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400V 6400W Power Gold Coating IR Lamp 33×15mm Glass Cutting Quartz Heating Lamp For Macotec Laminated Table 81P01639AH90500
Category:
Glass Cutting and Processing
Gold Reflector Infrared Lamp Emitter
IR Heat Lamp 6100W-10000W
| Product name: | Twin Tube IR Lamp Quartz Heating Lamp |
| Part number: | EDIRTA40-64 |
| Rated voltage: | 400V |
| Rated power: | 6400W |
| Total length: | 1900mm~1980mm |
| Tube diameter: | 33×15mm |
| Reflector: | Gold |
| Burning postion: | Horizontal and Vertical |
| Application: | Macotec Laminated Glass Cutting Table 81P01639AH90500 |



EDEN IR quality customized twin tube infrared lamps can be repalced your original heating lamp, such as Heraeus lamp, LISEC cutting lamp, or Macotec, Intermac, Bavelloni, Bottero, TUROMAS brands. We have successfully produced long IR lamps with some specifications as below:
400V 6400W 1980mm
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

We cannot cut laminated 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 and safety.

Twin tube is a better stable design for short wave, fast response medium wave, carbon medium wave and medium wave infrared heating lamps with high radiation density and high power intensity. The twin tube quartz sizes are 23×11mm and 33×15mm. The heating filament of infrared lamps can be designed by tungsten, Ni-Cr alloy and carbon fiber. In order to better convey and focus on the heated material all the IR radiation emitted from the lamps, the special gold reflector or ceramic white reflector will be coated and fixed directly on the quartz surface
The cutting trajectory is very small and 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.
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