50TPD Industrial Glass Furnace for Melting and Manufacturing | 50-150 Ton Daily Capacity | Multiple Fuel Options
Price:
Negotiable
MOQ:
1 set
Delivery Time:
90 days after received the down payemnt
Brand:
JEFFER
Product Description
Industrial Glass Furnace Overview
A 50TPD industrial glass furnace is a specialized melting device essential for glass manufacturing operations. This equipment serves as the core processing unit where raw materials are transformed into molten glass through controlled thermal processes.
Glass Melting Process Stages
The melting process consists of five interconnected stages where each phase directly impacts the subsequent stage and final glass quality.
Glass Liquid Formation
Sinter materials melt as silicates and SiO2 transform into flint glass liquid containing numerous bubbles, with uneven chemical composition and characteristics.
Clearing Stage
Continuous heating reduces viscosity, releasing gaseous impurities and eliminating visible bubbles from the liquid pool.
Homogenization
Extended high-temperature exposure eliminates ripples through diffusion, creating uniform glass liquid at temperatures lower than the clearing stage.
Furnace Classification by Capacity
| Furnace Type | Daily Capacity |
|---|---|
| Small Scale Furnace | Below 50 tons |
| Medium Scale Furnace | 50-150 tons |
| Large Scale Furnace | 150+ tons |
Heating Source Options
| Furnace Type | Fuel Source |
|---|---|
| Fired Furnace | Natural gas, heavy oil, diesel oil |
| Electric Furnace | Electricity |
| Fired-Electric Furnace | Combustion fuel with electricity supplement |
Furnace Structure Components
Modern fired furnace structures comprise four essential sections:
- Glass Melting Section: Upper flame space and lower melting tank for material processing
- Heat Source Supply: Pre-combustion chamber for air and gas mixing
- Waste Heat Recovery: Energy efficiency system using exhaust heat
- Gas Supply & Exhaust: Complete ventilation system with reversal units and flue channels
Melting Technology Parameters
The furnace melting system controls multiple critical parameters including temperature, pressure, bubbling, glass liquid level, fuel supply, and reversing systems.
Temperature Control
Precise temperature regulation throughout the melting tank length affects melting speed, liquid convection, forming conditions, fuel combustion efficiency, and furnace campaign duration.
Pressure Management
Gas system static pressure determined by pressure distribution curves.
Bubbling Optimization
Stable bubble shape and position indicate optimal melting performance, directly impacting production capacity and glass quality.
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Company
JEFFER Engineering and Technology Co.,Ltd
Location
4FL, B3 Saturn Builing, No. 98 Star Road, New North Zone, Chongqing, China
Contact Person
Maggie YU