptance of steels to Nd:YLF and Nd:YAG laser light at room temperature

机译:室温下钢对Nd:YLF和Nd:YAG激光的吸收率

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The measurement of absorptance is important for the analysis and modelling of laser-material interactions. Unfortunately, most of the absorptance data presently available considers only polished pure metals rather than the commercially available (unpolished, oxidised) alloys, which are actually being processed in manufacturing. This paper presents the results of absorptance measurements carried out at room temperature on as-received engineering grade steels including hot and cold rolled mild steel and stainless steels of various types. The measurements were made using an integrating sphere with an 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 existing data for polished, pure metals and should help improve the accuracy of laser-material interaction models. Some clear trends were identified; for all materials studied, the absorptance was considerably higher than the previously published values for the relevant pure metals with polished surfaces. For all 15 samples the absorptance was higher for the green than for the infrared wavelength. No clear trend correlating the absorptance with the roughness was found for mild steel in the roughness range Sa 0.4-5.6 μm. A correlation between absorptance and roughness was noted for stainless steel for Sa values above 1.5 μm.
机译:吸收率的测量对于激光材料相互作用的分析和建模很重要。不幸的是,目前可获得的大多数吸收率数据仅考虑了抛光的纯金属,而不考虑实际上在制造过程中加工的市售(未抛光,氧化)合金。本文介绍了在室温下对收到的工程级钢(包括热轧和冷轧低碳钢和各种类型的不锈钢)进行的吸光度测量结果。使用带有两个波长(1053和527 nm的Nd:YLF激光)的积分球进行测量,这意味着结果对于1064和532 nm的Nd:YAG辐射也有效。所获得的吸收率结果与抛光纯金属的现有数据有很大不同,并且应有助于提高激光材料相互作用模型的准确性。确定了一些明显的趋势;对于所有研究的材料,其吸收率均明显高于先前公布的有关具有抛光表面的纯金属的吸收率。对于所有15个样品,绿色的吸收率均高于红外波长的吸收率。对于粗糙度范围Sa 0.4-5.6μm的低碳钢,没有发现明显的吸收率与粗糙度相关的趋势。对于Sa值大于1.5μm的不锈钢,吸收率和粗糙度之间存在相关性。

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