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1. Introduction As an important heating equipment, high-temperature box furnace is widely used in laboratories, industrial production and scientific research fields. In order to ensure the safety of operators and the normal operation of equipment, it is particularly important to formulate a detailed work instruction. This document is intended to provide guidance for the operation of high-temperature chamber furnaces to ensure the safety of operators and the normal operation of equipment.vertical-band-saws 2. Operator safety 1. Operators must wear appropriate protective equipment, including high-temperature-resistant gloves, protective glasses, and work clothes to ensure safety. 2. Before operating the high-temperature box furnace, you must ensure that the equipment is properly grounded, and always pay attention to the power switch of the equipment. 3. Avoid placing flammable items around the high-temperature box furnace to ensure the safety of the surrounding environment.vertical-metal-band-sawing-machine-cv-series 3. Equipment operation 1. Ensure that the equipment working area is dry and well ventilated to avoid safety accidents. 2. Before opening the device, check whether the appearance of the device is intact. If there is any damage, repair it in time. 3. Place the items to be heated reasonably to ensure the stability of the items. 4. Before heating, the ventilation device of the high-temperature box furnace should be opened first to ensure that the ventilation inside the equipment is good.vertical-metal-band-sawing-machine-g5315-g5325-g5340 5. Set according to the temperature control requirements in the equipment manual to avoid excessively high or low temperatures. 6. When the equipment is working, do not put your hands or other objects into the furnace to avoid accidents. 7. When the equipment is finished working, the power of the equipment should be turned off in time, and the outside of the equipment and the inside of the furnace should be cleaned and kept clean.vertical-metal-band-sawing-machine-g5325x65x750
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The mesh belt furnace is mainly composed of heating furnace body, mesh belt transmission device, feeding and discharging device, exhaust gas treatment device, automatic control system and other parts. The heating furnace body is the core part of the mesh belt furnace, which is mainly composed of the furnace body, heater, combustion chamber, fuel supply system, fan, exhaust gas treatment device, chimney and other parts.vacuum-brazing-repair-method-for-cracks The heater can use various forms such as electric heating, gas heating, oil and gas mixed combustion, etc. According to different heating methods, the combustion chamber and fuel supply system are also different. Exhaust gas treatment devices can be divided into two methods: dry treatment and wet treatment. According to different exhaust gas treatment methods, the height and position of the chimney also need to be adjusted accordingly.Vacuum brazing of ceramic and metal materials In the mesh belt furnace, materials are sent into the furnace through the mesh belt conveyor and heat treated in a high-temperature atmosphere. The heater inside the furnace body heats the air or fuel and sends it into the combustion chamber, where it is mixed with the fuel for combustion. Vacuum Furnaces Leaks and Detection Techniques After the high-temperature gas generated by combustion is heated up layer by layer by the heater, it enters the interior of the furnace body, contacts the material to be processed and transfers heat, heating it to the required temperature until the heat treatment is completed. The heat-treated materials are sent out of the furnace through the discharging device and the mesh belt conveyor.Process optimization of alumina ceramic sintering technology
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Adopt hot charging furnace technology. Hot charge charging is an effective measure for heating large forgings. That is, the steel ingots poured from the steel casting workshop are directly transported to the forging workshop for heating without cooling. Generally, the furnace temperature is controlled above 600C. Compared with cold material charging furnace, it can save about 40% energy. Vacuum brazing of ceramic and metal materials Rapid heating. Rapid heating is 5 times the normal heating speed. It is mainly suitable for carbon steel and low alloy steel forgings. It can shorten the heating cycle, reduce heating oxidation loss, improve heating quality and reduce fuel consumption. Vacuum Furnaces Leaks and Detection Techniques Induction heating. The use of induction heating furnaces is an important measure to save energy and reduce consumption in die forging workshops. It is mainly suitable for mass production of die forgings with little change in blank cross-sectional dimensions. Process optimization of alumina ceramic sintering technology Compared with ordinary flame furnaces, the thermal efficiency of induction heating furnaces can be 50% to 60% higher. %, the oxidation burning loss is only 0.5%, and the production efficiency can be increased by 10% to 30%.Atmospheric Pressure and Vacuum Sintering of High Purity Dense MgO Ceramics
Industrial furnaces are important production equipment. They are widely used. For many companies, fuel consumption and energy costs are a large part of production costs. Therefore, studying how to improve the energy utilization efficiency of industrial furnaces, reduce energy consumption, and reduce production costs has become a research hotspot in the industrial field and a matter of concern to enterprises. This article will introduce energy-saving measures and methods for industrial furnaces.Vacuum Furnaces Leaks and Detection Techniques Combustion is the main energy consumption link of industrial furnaces. By improving combustion efficiency and reducing fuel consumption, you can effectively save save energy and reduce production costs. Methods to optimize combustion mainly include the following:Process optimization of alumina ceramic sintering technology Advanced burners can achieve an efficient combustion process and effectively control the gas temperature and combustion product emissions during the combustion process. Modern burner technology allows fuel and air to form strong stratified combustion inside through multiple mixing and separations, thereby achieving high-temperature and high-efficiency combustion and reducing smoke emissions. Compared with traditional burners, advanced burners can achieve higher thermal efficiency and lower pollution emissions, and are widely used in industrial fields.Atmospheric Pressure and Vacuum Sintering of High Purity Dense MgO Ceramics