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Optical and conductive properties of AlSi-alloy/SiC_p composites: application in modelling CO_2 laser processing of composites

机译:AlSi合金/ SiC_p复合材料的光学和导电性能:在模拟CO_2复合材料激光加工中的应用

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摘要

The optical properties—reflectivity, real part of the refractive index, absorption coefficient as well as the thermal and electrical conductivity of AlSi-alloy/SiC_p composite were measured. The optical parameters and both conductivities decreased with the increase of SiC_p particles volume in AlSi-alloy matrix. This decrease was almost linear for the volume fraction of SiC_p particle up to 10 vol% of the total mass of the composite. For the 15 vol% of SiC_p particles, the departure from linearity is connected with the presence of additional phases in AlSi-alloy/SiC_p composite materials. The measured temperature dependencies of optical reflectivity and electrical conductivity for AlSi-alloy/SiC_p 15 vol% are of metallic character. Modelling of the interaction of the CO_2 laser radiation with AlSi-alloy/SiC_p 15 vol% composite should allow to estimate the initiation time at which the surface composite reaches melting temperature.
机译:测量了AlSi合金/ SiC_p复合材料的光学性质-反射率,折射率的实部,吸收系数以及热导率。随着AlSi合金基体中SiC_p颗粒体积的增加,光学参数和电导率均降低。对于SiC_p颗粒的体积分数,直至该复合材料总质量的10体积%,这种降低几乎是线性的。对于15%(体积)的SiC_p颗粒,线性偏离与AlSi-合金/ SiC_p复合材料中存在其他相有关。对于AlSi合金/ SiC_p 15 vol%,光学反射率和电导率的测量温度依赖性具有金属特性。对CO_2激光辐射与AlSi合金/ SiC_p 15体积%复合材料的相互作用进行建模,应该可以估计表面复合材料达到熔化温度的起始时间。

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