Cosmetic Glass Bottle Production Line with Soda-Lime Material, Multiple Heating Options and ISO Quality Control
This cosmetic storage bottle glass bottle production line utilizes soda-lime glass materials, available in clear (flint), amber, and green colors. Special forehearth coloring technology enables production of custom colors including pink, blue, and yellow within a single furnace operation.
The glass bottle manufacturing process follows a systematic technical workflow:
Multiple heating energy sources available for furnace operation:
- Natural gas
- Heavy oil
- Electricity
- LPG (Liquefied Petroleum Gas)
- Coal gas
- Light diesel oil (standby option)
Batch materials undergo physicochemical solid phase reactions during heating, releasing gaseous products and forming opaque sinter composed of silicate and SiO2.
Sinter melts into flint glass liquid containing numerous bubbles, with uneven chemical composition and characteristics.
Continuous heating reduces viscosity, releasing gaseous impurities and eliminating visible bubbles from the liquid pool.
Final stage combines batch material melting, clearing, and homogenization of glass liquid within the melting section.
- 3D modeling design capability
- Single/double/multi-pass regenerator options
- Top-mounted chimney design
- Unique port structure configuration
- Deep refining technology implementation
- Advanced throat cooling technology
- Optimized melting tank wall cooling arrangement
- Underport burner firing technology
- Separated-type regenerator chamber technology
- Electrical boosting technology
- Bubbling technology integration
- Intelligent single/dual fuel combustion system
- Rich oxygen and full oxygen combustion technologies
- Dual exhaust technologies: induced draft fan and injector fan
- Low energy consumption with extended furnace campaign life
- Pre-assembly of critical structural components
- Advanced PLC/DCS and SCADA computer control systems
- Environmentally conscious operations with flue gas treatment
- Waste heat recovery technology for energy efficiency
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