首页> 外国专利> METHOD OF CONDUCTING PANELS PRODUCTION, PRIMARY FURNACE FOR CONDUCTING PANELS PRODUCTION AND CONDUCTING FILLER BASED ON NATURAL SEDIMENT HIGH-SILICA ROCKS

METHOD OF CONDUCTING PANELS PRODUCTION, PRIMARY FURNACE FOR CONDUCTING PANELS PRODUCTION AND CONDUCTING FILLER BASED ON NATURAL SEDIMENT HIGH-SILICA ROCKS

机译:基于天然沉积物高硅质岩的面板生产,主炉进行面板生产和填料的方法

摘要

FIELD: electrical engineering.;SUBSTANCE: invention relates to electrical engineering industry and may be used for production of electric heating units and panels in house construction and industry. The production method of current-conducting panel where the above furnace and filler are used, includes mixing of the following components graphite 7-9%, silicon carbide 3-5%, clay component 15-35, granulated current-conducting filler 4.5-10.5% and coal coke with particle of 0.2-1.5 mm size is the rest of the mixture. The current-conducting filler is represented with granules of 0.1-1.0 mm size and jointly grinded mixture, wt %: calcium carbonate - 1-5.6, graphite - 8-10.4, silicon carbide - 6-9.1, glass powder - 7-9.1, 8-12% water solution of liquid glass solution - 1.0-2.8 and sediment high-silica rocks - 63.0-77.0. Then raw items are moistened, folded by semi-dry pressing method and thermally treated in lightly oxidised gas medium at 940-970°C. The primary furnace includes coal coke particles of 0.2-1.5 size and binging agent. The furnace includes clay component as binding agent. In addition, the current-conducting material contains grinded graphite, silicon carbide and granulated current-conducting filler. The current-conducting filler consists of the following components: calcium carbonate, graphite, silicon carbide, glass powder, 8-12% water solution of liquid glass and sediment high-silica rocks.;EFFECT: proposed group of inventions allows for widening choice of technical facilities and raw basis for production for environmentally friendly current-conducting penal-type items with wide application performance such as high operational temperature, specific power and absence of deformations during annealing and operation due low thermal shrinkage.;3 cl, 2 tbl, 2 ex
机译:技术领域本发明涉及电气工程行业,并且可以用于房屋建筑和工业中的电加热单元和面板的生产。使用上述炉子和填料的导电板的生产方法包括混合以下组分:石墨7-9%,碳化硅3-5%,粘土组分15-35,粒状导电填料4.5-10.5其余为混合物,剩余物的百分数为%,粒度为0.2-1.5mm的煤焦。导电填料用尺寸为0.1-1.0 mm的颗粒和共同研磨的混合物表示,wt%:碳酸钙-1-5.6,石墨-8-10.4,碳化硅-6-9.1,玻璃粉-7-9.1,液体玻璃溶液的8-12%水溶液-1.0-2.8和沉积高硅岩-63.0-77.0。然后将原料弄湿,通过半干压法折叠,并在940-970°C的轻度氧化气体介质中进行热处理。初级炉包括尺寸为0.2-1.5的煤焦炭颗粒和结合剂。该炉包括粘土组分作为粘合剂。另外,导电材料包含研磨的石墨,碳化硅和粒状导电填料。导电填料由以下成分组成:碳酸钙,石墨,碳化硅,玻璃粉,液体玻璃的8-12%水溶液和沉淀高硅石。具有高应用温度,如高工作温度,比功率以及在退火和运行过程中由于低热收缩而无变形的环保应用的导电型笔型物品的技术设施和生产的原始基础; 3 cl,2 tbl,2前

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