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400V 4200W 1800MM Fast Response Medium Wave IR Radiator Twin Tube Emitter Infrared Lamp For Laminating Industry


400V 4200W 1800MM Fast Response Medium Wave IR Radiator Twin Tube Radiation Infrared Lamp

Category:

Film Laminating and Fabric Embossing

 

Product name: Quartz Infrared Radiation Heat Lamp
Part number: EDIRTA40-42-1800/1720-3315G
Rated voltage: 400V
Rated power: 4200W
Total length: 1800±2mm
Heated length: 1720mm
Tube diameter: 33×15mm
Reflector: Gold
Burning postion: Horizontal

 

According to the configuration of different heating filament design and ending cables, twin tube infrared radiator lamp can be produced as the following common filament configuration. 

1: Cables can be one side connection or two sides connection

2: Different heating length designed for partial heating purpose

3: Length is up to 6.2 meter long and widely used in industrial heating process, such as glass cutting, plastics forming or lamination, auto painting and etc..

 

Twin tube fast response medium wave infrared heating lamp 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 lamp 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 heating lamps 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.  

Twin Tube IR Heat Lamp For Laminated 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 lamp, then we can cut the heated glass easier.

 

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.

 

 

First of all, we need to know that infrared heating technology uses infrared radiation lamp as the heat source. Its wavelength range is 1-1000 microns. It can penetrate transparent materials and directly heat target objects. It is gentle, uniform and efficient. Compared with traditional heating methods, infrared heating technology can improve heating efficiency, reduce energy loss, and has good environmental adaptability. In the field of laminating machines, infrared heating technology is widely used in the heating and forming processes of various film materials to improve production efficiency and product quality.

 

 

At the same heating temperature, the heating time of the laminating machine using infrared heaters is shortened by an average of 30% compared with traditiona heating methods such as conduction. This data shows that infrared radiation can transfer energy into the material more quickly and heat more efficiently. This is mainly due to the fact that infrared radiation can be effectively absorbed by the thin film material and can produce effective heat transfer within the material, thereby achieving a rapid and uniform heating process.

 

 

In addition, laminating machines using infrared heating technology improve film thickness uniformity surface flatness of film by 20% compared with traditional heating methods. This due to infrared radiation can effectively stimulate the vibration and rotation of molecules inside the film material, promote heat conduction and interaction between molecules, and make the interior of the material heated more uniformly. This further improves product stability and quality.

 

Besides infrared heating technology also significantly improves the flatness of the film surface. Physically, this may be related to the fact that infrared radiation can effectively penetrate transparent materials and produce thermal effects on the surface of the materials. Iinfrared radiation can directly act on the surface of the material and stimulate molecular vibration, making the surface of the film more uniformly heated, thus achieving a significant improvement in the flatness of the film surface.

 

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