首页> 外文期刊>International Journal of Industrial Chemistry >Rejection of far infrared radiation from the human body using Cu–Ni–P–Ni nanocomposite electroless plated PET fabric
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Rejection of far infrared radiation from the human body using Cu–Ni–P–Ni nanocomposite electroless plated PET fabric

机译:使用Cu-Ni-P-Ni纳米复合电镀PET织物从人体拒绝远红外辐射

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An experimental investigation was utilized to present the IR rejection performance of Cu–Ni–P–Ni composite double-layer electroless plated PET fabric compared to fabric samples composed of Cu–Ni–P metallic monolayer. Accordingly, the effect of a range of operational parameters was explored on the conductivity of electroless plated PET fabric. Results indicate higher conductivity and lower durability for Cu–Ni–P-coated samples compared to its counterpart with same sub-layer included with nickel on top layer. The SEM image of Cu–Ni–P particle on PET fabric shows a hexagonal non-homogenous morphology with nanoscale crack on its surface. However, the micrograph of the Cu–Ni–P–Ni electroless plated fabric shows an extremely compact and continuous phase with clear boundaries containing semispherical particles. The thermopile radiated sensing system was used as a sophisticated device to show the thermal energy absorption level. The acquired data indicate a 2.3 and 2.7?unit reduction in transmitted radiated power, respectively, for Cu–Ni–P and Cu–Ni–P–Ni conducting fabric. The captured thermal camera images of human body while keeping in front of a Cu–Ni–P conducting fabric revealed a nearly black and blue feature which proves the significant decrease in body radiated thermal energy. However, the thermal image of Cu–Ni–P–Ni conductive fabric shows almost black appearance in all areas. It can be presumably due to improving of the IR rejection performance and also formation of a massive barrier against body thermal radiation for promising camouflage applications.
机译:与由Cu-Ni-P金属单层组成的织物样品相比,利用实验研究呈现Cu-Ni-P-Ni复合双层无电镀PET织物的IR抑制性能。因此,探讨了一系列操作参数的效果,用于无电镀PET织物的电导率。结果表明与具有相同子层的对应物相比,Cu-Ni-P涂覆样品的导电性较高,耐久性与顶层上的相同子层相比。宠物织物上Cu-Ni-P粒子的SEM图像显示六边形非均匀形态,其表面上的纳米级裂缝。然而,Cu-Ni-P-Ni化学镀织物的显微照片显示出极其紧凑且连续的相位,其具有含有半球形颗粒的透明边界。热透射辐射感测系统用作复杂的装置,以显示热能吸收水平。所获取的数据分别表示2.3和2.7?单位降低透射辐射功率,用于Cu-Ni-P和Cu-Ni-P-Ni导电织物。在Cu-Ni-P导电织物前保持的人体的捕获的热摄像机图像揭示了几乎黑色和蓝色的特征,证明了体内辐射热能的显着降低。然而,Cu-Ni-P-Ni导电织物的热图像在所有区域中显示出几乎黑色的外观。可以推出由于改善IR抑制性能以及对体积辐射的巨大屏障形成有前途的伪装应用。

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