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Study on Transitional Metal Oxides Energy-Saving Materials with High-Emissivity

机译:高发射率的过渡金属氧化物节能材料研究

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In order to enhance the thermal efficiency of heating and dring facilities, the energy-saving high infrared radiation materials were synthesized by the solid state method for 2h at 950, 1050 and 1150 °C, respectively, and rapid cooling in the air, from transitional metal oxides Fe_2O_3, Cr_2O_3, MnO_2 andCuO. The strcture and emission property of the samples were characterized through X-ray diffractomete, scanning electron microscop and infrared radiation meter. The results show that the main phases of resultants are spinel ferrites, and with increasing temperature, crystals become better and multiple spinel and like-spinel structures are formed. The infrared radiance represents a nonlinear variation with calcining temperature. The coatings on the stainless steel surface prepared with the materials with self-made binders have good infrared radiation, up to a maximum of 0.90, and have perfect resistance to thermal shock and may arrive at 25 times (RT←→800 °C), exhibiting fairly high binding strength. So the materials which are apply to on the internal wall of heating and drying facilities are believed to result in an long-term energy conservation.
机译:为了提高加热和吹水设施的热效率,通过在950,1050和1150°C的固态方法中通过固态方法合成节能的高红外辐射材料,从过渡到空气中的空气中快速冷却。金属氧化物Fe_2O_3,CR_2O_3,MNO_2和CUO。通过X射线衍射,扫描电子显微镜和红外辐射计表征样品的挠曲和排放性。结果表明,结果是尖晶石铁氧体的主要相,随着温度的增加,晶体变得更好,形成多个尖晶石和类似尖晶石结构。红外辐射表示具有煅烧温度的非线性变化。用自制粘合剂的材料制备的不锈钢表面上的涂层具有良好的红外辐射,最大值为0.90,并且具有完全抵抗热冲击,并且可以达到25次(RT←→800°C),表现出相当高的结合强度。因此,据信适用于加热和干燥设施内壁的材料,以导致长期的节能。

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