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Medium Wave Infrared Emitter Twin Tube Quartz IR Lamp 5900W 3950mm For MACOTEC Glass Cutting Machine
Medium Wave Infrared Emitter Twin Tube Quartz IR Lamp 5900W 3950mm For MACOTEC Glass Cutting Machine
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240V 2000W 355MM Ceramic White Reflector Quartz Infrared Emitter Heat Lamp
240V 2000W 355MM Ceramic Reflector Quartz Heat Infrared Emitter Lamp 1. Principle of Quartz Infrared emitter lamps Quartz infrared emitter lamps utilize the high temperature generated by current passing through the filament to produce intense infrared radiation. These radiations have strong penetrating power, allowing them to directly heat the molecules inside the material. Infrared rays heat objects without direct contact, making the drying process faster. Compared to traditional heating methods (such as convection heating), infrared radiation directly transfers heat to both the surface and interior of the material, reducing energy loss and heat transfer time.         2. Advantages of Quartz Infrared emitter lamps Fast Heating and Energy Efficiency: Since infrared radiation directly heats the material, the transfer time is significantly shortened, reducing energy loss during the heating process. Additionally, infrared emitter lamps quickly reach the required temperature, eliminating the need for a preheating phase, thus improving production efficiency.   Uniform Heating: Quartz infrared emitter lamps provide even heat distribution across the entire conveyor width, ensuring that all products are exposed to the same level of heat, guaranteeing consistent heating for each product. This is crucial for improving drying quality and reducing product inconsistency. The flexible arrangement and design of the lamps allow operators to precisely control heat intensity and distribution, enabling fine-tuning of the drying process based on specific product needs.   Space Savings and Process Optimization: The compact design of quartz infrared emitter lamps allows for easy integration into various conveyor dryers, resulting in a more compact overall equipment design, which is easier to arrange and operate. Precise control of temperature and heat distribution also provides operators with flexible adjustment options to meet the needs of different products.    
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400V 8900W 1620mm IR Radiator Lamp Replacement KBA RAPIDA 145/164 L0850535 Twin Tube IR Emitter
400V 8900W 1620mm IR Radiator Lamp Replacement KBA RAPIDA 145/164 L0850535 Twin Tube IR Emitter
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IR Heat Lamp 6100W-10000W
600V 8000W 3850MM Twin Tube Fast Response Medium Wave Infrared Emitter For Tempered Glass Cutting
600V 8000W 3850MM Twin Tube Fast Response Medium Wave Infrared Emitter For Tempered Glass Cutting
Twin Tube Gold Reflector Infrared Emitter For Tempered Glass Cutting We cannot cut tempered glass directly, otherwise it will be broken. But if we heat up the temperature on glass by IR heat emitter, then we can cut the heated glass easier. Along the cutting trajectory to install infrared twin tube emitters, the infrared heating will increase the temperature of glass rapidly, and the heat is passed to the surrounding area in the form of thermal conductivity, forming a thermal influence area along the infrared heating trajectory, especially the temperature on the cutting trajectory is going to be the highest. The fast heating raise the temperature and it causes the glass expansion to have compression stress. The upper and lower surface of the glass produces tensile stress, due to the temperature decreasing by air convection. At this time, the expansion and contraction of the glass material are the largest, and glass will be broken easier and this is the glass cutting way through Infrared emitter.       Twin tube fast response medium wave infrared emitters can be controlled and adjusted the output power by PLC or SCR regulator automatically, so we can have accurate(±1 ℃)IR heating temperature in industry process. The heating filaments can be desinged and work in 1200~1800℃ with 1~2 seconds fast response time, so the FMW IR emitter are widely used for fast heating application which needs heating temperature from 50~500℃. Because of needing small installation space and flexible working position, our infrared quartz emitters are popular for industrial customers to repalce air heating and other high energy consumption electric heating elements, or customers prefer a combination heating solutions which includes circle hot air heating with fast efficient IR heatings.   EDEN IR quality customized twin tube infrared lamps can be repalced your original heating lamp, such as Heraeus lamp, LISEC cutting lamp, Bavelloni cutting lamp, Bottero IR lamp, Intermac glass cut lamp, Macotec heating lamp and etc...We have successfully produced long IR lamps with some specifications as below: 400V 6400W 1900mm 400V 6400W 1920mm 400V 9450W 3450mm 600V 8300W 3450mm 600V 7800W 3520mm 600V 8000W 3855mm 500V 5900W 3870mm 700V 10300W 3920mm 600V 7800W 4720mm 700V 9800W 4720mm 600V 16000W 6120mm   Product name: Quartz Infrared Radiator/ Infrared Emitter Part number: EDIRTA60-80-3850/3750-3315G2 Rated voltage: 600V Rated power: 8000W Total length: 3850±2mm Heated length: 3750mm Tube diameter: 33×15mm Reflector: Gold Burning postion: Horizontal and Vertical Replacement: SMAG 8000/3755 G Application: Laminated Glass Cutting Table  
700V 9800W Twin Tube Medium Wave Fast Response IR Lamp For Laminated Glass Cutting Infrared Radiator
700V 9800W Twin Tube Medium Wave Fast Response IR Lamp For Laminated Glass Cutting Infrared Radiator
3000W 6000W Carbon Medium Wave Twin Tube Infrared Emitter Quartz Heating IR Emitter For Industry Drying
3000W 6000W Carbon Medium Wave Twin Tube Infrared Emitter Quartz Heating IR Emitter For Industry Drying
3000W 6000W Carbon Medium Wave Twin Tube Infrared Emitter Quartz Heating IR Emitter For Industry Drying Quartz infrared emitter has proven to be highly effective for drying leather, offering several distinct advantages over traditional methods. Here are the main characteristics and benefits of using high-efficiency infrared heaters for leather drying:   1. Fast Drying Process The use of high-efficiency infrared heaters significantly speeds up the drying process compared to conventional steam hot air convection and heat conduction dryers. Infrared emitter energy is transmitted directly to the leather surface without the need for an intermediate medium. Part of the emitter penetrates into the leather pores, with a penetration depth of up to 0.1 mm to 2.0 mm. The emitter within the capillary pores is almost entirely absorbed after multiple reflections by the pore walls, leading to very high heat transfer efficiency. For the same leather, drying with infrared emitter heaters greatly shortens the drying time. 2. High-Quality Drying The drying quality with quartz infrared emitter is excellent. Since both the surface layer and the inner layers of the leather absorb far-infrared emitter simultaneously, the drying process is uniform. This results in better physical properties of the leather post-drying and improved color quality. For example, in leather goods manufacturing, maintaining uniform drying is critical for ensuring the final product's quality and aesthetic appeal.   3. Energy Efficiency Quartz infrared emitter drying is more energy-efficient compared to other emitter and electric drying methods. It can save more than 50% of the energy typically consumed. Additionally, the infrared radiating elements in these dryers have a simple structure, resulting in smaller equipment size, easier operation, and enhanced safety.   Considerations and Precautions While high-efficiency infrared drying has many advantages, there are important considerations to keep in mind: 1. Leather Area Shrinkage When using infrared emitter to dry leather, significant shrinkage can occur. For grid leather, shrinkage can range from 20% to 30%, and for base leather, from 4% to 6%. Therefore, it is advisable to dry the leather in a constrained or fixed state to minimize shrinkage. This constraint can help maintain the desired dimensions and reduce deformation during the drying process.   2. Heat Distribution Infrared drying supplies much more heat to the leather and its moisture than steam methods, sometimes even dozens of times higher. The strong external heat source creates a large temperature difference between the leather surface and its interior. Consequently, quartz infrared heaters are most suitable for drying thin leather and for drying the leather surface after painting. This focused application ensures that the leather does not overheat or suffer from quality degradation due to uneven heat distribution.
400V 8000W 3450MM Twin Tube Infrared Lamp Medium Wave Quartz Fast Heating IR Lamp For Laminated Glass Cutting
400V 8000W 3450MM Twin Tube Infrared Lamp Medium Wave Quartz Fast Heating IR Lamp For Laminated Glass Cutting
400V 8000W 3450MM Twin Tube Infrared Lamp Medium Wave Quartz Fast Heating IR Lamp For Laminated Glass Cutting Fast response medium wave infrared lamp can be switched on/off the same as short wave lamps in a short time, and the range of IR radiation wave is 1.4-2.0μm. The especial fast medium wave can heat the surface and thin layers quickly. Fast medium wave lamps can be made in all lengths up to 6 meter long. The twin tube designed lamps are stable and its high power density lamp can transfer high energy to the long material.   Along the cutting trajectory to install infrared heating lamps, the infrared heating will increase the temperature of glass rapidly, and the heat is passed to the surrounding area in the form of thermal conductivity, forming a thermal influence area along the infrared heating trajectory, especially the temperature on the cutting trajectory is going to be the highest. The fast heating raise the temperature and it causes the glass expansion to have compression stress. The upper and lower surface of the glass produces tensile stress, due to the temperature decreasing by air convection. At this time, the expansion and contraction of the glass material are the largest, and glass will be broken easier and this is the glass cutting way through IR heating lamp.   Twin tube fast response medium wave infrared heating lamp can dry ink and coatings on the surface of objects in a short time. The heating filaments can be desinged and work in 1200~1800℃, so the FMW IR lamp are widely used for fast heating application which needs heating temperature from 50~500℃.   1. Accurate(±1 ℃)IR heating temperature control 2. 1~2 seconds fast response time to full power IR heating energy 3. Small installation space, flexible in horizontal or vertical working position
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 Infrared Lamp   Quartz Infrared Emitter    Quartz Infrared Heater   Industrial Drying Infrared Solution    Gold Reflector Twin Tube IR Radiator

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