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کیفیت High-Speed Infrared Drying Tunnel for Rapid Curing with 40% Energy Savings and Customizable Conveyor Width کارخانه
کیفیت High-Speed Infrared Drying Tunnel for Rapid Curing with 40% Energy Savings and Customizable Conveyor Width کارخانه
کیفیت High-Speed Infrared Drying Tunnel for Rapid Curing with 40% Energy Savings and Customizable Conveyor Width کارخانه
کیفیت High-Speed Infrared Drying Tunnel for Rapid Curing with 40% Energy Savings and Customizable Conveyor Width کارخانه
کیفیت High-Speed Infrared Drying Tunnel for Rapid Curing with 40% Energy Savings and Customizable Conveyor Width کارخانه
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High-Speed Infrared Drying Tunnel for Rapid Curing with 40% Energy Savings and Customizable Conveyor Width

High-Speed Infrared Drying Tunnel for Rapid Curing with 40% Energy Savings and Customizable Conveyor Width
High-Speed Infrared Drying Tunnel for Rapid Curing with 40% Energy Savings and Customizable Conveyor Width Product Overview This infrared drying production line is engineered for rapid, energy-efficient drying and curing of water-based, solvent-based, or UV-curable coatings applied to molded pulp ...
محل مبدا:چین
نام تجاری:OSMANUV
گواهینامه:ISO9001
شماره مدل:مشخصات
حداقل مقدار سفارش:1 مجموعه
قیمت:قابل مذاکره
ویژگی های سفارشی محصول
برجسته کردن

High-Speed Infrared Drying Tunnel

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Infrared Drying Tunnel with Energy Savings

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Customizable Conveyor Width Drying Tunnel

ویژگی:
کارآمد
منبع تغذیه:
220V/380V، 50/60Hz
Coveyor Power:
0.75 کیلو وات
روش تغذیه:
پایین، سمت اختیاری است
قدرت تغذیه:
3.75/5.5kw
نوع خشک کردن:
خشک کردن IR
سرعت کار:
10-100 متر در دقیقه
مواد بسته بندی:
چوب ، پلاستیک ، فلز ، کاغذ ، شیشه
توضیحات محصول
High-Speed Infrared Drying Tunnel for Rapid Curing with 40% Energy Savings and Customizable Conveyor Width Product Overview This infrared drying production line is engineered for rapid, energy-efficient drying and curing of water-based, solvent-based, or UV-curable coatings applied to molded pulp tableware and packaging products. The system uses medium-wave or short-wave infrared emitters to directly transfer heat to the coating and substrate surface, significantly accelerati