High-Capacity Glass Tempering Furnace | Automotive glass production | Production Capacity: 1000 units/hour (▲2 vs Industry Standard 800) Temperature Uniformity: ±3°C (ASTM C1620) | ▲▲2: Meets mass production demands for automotive windshields. Consistent tempering results. | High energy consumption (▲1 over standard) Requires large facility space. |
Small Glass Bottle Tempering Furnace | Pharmaceutical vial production | Production Capacity: 200 units/hour (Industry Standard) Compact Size: 1.2m³ (ISO 9283) | Optimized for small-scale manufacturing. Lower upfront cost (▲1 vs industrial models). | Limited scalability for high-volume orders. Noisier operation (45 dBA vs silent models). |
Industrial Glass Annealing Oven | Pre-treatment for glassware | Cycle Time: 12 hours (▲1 vs Industry Standard 15 hours) Temperature Stability: ±1°C (ISO 17892) | Reduces residual stress in glass (▲▲2 improvement). Ensures durability for labware. | Slower process compared to tempering furnaces. Higher maintenance costs. |
Automated Glass Cutting Machine | Smartphone screen production | Precision: ±0.1mm (▲▲2 vs Industry Standard ±0.3mm) Cutting Speed: 60 cuts/min (IEC 61496) | High repeatability for electronics components. Reduces material waste (▲1). | Requires skilled operators. High initial investment (▲▲2 over manual systems). |
Glass Forming Machine | Bottle and container manufacturing | Mold Variety: 50+ shapes (▲▲2 vs Industry Standard 30) Forming Speed: 25/sec (ASTM C316) | Versatile for custom bottle designs. Rapid prototyping capability. | Complex mold setup increases downtime. Higher energy use during operation. |
Energy-Efficient Glass Coating Line | Coating for solar panels | Energy Consumption: 0.4 kWh/unit (▲▲2 vs Industry Standard 0.7) Coating Thickness: 2-5μm (ISO 14644) | Eco-friendly operation (▲▲2 reduction in carbon footprint). Enhances UV resistance. | Limited coating material compatibility. Lower throughput (▲1 vs standard lines). |