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Infrared Heating Technology in the Automotive Industry
Publish Time:2022-12-06        View Count:219        Return to List

Infrared Heating Technology in the Automotive Industry

The Xuchang Infrared Technology Research Institute Co., Ltd. is located on Yongxing East Road in the Xuchang High-Tech Industrial Development Zone (Zhongyuan Electrical Valley) in Henan Province. Its predecessor was the Xuchang Infrared Technology Research Institute and it is currently one of the influential infrared heating research institutions in China.

I am.Since its establishment in October 1979, adhering to the guiding principle of "highlighting strengths, rigorously focusing on quality, and reinforcing services." With its robust technical capabilities, a team of highly-qualified employees, and a spirit of innovation, the Xuchang Infrared Institute has developed and produced a range of advanced infrared products. The main products include: a series of infrared radiation (absorption) coatings, infrared heating elements, infrared radiation heating modules (sheets), infrared radiation heating furnaces (boxes), rapid infrared radiation heaters, a series of high-end infrared heating experimental equipment, and a series of infrared heating controllers, and we provide our clients with 24/7 support.We provide comprehensive infrared radiation heating technical services. The company has been honored with..."Outstanding Energy-Saving Technology Research Institute Center" and "Advanced Unit in Technological Innovation" honors.

The company has always regarded technological innovation as its strategic guideline.Our company attaches great importance to research and development, establishing platforms such as the Infrared Heating Engineering Research Center, effectively integrating industrial innovation resources, and possessing strong development and design capabilities. In the past three years, we have completed 5 research projects and obtained 16 authorized patents of various types.Patented invention1 utility patent, 8 novel utility models, 6 software copyrightsOur company has actively participated in the formulation and revision of six domestic and international infrared standards.Amongst them, two.GGBT18497.1-2019: Characteristics of Electric Infrared Emitters for Industrial Heating - Part 1: Short-Wave Electric Infrared Emitters, and GBT18497.2-2019: Characteristics of Electric Infrared Emitters for Industrial Heating - Part 2: Medium to Long-Wave Electric Infrared Emitters have been officially implemented.These successful project implementations have made significant contributions to the enhancement of China's core technology level and comprehensive research and development capabilities in the infrared radiation heating industry.

Far-infrared heating offers numerous advantages over traditional methods like steam, hot air, and resistance heating, including faster heating speeds, superior product quality, smaller equipment footprint, lower production costs, and higher heating efficiency. Replacing electric heating with it results in particularly significant energy savings, typically achieving energy reductions.30%Left and right, even up to certain occasions.60%70%This technology has been widely applied in various processing requirements such as heating, melting, drying, shaping, consumption, and curing of many products or materials, including paints, plastics, food, pharmaceuticals, wood, leather, textiles, tea, and tobacco. Generally, the heating and drying of organic substances, macromolecular substances, and moisture-containing materials like wood, leather, and paint show particularly significant effects. In some cases, the application of this technology in conjunction with alumino-silicate refractory fiber insulation materials yields excellent results.

Far-infrared heating technology is an emerging science. In recent years, with the continuous increase in the variety and quantity of far-infrared products, its application fields have expanded significantly. The technology has garnered increasing attention, and research into far-infrared radiation materials and their applications holds great promise. The principle of energy-saving in far-infrared radiation materials is that they effectively convert other energies and absorb the molecular vibrations of the heated substances, achieving purposes such as heating and drying. They feature energy-saving, rapid heating and temperature rise, pollution-free, and high thermal efficiency, and can be widely used in textiles, dyeing, machinery and electronics, printing, glass tempering, food processing, healthcare, household cooking utensils, and heating equipment. The far-infrared ceramic radiation materials we have developed are applied to the coatings of aluminum products, achieving a time-saving rate of...40%Above, the increase in thermal efficiency is35%Left and right, energy-saving rate80%Above, it is an ideal high-efficiency energy-saving material.



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